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Improve Memory, Learning, Focus, And Muscle Function With Acetyl L-Carnitine Darrell Miller 11/9/22
All You Need to Know About L-Carnitine Darrell Miller 10/28/22
The Many Health Benefits of Copper Glycinate Darrell Miller 10/25/22
Why NOW Glucosamine & MSM with Chondroitin Sulfate is the Best Supplement for Joint Support Darrell Miller 10/20/22
The Benefits of NOW Clinical Cardio Darrell Miller 9/30/22
Chondroitin Sulfate - The Joint Health Superstar You May Not Know About Darrell Miller 9/29/22
The Versatile Benefits of BioCell Collagen® Darrell Miller 9/14/22
Safe and Effective Joint Pain Relief: Natural Supplements That Work Darrell Miller 7/21/22
What Cellular Mitochondria Does in the Body Darrell Miller 4/28/22
Powerful antioxidant helps us burn fat, lose weight and avoid premature aging Darrell Miller 4/27/19
Coenzyme Q10: Research confirms ubiquinone and ubiquinol are nearlyequally-absorbed ... Darrell Miller 4/22/19
Medical News Today: Alpha-lipoic acid: Everything you need to know Darrell Miller 4/17/19
Natural matcha green tea extract found to effectively kill breastcancer cells VitaNet, LLC Staff 11/12/18
Stop feeding cancer cells! This is the diet mistake you probablymake that can cause cancer VitaNet, LLC Staff 9/5/18
Why your brain fails as you age, what you can do now VitaNet, LLC Staff 8/24/18
Reducing Joint Pain During Pregnancy With Natural Remedies Darrell Miller 7/11/17
Scientists Say: Mitochondrion Darrell Miller 5/27/17
One of the Best Brain Boosters, yet Hardly Anyone Does It Darrell Miller 5/13/17
More ailments could be added to cannabis oil treatment list Darrell Miller 4/27/17
Chest pain? It might be one of these 7 things Darrell Miller 3/3/17
Study Says Inflammation Is Keeping You Fat Darrell Miller 2/18/17
The Conversation US: 13 ways to keep free radicals away, and why it's so important Darrell Miller 1/8/17
CoQ10 — A Nutritional Powerhouse for Mitochondrial Health Darrell Miller 12/27/16
How Glutathione Reduces Effects Of Parkinson's Disease Darrell Miller 12/10/16
Gut bacteria unleash anti-aging power of pomegranates Darrell Miller 11/21/16
Science says you can worry yourself sick Darrell Miller 11/17/16
Top 10 amazing, indigenous, all-natural cures from around the world Darrell Miller 11/5/16
What Are Glycosaminoglycans (GAGs) And What Herbs Contain Them? Darrell Miller 7/21/15
Mother Nature’s Best Secret is Grape Seed Extract Darrell Miller 12/25/14
Is Cocoa Butter Good For The Skin? Why? Darrell Miller 3/6/14
Together Glucosamine, Chondroitin, and MSM Fight The Battle Against Joint Pain Darrell Miller 12/18/13
Boost Energy With CoQ10 And L-Carnitine Darrell Miller 11/21/13
Astaxanthin Protects The Eye And More! Darrell Miller 11/13/13
Shark Cartilage and Its Benefit in Improving Joint Health Darrell Miller 10/29/13
What Are The Health Benefits Of Quercetin? Darrell Miller 4/18/13
CoQ10: What You Ought to Know about This Substance? Darrell Miller 3/26/13
Can Resveratrol Help Fight DNA Damage? Darrell Miller 1/21/13
Coq10 and its benefits Darrell Miller 10/26/12
GLUCOSAMINE: Origin and Action of Mechanism Darrell Miller 2/6/12
Can Ginseng Boost Your Energy Safely? Darrell Miller 10/5/11
How Does Coenzyme Q10 Improve Energy Levels and Our Health? Darrell Miller 10/4/11
How Does Malic Acid Help With Fibromyalgia? Darrell Miller 8/22/11
What Makes a Good Joint Complex or Formula? Darrell Miller 6/29/11
How Does Taurine Help the Brain? Darrell Miller 5/13/11
How does Malic Acid help with Fibromyalgia? Darrell Miller 2/9/11
The Krebs Cycle - Our Lifes Blood! Darrell Miller 1/13/11
Hyaluronic acid and your cells, eyes, and skin Darrell Miller 12/17/10
Glutathion, Antioxidants, And The Body Darrell Miller 7/14/10
Take Control Of your Inflammation With Supplements Darrell Miller 5/27/10
Antioxidants and your health Darrell Miller 5/17/10
Mugwort Darrell Miller 8/13/09
L-Carnitine Darrell Miller 5/7/09
Detoxify With L-Citrulline Darrell Miller 4/13/09
Nutritious Amaranth Darrell Miller 4/9/09
L-Arginine An Amino Acid Essential Or Not You Be The Judge? Darrell Miller 1/6/09
L-Alanine Non Essential Amino Acid Darrell Miller 1/5/09
EDTA Darrell Miller 1/3/09
Inosine Darrell Miller 12/19/08
Hoodia Gordonii Darrell Miller 12/10/08
Hyaluronic Acid can help Restore Joint Function Darrell Miller 12/1/08
Green Coffee Bean Extract Darrell Miller 10/22/08
Glycine Darrell Miller 10/11/08
Glucosamine Sulfate Darrell Miller 10/2/08
Control Blood Sugar Naturally Darrell Miller 10/1/08
Gamma Oryzanol Darrell Miller 8/29/08
Garcinia Cambogia Darrell Miller 8/28/08
Coconut Oil Darrell Miller 8/18/08
Vitamin C Darrell Miller 8/12/08
What is Alpha Lipoic Acid? Darrell Miller 7/18/08
Antioxidants For The Body Darrell Miller 6/10/08
Other Uses Darrell Miller 5/29/08
D-Ribose Darrell Miller 5/17/08
Copper Darrell Miller 5/15/08
Lipid content by percentage Darrell Miller 5/13/08
B Vitamin Supplements Darrell Miller 5/7/08
Shark Cartilage Darrell Miller 4/30/08
Cherry Fruit Extract Darrell Miller 4/28/08
GTF Chromium Darrell Miller 4/23/08
Health And Applications Of Coenzyme Q10 Darrell Miller 4/17/08
L-Carnitine For Health And Wellness Darrell Miller 4/16/08



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Improve Memory, Learning, Focus, And Muscle Function With Acetyl L-Carnitine
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Date: November 09, 2022 10:37 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Improve Memory, Learning, Focus, And Muscle Function With Acetyl L-Carnitine

Acetyl L-carnitine is an amino acid that assists in the conversion of choline into acetylcholine. Acetylcholine is a neurotransmitter that is necessary for memory, learning, concentration, and muscle movement.* Many people take acetyl L-carnitine supplements to improve cognitive function and support healthy brain aging. Here's a closer look at the role of acetyl L-carnitine in the body and how it might benefit your health.

How Acetyl L-Carnitine Works

Acetyl L-carnitine is involved in the production of energy in cells. It helps shuttle fatty acids into the mitoCHONDria, where they're burned for fuel. Acetyl L-carnitine also acts as an antioxidant and helps protect cells from damage.

In the brain, acetyl L-carnitine plays a role in the production of acetylcholine. Acetylcholine is a neurotransmitter that's required for learning, memory, focus, and muscle movement.* A decline in acetylcholine levels has been linked with age-related cognitive decline and dementia. Supplementing with acetyl L-carnitine might help increase acetylcholine levels and slow age-related cognitive decline.

Acetyl L-carnitine might also help protect nerve cells from damage. This amino acid has been shown to reduce symptoms of nerve pain and improve nerve function in people with diabetic neuropathy and other types of nerve damage.*

Health Benefits of Acetyl L-Carnitine

Acetyl L-carnitine supplements have been shown to offer several health benefits, including:

  • Improving cognitive function in older adults
  • Reducing symptoms of depression
  • Improving symptoms of diabetic neuropathy
  • Improving exercise performance

If you're looking for a supplement to support healthy brain aging or improving cognitive function, acetyl L-carnitine might be worth considering. This amino acid offers several potential health benefits, including reducing symptoms of depression and improving exercise performance. Give it a try today!

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6563)


All You Need to Know About L-Carnitine
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Date: October 28, 2022 01:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: All You Need to Know About L-Carnitine

L-carnitine is a non-essential amino acid that has a variety of health benefits.* It is found naturally in red meat and other animal products, but the best way to ensure you're getting enough is through supplementation. NOW Foods offers a highly absorbable liquid form of L-carnitine that is vegetarian (non-animal sourced) and clinically tested for purity. Let's take a closer look at the benefits of L-carnitine and why you should consider adding it to your supplement regimen.

What are the benefits of L-carnitine?

As we age, our bodies become less efficient at producing carnitine, which can lead to fatigue, muscle weakness, heart problems, and brain fog.* Supplementing with L-carnitine has been shown to improve these symptoms by facilitating the transfer of fatty acids into the mitoCHONDria for energy production.* In addition, L-carnitine has also been shown to boost cognitive performance, increase exercise recovery times, and protect against age-related cognitive decline.*

Why choose NOW Foods L-Carnitine Liquid?

NOW Foods L-Carnitine Liquid is a pure, vegetarian (non-animal sourced), clinically tested product. It is also one of the most absorbable forms of carnitine on the market - meaning you'll get all of the benefits with less product. No matter your age or fitness level, adding NOW Foods L-Carnitine Liquid to your supplement regimen is a great way to support overall health and vitality.

In Summary:

L-carnitine is a non-essential amino acid with powerful health benefits that becomes more important as we age.* Supplementing with a pure, clinically tested product like NOW Foods L-Carnitine Liquid is an excellent way to ensure you're getting enough carnitine to support overall health and vitality.* Give it a try today!

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6542)


The Many Health Benefits of Copper Glycinate
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Date: October 25, 2022 04:49 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The Many Health Benefits of Copper Glycinate

You may not realize it, but copper is essential for many different bodily functions. This trace mineral is involved in energy production, iron metabolism, connective tissue syntheses, and neurotransmitter production. Copper is also critical for bone health, cardiovascular health, lipid metabolism, neurological health, skin health, and free radical protection. Keep reading to learn more about the many health benefits of copper.

Copper and Energy Production

One of the most important roles that copper plays in the body is in energy production. Copper is a key component of mitoCHONDria, which are known as the "powerhouses of the cell." The mitoCHONDria produce ATP (adenosine triphosphate), which is the energy currency of the cell. Therefore, without adequate copper levels, your cells would not be able to produce enough ATP for optimal function.

Copper and Iron Metabolism

Another important role of copper is in iron metabolism. Copper is necessary for the absorption and utilization of iron in the body. Iron is a key component of hemoglobin, which carries oxygen around in the blood. Therefore, without adequate copper levels, your body would not be able to properly utilize iron, leading to anemia or other problems.

Copper and Connective Tissue Synthesis

Copper is also necessary for the synthesis of collagen and elastin, two proteins that make up connective tissue. Connective tissue includes things like skin, tendons, ligaments, and cartilage. Therefore, copper is necessary for healthy skin as well as strong tendons and ligaments.

As you can see, copper plays many vital roles in the body. If you are deficient in copper, you may experience fatigue, anemia, weak bones or connective tissue, problems with lipid metabolism or neurological function, or poor skin health. To ensure that you are getting enough copper in your diet, eat foods like liver, oysters, lobster, dark chocolate, avocados, almonds, mushrooms ,or leafy green vegetables. You can also take a copper supplement if needed.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6526)


Why NOW Glucosamine & MSM with Chondroitin Sulfate is the Best Supplement for Joint Support
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Date: October 20, 2022 04:16 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Why NOW Glucosamine & MSM with CHONDroitin Sulfate is the Best Supplement for Joint Support

If you're looking for a joint supplement that combines three well-known and effective ingredients, look no further than NOW Glucosamine & MSM with CHONDroitin Sulfate. Glucosamine is an essential building block for the formation of glycosaminoglycans (GAGs) and proteoglycans, which are the main components of cartilage tissue. These compounds promote water retention within the joint, giving it resiliency by acting as a lubricant and shock absorber. MSM (Methylsulfonylmethane) is an organic form of sulfur, a mineral necessary for the production of GAGs and proteoglycans. CHONDroitin sulfate is also important for the proper formation of cartilage tissue.

NOW Foods developed the glucosamine test method chosen as the official AOACI industry standard method, so you can be sure you're getting a high-quality product when you choose NOW Glucosamine & MSM with CHONDroitin Sulfate.

How NOW Glucosamine & MSM with CHONDroitin Sulfate Works

The ingredients in NOW Glucosamine & MSM with CHONDroitin Sulfate work together to support optimal joint health.* Glucosamine is used by the body to produce glycosaminoglycans and proteoglycans, which are necessary for the proper formation of cartilage tissue.* These compounds are responsible for water retention within the joint, giving it resiliency by acting as a lubricant and shock absorber.* MSM (Methylsulfonylmethane) is an organic form of sulfur, a mineral necessary for the production of GAGs and proteoglycans.* CHONDroitin sulfate is also important for cartilage tissue formation.*

The combination of these three well-known and effective ingredients makes NOW Glucosamine & MSM with CHONDroitin Sulfate the best supplement for joint support on the market today.

If you're looking for an effective joint supplement, look no further than NOW Glucosamine & MSM with CHONDroitin Sulfate. This product combines three well-known ingredients that work together to support optimal joint health. Glucosamine is used by the body to produce glycosaminoglycans and proteoglycans, which are necessary for the proper formation of cartilage tissue. These compounds are responsible for water retention within the joint, giving it resiliency by acting as a lubricant and shock absorber. MSM (Methylsulfonylmethane) is an organic form of sulfur, a mineral necessary for the production of GAGs and proteoglycans. CHONDroitin sulfate is also important for cartilage tissue formation. The combination of these three ingredients makes NOW Glucosamine & MSM with CHONDroitin Sulfate the best supplement for joint support on the market today.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6512)


The Benefits of NOW Clinical Cardio
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Date: September 30, 2022 12:37 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The Benefits of NOW Clinical Cardio

If you're looking for a comprehensive way to support optimal cardiovascular health, look no further than NOW Clinical Cardio. This powerful combination of targeted nutrients and botanicals helps promote healthy cardiovascular structures and functions.* With L-carnitine and CoQ10 to support energy production in the heart, hawthorn and MegaNatural®-BP™ grape seed extract to support blood pressure already within the normal range, and MK-7 to help maintain arterial flexibility, Clinical Cardio offers a broad range of benefits for those looking to maintain a healthy heart.*

How NOW Clinical Cardio Works

NOW Clinical Cardio is a powerful formula that contains a combination of targeted nutrients and botanicals that are known to support optimal cardiovascular health.* The nutrients and botanicals in Clinical Cardio work synergistically to provide a comprehensive approach to maintaining a healthy heart.*

L-carnitine is an amino acid that is synthesized in the liver from methionine and lysine. L-carnitine plays an important role in energy production by transporting fatty acids into the mitoCHONDria where they can be used for fuel.* In addition, L-carnitine has been shown to support healthy heart function and protect against oxidative stress.*

CoQ10 is another important nutrient for energy production, as it is involved in the electron transport chain in mitoCHONDria.* CoQ10 levels have been shown to decline with age, so supplementation may be especially important for older adults.* Like L-carnitine, CoQ10 has also been shown to support healthy heart function while protecting against oxidative stress.*

Hawthorn is an herb that has been used traditionally for centuries to support cardiovascular health. Hawthorn's primary mechanism of action is vasodilation—the widening of blood vessels—which supports healthy blood pressure already within the normal range.* Additionally, hawthorn has antioxidant activity and can help protect the heart from free radical damage.*

MegaNatural®-BP™ grape seed extract is a patented extract of whole red grapes that has been shown in clinical studies to help maintain already healthy blood pressure levels.* MegaNatural®-BP™ contains polyphenols—powerful plant compounds with antioxidant activity—which may help explain its beneficial effects on blood pressure levels.*

MK-7 is a form of vitamin K2 that is derived from natto, a traditional Japanese fermented food. Vitamin K2 is involved in calcium metabolism and has been shown to promote arterial flexibility by keeping calcium hydroxyapatite out of soft tissues such as arteries.* By promoting arterial flexibility, MK-7 helps maintain healthy blood flow throughout the body.*

Conclusion: NOW Clinical Cardio is a comprehensive formula that contains nutrients and botanicals that are known to support optimal cardiovascular health. With L-carnitine and CoQ10 for energy production, hawthorn for blood pressure support, MegaNatural®-BP™ grape seed extract for antioxidant protection, and MK-7 for arterial flexibility, Clinical Cardio offers a broad range of benefits for those looking to maintain a healthy heart. Try it today!*

*These statements have not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure or prevent any disease.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6476)


Chondroitin Sulfate - The Joint Health Superstar You May Not Know About
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Date: September 29, 2022 01:40 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: CHONDroitin Sulfate - The Joint Health Superstar You May Not Know About

If you're like most people, you probably haven't heard of CHONDroitin sulfate. But this humble nutrient is actually a superstar when it comes to joint health. Here's everything you need to know about CHONDroitin sulfate and how it can help you maintain healthy, flexible joints.

What is CHONDroitin Sulfate?

CHONDroitin sulfate is a glycosaminoglycan (GAG) naturally present in many body tissues, including joint cartilage and synovial tissue.* As we age, our bodies' naturally-occurring levels of CHONDroitin sulfate decline, which can lead to joint discomfort.*Supplementing with CHONDroitin sulfate can help replenish these declining levels and promote joint comfort and mobility.*

How Does CHONDroitin Sulfate Work?

CHONDroitin sulfate works by promoting water retention within the joint.* This helps to keep the joint lubricated and cushion it from shocks, as well as maintaining the resiliency of the joint tissue.* In addition, CHONDroitin sulfate has been shown to inhibit the degradation of cartilage by enzymes.* By doing so, this important nutrient helps to support the maintenance of healthy, flexible joints.*

If you're concerned about your joint health, CHONDroitin sulfate is a nutrient you should definitely consider supplementing with. This important glycosaminoglycan helps to support healthy joints in multiple ways, including promoting water retention, maintaining flexibility and resiliency, and inhibiting cartilage breakdown. So don't wait - start reaping the benefits of CHONDroitin sulfate today!

*These statements have not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure or prevent any disease.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6474)


The Versatile Benefits of BioCell Collagen®
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Date: September 14, 2022 11:56 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The Versatile Benefits of BioCell Collagen®

As we age, it's not only important to maintain our health, but also our appearance. Joints can begin to creak, skin can become dry and saggy, and generally we can start to feel and look a lot older than we actually are. But did you know that there is a supplement that can help with all of those things? BioCell Collagen® is a unique complex of naturally-occurring hydrolyzed collagen, CHONDroitin, and hyaluronic acid that can promote healthy joints, hydrated skin, and strong connective tissue.* Lets explore the many benefits of BioCell Collagen® and how this powerful supplement can help you age gracefully.

Joint Health

BioCell Collagen® can help to promote healthy joints in two ways: by supporting the structure of the joints and by lubricating the joints.* The active ingredients in BioCell Collagen®—hydrolyzed collagen and CHONDroitin—work together to support the structure of the joints.* Hydrolyzed collagen is a type of collagen that has been broken down into smaller peptides, making it easier for the body to absorb.* CHONDroitin is a molecule that is found in cartilage and helps to attract water to the joints, keeping them lubricated.* Together, these two compounds work synergistically to keep your joints healthy and functioning properly.

Skin Health

In addition to promoting joint health, BioCell Collagen® can also help to keep your skin hydrated and looking youthful.* That's because one of the key ingredients in BioCell Collagen®, hyaluronic acid, is a molecule that attracts water to the skin cells.* This helps the skin cells to retain moisture, which in turn makes the skin appear plumper and more youthful.*

If you're looking for a nutritional supplement that can help support joint health and maintain moisture levels in mature skin, then BioCell Collagen® may be right for you.* This unique complex of hydrolyzed collagen, CHONDroitin, and hyaluronic acid can help you age gracefully by keeping your joints healthy and your skin hydrated.* So why not give BioCell Collagen® a try? You may just be surprised at how much difference it can make.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6448)


Safe and Effective Joint Pain Relief: Natural Supplements That Work
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Date: July 21, 2022 10:41 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Safe and Effective Joint Pain Relief: Natural Supplements That Work

Do you suffer from joint pain? If so, you're not alone. In fact, according to the Arthritis Foundation, over 50 million adults in the United States are affected by some form of arthritis. And if that's not bad enough, it's estimated that by 2030, that number will grow to 67 million! The good news is that there are safe and effective ways to relieve joint pain without resorting to over-the-counter drugs. We'll discuss natural supplements like glucosamine, CHONDroitin sulfate, and MSM that have been shown to help rebuild cartilage and reduce inflammation.

What is joint pain and what are the most common causes?

joint pain is a common symptom that can be caused by a variety of conditions. The most common causes include arthritis, bursitis, and tendinitis. Arthritis is a general term used to describe inflammation of the joints. There are many different types of arthritis, but the most common are osteoarthritis and rheumatoid arthritis. Bursitis is the inflammation of the small sacs of fluid that cushion the joint, while tendinitis is the inflammation of the tendons that attach muscle to bone. Joint pain can also be caused by injuries, such as sprains and fractures. In some cases, the exact cause of joint pain cannot be determined. Treatment for joint pain depends on the underlying cause.

How can over-the-counter drugs be harmful to your health?

The wide availability of over-the-counter (OTC) drugs such as acetaminophen and ibuprofen can be a godsend when we are feeling pain or discomfort. However, it is important to remember that these drugs are potent medications that can also be harmful to our health if we take them inappropriately. Acetaminophen and ibuprofen are both nonsteroidal anti-inflammatory drugs (NSAIDs). NSAIDs work by reducing inflammation, but they can also have adverse effects on the gastrointestinal tract, kidneys, and liver. In addition, NSAIDs can interact with other medications that we may be taking, so it is important to speak to a healthcare professional before taking them. Although OTC drugs can be helpful when used as directed, it is important to be aware of the potential risks involved in taking them.

What are some natural supplements that have been shown to help relieve joint pain safely and effectively?

While there are a number of different supplements that have been traditionally used to help relieve joint pain, not all of them have been proven to be effective. However, there are a few natural supplements that have been shown to be safe and effective for this purpose. Glucosamine is a supplement that has been shown to help rebuild cartilage and relieve pain in osteoarthritis sufferers. Another promising supplement is CHONDroitin and msm, which helps to reduce inflammation and ease the symptoms of joint pain. Finally, fish oil supplements have also been shown to be effective in reducing inflammation and relieving joint pain. Turmeric, Boswellia, and CBD also reduce inflammation. When used together, these natural supplements can provide significant relief from joint pain.

How do glucosamine, CHONDroitin sulfate, and MSM work to reduce inflammation and rebuild cartilage tissue?

Glucosamine, CHONDroitin sulfate, and MSM are all natural compounds that have been shown to be effective in reducing inflammation and rebuilding cartilage tissue. Glucosamine is an amino sugar that is produced naturally by the body. It is a building block of cartilage, and it has been shown to stimulate the production of new cartilage. CHONDroitin sulfate is a complex carbohydrate that is also found naturally in the body. It helps to keep cartilage healthy by protecting it from wear and tear. MSM (methylsulfonylmethane) is a sulfur-containing compound that is found naturally in some foods. It has anti-inflammatory properties and has been shown to promote the repair of damaged cartilage. Together, these three compounds can help to reduce inflammation and improve the health of cartilage tissue.

How long should you take these supplements for maximum benefit, and when should you stop taking them if you don't experience results within a certain time frame?

Many people take supplements in order to improve their health or address a specific health concern. But how long should you take them for? In general, most supplements should be taken for at least 6 to 8 weeks in order to see maximum benefit. However, some people may not see results until 12 weeks of supplementation. Of course, if you're working with a healthcare professional, they can help you determine when to start and stop taking supplements. But in general, 6 to 8 weeks is a good rule of thumb. Don't be afraid to add Turmeric or Boswellia to the mix. These herbs can enhance the effectiveness of the glucosamine, CHONDroitin, and MSM.

Taking a natural supplement like glucosamine, CHONDroitin sulfate, and MSM can be an effective way to reduce inflammation and rebuild cartilage tissue safely and effectively. These supplements have been shown to be safe and effective for this purpose. When taken together, they can provide significant relief from joint pain. It is important to speak to a healthcare professional before taking these supplements if you are taking other medications, as there is potential for adverse effects. Be sure to take 1500mg of each in divided dosages though out each day for at least 6 to 8 weeks in order to see maximum benefit.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6419)


What Cellular Mitochondria Does in the Body
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Date: April 28, 2022 04:19 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: What Cellular MitoCHONDria Does in the Body

If you want to stay healthy, it's important that you know what cellular mitoCHONDria does in the body. MitoCHONDria are organelles found in the cytoplasm of cells. They are responsible for producing energy for the cell. Without them, the cell would not be able to function properly. We will discuss the role of mitoCHONDria in the body, and how they impact our health.

What are mitoCHONDria and what do they do in the body

MitoCHONDria are organelles that play an important role in the energy metabolism of cells. Most of the oxygen we breathe is used by mitoCHONDria to convert glucose from the food we eat into ATP, the energy molecule used by our cells. Therefore, mitoCHONDria are often referred to as the "powerhouses" of the cell. In addition to producing ATP, mitoCHONDria also have other important functions, such as regulating cell growth and death, as well as calcium homeostasis. MitoCHONDria are unique in that they have their own DNA separate from the DNA in the cell nucleus. This mitoCHONDrial DNA is passed down from mother to child, which is why defects in mitoCHONDrial function can lead to diseases that are inherited in a maternal lineage. Although most of our cells contain only a single nucleus, they may contain hundreds or even thousands of mitoCHONDria. This allows them to produce enough ATP to meet the energy needs of the cell.

How mitoCHONDrial dysfunction can lead to health problems

MitoCHONDria are integral to many essential physiological processes in the body. Not only do they produce energy for cells, but they also play a key role in maintaining cellular structures and initiating cell division. Therefore, any disruption of normal mitoCHONDrial function can have far-reaching consequences for overall health and well-being. Maladaptive responses to environmental stressors, such as chemical exposure or radiation, are among the most common causes of mitoCHONDrial dysfunction. These stressors result in damage to mitoCHONDrial DNA and can cause problems with cell division and abnormal growth patterns, which can lead to a range of disorders and chronic diseases. For example, mitoCHONDrial dysfunction has been linked to conditions like Alzheimer's disease and type 2 diabetes, as well as cardiovascular disease and cancer. Therefore, it is important to understand the role that mitoCHONDria play in maintaining healthy functioning bodies and take proactive steps to prevent or reverse damage from maladaptive responses to environmental stressors.

MitoCHONDria and Longevity

MitoCHONDria are specialized organelles found within our cells that perform many critical functions, including generating energy to support cellular processes and maintaining healthy cell function. These organelles are the site of many important chemical reactions, often referred to as oxidative phosphorylation or metabolism. Studies have shown that Proper functioning of these organelles is essential for healthy aging, and may be a key factor in determining how long we live. By promoting mitoCHONDria health and making lifestyle changes that help to promote healthy mitoCHONDria, we can take an important step towards optimizing our longevity potential. This includes eating a nutrient-rich diet with a focus on foods high in antioxidants, managing stress levels through regular exercise and relaxation techniques, and avoiding environmental toxins that can damage mitoCHONDria health. Through such strategies, we can give ourselves the best chance at living a long, full life.

Ways to protect your mitoCHONDria and keep them healthy with PQQ

PQQ, or pyrroloquinoline quinone, is an important molecule for the functioning of mitoCHONDria in the human body. This compound plays a crucial role in adenosine triphosphate (ATP) synthesis, the fundamental energy currency of biological systems. By driving cellular processes that release energy for metabolic use, PQQ plays a key role in maintaining mitoCHONDrial health and efficiency. Additionally, PQQ has been shown to exhibit powerful antioxidant properties, which help to mitigate the effects of oxidative stress on mitoCHONDria and other critical cells in the body. Overall, PQQ is an essential component of healthy mitoCHONDrial function and a crucial nutrient for energy production and overall metabolic health.

D-ribose, the MitoCHONDria, and Energy

D-ribose is a naturally occurring sugar that plays an important role in cellular metabolism and energy production. This nutrient is especially important for cells that rely on a lot of energy, such as those found in the heart and muscles. D-ribose helps these cells to generate adenosine triphosphate, or ATP, which is the main energy currency used by cells to drive chemical reactions. Additionally, research has suggested that d-ribose can help to improve physical endurance and reduce the pain and stiffness associated with exercise, making it an important part of a healthy, active lifestyle.

Also, D-ribose is a simple sugar that plays an important role in the structure and function of mitoCHONDria, the powerhouses of the cell. In addition to supplying energy to the cells, mitoCHONDria also help to regulate cell growth and death. D-ribose is essential for the proper function of mitoCHONDria, and it plays a key role in energy production. Studies have shown that D-ribose can help to improve mitoCHONDrial function and reduce fatigue. In addition, D-ribose supplements have been shown to improve exercise performance and increase energy levels. These effects are likely due to the ability of D-ribose to help the body produce more ATP, the energy currency of the cell. For these reasons, D-ribose is an important nutrient for maintaining healthy mitoCHONDria and supporting cellular energy production.

Another important nutrient for the mitoCHONDria is CoQ10

The process of producing energy is called oxidative phosphorylation, and it involves the transfer of electrons from nutrients to oxygen. This reaction creates a proton gradient across the mitoCHONDrial membrane, which is used to generate ATP, the energy currency of the cell. Coenzyme Q10 (CoQ10) is an important component of this process. It acts as an electron carrier, shuttling electrons between enzymes in the respiratory chain. It also helps to maintain the proton gradient, allowing the mitoCHONDria to continue generating ATP. Without CoQ10, oxidative phosphorylation would grind to a halt, and cells would quickly run out of energy. Consequently, CoQ10 plays a vital role in energy production and cellular metabolism.

The bottom line is that both D-ribose and CoQ10 are important nutrients the body needs to maintain optimal energy levels. If you’re feeling run down, low on energy, or just generally not your best, consider taking a supplement containing these two nutrients. You may be surprised at how much better you feel once you start including them in your diet. What’s stopping you from giving them a try?

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6395)


Powerful antioxidant helps us burn fat, lose weight and avoid premature aging
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Date: April 27, 2019 11:30 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Powerful antioxidant helps us burn fat, lose weight and avoid premature aging





Milk thistle is known for being good for the liver, but researchers are finding more and more evidence that points to an antioxidant called glutathione being a key component as well. The powerful antioxidant called glutathione allows our bodies to kick up their natural fat burning abilities which helps trigger weight loss in an almost effortless manner. Studies have also shown that a deficiency in glutathione can cause weight gain through a reduction in mitochondrial fat burning.

Key Takeaways:

  • It is astonishing to note that two out of three Americans are overweight and obese and this makes them susceptible to diabetes and heart diseases.
  • Researchers are increasingly discovering that glutathione which is an antioxidant molecule that is produced by the body could be used in the fight against obesity and chronic disease.
  • This natural substance is not abundantly found in humans equally because the supply of glutathione can fall with aging and exposure environmental toxins make it more challenging to find.

"Glutathione is synthesized from the amino acids cysteine, glycine and glutamate. But, as we age, two of these “building blocks” – cysteine and glycine – decline, causing shortfalls in glutathione production."

Read more: https://www.naturalhealth365.com/antioxidant-lose-weight-2793.html

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6208)


Coenzyme Q10: Research confirms ubiquinone and ubiquinol are nearlyequally-absorbed ...
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Date: April 22, 2019 04:29 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Coenzyme Q10: Research confirms ubiquinone and ubiquinol are nearlyequally-absorbed ...





Many Coenzyme Q10 products have labels that indicate that their product is better absorbed due to longtime beliefs surrounding ubiquinol (reduced Coenzyme Q10) being hard for the body to absorb. Many brands instead market ubiquinone, which is redox Coenzyme Q10 instead, since studies have been more supportive about this form being easier for the body to absorb. New research, however, is concluding that both of these forms are equal when it comes to the ability to be absorbed through the body.

Key Takeaways:

  • According to Coenzyme Q10 expert Dr. William Judy, there is very little difference in the absorption rates of ubiquinol and ubiquinone.
  • Both forms of CoQ10 contain antioxidants and are critical for overall mitochondrial health.
  • CoQ10 can be beneficial for those suffering from Parkinson's disease and has been shown to provide headache relief in adolescent and pediatric populations.

"Marketing terms such as “better absorbed” should be questioned unless the absorption or bioavailability is actually stated. Only when the actual absorption has been verified can the better absorbed product be determined."

Read more: https://wholefoodsmagazine.com/columns/vitamin-connection/coenzyme-q10-research-confirms-ubiquinone-and-ubiquinol-are-nearly-equally-absorbed-compounds-the-physical-form-and-companion-ingredients-make-the-bioavailability-and-absorption-difference-in-coenz/

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6152)


Medical News Today: Alpha-lipoic acid: Everything you need to know
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Date: April 17, 2019 02:34 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Medical News Today: Alpha-lipoic acid: Everything you need to know





Alpha-Lipoic Acid(also known as ALA) may be the next great discovery of how to affect health for the better on a cellular level. ALA is made in the center of a cell, in the mitochondria, and seems to help with weight loss, lessening the severity of diabetes, memory loss, cell degeneration and more. Since humans only make a small amount in their bodies, some supplements are available. However, there have been only limited studies on effectiveness and none at all for children.

Key Takeaways:

  • The powerhouses of human cells, specifically the mitochondria, is where alpha lipoic acid normally resides.
  • One study purported that skeletal muscle energy metabolism improved with the use of alpha lipoic acid, suggesting that improved calorie burning rates could resu!t.
  • Data further suggests that alpha lipoic acid may aid the body in maintaining health cholesterol and sugar levels.

"Since humans can only produce ALA in small amounts, many people turn to supplements to increase their intake."

Read more: https://www.medicalnewstoday.com/articles/323738.php

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6138)


Natural matcha green tea extract found to effectively kill breastcancer cells
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Date: November 12, 2018 02:51 PM
Author: VitaNet, LLC Staff (support@vitanetonline.com)
Subject: Natural matcha green tea extract found to effectively kill breastcancer cells





Everyone knows that green tea is healthy for you but not everyone is aware of just what it can do for your body. Now, this natural green tea extract is being used for more than little get together's at your local Starbucks. It is beginning to be used for medicinal purposes as studies have shown it to be effective in killing breast cancer cells. More tests still have to be done but this is a massive revelation.

Key Takeaways:

  • There's compelling evidence that matcha affects the signalling pathways that can promote cancer stem cells.
  • The Tea suppresses oxidative mitochondral metabolism, making it impossible for the cells to refuel.
  • The Salford biomedical term are experts with a specialization in finding non-toxic ways to destroy cancer stem cells.

"When you’re making yourself matcha, be sure you do not boil it as this could compromise its antioxidant effects."

Read more: https://www.naturalnews.com/2018-11-05-matcha-green-tea-extract-kill-breast-cancer-cells.html

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5828)


Stop feeding cancer cells! This is the diet mistake you probablymake that can cause cancer
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Date: September 05, 2018 09:52 AM
Author: VitaNet, LLC Staff (support@vitanetonline.com)
Subject: Stop feeding cancer cells! This is the diet mistake you probablymake that can cause cancer





Stop feeding cancer cells! This is the diet mistake you probably make that can cause cancer

Although we tend to associate fashion with things like neckties, the truth is scientific ideas go in and out of fashion as well. Various pet theories their have their moment in the sun and then slip quietly below the radar as another more intriguing idea grabs everyone's attention. In the 2000s it was all about genetics and DNA. The Genome project, which would take on the lofty goal of mapping human DNA, thereby aiding scientists in their search to discover the mutations that lead to cancer, or so it was assumed. In actuality the search for causative mutations petered off into almost nothing. Some tumors had no mutations. Nor was there any sort of common DNA factor.

However, it hasn't proven to be a trek back to square one precisely. A Nobel prize winner back in the thirties had a theory that though not conclusive was compelling. This scientist, Warburg, surmised that when the body's mitochondrial cells produced energy as they were supposed to, which is aerobically, the body remains healthy. When energy production became anaerobic, a process that produces lactic acid in the body, then cancer cells would proliferate. To starve these renegade cells, the body would have to re-shift back away from the lactic-acid producing energy style, back to the more positive aerobic method. Some more recent scientists have started to build on Warburg's ideas, even discovering that sugar is a specific for cancer cells, without which they starve. So a best case scenario proposed diet for those with cancer would include high fats, less than fifty percent carbs, and a small amount of protein. Because of the relationship with sugar some diabetes drugs may have secondary use as a way to fight cancer as well.

Key Takeaways:

  • The Human Genome project, which was to map human DNA and discover all the causative mutations leading to human cancers began around the 2000s.
  • Unfortunately, scientists had not allowed for how random mutations are and no specific genetic cause of cancer could be tracked down.
  • Warburg, surmised that when human cells shifted from an aerobic style of energy production to an anaerobic style, then cancer cells proliferated.

"In 1931, Dr. Otto Warburg won the Nobel Prize Physiology or Medicine for his discovery that cancer cells have a fundamentally different energy metabolism compared to healthy cells."

Read more: https://www.healthnutnews.com/stop-feeding-cancer-cells-this-is-the-diet-mistake-you-probably-make-that-can-cause-cancer/

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5747)


Why your brain fails as you age, what you can do now
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Date: August 24, 2018 09:53 AM
Author: VitaNet, LLC Staff (support@vitanetonline.com)
Subject: Why your brain fails as you age, what you can do now





Why your brain fails as you age, what you can do now

It is the mitochondria inside your organelles that produce adenosine triphosphate, and if it does not function now then that is bad news for you. It means that your risk of developing a degenerative disease rises dramatically. No organ in your body is more dependent on energy than your brain, and older people who have their energy impaired open themselves up to such diseases. Additionally, as one ages, their mitochondria is decreased in functions and numbers.

Key Takeaways:

  • A person's mitochondria must function well or they become at risk for degenerative diseases.
  • Damaged mitochondria with badly damaged cells tend to accumulate and contribute to additional dysfunction.
  • With not enough energy, bad cells still will thrive and even multiply, which sums up cancer.

"If your mitochondria are not functioning well, your risk for chronic degenerative diseases will radically increase."

Read more: https://www.healthnutnews.com/why-your-brain-fails-as-you-age-what-you-can-do-now/

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5721)


Reducing Joint Pain During Pregnancy With Natural Remedies
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Date: July 11, 2017 12:14 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Reducing Joint Pain During Pregnancy With Natural Remedies





Pain relivers are bad for the baby therefore there are alternative remedy for joint pain. Its not good to take pills during pregnancy as they can affect the baby and its health. So therefore women look for natural supplement to relive pain. Like vitamins and a supplementary vegetable diet. Arthritis pain can be painful but other ways of relieving the pain can be found it just takes time to find them. All body’s are different so not all will work the same for everyone.

https://www.youtube.com/watch?v=dzQRQp4faQA&rel=0

Key Takeaways:

  • Regular exercise and an anti-inflammatory diet are key factors in reducing joint pain.
  • The most recommended supplements for joint pain during pregnancy include glucosamine and CHONDroitin.
  • Elmore oil, a combination of vanilla oil, tea tree oil, eucalyptus oil and olive oil, is used to fight inflammation, and therefore help with joint pain.

"Many future mothers have to deal with joint pain during pregnancy and they need to find safe ways to control pain without medication and chemicals that might pose risks for the health of the child."

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4956)


Scientists Say: Mitochondrion
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Date: May 27, 2017 07:14 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Scientists Say: MitoCHONDrion





Mitochondria are crucial parts of cells, performing the integral function of glucose to ATP conversion, which provides energy for the function of the entire cell. They are found in the majority of cells, and they uniquely possess DNA, making them more complex than most other cellular structures. One theory behind mitochondrial DNA is that mitochondria originated from a living bacteria that lived with cells, and eventually joined together as a single unit. Mitochondria are an important identifying aspect of a cell, and are commonly regarded as a cell's most significant cellular structure.

Read more: Scientists Say: Mitochondrion

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One of the Best Brain Boosters, yet Hardly Anyone Does It
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Date: May 13, 2017 11:44 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: One of the Best Brain Boosters, yet Hardly Anyone Does It





Dave Asprey, founder of Bulletproof.com belives that he has devised a plan that can make the brain work faster and sharper in as little as two weeks. After working long hours in silicon valley, Dave realized he was gaining weight and experiencing brain fog. He believes he experienced mitoCHONDrial dysfunction, mitoCHONDria fuel the cell of your body so it was like having your batteries drained. He relates you can recharge these batteries in several ways. You can use sunlight and infrared exposure, you also need quality proteins and fat to fuel your cells. There is also some biofeedback techniques that work as well. Doing all these things can get your mind and body back on track.

[video mp4="//www.healthnutnews.com/one-best-brain-boosters-yet-hardly-anyone/"]

Key Takeaways:

  • When the mitoCHONDria in your body are not functioning efficiently, neither will your body.
  • Toxic chemicals or mold can reduce the ability of mitoCHONDria to function.
  • Infrared light produced by the sun can improve the function of mitoCHONDria.

"After going on a low-fat diet, he started experiencing severe brain fog — so much so, he feared losing his career."

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4606)


More ailments could be added to cannabis oil treatment list
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Date: April 27, 2017 04:14 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: More ailments could be added to cannabis oil treatment list





Canon is oils has a great amount of benefits to it but the various parts of beneficial leads that the oil produces in the attainment of its glory is vast. The different types of positive affect that the oil has show in in the treatments of our great advancement in different fields of study is great and growing everyday and the study and production ashows great strides in different fields generating different products and product margins leading to greater growing and growth overall.

Key Takeaways:

  • Six more conditions can be treated with cannabis than originally indicated
  • Research has shown positive results in treating seizures and epilepsy in children
  • A prescription from a physician is required still even at the end of life.

"Folks with cancer, Crohn’s disease, Lou Gehrig’s disease, mitochondrial disease, multiple sclerosis, Parkinson’s disease, seizure disorders and sickle cell disease can be legally be treated using cannabis oil as of 2015."

Read more: http://www.wrdw.com/content/news/More-ailments-could-be-added-to-cannabis-oil-treatment-list--420136993.html

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4491)


Chest pain? It might be one of these 7 things
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Date: March 03, 2017 12:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Chest pain? It might be one of these 7 things





If you are having chest pains, then it might be one of seven things. Heartburn is one of these things. Muscle strain is another one. It is possible that a person might mistake a muscle strain for something far more serious, like a heart attack. Doctors do not expect any patients to tell the difference between the two.

Key Takeaways:

  • The occasional reflux is fairly common and probably nothing to worry about, but if you're experiencing it twice a week or more, you may have gastroesophageal reflux disease (GERD).
  • 13% to 36% of adults who show up to the ER or doctor's office with acute chest pain are diagnosed with costoCHONDritis, or inflammation where rib bone meets with the cartilage.
  • Respiratory infections are often to blame, though other culprits include autoimmune disorders like lupus and rheumatoid arthritis.

"If you're having chest pain, and you're not 100% sure what's causing it, either call your doctor or call 911."



Reference:

//www.cnn.com/2017/02/16/health/chest-pain-causes-partner/index.html

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4064)


Study Says Inflammation Is Keeping You Fat
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Date: February 18, 2017 10:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Study Says Inflammation Is Keeping You Fat





We have all tried to diet and found that we just can’t do it. We try again and again to lose some weight only to find that it doesn’t go away. New research has linked the inability to lose weight with inflammation. Scientists found that converting white cells to brown cells made the weight melt off of rats in trials. This is due to the higher number of mitoCHONDria present in brown cells versus white cells, which uses more energy. While more research needs to be done to determine how to convert to brown cells, they recommend an anti-inflammatory diet.

Key Takeaways:

  • Many of us have had the experience of trying what feels like every diet and workout regimen we come across, without losing weight.
  • It’s easy at this point to get frustrated — to criticize yourself for supposedly not exercising enough, or taking too many cheat days.
  • But a new study suggests that one of the factors at play here may be inflammation.

"Many of us have had the experience of trying what feels like every diet and workout regimen we come across, without losing weight."



Reference:

https://www.google.com/url?rct=j&sa=t&url=//www.thealternativedaily.com/study-links-inflammation-to-fat/&ct=ga&cd=CAIyGmZmMDFkMTU2YWMzMmQ5OTU6Y29tOmVuOlVT&usg=AFQjCNHKiE-VelG8xkc48_2omt6psctl-Q

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3968)


The Conversation US: 13 ways to keep free radicals away, and why it's so important
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Date: January 08, 2017 10:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The Conversation US: 13 ways to keep free radicals away, and why it's so important





Free radicals are molecules that are missing one or more electrons. They can damage your cells, which has been linked to health problems from wrinkles to cancer. Eating a diet rich in anti-oxidants fights the proliferation of free radicals, but the holidays, with their rich array of fatty, starchy, and sweet dishes, can make it more difficult to get those healthy anti-oxidants -- in the form of fresh fruits and veggies -- into your diet. But with a little diligence and pre-planning, you can have a healthy and delicious holiday season.

Key Takeaways:

  • raditional holiday meals are laden with salt, fat and sugar, which can spike blood glucose and insulin levels when eaten in excess all in one day. They also, alas, can increase the amount of free radicals, or molecules with unattached electrons, in the body, which can do serious cellular damage.
  • If a substance is “oxidized,” it has lost electrons to another substance. In contrast, we say a substance is “reduced” when it has gained electrons from another substance.
  • Our mitoCHONDria, which operate like little factories in our cells, are responsible for burning fuel from food and producing energy in each of our cells via a process called oxidative phosphorylation.

"The oxidizing agents that have accepted electrons become free radicals if the unpaired electrons don’t bind to other molecules. These free radicals mess with our cellular metabolism, even interfering with our DNA."



Reference:

//www.huffingtonpost.com/the-conversation-us/13-ways-to-keep-free-radi_b_13870866.html

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3757)


CoQ10 — A Nutritional Powerhouse for Mitochondrial Health
TopPreviousNext

Date: December 27, 2016 10:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: CoQ10 — A Nutritional Powerhouse for MitoCHONDrial Health





coenzyme Q10, which is referred to as CoQ10 is gaining popularity in the supplement marketplace. The number of Americans who are using this supplement has risen to twenty-four million people. This is good news as research shows its benefits. New research shows it keeps the mitoCHONDria healthy, allowing for oxygen to be converted to energy.

Key Takeaways:

  • At present, at least 1 in 4 American adults over the age of 40 are taking a statin — ostensibly to protect their heart health.
  • This is the enzyme inhibited by statin drugs. This means that, in addition to lowering your cholesterol, the drug also compromises your body's ability to benefit from a healthy and cleaner-burning fuel (fat).
  • Recent research found that taking CoQ10 in combination with selenium improves heart function and cuts cardiovascular mortality by nearly 50 percent in elderly people.

"Between 2000 and 2016, the number of Americans using CoQ10 increased from an estimated 2 million to 24 million, and the number of brands featuring CoQ10 has increased from 18 brands to 125."



Reference:

https://www.google.com/url?rct=j&sa=t&url=//www.prohealth.com/library/showarticle.cfm%3Flibid%3D29771&ct=ga&cd=CAIyGjVkYjY3ZDViNDdiNGM3ZTc6Y29tOmVuOlVT&usg=AFQjCNFStHXdUv1oYIMpcXavYYI0sc130w

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3707)


How Glutathione Reduces Effects Of Parkinson's Disease
TopPreviousNext

Date: December 10, 2016 02:23 AM
Author: Darrell Miller
Subject: How Glutathione Reduces Effects Of Parkinson's Disease

Parkinson's Disease is an incurable chronic and movement disorder that results from the death of neuron cells of the substantia nigra area of the brain. The symptoms associated with this disease worsen as one ages.When the neurons die, they release a chemical called dopamine that is a neurotransmitter that relays messages to movement and coordination centers of the brain. As one ages, the dopamine level produced decreases making it hard for transmission of messages to this part of the brain responsible for movement and coordination. This makes the patient unable to control movement of body parts.

Symptoms of Parkinson's Disease:

  • The patient experience tremors in the hands,legs,face and jaws.
  • Stiffness of the trunk and the limbs as well
  • Slow movement in the patients
  • Lack of controlled and stable balance

How To Reduce Effects Of Parkinson's Disease:


PD currently has no cure. However, doctors do surgeries and other medical procedures on affected parts of the brain to reduce effects of this disease. Researchers worldwide agree that there could be a breakthrough in the treatment of this chronic disease with the administration of glutathione (GSH) to patients. The supplement works in the following ways:

Our bodies naturally produce glutathione which is an antioxidant. Its production however reduces progressively as one ages. Its main role is to fight free radicals which may build up to cause oxidative stress. Patients should thus take the glutathione supplement daily to help them fight this oxidative stress which causes PD.

Glutathione also supports mitoCHONDria. This ensures consistent energy production in mitoCHONDria. This energy is useful in the fight of PD. Glutathione makes the brain effectively use dopamine and detoxifies the body. This ensures that heavy metals which may attack the brain are regularly removed from the body. Numerous studies are however still underway to determine how this supplement can be used effectively. Glutathione should not be taken orally as it is broken down in the gut before it can be used in the brain cells.


(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3609)


Gut bacteria unleash anti-aging power of pomegranates
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Date: November 21, 2016 01:09 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Gut bacteria unleash anti-aging power of pomegranates





Pomegranates may hold a more significant role than just tasting delicious. There are studies underway that aim to prove the anti-aging benefits of the fruit. It is believed that the breakdown of pomegranate in the gut causes a release of urolithin A, which in turn boosts the cells’ ability to clean up after itself. Without the buildup of mitoCHONDrial matter that happens without urolithin A, the body doesn’t age as quickly.

Key Takeaways:

  • Researchers reveal a fascinating result of the co-evolution of plants, bacteria, and animals over millions of years. They show the compound enables muscle cells in animals to protect themselves against one of the major causes of aging.
  • As we age, an important process that our cells rely on for energy slows down and begins to malfunction. This process - called "mitophagy" - recycles worn-out mitoCHONDria, the tiny powerhouses inside cells that make the chemical units of energy that fuel their work.
  • The researchers then repeated the tests with rodents. They found, like they did with the worms, that urolithin A led to a significant reduction in faulty mitoCHONDria. Also, older mice - around 2 years old - showed 42 percent better endurance while running than other mice of the same age that had not been exposed to the compound.

"As we age, an important process that our cells rely on for energy slows down and begins to malfunction."



Reference:

https://www.google.com/url?rct=j&sa=t&url=https://cassiopaea.org/forum/index.php%3Ftopic%3D43046.0&ct=ga&cd=CAIyGjFlMTFjYzBlYzAwOTU4NjY6Y29tOmVuOlVT&usg=AFQjCNHA4E9yo_wZCBt_EBfxgOA2RXZn9A

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3481)


Science says you can worry yourself sick
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Date: November 17, 2016 02:54 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Science says you can worry yourself sick





A Norwegian study published in the journal BMJ Open is stating what many people have always believed: hypoCHONDriacs can actually worry themselves sick. It was observed that these types of people tend to perform less strenuous labor and smoke more. The lack of physical activity weakens the body, and the smoking is used as a sedative but obviously has negative effects on the body. Unfortunately, doctors telling these people not to worry doesn’t really work. Only the patient can try to change the way they think.

Key Takeaways:

  • A new study has found that it is, indeed, very possible for hypoCHONDriacs to worry themselves to the point of ill health
  • Health anxiety is a specific type of anxiety characterised by preoccupation of having, acquiring or possibly avoiding illness,
  • Participants with higher levels of health anxiety reported less hours of hard physical activity per week

"A new study has found that it is, indeed, very possible for hypoCHONDriacs to worry themselves to the point of ill health."



Reference:

https://www.google.com/url?rct=j&sa=t&url=//www.aww.com.au/latest-news/health/study-shows-hypoCHONDriacs-have-more-heart-disease-29601&ct=ga&cd=CAIyGjM5ZjM5OTY2MWYzZGRiYzA6Y29tOmVuOlVT&usg=AFQjCNH3Z09_x-BYaCT-DD6llKTk3P_40A

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3460)


Top 10 amazing, indigenous, all-natural cures from around the world
TopPreviousNext

Date: November 05, 2016 10:54 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Top 10 amazing, indigenous, all-natural cures from around the world



When it comes to medicine what you put in to your body is important. For centuries people used natural cures from around the world to cure what ails them. Today we are quick to look to traditional medicine but perhaps it is time we step off the beaten path.

Key Takeaways:

  • Hemp seed oil has a 3:1 ratio of Omega-6 to Omega-3 fatty acids that best supports heart health and promotes proper cardiovascular function, thus preventing degenerative diseases.
  • Made from the roots and stems of the cannabis plant, cannabidiol yields none of the psychoactive compound THC (tetrahydrocannabinol) that marijuana contains. Also known as the "ultimate preventative medicine," "the miracle herb," and even referred to as "the forbidden medicine," CBD is a medical wonder, having anti-inflammatory and anti-cancer properties, including the support of mitoCHONDrial function at the cellular level.
  • Pharmaceutical companies wish they could patent it. Produced from the perennial herb oregano, the oil is loaded with antioxidants that annihilate the free radicals that cause cancer. One of the most potent remedies in the world, oregano oil beats down viruses and knocks back allergies to pollen.

"Try the top 10 amazing, indigenous, all-natural cures from around the world, and never suffer another side effect, never perpetuate illness, and never, ever eat cancer again."



Reference:

//www.naturalnews.com/055836_natural_cures_indigenous_medicine_healing_plants.html


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What Are Glycosaminoglycans (GAGs) And What Herbs Contain Them?
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Date: July 21, 2015 08:53 PM
Author: Darrell Miller
Subject: What Are Glycosaminoglycans (GAGs) And What Herbs Contain Them?

Glycosaminoglycans refers to a linear unbranched polysacharide chain molecule composed of disaccharides repeats with a high negative charge due to the presence of Uronic acid components and sulfate esters with some hydoxyl (OH) groups as part of its structural components. They have varying molecular size and sulfation depending on the tissue they are located on and their state. They function to attract cations and maintain the hydration of the extracellular membrane (E.C.M).

Glycoaminoglycans are classified into different groups based on different categories which include; glycosidic linkages in their structure, type of the sugar moiety, sulphate groups numbers and the location of the sulfate groups. Based on this various classification categories six major groups of GAGs exists, namely; heparin, hyaluronan, dermatan sulfate, heparin sulfate, CHONDroitin sulfate, and keratan sulfate.

GAGs have a high solvation degree and and are as well highly viscous. This is beneficial to the body in that it helps to cushion and lubricate various connective tissues and body joints respectively. It therefore protects an individual from joint pains due to poor lubrication of the joints causing the bone to slide over each other. They also form the building blocks of proteoglycans which are the major building blocks of the extracellular matrix. Due to this property they are vital in determining the cellular activities such as cell division because the cell division machinery has to attach itself to the extracellular matrix before the division process is initiated. Some body tissues such as the nerve cells and the muscle cells require continuous cell division to replace worn out cells for the normal functioning. This means that structural deformities in the extracellular matrix will hinder the division process to occur and is most likely to lead to some neurodegenerative complexions.

Recent studies have linked GAGs to play a role in the cell biology of cancer.They have been established as the key macromolecules affecting cell properties and functions through interaction with key growth factors or by acting directly as receptor molecules. Through this it has been findings they play a vital role in the cell signaling process thus playing a role in the cancer disease progression.Heparin and heparin sulfate have been indicated through studies to have anti-tumor effects by preventing the process of angiogenesis which is the first step in cancer metastasis.Some have been associated with anti-coagulant properties.

Seaweed

Therefore GAGs are important molecules which play a vital role in protection against various forms of cancers. GAGs aremostly obtained from animal sources. The animal sources include shark fish and ray skeletons. Plants are also sources of GAGs, however their digestion by the human system is not possible. Seaweed is one herb that is rich in GAGs. However as earlier explain the digestion of the sea weed by the animal digestive system is quite a challenge. It is therefore recommended that we eat foods rich in proteins, and carbohydrates which can be used to synthesize GAGs in the body.

In summary, GAGs are heteropolymers which acts as the building blocks of the extracellular matrix in animals. The body has the ability to synthesize GAGs naturally hence nutritional supplement is required for the body to obtain key components necessary for the synthesis.
links


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Mother Nature’s Best Secret is Grape Seed Extract
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Date: December 25, 2014 08:08 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Mother Nature’s Best Secret is Grape Seed Extract

Grape fruit

Benefits of Grape Seed

French Grape Seed Extract Helps the Heart and Arteries:

Grape seed extract is a powerful antioxidant, the benefits resemble a type of fountain of youth that invigorated individuals and improved cardiovascular health and improved weakened collagen levels. Research indicated that individuals who resided in France and consumed red wine enjoyed a longer lifespan due to consuming wine that possessed a high content of a type of flavonoid called proanthocyanidin.

Scientists discovered that grape seed extract worked its magic at the gene level in cells, activating triglycerides metabolism, reducing inflammation and improved cholesterol levels. Scientific papers also indicated that grape seed extract properties appeared to stop and or reduce plaque deposits in arteries.

By refining the content of a red grape down to an extract, the high flavonoid pranthocyanidin content provides enormous benefits.

French Grape Seed Extract and Blood Sugar:

High blood sugar damages the heart and hardens it resulting in heart attacks and heart disease. Researches uncovered a secret of grape seed extract; it activated a blocker at the gene level stopping the body from heart hardening. Turning on this element at the cellular level deep inside of the mitoCHONDrial DNA of a human being has assisted diabetic cardiomyopathy. French grape seed extract has an amazing impact on the body with blood sugar levels.

French Grape Seed Extract Boosts Immune Function:

Germ managing elements have been identified inside of grape seed extract; it is a powerful anti-candida, reducing harmful bacteria keeping it in a healthy balance. People that are overweight who take the extract find that they reduce their calorie intake naturally. Persons who suffer with Alzheimer’s disease, if they are given the extract improve and maintain a higher mental function. This extract is excellent for all parts of your body, boosting the immune function at all levels.


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Is Cocoa Butter Good For The Skin? Why?
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Date: March 06, 2014 03:27 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Is Cocoa Butter Good For The Skin? Why?

Cocoa butter

cocoa plantDoubtlessly, there are few preferred healthy skin items over cocoa butter and some few that likewise makes you feel great deductively notwithstanding feeling extraordinary because of the way your skin looks so great, but Cocoa butter is good solid skin reinforcement, and for additional data on characteristic healthy skin items with a great experimental foundation. Therefore it is good for the skin.

Reasons to why cocoa butter is good for your skin:

Powdered cocoa butter contains a lot of diverse antioxidants which behave synergistically presenting a massive bothersome resistant to the cost-free radicals which eliminate your skin layer cells along with lead to quick getting older. Therefore, therefore, is it doesn't suitable natural skin care solution.

Let's have a look at which record again. Precisely why your 'ideal' natural skin care solution? In order to solution which question, we need to have a look at precisely what antioxidants tend to be, along with precisely what hot cocoa butter can perform them, along with after that the reason why it is advisable than additional natural skin care merchandise on the market.

Totally free radicals tend to be small substances kinds in the body's fat burning capacity while vitality is generated coming from blood sugar in the mitoCHONDria of each and every cell phone within your body. Fortunately they are shaped simply by experience of toxins including pesticides, along with particularly the several poisonous pieces of cigarette light up. Cigars along with water lines tend to be believe it or not harmful than tobacco, along with filtration system guidelines make not any difference towards the production connected with cost-free radicals.

What exactly that they do is always to eliminate cells, when they're pores and skin cells you continue to grow older. Your skin layer wrinkles along with dries up, and you begin to take on the style connected with an individual many years over the age of you're. These people try this by way of a procedure often known as oxidation, along with antioxidants can certainly keep the idea. These people reduce the effects of your cost-free radicals, and forestall your skin layer cells coming from getting ruined.

Contents of cocoa

Powdered cocoa butter contains several different antioxidants that can eliminate away from numerous diverse cost-free radicals along with superoxides, as well as hydrogen peroxide. Vitamin e is really a powerful antioxidant -- your strongest of all the so-called antioxidant vitamin supplements in fact, and will quickly eliminate away from hydrogen peroxide along with any oxidizing agent. Others tend to be vitamin supplements A new along with G, however they can not strategy the potency of vitamin E.

Furthermore, it contains phytochemicals (posh title pertaining to place chemicals) including flavanoids which might be also powerful antioxidants. Polyphenols are very effective in neutralizing cost-free radicals, and the hot chocolate mass polyphenols tend to be in particular successful. In fact, hot chocolate butter boasts a greater antioxidant awareness and then possibly blueberries as well as other so-called superfoods.

In order that hot cocoa butter to work, it will email numerous of the pores and skin cells as is possible, that involves do away with the idea properly directly into your skin layer. The epidermis is incredibly absorbent all of which will eliminate cost-free radicals in the reduced absolute depths of the pores and skin as soon as they're created, along with ahead of they are able to do injury.

It is clinically demonstrated which hot chocolate butter will certainly keep pores and skin degradation a result of the harmful consequences from the UV light in the rays of the sun -- UV rays builds cost-free radicals which are very effective in doing damage to pores and skin. Merely go through the influence connected with sunburn! However, there is additional in order to hot chocolate butter than which.

It contains a substantial percentage connected with vitamins as well as lime scale, potassium, magnesium, zinc, manganese, copper along with metal, all of which come in a highly bioavailable style which make them far better which business vitamins. Not just that, though. Furthermore, it contains tryptophan, involved in the development connected with serotonin, your 'feel good' neurotransmitter, and also dopamine along with phenylethylamine, many beneficial materials. It is a mental faculties food as well as food to your pores and skin.

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Together Glucosamine, Chondroitin, and MSM Fight The Battle Against Joint Pain
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Date: December 18, 2013 03:36 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Together Glucosamine, CHONDroitin, and MSM Fight The Battle Against Joint Pain

What Do Glucosamine / CHONDroitin / MSM Have In Common?

In today's cultural, there seems to be a remedy for almost any ailment. If you have a headache then just take two acetaminophen every four to six hours. Maybe you have broken your arm and can recall the pain medication that was prescribed by your doctor. Unfortunately, as far as science is concerned,not a single treatment works 100% of the time. There is always some sort of relapse period during which, if an individual forgets to take their medicine the pain will return.

How Does Glucosamine Fit Into The Picture

Hundreds of individuals suffer from some sort of joint pain that is found in the knee, hip, or shoulder area. The chance is high that you are one of those people who have been diagnosed witharthritis, osteoarthritis, gout, or bursitis. Most likely, you have also been written a prescription from your doctor for anything from a muscle relaxer to an anti-inflammatory. Be aware of the fact that these medicines will reduce pain and swelling but only for a short period of time. What happens when the pain relapses and you cannot take anymore? Perhaps, you should consider a nutrional supplement that will help your body fight from within.

What About CHONDroitin

By itself, glucosamine lubricates the connective tissues of the body. Although, glucosamine cannot work without another natural compound called CHONDroitin. The body uses glucosamine to produce chrondroitin which is an example of a glycosaminoglycan. Better known as CHONDroitin sulfate, it must mix with other proteins in the body to create proteoglycans which are found in all connective tissues.

Why Does MSM Sound So Similar

Just like glucosamine and CHONDroitin , also known as methyl sulfonyl methane , MSM is known to help aid in the fight against osteoarthritis and joint pain. It is naturally found in humans and in certain plants and animals. Usually MSM is paired with glucosamine and CHONDroitin in a pill or capsule form.

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Boost Energy With CoQ10 And L-Carnitine
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Date: November 21, 2013 08:43 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Boost Energy With CoQ10 And L-Carnitine

CoQ10 and L-Carnatine

 L-CarnatineCoQ10 and L-Carnitine offer double protection for the heart and the brain in just a single tablet. You obtain all benefits for your heart at 100% from CoQ10, while L-Carnitine supports your memory, learning ability, and focus. The exclusive combination of CoenzymeQ10 and L-Carnitine encloses an absorbable, water soluble capsule of CoQ10 and L-Carnitine, which is important for proper usage.

Why are CoQ10 and L-Carnitine Supportive in Energy Boost?

CoQ10 Energy Boost

CoQ10 is a vital nutritional element found in all body cells, in particular the mitoCHONDria, in which most energy is generated. The major function of this coenzyme is to assist in the process of oxygen and food conversion into energy. As people grow older their ability to naturally, to produce this coenzyme decays.

At the same time as Coenzyme Q10 is taking part in the production of energy in each cell of your body, it is considered be remarkably imperative for the high energy requirements of the heart. The heart needs vast energy amounts, because it is the hardest worker in your entire body. Coenzyme Q10 seems to be indispensable for this process. It offers you sufficient antioxidant provision, protecting the body cells from damage of the free radicals, and proffering a dynamic function of the immune system.

L-Carnitine Energy Boost

L-Carnitine transports indispensable fat acids into the same organ where CoQ10 plays its major function - the mitoCHONDria. There, with the help of L-Carnitine, all fatty acids are turned into energy. However, the beneficial function of L-Carnitine does not end here. In addition, it also supports the transportation of toxins outside the body. You can think of the problems that might occur if these vital body processes are not fully operational. At the same time however, the major impact of L-Carnitine over the body is directed towards the brain:
  • Cognitive function and concentration support
  • Cell membrane health support
  • Improves clarity and happiness
Encouraging the overall health of your brain, while offering your heart supreme support, the combination of CoQ10 and L-Carnitine is the best solution for you, in terms of:
  • Supporting your heart's energy needs
  • Providing essential nutrition for all cells of the body
  • Delivering powerful antioxidants, which protect your body
References:
  1. //www.webmd.com/heart-disease/heart-failure/tc/coenzyme-q10-topic-overview
  2. //www.webmd.com/vitamins-supplements/ingredientmono-1026-L-CARNITINE.aspx?activeIngredientId=1026&activeIngredientName=L-CARNITINE
  3. //www.poliquingroup.com/ArticlesMultimedia/Articles/Article/767/Top_12_Reasons_to_Use_Carnitine.aspx
  4. //nutritionalengineering.org/coq10-acetyl-l-carnitine-supplement.htm
  5. //www.livestrong.com/article/489829-why-should-i-take-l-carnitine-with-coq10/

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Astaxanthin Protects The Eye And More!
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Date: November 13, 2013 02:52 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Astaxanthin Protects The Eye And More!

Astaxanthin is a carotenoid that is commonly found in the marine environment. It is naturally found in salmon, krill, trout, crayfish, shrimp, crustaceans and yeast. It is the chemical that is responsible for the red color in cooked shellfish and salmon meat. The algae Haematoccus has the richest natural source of astaxanthin.

Astaxanthin can also be produced synthetically, but due to the synthetic product consisting of different steriosmers it is not preferred to be used in some cases.

Unlike beta-carotene it has two more oxygenated groups on each of its ring structure, these additional functional groups make it a highly potent antioxidant and give it a configuration that is more polar than that of other carotenoids. Vitamin E has been known as the strongest antioxidant both in topical use in cosmetics and in internal use, but research has shown that astaxanthin has a greater antioxidant strength than Vitamin E. For example in the quenching of singlet oxygen it has an antioxidant strength five hundred times stronger than Vitamin E.

Unlike many other antioxidants it has the ability of crossing the blood-brain barrier and enter into the eyes, brain and central nervous system (CNS). Most diseases of the CNS and eye are caused by increased generation of free radicals or by a decrease in the ability to remove free radicals from the body. Some of the diseases that are caused by problems with inflammation and oxidation include Glaucoma, Cataracts, and Huntington’s disease. These can be prevented by taking astaxanthin.

It has anti-inflammatory properties that are related to its strong antioxidants properties. It suppresses some of the inflammatory mediators such as, prostaglandin E-2 (PGE-2), tumor necrosis factor –alpha (TNF-a), and nitric oxide. Unlike other anti-inflammatory drugs like acetaminophen that can damage the liver and aspirin that may cause stomach bleeding, astaxanthin doesn’t have any side effects.

In people suffering from rheumatoid arthritis and carpal tunnel syndrome it has the ability of reducing pain. Studies have shown that it is able to reduce pain in rheumatoid arthritis by 40% after 8 weeks of continuous use.

It prevents Ultra Violet induces oxidative stress of the skin and prevents the photo aging of the skin. It prevents UV induced formation of wrinkles and collagen degradation in the skin. It may be applied on the skin or taken orally.

In people participating in sports it eliminates the soreness of joints after exercise, and reduces the pain caused by inflammation. This enables athletes to train harder and as a result increase their endurance, skill, and strength. This is through its ant-inflammatory and ant-oxidant effects in the mitoCHONDria (energy producing organelle).

It strengthens the immune system, research by scientists has shown that it causes increase in production of T cells, stimulates the proliferation of lymphocytes, amplify the cytotoxicity of natural killer cells, decrease damage of DNA, and increases significantly delayed type hypersensitivity syndrome.

It prevents heart disease and reduces the risk of people already suffering from heart disease form getting a stroke or heart attack. It improves the blood lipid profiles by increasing HDL (high density lipoprotein) and decreasing LDL (low density lipoprotein).

The liver main function of the liver and kidney is the detoxification and removal of harmful substances in the body. These activities lead to the formation of free radicals. Astaxanthin being a strong antioxidant helps by destroying these free radicals hence it eliminates their oxidative effects.

As a result of its immune benefits Astaxanthin also has anti-tumor properties and as a result it prevents the development of cancer. Its prevention of cancer is also caused by its antioxidant properties and by it regulating gene expression.

References

1. //www.peakhealthadvocate.com/2826/astaxanthin-benefits-include-eye-heart-health/

2. //articles.mercola.com/sites/articles/archive/2013/02/10/cysewki-discloses-astaxanthin-benefits.aspx

3. //www.lef.org/magazine/mag2013/apr2013_Astaxanthin-Provides-Broad-Spectrum-Protection_01.htm

4. //www.vitguide.com/astaxanthin-benefits/

5. //www.greenmedinfo.com/blog/astaxanthin-supercharged-health-benefits

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Shark Cartilage and Its Benefit in Improving Joint Health
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Date: October 29, 2013 10:12 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Shark Cartilage and Its Benefit in Improving Joint Health

shark

Benefits of Shark

Shark cartilage is derived from the dried and powdered skeletons of sharks caught in the Pacific Ocean. The part of the skeleton that is used is known as cartilage, which is the tough but elastic part of the skeletal tissue that provides support to the body much like bones. This tissue is rich in calcium as well as other substances thought to have a variety of benefits in health and fitness.

Bodybuilders and fitness experts around the world are currently showing a lot of interest in this product because it has number of effects that can be of benefit to joint health. Depending on the manner in which shark cartilage is harvested and formulated, product can be used to treat cancer, osteoporosis, arthritis and skin disease (psoriasis).

How Does It Work?

As already been mentioned, shark cartilage is rich in calcium. It contains in its formulation other compounds including glucosamine sulfate, CHONDroitin sulfate and camphor. All these compounds are essential to joint health. When applied topically on the skin covering the joints, shark cartilage is absorbed into the synovial fluid where it produces its effects.

The glucosamine sulphate, the CHONDroitin sulfate and the camphor have anti-inflammatory properties and therefore helps with treatment of the common inflammatory disorders of the joints especially osteoarthritis and arthritis and repair of joint damages. When used orally as a dietary supplement, it has the effects of promoting calcification of the bones preventing osteoporosis.

The Uses of Shark Cartilage

Shark cartilage is not only used in joint health. It is also used in the treatment of a variety of cancers (prostate, colon, breast and lungs), psoriasis, eye complications and wound healing. However, there is only limited scientific evidence that shark cartilage can produce these effects.

Those who have used products derived from shark cartilage on the other attest to the efficacy of these supplements especially in improving joint health. Bodybuilders and the elderly who usually suffer from a variety on deteriorating joints can benefit from shark cartilage.

References:

  1. //www.bodybuilding.com/store/shark.html
  2. //en.wikipedia.org/wiki/Shark_cartilage
  3. //www.webmd.com/vitamins-supplements/ingredientmono-909-SHARK%20CARTILAGE.aspx?activeIngredientId=909&activeIngredientName=SHARK%20CARTILAGE

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What Are The Health Benefits Of Quercetin?
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Date: April 18, 2013 07:37 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: What Are The Health Benefits Of Quercetin?

Quercetin is a bioflavonoid found in grains, leafy greens, vegetables and fruits, and has proven beneficial in the recent years. Plants often generate this flavonol to preserve vitamins and guard themselves against cell injury, bacteria and parasites. Onions, red wine, tea and apple skins are particularly rich in quercetin, which can render several health benefits. Most of these benefits can be attributed to the antioxidant properties of quercetin.

Here are the health benefits of quercetin.

Heart Disease: The antioxidant properties of quercetin can reduce the risks of plaque development in the arteries, which is also referred to as atherosclerosis. Moreover, its anti-inflammatory properties can also prevent damage associated with LDL cholesterol; one of the major causes of heart disease. Since this antioxidant is naturally found in fruits and vegetables, regular intake of quercetin will help in enhancing heart strength. Hypertension or blood pressure can also be controlled with adequate consumption of quercetin.

Protection against Allergies: The anti-inflammatory properties of quercetin have proven quite effective against many allergic reactions like allergic cough, hay fever, hives and asthma among others. It achieves this by inhibiting the production of histamine and other related inflammatory mediators. Therefore, it can reduce the risks of getting infected with various allergic conditions and help in speeding up recovery from these allergies.

Possible Cancer Protection: Just like most antioxidants, quercetin has cancer inhibiting properties. The antioxidant properties of quercetin shield the cells against free radicals by reducing their growth and neutralizing their negative effects in the body. Some in-vitro studies have proven that it can control cancer cells development and may reduce the chances of contracting prostate, colon, ovarian and breast cancer. It can also help people suffering from chronic interstitial and prostatitis cystitis because it acts as an effective mast cell inhibitor.

Cataracts: Quercetin can block the type of sugar which triggers the development of cataracts on your eye. Smokers or those who expose their eyes to excessive UV rays without wearing protective glasses may consider quercetin intake to reduce the risks of cataract formation. Improve Arthritis: Just like most anti-inflammatory drugs, quercetin can help people suffering from arthritis. It is believed that quercetin can reduce the pain and swelling that affects joints due to arthritis. According to some studies, change of diet from the normal western diet to a diet that focuses on vegetables and fruits with high quercetin can alleviate the symptoms of arthritis.

Athletic Ability: Some studies show that consumption of quercetin twice every day enhances oxygen capacity and endurance in active women and men. The athletic ability improvement is attributed to the positive effect of quercetin on the cell energy processors, mitoCHONDria. This effect coupled with the antioxidant properties of quercetin can boost the immune system and might lead to general health improvement.

Other Heath Benefits: Some studies show that quercetin acts as a neutrotoxin hence can help in getting rid of neurological diseases. Since quercetin can help in free radicals control, it can also offer skin care benefits. It can also boost your immune system.

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CoQ10: What You Ought to Know about This Substance?
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Date: March 26, 2013 12:27 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: CoQ10: What You Ought to Know about This Substance?

Coenzyme Q10 or simply CoQ10 is a substance naturally present not only in a human's body but as well as with the other mammals. It plays a vital role in the production of energy. Back in the year 1957, Dr. Frederick Crane successfully used the mitoCHONDria from the cells of a beef heart in order to locate Coenzyme Q10. But the truth of the matter is that, the substance is also present in human mitoCHONDria. Basically, this substance has antioxidant properties which are highly beneficial in protecting the body against the free radicals present in the environment. Below are some relevant details you ought to know about this substance.

Here they are:

CoQ10 in Kreb's Cycle

There are a number of chemicals that the body needs to induce metabolism and one of those chemicals is CoQ10. The Kerb's Cycle is the body's mechanism to convert certain enzymes into energy. In order to achieve that, the body needs CoQ10 to facilitate the conversion of the enzymes in energy production. CoQ10 is fundamental in the Kerb's Cycle as it supports the electron transport chain in which the oxidative phosphorylation of the ADP (adenosine diphosphate) into ATP (andenosine triphosphate) needs electrons that are exactly delivered where they must be. Without CoQ10, the entire Kerb's Cycle process would certainly fail. The mitoCHONDria of every power cells synthesize CoQ10 so the substance is present in almost all the body parts. However, the heart consumes the most CoQ10 for the reason that it has the most number of mitoCHONDria and it keeps on working even while the body is at rest.

CoQ10 Deficiency

If the Kerb's Cycle fails due to CoQ10 deficiency, the person will feel exhausted and weak. But aside from that, there are other conditions that are often associated with the deficiency such as cardiovascular related diseases, Parkinson's disease and gum disease. Conversely, it doesn't necessarily mean that those diseases are brought about by CoQ10 deficiency.

CoQ10 Dietary Sources

The main sources of CoQ10 include fish oil, whole grains and organ meats. With a balance diet, people can get sufficient amount of coenzyme Q10.

CoQ10 Supplements

Aging is an inevitable process and it can affect the synthesis of CoQ10. As humans grow older, the production of the coenzyme Q10 gradually decreases. It was mentioned earlier some of the foods that are incredibly beneficial in maintaining ample amount of CoQ10 in the body. But people who do not really include those foods in their diet should not worry for there are now food supplements that contain CoQ10.  Some medications like cholesterol meds can prevent the body from using CoQ10, this is when it is essential for one to take a supplement.

Fortunately, with the advent of medical researches and innovative technology in drug manufacturing, CoQ10 can now be ingested into one single tablet, soft gel capsule, hard shell capsule or an oral spray. CoQ10 is a fat-soluble substance so taking it along with foods is highly encouraged.

Who Takes CoQ10 Supplement?

Children under 18 years old are not allowed to take CoQ10 supplements unless prescribed by the doctor. For adults at the age of 19 or older, the recommended dosage in 30 - 600 mg daily. Higher dosage may be taken for special conditions.

Humans need energy in order to carry out all the tasks. Therefore, CoQ10 must be taken daily, whether from foods or supplements, so the body has the energy to move.

Have you had your CoQ10 Today?

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Can Resveratrol Help Fight DNA Damage?
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Date: January 21, 2013 01:32 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Can Resveratrol Help Fight DNA Damage?

How resveratrol helps in fighting DNA damage

Resveratrol is a naturally occurring antioxidant produced by plants to protect them against attacks by predators such insects, bacteria or fungi. This antioxidant which has been the subject of several scientific studies is usually found in large quantities in grape skin or red wine. Although the body can function without it which means that you can not be termed as deficient of this nutrient, the compound is known to have immense health benefits. Scientists claim that human beings have not yet fully discovered the real benefits that can be derived from this antioxidant.

Scientists have demonstrated that Resveratrol is quite effective in fighting DNA damage which is responsible for aging as well as disorders that are associated with aging including Parkinson's and Alzheimer's disease. Cell degeneration in vital organs is usually linked to certain factors. An important factor that causes cell loss is the presence of reactive oxygen species (ROS) by mitoCHONDria in the cell which is responsible for cell death and DNA damage. Preventing mitoCHONDria turnover and bio-genesis guards against oxidative mitoCHONDria thus promoting healthy aging.

Cell degeneration has been effectively controlled by using a diet that is low in calories so as to increase mitoCHONDria biogenesis. Adding resveratrol to your diet has the same effect since this antioxidant mimics dietary restriction thus delaying diseases related to aging.

The compound has been known to stall the aging process by acting as sirtuin activator. It is also responsible for various effects on fat cells which alter fat mass by acting on cell viability and adipogenesis in mature preadipocytes. Laboratory tests have demonstrated that this compound stimulates bio-genesis which helps in delivering immense health-related benefits in mice. The antioxidant fights off cancer which occurs when there is cell damage during cell division. The compound stops cell division in order to allow enzymes repair damaged genes .It also prevents carcinogenic metabolism, a common cause of DNA damage.

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Coq10 and its benefits
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Date: October 26, 2012 11:04 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Coq10 and its benefits

CoQ10

We insist that vitamins and essential nutrients should be an essential part of our daily diet. But are we aware that some vitamins and chemical nutrients are also created naturally in our bodies? One such essential compound is known as Coq10. Found in most living organisms, Coq10 also known, as ubiquinone is a chemical that boosts the levels of energy produced in the body. It monitors the functioning of the mitoCHONDria and cells that are useful for metabolizing the fat in the body. Without the presence of this essential compound, there could be some serious problems. Here are its respective virtues for people.

Heart And Muscle Repair

Scientific studies have proved that the enhanced production ofCoq10 has helped to solve some major health issues for people. The enhanced production of the compound was instrumental in strengthening the muscles and tissues of the heart. This meant that adequate levels of Coq10 help to reduce the congestion in the heart and veins. Also, the presence of this ubiquitous compound will also help in getting respite from muscular dystrophy. Also, those, who are vulnerable to breathing problems and arrhythmia, can also find a solution through such a compound in their bodies.

Immunity And Blood Pressure

Those, who have the problem of high blood pressure, would be advised to eat more of things like fish or meat as these contain Coq10 in good amounts. Adequate levels of this chemical will aid in reducing the levels of blood pressure and improving the circulation of blood in the body. Also, Coq10 is known for improving the person's immunity against the common degenerative diseases as well as cancers and malignant tumors and so on. Thus, it can be safely said that Coq10 is a powerhouse of nutrients that help to keep disastrous afflictions at bay. You should have more of it.

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GLUCOSAMINE: Origin and Action of Mechanism
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Date: February 06, 2012 01:08 PM
Author: Darrell Miller (support@vitanet.net)
Subject: GLUCOSAMINE: Origin and Action of Mechanism

Glucosamine is an amino sugar made from glucose and amino acid glutamine. It is a monosaccharide that is found naturally in healthy joints, cartilages, ligaments, muscles and tendons. It helps in the formation and repair of cartilage and other body tissues. Glucosamine is available in the form of dietary supplements, cosmetics and sports drinks. Let us find out about the history of glucosamine and its role in repair and treatment of joint disorders.

HISTORY of GLUCOSAMINE:

Glucosamine was first discovered in 1876 by Dr. Georg Ledderhose. It was prepared by hydrolysis of chitin with Hydrochloric acid. Later on it was developed in sulphate blend. Since then, it has been studied multiple times and in multiple ways to find out its potent health benefits. It has been used clinically in Europe since 1960s. In 1971, researcher K. Karzel glucosamine HCl stimulated the production of glycosaminoglycan layer, which helps in protecting cartilages, ligaments and tendons from normal wear and tear. It became popular in United States in the mid 1990s with the publication of popular bestsellers such as 'The Arthritis Cure' by Jason Theodosakis. Now it has become the most popular selling dietary supplement with sales of $200 million per year.

Glucosamine is naturally found in the body and can be synthetically made from the natural sources of chitin that is found in sea creatures such as shells of shell fish, bones and bone marrow.

How does Glucosamine Works in reducing Joint pain?

Our body's ability to produce glucosamine decreases as we age. Hence after any kind of injury cartilage, spinal discs and joints, the body may not be able to heal optimally. Aging and glucosamine depletion in the body leads to joint degradation. However, glucosamine supplementation can support cartilage and CT-integrity limiting degeneration.

Glucosamine supplements do not work like NSAIDS, which are known to have anti-inflammatory and analgesic effects on the body. The exact mechanism of significant analgesic effect of glucosamine supplements is unknown but according to various studies, glucosamine has no effect on cyclooxygenase system. Studies have shown that glucosamine stimulates synthesis of proteoglycan in a dose dependent manner. It helps in stimulating the production of cartilaginous matrix, hence counteracting the degrading loss of cartilage in case of arthritis or injury.

Several important studies demonstrate the role of glucosamine in stabilizing cell membranes, inhibit lysosomal enzymes and reduce the generation of oxygen free radicals by macrophages. It may inhibit interleukin 1 induced nitric oxide activity that leads to CHONDriotic cell death. Hence it increases aggrecanase activity that helps in preservation of proteoglycan.

Glucosamine along with CHONDroitin sulphate stimulates synthesis of cartilage precursors as well as synovial fluid. They also limit the degradation of existing cartilage in any loss of joint integrity.

This non rapid acting drug has many beneficial effects in reducing the symptoms of osteoarthritis. It is a powerful joint repairing supplement that rebuilds joint cartilage. Glucosamine supplements have been thoroughly evaluated to find out any potential side-effects. However, it has been proved that it does not have any of the side-effects of NSAIDS, surgery or opiods.

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Can Ginseng Boost Your Energy Safely?
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Date: October 05, 2011 04:27 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Can Ginseng Boost Your Energy Safely?

Ginseng is a slow - growing perennial plant in which its roots are fleshy which are commonly used as dietary supplement and beverage. This plant is a member of the genus known as Panax of the family of Araliaceae. It grows abundantly in the eastern part of Asia where the climate is cool specifically in Korea, northern China and east region of Siberia. There are many species of ginseng in which they are named according to where they are discovered. What is common among these ginseng species is its property as an adaptogen.

Ginseng is an herb which is considered as an adaptogen. This classification of chemicals improves the body’s resistance to physical exhaustion and external stress. In fact, for almost twenty centuries, Ginseng has been commonly used as a natural dietary supplement to boost vitality and endurance. The mechanism is that cellular energy is produced in the cell’s powerhouse called mitoCHONDria which turn nutrients into usable energy called Adenosine Triphosphate (ATP) and Creatine Phosphate (CP). However, when we are under stressful situations, the body produces hormones which can alter the ability of the mitoCHONDria to produce ATP and CP. Thus, energy levels are also reduced. Eventually, adaptogenic substances plays a critical role in improving the cell’s production of ATP and CP by allowing the body to deliver more oxygen to cells while greatly reducing oxidative damage affecting the mitoCHONDria of the cells.

Not to mention, ginseng also has ginsenosides which are considered to effectively control the release of stress hormones such us cortisol and noradrenalin, thus, preventing chronic stress which can greatly affect one’s energy level. Studies show that ginseng also relaxes the blood vessels thereby improving circulation and delivery of oxygen to the cells of the body. Clinical research reveals that ginseng has the high potential to improve performance of athletes. It can boost stamina.

Other benefits of Ginseng are that it can serve as a nourishing stimulant to improve depression and as adjunct treatment for Diabetes Mellitus Type II. It can also be employed as a support agent for the improvement of sexual dysfunction among men.

The fleshy root of Ginseng is available in the market in dried form which may be whole, sliced, minced or semi – granule form. These ginseng products are often found in many energy drinks, teas, health drinks, food additives and energy – boosting supplements. Other commercial products which contain ginseng are also common such as shampoos, conditioners, skin moisturizers, soaps and even cosmetic items. This is for the reason that ginseng can effectively delay the ageing process and improve the health of the cells and tissues. Ginseng also has the ability to enhance memory, reduce mental fatigue and improve the health of the immune system. To note, ginseng combined with Gingko biloba can considerably stimulate memory among middle – aged individuals.

Ginseng is generally safe to use for any ages. In fact, this herb is widely used as day – to – day beverage among many people in Asia especially in Korea. However, if you are planning to undergo supplementation, it would be best that you should seek medical advice first.

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How Does Coenzyme Q10 Improve Energy Levels and Our Health?
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Date: October 04, 2011 04:18 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: How Does Coenzyme Q10 Improve Energy Levels and Our Health?

One of the most amazing and essential chemical cofactors is coenzyme Q10. This specific cofactor plays a crucial role for the body because it is required by cells to produce enough energy to sustain life. Studies revealed that coenzyme Q10 can increase the level of energy of all the muscles in the body therefore, it is beneficial most especially for the cardiac muscles to achieve optimal rate.

Coenzyme Q10 also provides the immune system with enough power and energy so that the body will be protected from injurious pathogens. It can also help in releasing fat storage by enhancing oxygen utilization. Because of the fact that the production of coenzyme Q10 decreases as we age, there is a great need to take supplements so that we will not be depriving our body with the health benefits that it offers. Below is the array of health benefits that coenzyme Q10 is capable of offering:

Coenzyme Q10 toughens your protection against pathogens

It is an inevitable fact that our immune system requires enough energy to sustain it from performing its functions. Coenzyme Q10 has been proven essential in terms of strengthening the immune system especially in instances when an invader is detected. Coenzyme Q10 offers vital support to our natural killer cells (our first line of defense) in fighting bacterial and viral agents that could cause great harm to our body.

Another health benefit of coenzyme Q10 is its capability in lowering the concentration and regulating the production of chemicals such as NF-kappaB, which could weaken our immune system. Based on the studies that were conducted, it has been unleashed that increasing blood levels of coenzyme Q10 could enhance the antibody response to as much as 57% hence, it is highly essential in keeping our body well protected.

Coenzyme Q10 is good for you heart

We are aware that ATP is the primary unit of energy that is being utilized by the mitoCHONDria of our cells; to sustain the process, the body only recognizes coenzyme Q10 to act as chemical facilitator. A deficiency in the amount of coenzyme Q10 in the body would also equate to poor muscle functioning.

As a matter of fact there was this study that revealed that when coenzyme Q10 is combined with other forms of potent antioxidants like selenium, vitamin C and vitamin E, it can relevantly enhance the health of your heart and can lower down your risk of developing cardiovascular diseases.

Coenzyme Q10 can help you lose weight

This special coenzyme supplies your body with enough energy to ensure the efficacy of your exercise program by increasing fat metabolism and energy utilization. Because coenzyme Q10 can help the conversion of energy components into a more useful form, it can help stimulate your metabolic rate thus helping you achieve the body that you have always wanted. Experts suggest that you should combine coenzyme Q10 with regular aerobic exercise to make it more efficient for your body to get rid of fats.

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How Does Malic Acid Help With Fibromyalgia?
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Date: August 22, 2011 12:37 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: How Does Malic Acid Help With Fibromyalgia?

Solaray - Malic Acid with Magnesium 90ct 133mgFibromyalgia(FM) is a condition affecting primarily middle-aged women and is often misdiagnosed and misunderstood as an ailment which has a diverse set of symptoms, in which none are pleasant. It basically is a medical disorder defined by chronic and widespread pain, a heightened response to pressure and often time painful as well. No one really knows what the exact causes are. There are a number of studies taking place and done by reputable medical organisations (such as the Nation Institute of Arthritis and Musculoskeletal and Skin Diseases - NIAMS) which are geared towards the establishment, once and for all, of the route cause of Fibromyalgia. A part of the current scientific theories is the inherent genetic factor, but even in this it seems that geneticists are not clear as to which genes exactly may be the culprit. What has been concretely established and clarified though is that not just because your mom or dad has it you’ll have it. Stress in some studies has also been found as a contributor but may not be the main cause though.

Malic acid is an organic compound and also a carboxylic diacid and is an active ingredient in many sour or tart foods. It is mostly in unripe fruits and it has two stereoisomeric forms (L- and D-enantiomers), though only the L-isomer exists naturally. The salts and esters of this diacid are called malates. The malate anion is an intermediate in the citric acid cycle. However it was not until 1785 that Carl Wilhelm Scheele first isolated it from apple juice. It is formed in metabolic cycles within the cells of plants animals and humans. A somewhat large amount of Malic Acid is produced and broken down in the body each day. Malic acid also provides stamina and endurance within the muscle cells. It is particularly useful in the blocking of aluminum toxics, which has been found to possibly be one contributing factors to fibromyalgia.

Energy Production

Compelling evidence has surfaced that malic acid may plays a central role in energy production, especially during hypoxic conditions. In some experiments that have been done, the improvement that came about when malic acid was administered to the subject was gone after discontinuing for 48 hours. The theory behind this is in the relative association of hypoxia to FM, if it will improve hypoxic conditions then it will be beneficial for FM sufferers as well just as Chronic Fatigue Syndrome has also been associated with FM. Additionally, many hypoxia related conditions, like respiratory and circulatory insufficiency, are related to deficiency in energy production as well. Therefore, malic acid may be of benefit in these conditions.

The mitoCHONDria are the energy furnaces in cells which metabolize food for energy. Some findings suggest that this structure does not operate efficiently in those with FM. So, for the mitoCHONDria to produce ample amounts of ATP, several nutrients are essential and Malic Acid is one of them. Imbalances in the mitoCHONDria’s process can cause the body to switch from oxygen-based metabolism to the less efficient anaerobic metabolism and this would contribute to an abnormal buildup of lactic acid following even light exertion. This lactic acid buildup results in fatigue, weakness, pain and muscle spasms.

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What Makes a Good Joint Complex or Formula?
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Date: June 29, 2011 11:44 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: What Makes a Good Joint Complex or Formula?

Glucosamine/CHONDroitin/MSM

Joint pain is a common medical condition that afflicts billions of people worldwide. It is brought on by many different factors, though most of the cases have been tied to arthritis. The joints are especially susceptible to inflammation in old age partly due to the fact that cartilage health becomes impaired as we age. The good news is that certain organic compounds replenish the cartilage content of joints.

Medications and remedies formulated to alleviate joint pain have been extensively studied in the past few decades. Analgesics remain the mainstay of treatment for arthritis to this day, but alternative medicine has also made advances. Proponents of nutritional supplements believe that a good joint formula does not only provide relief from pain but also supplies the proteins necessary for joint health.

Glucosamine

Joint cartilage comprises a group of complex carbohydrates called polysaccharides or oligosaccharides that are attached to proteins. In a process called glycosylation, enzymes add long unbranched chains of carbohydrates to core proteins and form proteoglycans, which nourish the extracellular matrix found in cartilages. In the case of osteoarthritis, the proteoglycan content of joints dwindle with age.

Glucosamine is a precursor to polysaccharides and oligosaccharides. In particular, it is utilized by enzymes to form glycosaminoglycans, which are in turn added to proteoglycans. As a treatment for joint pain, it comes in the form of glucosamine sulfate and glucosamine hydrochloride. It is one of the most promising of all complementary therapies for arthritis as studies have reported positive results.

CHONDroitin

Therapeutic remedies that contain glucosamine often come with CHONDroitin. The sulfated form of CHONDroitin is a major constituent of proteoglycans, and as such it is generally found in large amounts in joint cartilage in humans. For decades, CHONDroitin has been used as a therapeutic remedy for arthritis in conjunction with glucosamine as they are believed to enhance the efficacy of each other.

Proponents believe that CHONDroitin and glucosamine supply the body with healthy quantities of glycosaminoglycans for use by enzymes in the synthesis of proteoglycans. There is consensus in the scientific community that its long term use for the sole purpose of treating osteoarthritis is safe. In addition, recent studies and clinical trials in the past few years have been very encouraging.

MSM

Methylsulfonylmethane, often abbreviated as MSM, is a compound listen as an ingredient in joint formulas. Nutraceutical experts believe that the best joint formula currently available contains all three: glucosamine, CHONDroitin, and methylsulfonylmethane. While glucosamine and CHONDroitin provides nutrition for cartilage tissue, MSM counteracts inflammatory mediators that cause joint pain.

Alternative remedies have been the subject of most studies on arthritis in recent years. While analgesics remain commonly used, dietary supplements are becoming increasingly popular among people suffering from joint pain. Glucosamine, CHONDroitin, and MSM are the most studied of all supplements formulated for joint pain, the reason why health care providers recommend them first.

Grab yourself a joint formula complex and feel the difference!

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How Does Taurine Help the Brain?
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Date: May 13, 2011 01:09 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: How Does Taurine Help the Brain?

Taurine is an amino acid often added to energy drinks. There have been several theories on how taurine affects brain chemicals and improve cognitive function. For many years, it has been compared to caffeine due to its effects on the human brain that appear to enhance mood. Its exact mechanisms of action remain a mystery to the scientific community, but recent studies are believed to be closing in.

It has long been known that taurine crosses the blood brain barrier, allowing it to exert some effects on several neurotransmitters found in the central nervous system. It has been tied to the alleviation of many mental illnesses, such as epilepsy, post traumatic stress disorder, clinical depression, bipolar disorder, and anxiety, making it the subject of a number of studies in the past few years.

Rebalances Brain Chemicals

It has been postulated that taurine influences the activities of neurotransmitters in the brain, but only recently has brain scientists been able to actually track its activities in the brain. A team of researchers at Cornell University managed to find a site for the neurological activity of taurine, with initial results pointing to its relationship with gamma the neurotransmitter aminobutyric acid, or GABA. The researchers do not discount the possibility that taurine may even have a receptor of its own.

Whether taurine interacts with brain chemicals is no longer debatable as it creates homeostasis in the central nervous system. It acts on receptors that the researchers discovered to be the same receptors present in GABAergic mechanisms. That being said, scientists remain inconclusive as to how its interaction with GABA receptors provides energy-boosting benefits as it is marketed in the food and drug industries.

Prevents Neuron Damage

The scientific community is convinced that taurine has neuroprotective properties. High levels of taurine in the brain have been observed to protect brain tissues from cerebral ischemia. Taurine has been linked to many metabolic pathways that are known to promote neurological health, such as the activation of glycine receptors and the regulation of enzymes called cysteine-dependent aspartate-directed proteases.

In addition, taurine serves as antioxidants that protect nerve cells from cellular damage brought on by oxidative stress. The presence of taurine within cells reduces damage from calcium excesses and increases mitoCHONDrial events. For decades, supplementation of taurine has benefited sufferers of brain ischemia, epileptic seizures, panic attacks, anxiety symptoms, and even alcohol withdrawal.

Enhances Cognitive Function

Taurine has already been associated with physiological functions the hypothalamus controls, such as sleep-wake cycle and responses to fatigue. In several laboratory studies, administrations of taurine by way of intraperitoneal injection have successfully induced social interaction in animal subjects. It is one of the amino acids that affect cognitive development, especially in children. While it is one of the most abundant amino acids in the brain, it is depleted as we age, making supplementation a good option.

Protect your brain with Taurine by taking it daily!

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How does Malic Acid help with Fibromyalgia?
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Date: February 09, 2011 01:18 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: How does Malic Acid help with Fibromyalgia?

Malic Acid And Fibromyalgia

If you feel sensitized to pain by otherwise harmless stimuli, then you may be experiencing symptoms of fibromyalgia, which has been recorded to affect up to 4 per cent of the population worldwide. It is characterized by a feeling of weakness in the muscles of the limbs, conscious awareness of abnormal heartbeat, problems concerning bowel movement, and disturbances to sleep patterns. All of these are complaints reported to have been addressed by supplementation of malic acid. fibromyalgia malic acid link

The medical community remains inconclusive as to what causes fibromyalgia, some claiming it’s not a disease at all. While symptoms may not be necessarily medical signs, there are innumerable cases that describe complaints we collectively refer to as fibromyalgia. Throughout the past few decades, medical professionals around the world have considered these symptoms as one musculoskeletal disease whereas most neurologists have contended that fibromyalgia is attributable to the abnormalities within the nervous system. Today the American College of Rheumatology has charted nine paired tender points in an effort to describe the symptoms for this condition better.

Known Causes in Scrutiny

The most common symptoms of fibromyalgia more often than not appear simultaneously with stress-induced medical conditions such as chronic fatigue, anxiety disorders, and depression, but they are known to develop independently. A tissue in the brain responsible for long-term memory and spatial navigation called hippocampus have shown abnormalities among patients of fibromyalgia, thereby affecting sleep patterns, perception of pain, and related cognitive functions.

In the latter half of the 20th century it is postulated that serotonin leads to fibromyalgia. Serotonin being a neurotransmitter that governs mood, attention, and pain were found to be significantly decreased in the blood plasma and cerebrospinal fluid among patients who reported to experience this condition. That being said, the introduction of serotonin inhibitors used in treatment of depression has also shown alleviations of pain-related symptoms across the tender point index.

Malic Acid and Prognosis

Malic acid was discovered as a constituent of apple juice as early as the 18th century. Reduced levels of malic acid contribute to the maturity of fruits. In human beings it plays a fundamental role as an intermediate in a metabolic pathway that influences the chemical conversion of bioactive compounds like carbohydrates, fats, and proteins into carbon dioxide and water, which in turn convert the molecules contained in the cytoplasmic fluid of cells into energy generated in the mitoCHONDria.

The availability of malic acid inside the human body modulates functional activities at the cellular level by speeding up the metabolism of bioactive compounds and consequently the production of energy in use by the cells. That being said, malic acid provides vitality to muscle cells, raising their endurance against stress. In addition, there have been reports that intake of malic acid help elevate levels of serotonin, leading to improved response to pain and better management of fibromyalgia.

For now, the tender point index is the primary diagnostic tool for evaluating fibromyalgia, and the use of malic acid has been recorded to reduce pain in these points.

Have you had your Malic Acid today?

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The Krebs Cycle - Our Lifes Blood!
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Date: January 13, 2011 05:00 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: The Krebs Cycle - Our Lifes Blood!

The Krebs Cycle, also known as the Citric Acid Cycle, is an important series of biochemical reactions that are intrinsic to cellular respiration and the generation of energy from oxygen and glucose in aerobic organisms. Although humans can generate energy anaerobically, they cannot do so for long periods and oxygen is essential for life because it fuels the Krebs Cycle. Without this cycle, there would be no available energy to maintain our vital processes.

What is The Krebs Cycle

We shall first discuss exactly what the Krebs Cycle is and then its importance in the body. The process takes place within the mitoCHONDria of the body cells.

A. The cycle begins with the ten-step pathway of glycolysis, during which glucose is converted to two molecules of pyruvate: no oxygen is required for this step. Basically:

Glucose + 2NAD+ + 2P + 2ADP = 2Pyruvate + 2NADH + 2H+ + 2ATP

The pyruvate can then undergo aerobic or anaerobic respiration to generate energy. The Krebs Cycle is the aerobic route, and significantly more efficient that the alternative fermentation.

B. The two pyruvate molecules are then oxidized to two of Acetyl CoA with the release of carbon dioxide. The two acetyl groups of the Acetyl CoA are donated to Oxaloacetate in the presence of water to form Citrate.

C. Citrate then undergoes a number of chemical reactions to arrive back at Oxaloacetate again and the cycle starts all over again by reacting with more Acetyl CoA from Pyruvate and oxygen to form Citrate again. During the cycle more ATP is produced and electrons and other species are sent into the Electron Transfer Chain where most energy is generated.

During this cycle three major events occur:

1. During the various transformations of Citrate, specifically when Succinyl-CoA is converted to Succinate, one Guanosine Triphosphate group (GTP) is generated, which then donates a phosphate to Adenosine Diphosphate (ADP) to create the energy molecule Adenosine Triphosphate (ATP).

2. Over the whole cycle, three molecules of Nicotinamide Adenine Dinucleotide (NAD) are reduced to NADH that donates its electrons to the electron transport chain that is responsible for the generation of large quantities of ATP.

3. A molecule of Flavine Adenosine Dinucleotide (FAD) is reduced to FADH2, again donating its electrons to the electron transport system and the generation of energy.

Factor 2 and 3 are of more significance to energy generation than factor 1, and are the major means by which the Krebs Cycle generates energy.

Electron Transport Chain

The Krebs Cycle takes place within the mitoCHONDria, structures that are contained in each of your body cells. Also within these mitoCHONDria are a series of membranes that are very important in the generation of energy.

The major energy produced in your body cells comes from the Electron Transport Chain, a series of chemical reactions between an electron donor and an electron acceptor. Such reactions drive the transport of hydrogen ions (H+) across the membranes in the mitoCHONDria.

The electron donors are species such as NADH, FADH2 and succinate and the electron acceptors are oxygen molecules. Hence the importance of oxygen in the process of aerobic respiration. The H+ ions are driven across the membranes and result in the conversion of ADP to ATP energy. In essence, the hydrogen atoms and electrons take part in a progressive chain of redox reactions, and at the end react with oxygen molecules and change it to water.

The Ultimate Products

Ultimately, through the whole chain and cycles of:

Glucose to pyruvate (glycolysis) Pyruvate to Acetyl CoA + CO2 (oxidation) Acetyl CoA to Citrate and the entire Krebs Cycle (reduction and oxidation) Krebs Cycle products to the Electron Transfer Chain Electron Transfer Chain to Water and ATP (redox) Final oxidation of hydrogen atoms to water

Basically: Glucose + Oxygen + 30ADP = Carbon Dioxide + Water + 30ATP

This is not balanced of course, and the ATP could be anything from 29 to 38, though 29.85 is the most accurate calculation to date. The entire process of glycolysis, oxidation, Krebs Cycle and Electron Transport Chain is powered by a series of enzymes and a small amount of ATP energy.

Glucose and oxygen are used up as the raw materials and ATP energy molecules are the product. It has been calculated that the total ATP yield obtained from one molecule of glucose lies between 29.5 and 30 molecules of ATP.

The Importance of the Krebs Cycle to Your Body

Were it not for the Krebs Cycle you would not be able to generate energy efficiently from your food. In particular, the carbohydrate content of your food. Carbohydrates are available in your diet from two sources: simple and complex carbohydrate foodstuffs such as cereals and grains, and fats and oils from animal and vegetable sources. They are also available from proteins, which are composed of amino acids at the head of the molecule with a carbohydrate tail.

Carbohydrates by definition contain only carbon, hydrogen and oxygen molecules, and can be converted to glucose within your body. Proteins can be deaminated and then the carbohydrate portion again converted to glucose. In fact, your body will initially use the carbohydrates in your diet as a source of glucose for its glycolysis to pyruvate, then the fatty tissue in your body, then the proteins will be deaminated so your body can get to the carbohydrate they contain.

Were it not for the Krebs Cycle, your body could not use the glucose as described above to generate energy. The only option open to it would be anaerobic respiration, or energy production in the absence of oxygen. ATP is still generated, but much less efficiently.

Anaerobic Respiration

Anaerobic respiration is basically respiration without oxygen. If there was no Krebs Cycle, then this is the only way your body would have to create energy.

Because no oxygen is actually needed for glycolysis or the Krebs Cycle, anaerobic respiration can proceed right to the end of the Electron Transport Chain. Then instead of oxygen being used as the terminal electron donor, it has to be another species such as nitrate or sulfate. Because the Reduction Potential of these species is much lower than that of oxygen, the amount of ATP energy produced is also much lower.

Your body tries to compensate by producing even more pyruvate and the excess is removed through lactic acid fermentation. Although this also generates ATP energy enough for short-term use, it leads ultimately to lactic acidosis and a reduction in pH, causing pain and vomiting.

Ultimately, if oxygen is not forthcoming, the brain runs short of the energy needed for it to work and you die. There is insufficient ATP generated from anaerobic respiration to maintain human life.

Conclusion

The Krebs Cycle is of critical importance for the production of energy: not just the energy to enable you to run fast, but to enable your metabolic processes to continue. It is needed for both aerobic and anaerobic respiration, and while lactic acid fermentation can be used by your muscle cells as a brief but effective means of generating short-term energy, it is insufficient to maintain the needs of your metabolism.

Without the Krebs Cycle, mammalian and most other animal life would not be viable and the world would be populated by anaerobic bacteria.

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Hyaluronic acid and your cells, eyes, and skin
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Date: December 17, 2010 10:48 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Hyaluronic acid and your cells, eyes, and skin

Hyaluronic Acid

Discovered in 1934, hyaluronic acid can be found anywhere there is the need for connective tissue in your body. Your joints, your eyes and your heart all contain hyaluronic acid, and a shortage can lead to a wide range of bodily defects, including the appearance of accelerated aging. It is a glycosaminoglycan, a form of polysaccharide that is not only found in connective tissue and epithelial and neural cells, but is also important in the growth and renewal of body cells.

baxylWe shall discuss here how hyaluronic acid affects specific areas of your body, and what the effect of a deficiency would mean, but also keeping in mind that an excess of this polysaccharide can also have a serious impact on your health although it offers few side effects worth noting.

Hyaluronic Acid and Your Joints

The highest concentrations of hyaluronic acid (HA) in your body is found in the synovial fluid, the fluid lubricating contained in your joints, and it is also plays an important role in maintaining the function of cartilage in keeping your joints flexible and well cushioned. It is chemically a glycosaminoglycan that is formed from glucosamine and glucuronic acid. Its production is boosted by CHONDroitin, which is why glucosamine and CHONDroitin are commonly used supplements for the treatment of arthritis.

Specifically, HA joins with collagen and elastin to produce cartilage, and also increases the supply of synovial fluid that maintains lubricity within the joints. Without the synovial fluid your cartilage would soon become worn away and your bones would grind together, eventually seizing up. By taking hyaluronic acid orally as a supplement, you can help to maintain healthy joints by maintaining the integrity of the cartilage and the quality of the synovial fluid.

Because the cartilage contains no blood vessels, it is reliant on the synovial fluid to keep it supplied with nutrients, and specifically with HA which is a large part of its structure. Without this important polysaccharide your body would not be able to function: no mobility, dry flaky skin and poor or no eyesight.

Hyaluronic Acid and Your Skin

Hyaluronic acid occurs in the lower layers of your skin where it helps to maintain a smooth and full appearance to your skin due to its hygroscopic nature in absorbing up to a thousand times its weight of water. For this reason HA is frequently used in skin moisturizing treatments and lotions.

HA is not found inside body cells, but appears to be restricted to the extracellular regions between cells where its moisturizing properties are critical in maintaining suppleness. Elastin requires copious quantities of water to remain elastic or it would otherwise become brittle: that is why our skin looks dry and wrinkled when we age. It is due to a lack of moisture: the moisture that hyaluronic acid can bring to the table. The problem is that HA reduces with age and in order to maintain our youthful looks we have to take a supplement.

Hyaluronic acid doesn't last long in your skin: it has to be renewed constantly and each day about 50% of the HA content of your skin is lost. It takes about two weeks for the same degree of loss to occur in the synovial fluid of your joints. The look of your skin depends to a very large extent on the extracellular matrix, or what is contained between your skin cells. The more moisture there then the smoother and plumper your skin will appear.

As you age, your hyaluronic acid production drops and so your skin becomes increasingly more depleted of moisture. This causes it to dry up and wrinkle. Were there one substance that I would choose as the elixir of life it would be HA, because by taking a regular supplement your natural daily loss is replenished and your skin is given a hand to maintain its soft, moist plumpish look that helps you to keep you looking young.

Hyaluronic Acid and Your Eyes

The vitreous humor is the liquid inside your eyeball, and it contains a large amount of hyaluronic acid. It helps absorb shock and to maintain the shape of the eyeball. The HA is so important that your body has developed a special set of cells known as the hyalocytes of Balazs that are believed to promote the renewal of hyaluronic acid, and also possibly its breakdown.

There is still a lot of research going on into this but the importance of HA in the vitreous humor and other aqueous area of your body is not in question. It helps to retain water and give structure to the liquid media within your body, whether that is between the bones of your joints, in the dermal and epidermal regions of your skin to keep it supple, or in your eyeball. In fact, it is believed to take up 70% - 80% of your eye, and helps to keep the retina in place exactly where it has to be for your eyesight to work.

Cogent Solutions Group LLC - Baxyl 6 fl oz Syrup Because Hyaluronic acid is:

a) present between the cells in every tissues in your body, and

b) a consumable, in that it gets used up rapidly, and

c) your biochemistry's ability to regenerate it reduces with age,

a supplement is the ideal way in which to maintain its levels in your extracellular system. In some instances injections are given, particularly in expensive anti-wrinkling treatment, but studies have shown that hyaluronic acid baxyl taken as an oral supplement shows an improvement after an average of 3 months treatment.

It should be understood that the average person has around 15 grams hyaluronic acid in their body, of which 5 grams is continually degraded and synthesized daily. When you reach an age that your ability to generate HA is impaired, then an oral supplement will be less expensive than injections, the hyaluronic acid of which will also be degraded with time. It won't be long before you need more treatment, and oral supplements are less expensive than private hypodermic injections.

A Hyaluronic acid supplement baxyl can be taken to improve the suppleness and appearance of youthful skin, help maintain the integrity of your eyesight and help to reduce the symptoms of arthritis and many other conditions brought on by a reduction in the synovial fluid and hydration of the skeletal and connective tissues of your body. In other words, it helps to keep you looking younger for longer and to keep your joints and your eyesight in good health.

Have you had your daily dose of hyaluronic acid today?

Baxyl is a liquid form of hyaluronic acid that is easy to take and easily assimilated into the body because its a liquid.

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Glutathion, Antioxidants, And The Body
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Date: July 14, 2010 02:41 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Glutathion, Antioxidants, And The Body

Glutathione is a simple protein that consists of three amino acids. These amino acids include glutamic acid, cysteine, and glycine. Due to the chemical nature of sulphur-containing cysteine, glutathione is able to effortlessly donate electrons. This ability is the reason why it has powerful antioxidant properties. Intracellular glutathione status is a sensitive indicator of cellular health and of the cell’s ability to resist toxic challenges.

Glutathione is an important water-phase antioxidant that is an essential component in the glutathione peroxidase system. Glutathione peroxidase enzymes are crucial for detoxifying peroxides including hydrogen peroxide, which is generated within cellular membranes and lipid-dense areas of the cell, especially the mitoCHONDrial membrane. Severe glutathione depletion often leads to cell death, while experimental glutathione depletion has been found to induce cellular apoptosis.

A cellular level of glutathione depletion seems to cause extensive damage to the mitoCHONDria. Depletion of mitoCHONDrial glutathione may, in fact, be the ultimate factor that determines a cell’s vulnerability to oxidative(free radical) attack. The mitoCHONDria is the most crucial place for glutathione presence, as the cascade of oxidation-reduction reactions complete the final steps in respiration take place here. Throughout this process, which is called oxidative phophorylation, electrons invariably escape and react with the ambient oxygen in order to generate toxic free radicals. It has been estimated that 2% to 5% of the electrons that enter the mitoCHONDria are converted into reactive oxygen species that generate considerable oxidative stress for the cell. These free radicals cause an immediate threat to other cellular components, such as the DNA, enzymes, structural proteins, and lipids.

The cumulative damage that is caused by oxygen and other free radical species is now determined to be the principal contributor to the degenerative disease process and the progressive loss of organ function that is commonly recognized as aging. Because of this, the cell is constantly challenged to destroy these free radicals before they can inflict any lasting damage. Minimizing oxidative attacks may actually be the ultimate challenge of being alive. Because of this, the reducing power of glutathione is of huge important to the cell.

Glutathione is important for helping to regenerate other antioxidants that are depleted from their constant work to fight off free radical challenges. Regeneration that is glutathione-induced may be the mechanism that is actually used by the cell in order to conserve lipid-phase antioxidants, vitamin A, vitamin E, and the carotenoids. It has been confirmed by recent investigations that dietary vitamin C can actually protect us against tissue damage that results from glutathione depletion.

Additionally, supplementation with glutathione or its precursors can also quickly replenish any vitamin C deficiencies. Because of this, glutathione and ascorbic acid, both of which are pre-eminent cellular antioxidants, are tightly linked, as glutathione can conserve vitamin C and vitamin C can conserve glutathione. When they are both present, these two antioxidants protect the entire spectrum of biomolecules that are found within the cell, as well as facilitate the cell’s best performance. It has been said that the glutathione status of a cell may be the most accurate single indicator of the health of the cell. This means that as glutathione levels go, the health of the cell will go as well.

Glutathione is available in capsule or tablet form at your local or internet health food store. Always choose name brands to ensure quality and purity of the glutathione supplement you choose to purchase for consumption.

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Take Control Of your Inflammation With Supplements
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Date: May 27, 2010 12:40 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Take Control Of your Inflammation With Supplements

Chronic inflammation is often induced by uncontrolled oxidative stress (free radical damage). It is the principle mechanism by which degenerative disease takes hold. By reducing oxidative stress and changing the balance within the body to favor the production of anti-inflammatory chemical messengers, one can lower their levels of inflammation. This can be achieved through conscious changes to diet and lifestyle, which includes appropriate supplementation.

By consuming foods that are rich in omega-3 essential fatty acids, EPA, and DHA, derived from fish oil or flax seeds, one can greatly influence and reduce inflammation. When the body has appropriate balances of omega-3 and omega-6 essential fats, the production of anti-inflammatory prostaglandins is favored and inflammation is kept in check. Increasing the consumption of foods that are rich in omega-3s or supplementing with a high quality fish oil suppresses the formation of harmful prostaglandins and also promotes the synthesis of beneficial prostaglandins. Since the average North American diet contains 10 to 20 times the amount of omega-6 oils that we need, the most sensibly dietary approach is to reduce sources of omega-6 oils and supplement with a high dose of omega-3 oils in order to achieve the optimal 4:1 ratio of omega-6 to omega-3.

Supplementing with flaxseed oil is another effective way to optimize your omega-6 to omega-3 ratio. Anti-inflammatory EPA can be manufactured in the body by converting the alpha-linolenic acid that is often found in flaxseed oil. Supplementing with this oil, along with restricting omega-6 fatty acid intake, raises tissue EPA levels to those comparable to fish oil supplementation. It should even be noted that flaxseed oil contains more than twice the omega-3 fats as fish oil. Additionally, alpha-linolenic acid can be found in a variety of other plant source including pumpkin seeds, walnuts, and other nuts. However, flaxseed is by far the richest source of omega-3 oil, carrying 58% by weight.

Another nutrient that plays a crucial role in inflammation is gamma tocopherol. This nutrient acts through a mechanism that is unavailable to alpha tocopherol by reacting with RNO radicals to subdue inflammation. Gamma tocopherol also has the ability to reduce inflammation by inhibiting COX-2 , which is an enzyme that has a central role in the inflammatory process as it controls the synthesis of the inflammatory prostaglandin. The consuption of gamma tocopherol has been found to reduce several other inflammatory protagonists at the site of inflammation. Strong evidence has found that this form of vitamin E exhibits potent anti-inflammatory properties that are extremely important for human disease prevention and therapy.

Similar to essential fatty acids is resveratrol and green tea polyphenols each of which have the ability to inhibit the activation of NFkB and control a wide variety of inflammatory pathways. Green tea polyphenols are also believed to be neuroprotective, as they invoke a spectrum of cellular mechanisms such as the chelation of metals, scavenging of free radicals, and modulation of mitoCHONDrial function in nerve tissues. Green tea polyphenols are now considered to be therapeutic agents that can alter brain processes and serve as neuroprotective agents in the progression of neurodegenerative disorders like Alzheimer’s and Parkinson’s disease.

There are a wide variety of nutrients that are involved in fighting systemic inflammation. These nutrients and nutrient categories include EPA and DHA, linolenic acid, gamma tocopherol, alpha-lipoic acid, vitamin C, flavonoids, procyanidolic oligomers, and the phenolic compounds found in green tea, turmeric, and olive extracts. When changing your diet from saturated fats to unsaturated fats and adds more fruits and vegetables to their diet along with antioxidant vitamin supplements, one can successfully reduce inflammation naturally and live a healthier happier life.

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Antioxidants and your health
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Date: May 17, 2010 10:44 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Antioxidants and your health

There is an impressive amount of scientific evidence supporting the health benefits of supplementing with a wide variety of antioxidants. Consequently, there are many health practitioners who have begun to recommend high dietary intakes of these crucial nutrients in order to prevent against oxidative stress. It was anticipated over two decades ago by leading researchers that high-dose supplementation with antioxidants is developing a significant role in the prevention and treatment of a lot of today’s common illnesses. It should be noted that antioxidants do not work in isolation. When an antioxidant neutralizes a free radical, it, itself, is oxidized and must be regenerated by another antioxidant before it can be used again. Because of this, it is crucial to supplement with a wide variety of antioxidants, in order to reflect what actually occurs in nature.

Vitamin C, an aqueous-phase antioxidant, is the main guard against oxidative attack in the extra-cellular matrix, as well as within the cytoplasm of the cell. Vitamin C happens to be a substrate for eight different enzyme systems that are involved in various cellular functions. Among these functions are collagen synthesis, ATP synthesis in the mitoCHONDria, and hormone biosynthesis. Its main antioxidant partners are vitamin E and beta carotene, both of which help to regenerate vitamin C.

Of all the antioxidants, it seems as if vitamin E offers the greatest protection against heart disease because of its ability to protect the cardiovascular system from oxidative damage. It is lipid-soluble, making it an important component of the cell membrane, where it works to protect the cell against lipid peroxidation and control oxidation-induced inflammatory events. Recently, the gamma tocopherol form of vitamin E has shown a great deal of promise in its ability to reduce the risk of several oxidative stress related disease.

Beta-carotene is a member of a diverse group of photosynthetic pigments. It plays a huge role in human nutrition. As an antioxidant, it possesses a double-bond structure that allows it to react effectively with single oxygen radicals, absorbing and diffusing their energy. Beta-carotene also acts as a precursor for vitamin A by supplying a portion of the body’s requirement for the vitamin. This act alone plays a central role in the chemistry of vision. Beta-carotene and vitamin A both prevent the oxidation of cholesterol, reduce oxidative damage to DNA, and disable oxygen free radicals that are produced by exposure to sunlight and air pollution. These antioxidants are also involved in the activation of gene expression and the control of cell differentiation.

When combined together, vitamin C, vitamin E, and beta-carotene produce and important antioxidant trio that plays a huge role in fighting oxidative and inflammatory events. There are several other antioxidants that should be noted due to their ability to work synergistically with the vitamin C, vitamin E, and beta-carotene trio. These include vitamin A, alpha-lipoic acid, lycopene, coenzyme Q10, and the antioxidant mineral, selenium. In order to determine whether a nutrient provides antioxidant support, scientists question whether the product contains vitamin C, vitamin E, vitamin A, beta-carotene, alpha-lipoic acid, lycopene, coenzyme Q10, and selenium and to what strength these vitamins and minerals are per serving.

Solaray - Ultimate Nutrition - Actipet Pet supplements - Action Labs - Sunny Greens - Thompson nutritional - Natural Sport - Veg Life Vegan Line - Premier One - NaturalMax - Kal

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Mugwort
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Date: August 13, 2009 12:09 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Mugwort

The mugwort plant is one of several species in the genus Artemisia. In Northern America, this plant is considered to be an invasive weed. The plant is very common and can be found growing on nitrogenous soils, like weedy uncultivated areas such as waste places and roadsides. The mugwort plant is a tall herbaceous perennial plant that grows from one to two meters tall and has a woody root. The leaves, which are between five to twenty centimeters in length, are dark green, pinnate, with dense hairs on the underside. The stem has a red-purplish tinge. The flowers are rather small with many yellow or dark red petals. This plant can be found flowering from July to September.

The mugwort plant is native to Europe, Asia, and northern Africa. Sometimes, it is referred to as the felon herb, St John’s plant, chrysanthemum weed, and wild wormwood. The plant’s root has a history of medicinal use. Mugwort was used in the ancient world as a treatment for fatigue and to guard travelers from evil sprits and wild animals. Roman soldiers are said to have placed mugwort in their sandals to keep their feet energized. One could curb fatigue by chewing mugwort leaves. Sometimes, mugwort is confused with wormwood.

Mugwort is popular in witchcraft. It is said to promote lucid dreaming and astral travel. Smoking or eating mugwort before going to sleep is supposed to make dreams much more intense. It also helps the dreamer to remember them upon waking. This herb contains wormwood oil, thujone, flavonoids, triterpenes, and coumarin derivatives. Thujone is toxic. For this reasons, expectant mothers should avoid consuming large amounts of mugwort. Due to toxicity concerns, the plant is recommended less often now.

In traditional Chinese medicine, mugwort still has a role in an aged, pulverized, and recompounded form. In this form, it is used to correct breech birth presentation. Additionally, mugwort can cause uterine contractions, so it has been used to induce abortion.

The leaves of the mugwort plant have been recommended for colic, diarrhea, constipation, stomach cramps, weak digestion, worm infestation, and persistent vomiting. This herb has also been used to stimulate the secretion of bile and gastric juices. It has also been used as a laxative, liver tonic, and sedative. Mugwort promotes circulation. Additionally, it helps with hysteria, epilepsy, convulsions in children, and menstrual problems. This herb has been used as a tonic to boost energy and strength. It has been used, combined with other ingredients, for neuroses, neurasthenia, depression, hypoCHONDria, irritability, restlessness, insomnia, and anxiety.

In summary, the root and leaves of the mugwort plant are used to provide abortifacient and anthelminthic properties. The primary nutrients found in this herb are lipophilic flavonoids and sesquiterpene lactones. Primarily, mugwort is extremely beneficial in treating anxiety, colic, constipation, depression, diarrhea, digestion, epilepsy, hysteria, insomnia, menstrual problems, vomiting, and worms. In order to obtain the best results when supplementing with this, or any herb, it is important to consult your health care provider before beginning any regimen. For more information on the many beneficial effects provided by mugwort, please feel free to consult a representative from your local health food store with questions.

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L-Carnitine
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Date: May 07, 2009 05:45 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: L-Carnitine

L-carnitine is amino acid essential for the metabolism of fats into a form of energy necessary for extended aerobic activity. Originally discovered in Russia, and Germany a year later, the structural formulation of carnitine, as it is correctly known, was determined in 1927, although it is physiological and biochemical activity was not understood until the 1960s.

The amino acid is biosynthesized in the liver and kidneys from lysine and methionine. The vitamins niacin, B6, C and iron are essential for this reaction to take place. However, the supply of L-carnitine has to be supplemented by the diet, good sources being dairy products, red meat, nuts and seeds, pulses and fruits such as apricots, bananas and avocado. Most of the L-carnitine supply of the body is stored within the muscle tissue. However, it is not unusual for conditions to arise making it difficult for the body to obtain all the carnitine required.

L-carnitine enables fatty acids to be transported into the mitoCHONDria, where cell metabolism occurs. The biochemistry is discussed below, although in simple terms the amino acid allows body fats, in the form of triglycerides, to be made more readily available for the generation of energy required for extended exertion. In this way, body fats can be used for energy and the supplies of glycogen stored by the liver can be retained for emergency use.

By providing the energy for endurance and stamina in this way, carnitine makes use of an otherwise unavailable energy source, and has the added benefit of reducing body fat stores and reducing strain on the heart.

Although there is generally a plentiful supply of L-carnitine available in a healthy diet, supplementation can ensure that a deficiency does not occur. Supplements are available in the form of L-carnitine or its acetylated derivative, acetyl L-carnitine.

In order for fatty acids to be used in the production of energy, their long-chain acetyl groups have to get inside the mitoCHONDria where they are oxidized to the acetate to be used for the production of energy via the Citric Acid or Krebs cycle.

In order for the biochemistry to take place, fatty acids must be rendered suitable for binding to the carnitine molecule. The chemical grouping with a good affinity for L-carnitine is the acetyl or acetyl group, available in the molecule acetyl coenzyme A (CoA). The free fatty acid, therefore, is attached to coenzyme-A by means of a thioester bond, catalyzed by means of the enzyme fatty acetyl-CoA synthetase. The reaction is then completed by means of in organic pyrophosphatase.

In this way, the fatty acid in the form of an acetyL-carnitine derivative can be transported through the mitoCHONDrial wall. This transportation takes place by means of several steps. These are:

1. As explained, the acetyl-CoA is attached to L-carnitine by means of the enzyme carnitine acetyltransferase I. This enzyme is conveniently located on the outer mitoCHONDrial membrane.

2. The enzyme carnitine-acetylcarnitine translocase helps the acetyL-carnitine through the membrane.

3. Another enzyme, carnitine acetyltransferase II, located on the inner mitoCHONDrial membrane, converts the acetyL-carnitine to acetyl-CoA, liberating the carnitine which returns to the muscle mass.

L-carnitine is the only known substance that allows fatty acids to cross the mitoCHONDrial membrane, and therefore deficiencies must be avoided.

Another way in which carnitine is used in energy production is in the Krebs cycle itself. Part of this cycle involves the conversion of guanine diphosphate to the higher energy form guanine triphosphate. In this way energy can be stored in much the same way as it is in the conversion of ADP to ATP. Succinyl CoA is involved in this conversion, and one of the by-products of it is a corresponding succinate, that is then converted to a fumarate by the action of L-carnitine fumarate. Carnitine, therefore, has two parts to play in the production of long-term energy from the fatty acids contained in body fats.

Since the fatty acid triglycerides contained in body fats are a major source of energy in the heart and skeletal muscles, it is easy to understand how L-carnitine is believed to lead to the increased energy levels required for stamina and staying power. A major reason for its effect on longer-term or extended energy requirements is that in enabling stored body fats to be used for immediate and longer-term energy requirements, L-carnitine allows emergency glycogen stores to be retained for use once immediate fatty acid supplies or those of carnitine have been depleted, and so allows the energy supply to be extended even farther. Research has also suggested that the amino acid can possibly be used to treat liver and kidney disease, diabetes and chronic fatigue syndrome.

As with many supplements, the question is often asked how does L-carnitine work in practice as opposed to the claims made for it by the supplement providers? Recent research indicates mixed results, but sufficient to justify its use. It is generally accepted that a supplement is necessary when there is a deficiency, but once that deficiency has been corrected further intake is unnecessary. However, it is also believed that during long and extended periods of exercise a carnitine deficiency does occur as L-carnitine is used up, and the supplement is necessary to ensure sufficient energy supply throughout the period of exercise.

There has also been a case reported in the Journal of Clinical Neurology (Negoro, Tsuda, Kato & Morimatsu, 1995) where a deficiency, caused by anorexia nervosa damaging the liver to the extent that it was unable to synthesize L-carnitine, was remedied by means of an oral supplement. Studies on endurance athletes have been mixed, ranging from no effect to L-carnitine being found to promote weight loss.

Carnitine has no unknown harmful side effects, and has been studied for medical applications other than as an energy supplement. For example it possesses extensive antioxidant properties, and can be used as a supplement against oxidative stress and the prevention of the lipid peroxidation that is a precursor to atherosclerosis.

Its use in osteoporosis and reducing bone mass is also being studied. The concentration of L-carnitine diminishes with age, and affects fatty acid metabolism in a number of tissues. Bones are particularly affected since they require continuous reconstruction. Without detailing the biochemistry involved in this, administration of carnitine helps to reduce the speed by which this occurs. Trials are so far been carried out only on animals.

In studies on both healthy volunteers and patients with type II diabetes, L-carnitine was found to improve storage of glucose in both groups, although its oxidation increased only in the group with diabetes. Other studies carried out include improving the function of neurotransmitters in the brains of elderly patients and in the treatment of Alzheimer's and Parkinson's disease, and other neurological disorders.

In conclusion then, although the jury is out on the use of L-carnitine is an energy-giving or weight-loss supplement, it appears to be effective where the body's stores of carnitine could be depleted such as with long-term exercise, natural deficiencies or deficiencies caused through age. It is also under study in the treatment of various medical conditions. On balance, it would appear that the prospective benefits of L-carnitine render it worthy of use.

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Detoxify With L-Citrulline
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Date: April 13, 2009 03:51 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Detoxify With L-Citrulline

L-citrulline is an alpha-amino acid, first isolated from the watermelon in 1930: hence the name, citrullis being Latin for that fruit, the skin of which is rich in the substance. It is used to enhance performance in sports, particularly through aiding recovery after exercise, and also helps the liver to detoxify the blood.

It is not an essential amino acid in that it is produced by the body and need not be part of your diet. It is a precursor to arginine, which involves the sustained release of nitric oxide in the endothelium that promotes increased flow of blood and the blood vessels as described further below. One of the biochemical pathways for its biosynthesis involves the urea cycle, whereby the toxic ammonia is detoxified into an easily excreted form through its conversion to urea.

The urea cycle consists of five reactions, and citrulline is formed in the second of these. In the first of these, ammonia reacts with bicarbonate to form carbamoyl phosphate, the phosphate coming from the two molecule of ATP used to energize the reaction. These are converted to adenosine diphosphate (ADP), and the carbamoyl phosphate then reacts with ornithine to form citrulline, which takes part in step three that eventually leads to the formation of urea.

The second way in which L-citrulline can be biosynthesized is from the oxidation of arginine, a natural amino acid. Arginine is oxidized into N-hydroxyarginine, and then into L-citrulline with the release of nitric oxide.

So that's how it is produced in the body, but how does it help sportsmen, and what part does it play in detoxification? Its effect on recovery after exercise is connected with blood flow. Energy is created in the mitoCHONDria that are contained in every cell off the body. Among the raw materials needed for the production of energy are glucose and oxygen: glucose obtained from the carbohydrates in your diet, and oxygen transported by the hemoglobin or red blood cells.

Both of these rely on blood flow: greater the volume of blood transported to the cells then the greater the ability of these cells to produce energy. During periods of exercise, a good supply of blood is required to provide the raw materials needed for the energy demand of the muscles involved in the exercise. Not only that however, but recovery after exercise involves the replacement of electrolytes, the glycogen used in extensive aerobic and anaerobic exercise and protein replacement, particularly where catabolism has occurred.

In order to supply these raw materials at an adequate rate, it is necessary for the flow of blood to the appropriate muscles to be sufficient. A major restriction to increase blood flow is elasticity of the blood vessels and cells. Although a healthy heart is capable of providing the necessary quantities of blood, and hence of nutrients, any restriction to the flow could cause dangerously high blood pressure.

Nitric oxide plays a signaling role in enlarging blood vessels to allow an increased blood flow when it is needed by the body. It can provide more blood to the stomach during digestion and to the muscles during exercise and recovery.

During hard exercise, nitric oxide can act as a pump that provides blood during exercise and also during recovery. It can therefore provide more rapid gains in lean mass, increased endurance and faster muscle recovery. The way it does this is to send a signal to the smooth muscles to relax; smooth muscles such as those found in veins and arteries, so resulting in vasodilation therefore allowing increased blood flow.

It is the endothelium, the inner lining of blood vessels, which uses the nitric oxide to provide the relaxation signal to the smooth muscles surrounding it. In fact, it is the effect of nitric oxide that enables those living at high altitudes to develop increased stamina and speed over those at lower altitudes, and find more world records seem to be broken during athletics meetings, such as Olympic Games, held at high altitudes. This is because the production of nitric acid is increased at higher altitudes with slightly lower oxygen levels. This is the same effect that is used by vasodilators such as amyl nitrite and Viagra that work by increasing nitric oxide levels in the smooth muscle wall of the blood vessels.

It should not be surprising therefore, that L-citrulline should work in a similar way, since it is intimately involved in the production of nitric oxide. Although this is now generally understood, what part does supplemental citrulline play in the body if it is a non-essential amino acid?

Supplemental L-citrulline is useful in supporting the detoxification of ammonia in the liver when supplies of ornithine carbamoyl transferase is naturally in short supply. This is the enzyme that catalyzes the reaction between ornithine and carbamoyl phosphate to form citrulline. Supplements can then help in the removal of ammonia from the blood, and also provide material for the continued production of nitric oxide support muscular activity and its recovery after exercise.

Ammonia itself is a by-product of intensive exercise, and without the urea cycle the body would rapidly become polluted. It is a very toxic product, and causes the death of thousands of people each year. This is generally in people who suffer liver and kidney disease, and the ammonia can be broken down and excreted.

Your brain cells are particularly sensitive to ammonia, and as levels increase the effect progressively ranges from drowsiness thru tremors to coma and eventual death. Any condition, therefore, that reduces the body's capability of metabolizing ammonia is potentially very serious, and any supplement that can help prevent this is valuable.

L-citrulline is believed to help in such situations, although any condition affecting the efficiency of the kidneys or liver and that can cause toxicity due to ammonia or any other toxic substance, should be referred to your physician. It is for its effect in increasing blood flow to provide sufficient raw material, for both the energy needed for high levels of exercise and for muscle recovery, that citrulline is predominantly used as a supplement.

--
Detoxify At Vitanet ®, LLC

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Nutritious Amaranth
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Date: April 09, 2009 03:08 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Nutritious Amaranth

Amaranth is an herb full of vitamins. It was traditionally used by Native Americans in both Central and North America as a survival food. This herb has been cultivated for thousands of years in many different cultures due to the fact that it grows well in most climates and uses a very small amount of water. Amaranth contains a huge amount of protein and a lot more calcium than milk provides. It also contains the amino acid l-lysine, which is not often found in plants. Amaranth seeds were used by the Aztecs in their pagan ceremonies. Additionally, mature seeds of the amaranth plant were eaten raw, mixed with cornmeal, or added to soups. The leaves, which taste similar to spinach, can also be eaten.

Often, amaranth is used for gastroenteritis or the stomach flu. It helps to lessen the irritability of the tissues. A strong decoction of amaranth can be used to remove worms and other parasites from the digestive tract. Applying amaranth topically can help to reduce tissue swelling. The herb can be used with bandages for medical treatment. Additionally, it can help stop excess bleeding which is often caused by sore gums, nosebleeds, and heavy menses. Amaranth is highly digestible and is recommended for infant formulas.

Amaranth is a traditional food plant in Africa with the potential to improve nutrition greatly. There are several species of amaranth grown in Asia and the Americas for grain. Ancient grains still used to this day include three species: Amaranthus caudatus, Maranthus cruentus, and Amaranthus hypoCHONDriacus. Even though amaranth was grown on a small scale in parts of Mexico, Guatemala, Peru, India, and Nepal, there is a huge potential for future cultivation in the U.S. and tropical countries. Because of this, this herb is often referred to as “the crop of the future.” Because of a weedy life history, amaranth grains grow very rapidly, with their seedheads weighing up to 1 kilogram and containing a half-million seeds. Amaranthus species have a 30% higher protein value than rice, wheat flour, oats, rye and other cereals.

Amaranth was revived in the 1970s because of it is very palatable, easy to cook, and a protein that is well suited to human nutritional needs. This herb was recovered in Mexico from wild varieties, now being commercially cultivated. A popular snack sold in Mexico City, this herb is often mixed with chocolate or puffed rice. Its use has recently spread to Europe and parts of North America. Amaranth is a pseudo grain because it has a very similar flavor and cooking ability to grains. Along with protein, amaranth provides a great source of dietary fiber and dietary minerals including iron, magnesium, phosphorus, copper, and manganese.

The leaves, seeds, and flowers of the amaranth plant are responsible for all of the health benefitis provided. Amaranth’s properties include: alterative, astringent, demulcent, diuretic, and nutritive. Primarily, amaranth is used for diarrhea, dysentery, excessive menstruation, and nosebleeds. Amaranth can also be used for canker sores, bleeding gums, stomach and mouth ulcers, worms, and wounds. For more information on the benefits of this herb, please contact your local health food store.

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L-Arginine An Amino Acid Essential Or Not You Be The Judge?
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Date: January 06, 2009 04:01 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: L-Arginine An Amino Acid Essential Or Not You Be The Judge?

L-Arginine is an amino acid that is one of 20 needed by the body for its existence. To some, it is not what is known as an essential amino acid, since it can be biosynthesized by the body, but arginine is termed a conditionally essential amino acid in that we must include some in our diet because our biochemistry does not produce all that our body needs, particularly during the growing years.

Amino acids are the building blocks of life, and are the units from which proteins and ultimately our DNA are built. In fact DNA contains the blueprints for every protein used by our bodies, including all the enzymes without which our biochemistry could not occur. When a supply of a particular protein is needed, the DNA template provides the sequence of amino acids needed to produce it.

Of the 20 amino acids we need, only 10 can be produced by our body: the other 10 must be included in our diet and are termed 'essential' because they are an essential part of our diet, just as vitamins and minerals are. Without an adequate supply of essential components, we cannot survive, and if the essential amino acids are depleted in our diet then the body will break down muscle tissue to release them.

Although L-arginine is termed a 'conditionally' essential amino acid, it is included by many among the 10 regarded as being essential. Hence, depending upon who you read, it can be either essential or non-essential. That is because, as inferred earlier, arginine is needed for growth and development, and there is insufficient in the diet to meet these needs. Therefore, while it is essential in cases where growth is still taking place, it is not in those where normal growth is complete.

Proteins are essential for all animal life, forming not only the enzymes, or biochemical catalysts, but also muscles and DNA among other bodily tissues. Protein is also a necessary part of our diet, and it is from protein, animal or vegetable, that we get the amino acids in our diet. L-arginine is one of these, being available from all meats and seafood’s, and vegetables rich in protein such as soy, seeds, nuts and grains.

So what does arginine do for us, quite a lot in fact, many of its functions being related to our health? Arginine plays an important role in the healing of wounds, especially bone, assisting the immune function, decreasing blood pressure and speeding up the repair time of tissue. However, it possesses other properties such as increasing muscle mass, helping to increase male fertility and improving the circulation.

It also helps to remove ammonia from the body, and is a precursor for the biosynthesis of nitric oxide (NO2). It is in the way that L-arginine works with the nitrogen stores of the body that we will focus on here, prior to touching on its other properties.

L-Arginine transports, stores and excretes nitrogen, and used biochemically to manufacture nitric oxide. This oxide of nitrogen plays a very important role in your body, and is produced in every cell of your body. Nitric oxide helps in the dilation of your blood vessels, allowing a reduction in blood pressure, better circulation and helping to prevent a mans man-hood dysfunction, all of which are due to its relaxing effect on smooth muscle contraction and the promotion of the increased blood flow necessary for men and their functions. It is also important to your immune system and nervous system.

It works in a similar way to the effect of nitroglycerine on the heart: this is converted in the body to nitric oxide which relaxes the blood vessels and so reduces the amount of work needed by the heart. The way in which L-arginine forms nitric oxide is by the action of the enzyme nitric oxide synthase.

The amino acid is also an important component of the Citric Acid or Kreb's cycle, where it reacts with ammonia which is a toxic by-product in the generation of energy in the mitoCHONDria. Ammonia is converted to urea by L-arginine and excreted from the body. This is another way in which L-arginine is involved in the storage and use of nitrogen-containing compounds in your biochemistry.

It was mentioned earlier that arginine is an essential amino acid for children. Studies have indicated that it supports the release of the human growth hormone from the pituitary gland although the amount released through supplementation of the amino acid varies widely between individuals. The growth hormone maintains the production of proteins and muscle tissue in the body cells. This reduces as we age, and arginine becomes non-essential, the smaller amounts needed in our biochemistry being manufactured by the body.

The anabolic effect of the supplement is believed to increase the effectiveness of exercise intended to increase muscle bulk and reduce the percentage of body fat, and many take L-arginine as a supplement while undergoing such anabolic fitness and exercise programs. It is normally best to start with low supplement levels and work up due the potential side effects (diarrhea and nausea).

Arginine is an important component in the body's healing mechanisms for both tissue and bone, and studies have confirmed accelerated healing of wounds and fractures with arginine supplementation. Although the mechanism by which this occurs is not yet understood, there is evidence that it may be connected with the nitric oxide pathway and increased blood flow, and also with its effect on the immune system in reducing inflammation at the healing site.

Diabetics, however, should be careful with substances that promote the release of growth hormone, and children with incomplete bone growth should also use such agents only under medical supervision. With diabetics, their condition could be either exacerbated or improved, and those with herpes and some psychotic conditions should also be careful.

Nitrogenous compounds are essential to life, and L-arginine plays a significant role in the storage, use and secretion of them. Without it life would not be possible, although it is its visible uses, such as the effect of nitrous oxide on blood flow and of proteins on muscle metabolism, for which it is best known to those that use it, either as a supplement or as a remedy. Pure supplement form is available at your local or internet health food store.

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L-Alanine Non Essential Amino Acid
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Date: January 05, 2009 04:31 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: L-Alanine Non Essential Amino Acid

L-Alanine is one of 20 amino acids that are used by the body to manufacture the proteins essential for life. Each protein possesses specific biological properties that are imparted by the sequence of amino acids it contains. Proteins control the chemistry that takes place within the cells of our body, and comprise all of the enzymes that catalyze the body's biochemistry.

Amino acids are also the building blocks of DNA that determines the genetic make-up of individuals, and that also provides recipes or templates for the production of proteins from amino acid sequences. There is a different DNA template for every protein required by the body that determines which of the 20 amino acids are needed, and in what order they are to be combined with one another to manufacture the desired protein.

10 of these 20 amino acids can be synthesized by your body's biochemistry, the other 10 being essential parts of your diet. If you fail to include just of these 10, then your body will break down its proteins until it has obtained a sufficient supply of that amino acids for its needs. That involves muscle and other tissue degradation, and is one of the symptoms of malnutrition. Amino acids are not stored, and a daily supply is essential to avoid these symptoms.

L-Alanine is one of the ten that the body can manufacture, and used by the body to help build protein and also to enable the body to make use of glucose to generate energy. It does so as part of what is known as the glucose-alanine cycle. During anaerobic exercise, such as in weightlifting and sustained running, muscles produce lactate and also alanine.

The alanine is passed on to the liver where it is converted to energy via its conversion to glucose. This is not a particularly efficient means of creating energy because a byproduct of the process is urea, the removal of which in turn requires energy. However, it serves its purpose as an energy source once the liver is depleted of glycogen. In fact that is the major use to which alanine appears to be put by the body: the conversion of glucose to energy.

The way the glucose-alanine cycle works is that a process known as transamination produces glutamate from the amino groups of amino acids that are degraded during exercise. Glutamate is then converted to pyruvate by means of the enzyme alanine aminotransferase, with the production of alanine and alpha-ketoglutarate. This is a reversible reaction, and after the alanine has been carried by the bloodstream to the liver, the reaction reverses with the regeneration of pyruvate that undergoes gluconeogenesis (generation of glucose).

The result of this is glucose that returns to the muscle tissue to provide more energy. The glutamate is broken down to the ammonium ion in the mitoCHONDria, which in turn enters the urea cycle with the production of urea.

In a nutshell, then, the glucose-alanine cycle removes glutamate and pyruvate from muscle tissue to the liver where glucose is generated from the pyruvate and returned to the muscle. Since gluconeogenesis involves the expenditure of energy, and this occurs in the liver rather than in the muscle, all the energy in the muscle can be used for muscle contraction.

L-Alanine possesses other properties, among them the ability to help maintain the health of the prostate. A study of benign prostatic hyperplasia (enlarged prostate) indicated that treatment with L-alanine, glutamic acid and glycine over a period of three months reduced the symptoms. However, make sure that you consult your physician before using alanine in this way. This is not because there are any known adverse side effects, because there are not, but because it I always wise to so with any supplement taken with a view to treating any medical condition.

A less obvious application derives from the fact that it forms a stable free radical when deaminated. Deamination can be initiated by radiation, and so the concentration of this free radical can be measured to ensure that the correct dose of radiation is being given in dosimetric radiotherapy. It is not always easy to control the dose accurately, and this property of alanine allows it to monitored and to ensure that it is neither too low to have the desired effect, nor dangerously high.

Although it is a non-essential amino acid, and can be produced by the body, a dietary supply or supplement is advantageous if extra energy is required. Good dietary sources of L-alanine include meats, seafood, eggs, nuts, beans, seeds, brewer's yeast, corn and legumes among others. Supplements are also available, and useful for body-builders, weightlifters and others involved in anaerobic exercise. Due to the glucose-alanine cycle, it can possibly provide energy when lactate build-up would otherwise lead to muscle cramps.

Those for whom a supplement could be useful are athletes and others who are trying to build muscle and stamina, or reduce their body fat and also the obese and overweight for the same reason. There is also evidence that a combination of the amino acids alanine, glycine and arginine can help to reduce arterial plaque from oxidized low density lipoproteins, and can also help to reduce high blood pressure.

Deficiencies are rare, although groups that do not eat meat should be careful to eat foods with a good alanine content. There are no known side effects of a deficiency since the body will generate what is needed for normal purposes, and while the supplement appears to have no side effects, it is advisable that pregnant and lactating women should first seek medical advice. The same applies if you suffer from hypertension or diabetes. High doses of alanine might also affect those with kidney or liver disease.

Although the benefits of supplementation of L-alanine might not be immediately obvious, the results and the science indicate that it is effective in making better use of blood glucose in that the adenosine triphosphate (ATP) created in the muscle tissue is allowed to be expended on muscle contraction while the glucose-alanine cycle provides the energy needed for gluconeogenesis.

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EDTA
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Date: January 03, 2009 12:27 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: EDTA

Calcium is the most damaging mineral that is involved in the calcification of the blood vessel system. Ionic calcium, which is a floating form of calcium, is used by the body in daily functions like muscle contraction and relaxation, nerve impulse transmission, blood coagulation, and others. Calcium is a mineral that is capable of forming complexes with other components, such as proteins. These complexes can eventually lead to the formation of lesions, plaque, and the overall hardening of the blood vessels.

There are four different components that are found mainly in arterial walls which often combine with calcium. Elastin, a type of protein that makes up a good amount of the blood vessel wall, is the substance that allows the arterial wall to be elastic. During the process leading to atherosclerosis, elastin often forms complexes with ionic calcium, which results in a loss of elasticity.

Collagen, another type of protein that works with elastin to make up the bulk of arterial walls, forms complexes with ionic calcium, which leads to hardening of the blood vessel. MPCs, which are carbohydrates that contain a number of agents including amino acids, uronic acids, and CHONDroitin sulfate, are found within the arterial wall where they form complexics with ionic calcium to promote the formation of atherosclerosis. Beta lipoproteins and pre-beta lipoproteins transport a fatty acid and glycerol combination for storage in the liver, muscles, and other areas of the body.

Although beta and pre-beta lipoproteins form ionic calcium complexes and initiate the onset of arteriosclerosis, there are lipoproteins that do not form complexes with calcium, but interferes with the formation of ionic calcium complexes instead. It is clear that ionic calcium plays a huge role in the formation of arterial plaque and the actual hardening of arteries, due to the complexes it forms with components of the arterial wall. Because EDTA effectively ties up calcium complexes so that it can be eliminated through the urine, it is also clear why EDTA chelation therapy is a successful way to reduce the levels of atherosclerotic plaque and reverse the hardened condition that so often occurs in the artery walls.

EDTA chelation therapy was patented in Germany in 1930 and first used in medicine in 1941 to help with lead poisoning. It wasn’t patented in the United States until 1949, with several papers being published on its therapeutic effects following in the early 1950s. EDTA chelation therapy has been used in the U.S. to treat atherosclerosis since 1952, but was also used for lead poisoning and heavy metal toxicity before that. After its initial use for lead and heavy metal poising, it was noted that EDTA resulted in the reduction of severe pressure and pain in and around the chest, which led to the discovery of its abilities to treat atherosclerosis.

Since then, thousands of scientific articles have been written concerning the many aspects of EDTA chelation therapies as well as its safety, which has been proven by its use on thousands of patients in over three million intravenous treatments by over one thousand doctors in the last fifty years. Not one fatality has been documented when established protocol has been followed, while the FDA approved the new drug application for EDTA without requiring any additional safety studies to determine its safe use. Have you tried oral EDTA?



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Inosine
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Date: December 19, 2008 12:35 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Inosine

Inosine is a specific type of glycosylamine that consists of a base bound to a deoxyribose or ribose sugar. This type of glycosylamine is referred to as a nucleoside, others being adenosine, thymidine and cytidine.

It is available naturally in brewer’s yeast and major organ offal such as liver and kidney. It’s function in animal biochemistry is in the production of ATP (adenosine triphosphate), often known as the molecule of energy, that is essential for the generation of energy by the mitoCHONDria in our body cells. It’s biochemistry is described below.

Inosine is synthesized as inosine monophosphate by means of a complex series of biochemical reactions. The inosine monophosphate is a precursor for adenine, a nucleotide and purine base that reacts with ribose to form adenosine. This is another nucleoside that can be phosphorylated to produce adenosine monophosphate (AMP), the diphosphate (ADP), the triphosphate (ATP) and cyclic adenosine monophosphate (cAMP).

Each of these is involved in the metabolism of energy in the mitoCHONDria. Glucose undergoes a number of enzyme-catalyzed reactions in the presence of oxygen that ultimately breaks it down to water and carbon dioxide, plus at least 36 molecules of ATP via glycolysis and then the Krebs cycle. The ATP reacts with water to release energy and form ADP. The ADP can then be phosphorylated to produce more ATP. The starting point of all of this is inosine, and it is little wonder this nucleoside is used by athletes to help boost their energy.

Not only that, however, but adenine is also the precursor of amino and nucleic acids responsible for the generation of RNA and DNA, and it is also responsible for the production of many coenzymes. These provide other opportunities for its use elsewhere in medicine, and it has also been found to possess other medical properties that will be discussed later.

It was in the 1970s that inosine was first used to boost athletic performance due to its part in the generation of the energy needed by every muscle in the body. Its use began in eastern countries, although evidence at the time did not support the theory. Nevertheless, this did not deter its advocates, and inosine continued to be used by athletes, a practice that has now spread world-wide.

It has been found to be a metabolic activator, in that it supports metabolism through the generation of energy. Inosine has been used by power lifters for heavy weight training to increase the capacity of the blood to carry oxygen, and strength athletes, particularly of the Eastern Bloc, used it from the mid 1970s onwards.

Inosine appears to increase the natural ability of the body to handle strenuous workouts, although there is no scientific proof of this. However, those that use it claim an increased ability to carry out intensive training workouts and an improvement in their competitive performance. The nucleotide can penetrate the cell walls and get to where it is needed to take part in the metabolism of energy through the production of ATP.

Now, however, inosine has an entirley different application in medicine. Studies have shown that it could support those suffering from MS (multiple sclerosis) and strokes through its pereceived neuroprotective properties. It appears to promote axonal rewiring, where undamaged neurons appear to grow new connections with damaged areas of the brain, and undamaged neurons seem to branch out to replace some of the damaged neurons.

Inosine is also an intermediate in the production of uric acid through purine and purine nucleoside degradation. Uric acid is a powerful antioxidant, particularly in respect of peroxynitrite, a nucleophile that causes the type of axonal degradation that is associated with multiple sclerosis. It thefore helps in two ways: through the production of uric acid, and in promoting axonal rewiring that can improve brain function in patients.

Another potential medical use for the substance is based upon the discovery that inosine and related compounds can act as powerful anti-inflammatories through their effect on inflammatory macrophage proteins. Certain conditions can cause the release of these macrohages, and where it is an undesirable side-effect, inosine can be administered to prevent it occuring.

Inosine appears to inhibit the production of pro-inflammatory cytokines without inhibiting anti-inflammatory cytokines. It appears to do so extracellularly, although the effect can be reversed by the blockading of adenosine receptors. However, it is a convenient way of avoiding this sometimes serious condition, which is a natural function of the immune system, without affecting any other part of that system’s essential work.

It is not an essential nutrient, since it is synthesized biochemically, but a supplement of inosine is certainly worth taking if you want to increase your ability to carry out athetic exercise requiring a high energy output and increased blood oxygen availability. It also helps to reduce recovery time, and proponents of its use claim that it enables you to exercise at a higher level for longer.

Although the medical evidence for this is scant, not a lot of work has been done in trying to establish it, and those that use inosine in this way swear that it is effective. The theory certainly indicates that it should be effective in helping to produce more energy, and also that it should be able to make more oxygen available, and some athletes have been taking it for decades with excellent results.

There are no known side effects of its use, although pregnant women and nursing mothers are recommended not to use it, as with many other health supplements the pathology of which have not been closely studuied. As with any supplement, you are highly recommended to consult your own doctor or physician when taking any supplement, particular if you have a current medical condition or are taking prescriptive medicines.

If you are predisposed to gout, and some people are, the uric acid it produces can render inosine unsuitable. Uric acid reacts with calcium to produce the sodium urate that is deposited on the cartilage and tendons of the joints, particularly the big toe. It is a very painful condition, so those that have suffered gout in the past should not take inosine as a supplement.

Otherwise, its effect on your athletic performance might be academic!

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Hoodia Gordonii
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Date: December 10, 2008 10:48 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Hoodia Gordonii

Hoodia Gordonii is a South African succulent plant of the family Apocynaceae. They are remarkable similar in appearance to cacti, although they are totally unrelated to them and grow predominantly in the region of Central Namibia in the south west of Africa, up to the southern regions of Angola. They are most commonly found in rocky ground and on the plains.

There are several species of hoodia, some of them grown domestically, and it is Hoodia gordonii that is used as an appetite suppressant in hoodia weight loss pills. Although the plant has historically found use in the treatment of infections and gastric problems, most interest is displayed in its use by the bushmen of the Kalahari Desert to suppress their appetite during long hunting trips when food and water are scarce.

The active ingredient was isolated in 1977, and given the name P57: the product is therefore often referred to as Hoodia P57. It was patented by its discoverers, the CSIR (South African Council for Scientific and Industrial Research) and a license granted to UK company Phytopram, who worked together with Pfizer to isolate the active ingredients and manufacture them synthetically. This was found to be very difficult, if not impossible, since any synthetic form of the extract failed to display any hunger-suppressant properties.

Finally, the rights to the main ingredient were released by Pfizer in 2002, thus indicating that it was of no commercial benefit to them. The main problem they admitted with synthesizing P57 was not only the difficulty in doing so, but also that there were side effects of the extract on the liver caused by other components that could not be removed. No synthetic form of hoodia is therefore available, and only the natural plant is used in current Hoodia 57 preparations.

The rights of the San Bushmen to the plant were recognized by the CSIR in 2002, and not only do they receive a proportion of the profits of marketing hoodia, but also the plant is protected with wild-harvesting licenses provided to only certain individuals and companies. Due to the rising popularity of the hoodia weight loss industry, the plant has been named as an endangered species in the wild.

It is believed that the active ingredients are steroidal saponins that can fool the body into believing it is full. This theory is based upon the effect on appetite of glucose concentrations in the blood. Your appetite is controlled by the amount of unconverted glucose in your blood, and glycogen in the liver. When you eat carbohydrates, they are digested and converted into glucose which is absorbed into the bloodstream.

Under normal conditions your blood glucose levels increase to a level where a signal from hypothalamus stops you feeling hungry. Insulin is then secreted from the pancreas to prepare your cells to use that glucose in the mitoCHONDria to create energy by means of the Kreb's Cycle, or Citric Acid Cycle as it is also known. This reduces the concentration of glucose in the blood, and once it reaches a certain level the body begins to use its emergency energy supply, glycogen, that is stored in the liver.

A signal then informs the brain that more glucose is needed. You then feel hungry again, and this cycle is repeated several times a day in a normally healthy person. This cycle is controlled by certain hormones in the brain, specifically in the ventromedial center of the hypothalamus, where it is believed that the ATP (adenosine triphosphate) availability controls the release of the hormones involved.

ATP is the molecule of energy, and as the concentration of blood glucose and of glycogen drop, then the amount of ATP produced also drops and this is detected in the hypothalamus, which reacts by releasing ghrelin. Increased leptin increases the feeling of satiety and ghrelin increases the feeling of hunger. Serotonin acts on the brain to increase the effect of leptin in the hypothalamus, and therefore make us feel less hungry, or more satiated.

It is believed that hoodia gordonii, or the Hoodia P57 component of it, fools the brain into believing that your blood glucose or glycogen levels have reached the point at which it should trigger a satiated response, so that you stop eating even though your ATP levels might be low. The steroidal saponins that it contains is believed to be ten thousand times more effective than glucose in stimulated the secretion of serotonin.

Hoodia has also been found to contain a number of glycosides, including pregnane glycosides that some studies have indicated to help control appetite of the subjects tested. Most of these tests have been carried out on animals, although Hoodia weight loss preparations are offered in a form standardized on both steroidal saponins and pregnane glycosides.

Hoodia gordonii is becoming so popular as a weight loss product that its export is being monitored by the South African government. It has become so endangered that, since 2005, only hoodia grown on commercial farms is permitted an export license, and exporters must obtain a license from the Convention on International Trade in Endangered Species of Wild Fauna and Flora (CITES). Importers also require a permit from the US department of Agriculture, and a CITES certificate is also needed to re-export the finished product.

Because of this, more hoodia weight loss pills are being sold than there is hoodia gordonii to produce them. It is not uncommon for cacti such as the prickly pear cactus from Mexico, to be used, or for low concentrations of hoodia to be bulked up with fillers. Neither of these is of any use as an appetite suppressant, the former having no active ingredients whatsoever and the latter containing only traces.

If you are purchasing hoodia, therefore, be aware of this. Request sight of the CITES certificate and USDA permit, and also the analysis results by an authorized laboratory to confirm that the product is what it purports to be. Otherwise, there is some evidence that Hoodia gordonii can help you reduce weight, although to date there are only four recognized analytical laboratories registered to analyze the active content of hoodia weight loss products.

Finally, check for the analysis certificates. All Hoodia weight loss products should be analyzed by each of three methods: Microscopy, High Performance Thin Layer Chromatography (HPTLC) and High Performance Liquid Chromatography (HPLC) - all there are needed. The four authorized laboratories are: the University of Mississippi, Chromadex labs in Irvine California, Alkemist Pharmaceuticals and Advanced Laboratories, Smithfield, NC.

No others will do, so if your Hoodia weight loss preparation has not been analyzed using the three methods by one of these laboratories, don't buy it, even if it can show the CITES and USDA documentation.



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Hyaluronic Acid can help Restore Joint Function
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Date: December 01, 2008 10:03 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Hyaluronic Acid can help Restore Joint Function

Hyaluronic acid, also known as hyaluronan, is one of the main components of the extracellular matrix of connective tissue and joints, and is one of the main chemicals contained in the synovial fluid that lubricates your joints. Before we discuss how it can be used to help restore the function of damaged joints, let's have a look at what causes joint pain, and why joints can break down long before their time.

You might have heard that arthritis is an inflammatory condition, or that it is due to the immune system. This is true to an extent, and rheumatoid arthritis is an immune system problem, although osteoarthritis is a different problem altogether. Arthritis is not the only cause of joint pain of course, but is by far the most common cause. As already inferred, there are two forms of arthritis, each with a different basic cause.

Osteoarthritis is the most common form of joint disease, and is largely due to wear and tear, injury or can be hereditary. However it is usually initiated by damage, the joint surface becomes roughened and the bone around the damaged area gets thicker to compensate. A joint is where two bones meet, and not all joints move. You have the fixed joints in your skull, for example, and those between the ribs and the spine. However, arthritis generally affects the joints associated with movement, mainly the knees, hips, fingers, toes and elbows.

The ends of the bones are covered with a thin layer of cartilage, which can absorb shocks and both cushion the joint and allow the ends of the bones to move smoothly over each other. Round each joint is a membrane known as the synovium that is filled with the thick synovial fluid, which lubricates the cartilage. The bone ligaments hold them close to the joint, and prevent them moving too much and dislocating. Finally, the joint is completed by the tendons that attach the muscles to the bones they control.

Osteoarthritis causes a joint to deteriorate: the cartilage becomes rougher and wears, and the bone beneath the cartilage gets thicker. At the edge of the joint the bone tends to grow outwards, forming spurs and the synovium swells producing extra synovial fluid. This causes swelling and pain, and ultimately the joint can be damaged beyond repair. This process takes a number of years to reach a stage whereby pain and discomfort are felt.

Before that situation occurs, however, the joint tries to repair itself, and hyaluronic acid can take part in this process. It is mainly involved in the reparation of connective tissues such as cartilage, although there are other connective tissues which hyaluronan has been found to repair. These include skin, eyes and heart valves and hyaluronic acid can arguably be used to help repair all of them.

However, it is joint tissue with which we are concerned here, and hyaluronan is an important component of articular cartilage: the type of cartilage involved in movement (knees, hips, etc), as opposed the type that forms your nose or the external part of your ears. It is believed that injections of hyaluronic acid can help to repair damaged articular cartilage. However, osteoarthritis is only one of the two forms of arthritis. The other is rheumatoid arthritis, and this is much more sinister.

Rheumatoid arthritis is caused by the attack of your joints by your own immune system, although why this happens is unknown. The most likely theory is that certain infections trigger the immune system, and it then proceeds to attack the synovial joints. Cytokines are responsible for inflammation of the synovial fluid, which can also cause fever, loss of weight and appetite, and inflammation of the blood vessels.

The body tries to generate more synovial fluid which causes swelling round the whole joint, putting pressure on the damaged areas, and generating even more pain. The inflammatory response commences and the whole area becomes seriously painful.

The smaller joints are most commonly affected, such as the fingers and toes, but it can progress to the elbows, hips and the knees. The joints become red, swollen and finally too stiff to be used. The sinusitis eventually leads erosion of the joint and deformation.

Because hyaluronic acid behaves like the synovial fluid, it is believed that it can be used to treat both forms of arthritis. It is a glycosaminoglycan, an unbranched polysaccharide of the same type as CHONDroitin sulfate that is commonly used to treat arthritis. It can be used to increase the viscosity of the synovial fluid, and render a more effective lubricant.

However, it is in treatment of osteoarthritis that hyaluronan is most likely to find success. It is used to improve the viscosity of the synovial fluid, so providing increased lubrication to the joint and helping reduce the pain. In fact it not escaped notice that those who eat a diet rich in hyaluronic acid tend to live longer and look younger than those that do not do so.

Commercial preparations are currently in use or under evaluation for disorders such as glaucoma, fractures, and detached retinas, damage to cartilage, healing ligaments and osteoarthritis. These last three are particularly of interest to arthritis sufferers, and signs are that they are effective with many cases.

However, it has also been established that smoking cigarettes can negate the effect of hyaluronic acid, and excessive levels of Vitamin C can also degrade it. Estrogen treatment, however, can enhance its effect in repairing connective tissue. Zinc deficiencies have also been found to have negative results, so make sure that these factors are addressed if you are using hyaluronic acid to treat arthritis.

Something to keep in mind if you are taking hyaluronic acid orally is the size of the molecule. It is a very large molecule, and suffers from the same absorption problems as CHONDroitin sulfate. There are smaller hyaluronan molecule versions available if you can find them, that improve the absorption through the intestine, but if not then the dose will generally be greater than expected due to the low absorption levels due to the molecule being too large to be easily absorbed through the tissues into the bloodstream.

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Green Coffee Bean Extract
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Date: October 22, 2008 04:59 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Green Coffee Bean Extract

It is known that aging is largely a result of the effect of free radicals on our body cells, and that green coffee bean extract can be used to fight against these. While we intuitively understand what the term ‘aging’ means, very few people can actually describe it in words, although there are several theories of why it occurs.

The most viable of these include the Error Catastrophe Theory, related to faulty molecular transcription and errors in cellular function, the Crosslinkage Theory, in which progressively increasing cross-linking between proteins slows the body functions down, and the Neuroendocrine Theory, in which changes in homeostasis and hormone levels occur through time due to an increasing loss of sensitivity of receptors to feedback inhibition.

However, by far the most acceptable and best understood theory is the Free Radical Theory of Aging, which green coffee beans have been found to help fight, and it is on that which we shall focus here.

The Free Radical Theory of Aging

Free radicals are oxidants created by unpaired electrons. Electrons generally go around in pairs, but occasionally molecules lose one of these electrons, creating a situation where it possesses an unpaired electron. In this condition, that molecule has only one purpose in life and that is to oxidize other molecules by stealing an electron from them.

Oxidation can cause untold damage to cell membranes, and also to other molecules that are vital to life, such as DNA. The end result is aging, and the onset of many diseases and conditions connected with aging. Free radicals are believed to be behind inflammatory diseases such as arthritis and Crohn’s disease, strokes, cardiovascular disease, Parkinson’s disease, Alzheimer’s disease and cancer among many others. Each of these is associated with aging.

Free radicals are generated in the body in four different ways:

1. Energy is generated by the intercellular mitoCHONDria by the production of ATP (adenosine triphosphate). By-products of the mechanism by which this is done include hydrogen peroxide, the superoxide anion, and a hydroxyl radical. Over 20 billion molecules of antioxidant are produced in each individual cell daily, and every one of these has the capability to do damage to your body. The figure for inefficient cell metabolism is significantly higher.

2. Peroxisomes are eukaryotic cell components that contain oxidative enzymes, whose function is to produce hydrogen peroxide that is then used by another enzyme, catalase, to oxidize other toxic substances. It is used by the liver, for example, to oxidize about a quarter of all the alcohol we drink to acetaldehyde, and also to remove other toxins from the body. The down side is that the hydrogen peroxide can escape and degrade the cell membranes.

3. Chronic infections give rise to a high activity of white blood cells, which utilize oxidants of various kinds to destroy viruses, bacteria and parasites. These include hydrogen peroxide, superoxide and nitric oxide which can also destroy the cells they are protecting.

4. Cytochrome P450 is an enzyme used to clear the body of toxic chemicals in our food such as pesticides and drugs. They also give rise to oxidative by-products.

In addition to these, free radicals are also produced by air pollution consisting of smoking, factory emissions and traffic fumes. Trace metals such as lead, iron and copper, are rich free radical sources, as is the ultraviolet component of sunlight, and caffeine, from tea and coffee, can also contribute to the store of free radicals in your body.

So where does green coffee extract come into this, and how should it be used. Free radicals tend to react very rapidly to accelerate aging, and in order to counter them, and hold the effects of aging at bay, it is necessary to destroy them almost as quickly as they are produced. This is carried out by antioxidants, of which there must be a plentiful supply available in each body cell.

Antioxidants donate electrons to free radicals, and so effectively neutralize them before they can attack the membranes of the cells in your body, or any of the other tissues that they can degrade. Many of the vitamins have a powerful antioxidant effect, among them vitamins A, C and E. Other antioxidants available in our diet include beta carotene and other carotenoids, flavonoids and glutathione, and also cofactors such as lipoic acid. All of these can destroy free radicals by the donation of an electron.

Green coffee beans have also been found to possess a strong antioxidant effect, due largely to the plant phenols, such as caffeic acid that forms chlorogenic acid with quinic acid, both cholorgenic and caffeic acid being string antioxidants. Green coffee bean extract is standardized to 99% chlorogenic acid. This substances not only reacts rapidly with free oxygen radicals but also helps to prevent to formation of hydroxyl radicals.

It has been established that green coffee bean reacts twice as fast as green tea or grape seed extracts, and speed of reaction is critical in the destruction of free radicals that have to be destroyed before they do damage. Other antioxidants found in extracts of green coffee beans include heterocyclic compounds such as pyrroles, furans and maltol.

The extract is made from beans of Coffea Arabica, this containing higher concentrations of chlorogenic and caffeic acids than the Arabica plant. The extract is also produced to be naturally low in caffeine, thus avoiding the negative effects of drinking coffee for its stimulating properties. When the green coffee bean is roasted, the antioxidant effect is found to decrease, and after roasting and brewing both the Arabica and the Robusta beans have reduced in activity to much the same level.

Studies on some of the conditions exacerbated by free radicals have indicated the effectiveness of green coffee beans as an antioxidant. It is believed to help reduce atherosclerosis caused by the oxidation of low density lipids (LDL). Oxidized LDLs tend to be easily absorbed by phagocytes to form plaques and foam cells in artery walls, thus narrowing and hardening the arteries, causing a deprivation of oxygen and nutrients to the heart and also increased blood pressure. Antioxidants from the green coffee bean prevent this from happening, and so help to reduce this serious effect of aging.

A good supply of antioxidants will also prevent the cell membranes from being destroyed, one effect of which is to age the skin. Antioxidants in the form of green coffee bean extract can help to maintain a youthful appearance while also aiding in the prevention of the more serious effects of free radicals that can shorten life.

There are no doubts that free radicals contribute significantly to accelerated aging, and that the antioxidants contained in green coffee beans can help hold back the physical signs of aging, while also helping to destroy those free radicals that threaten life by promoting cancer, atherosclerosis, and other similar conditions.



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Glycine
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Date: October 11, 2008 10:26 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Glycine


The non-essential amino acid glycine is needed to generate muscle tissue and also for the conversion of blood glucose into energy. It is referred to as being ‘non-essential’ because the body can manufacture its own glycine, and is therefore not an essential component of your diet. Other uses to which glycine is put by the body includes the maintenance of a healthy nervous system, and is necessary for the proper functioning of the digestive system.

Amino acids play three essential roles in the human body:

1. They are the building blocks of proteins: proteins comprise about half of the dry weight of the majority of your body cells, and without them there would be no life. They are produced using monomers known as amino acids, and there are about 20 different amino acids used to make the vast variety of proteins that make up the human body. Proteins are needed to form enzymes, the catalysts that permit the majority of chemical reactions within our bodies, and also genes, the building blocks of DNA.

2. More relevant here, amino acids play an important role in the production of ATP (adenosine triphosphate) from ADP (adenosine diphosphate) by phosphorylation with creatine phosphate. The more creatine phosphate available, the more ATP can be produced. Since ATP is the molecule responsible for the generation of energy, then the more ATP available the more energy is generated. Although creatine is available from many food sources, it is destroyed by cooking, and over half of what you use is made from the three amino acids, glycine, arginine and methionine. The energy produced in this way is very short-lived, and last only a few seconds - more on that later.

3. Glycine is heavily involved in the production of collagen, which is the substance that maintains the flexibility of your skin and other connective tissues while still maintaining their strength and firmness. Without glycine your skin would become slack due to the degrading effect of sunlight, free radicals and oxidation.

The non essential amino acid, glycine, is believed to offer other benefits to the human body, but it is the second of those above, the production of ATP, which interests us here. ATP is an extremely important nanomolecule, second in importance to the body only to DNA, and possibly also RNA since the two are linked. RNA makes copies of your DNA structure for use in cell division and growth.

When a cell expends energy for whatever reason, such as when I am typing this, or when your heart beats, or even when your liver synthesizes a protein, one of the phosphate groups is removed from the adenosine triphosphate molecule, and converts it to adenosine diphosphate (ADP). The ATP is then said to be 'spent', just as your energy is spent when you are tired and can exercise no more.

The ADP is then immediately reconverted to ATP in the mitoCHONDria, a part of every cell in your body. A cell can contain hundreds, or even thousands, of mitoCHONDria, the number depending upon that particular cell's need for energy. Hence, cells in your muscles, or in your liver where most of the body's chemistry takes place, contain thousands of mitoCHONDria whereas those in your scalp contain a lot less. Once changed to ATP, a phosphate is again lost when energy is expended, and so the cycle continues.

Glucose is needed allow the ADP to be converted to ATP, hence the need for sugars, or the carbohydrates from which they are manufactured in your body. Each cell can contain up to a billion molecules of ATP, although the couch potatoes among you probably have a lot less! Your store of ATP molecules last about 2 to 5 seconds before being changed to ADP although more rapidly for athletes that expend a lot of energy. Then the energy stored in the form of glycogen in the liver kicks in for another 4 - 6 seconds.

Additionally, you cannot expend more energy that the (eventual) sugars that you take in your diet, which can be in the form of ordinary 'sugar' (sucrose), fruit (fructose), glucose, carbohydrates that are metabolized into sugars, or any other member of the sugar family (e.g. lactose, maltose, etc.).

Glycine is one of what are called glucogenic amino acids, which refers to their ability to provide glucose to the blood. Because it helps to maintain proper blood glucose levels, it is often prescribed for conditions that are caused by low glucose levels, such as hypoglycemia that shows symptoms of fatigue and tiredness, and also anemia and what is known as CFS (chronic fatigue syndrome).

The one activity of the human body, in fact that of any mammal, for which ATP is essential, is the heartbeat. Without that no mammal could survive, or any other creature that relies on a circulation system for life. The only reason you heart has to beat is to pump your blood around your body, and it is your blood that contains the oxygen and nutrients needed to sustain life. Your cardiovascular health relies on lots of ATP being available to power each and every heartbeat.

Analysis of the heart during the final stages of heart failure has revealed that there is a general decrease in the myocardial arginine: glycine amidinotraferase (AGAT) gene expression, which is indicative of the necessity of this enzyme for proper heart function. The enzyme is responsible for the first stage in the biosynthesis of creatine from glycine.

Creatine is well known to athletes, and while it is available naturally from some food sources, it can be destroyed during cooking, and at least 50% of the creatine needed by the body is produced in the liver, pancreas and kidneys. It is creatine phosphate that is broken down into creatine and phosphate, the latter of which is used by the mitoCHONDria to regenerate ATP from ADP.

The study carried out on the reduced AGAT levels found in heart failure patients indicates the importance of glycine to heart health. Without a good supply of glycine, there will insufficient creatine produced biochemically to generate the phosphate needed to for the ATP to produce the energy required to keep the heart pumping with the required strength. The energy provided by the mitoCHONDria is used locally by the cells in which it is produced, and within a few seconds of that production. As explained earlier, ATP stores are used up within 2 - 5 seconds, and glycogen stores within another 4 - 6 seconds.

That is why sprinters cannot keep running at maximum speed for more than around 10 seconds or so, because the immediate availability of glycine, and hence creatine, are insufficient to last longer than that. That is one reason why they have to finish those 100 meters as fast as possible, because otherwise they would run out of energy. Other than trying to win, of course!

However, when it comes to the heart, ATP stores are essential, and the cells in your heart require a constant supply of ATP from creatine, which itself depends upon your intake or biosynthesis of glycine. Since dietary sources are insufficient to meet all your needs, and destroyed by cooking, a glycine supplement is the only way to ensure a sufficient intake. You cannot undernourish your heart and remain healthy.

ATP biosynthesis is essential if that of glycine theoretically is not, but the fact that 50% of your glycine requirement has to be produced by your body and the other 50% is sensitive to heat during cooking, a supplement of glycine could be essential to many people.



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Glucosamine Sulfate
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Date: October 02, 2008 09:36 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Glucosamine Sulfate


It is possible to rebuild joint cartilage with glucosamine sulfate, although how quickly that occurs could depend upon what you take with it. First, though, an understanding of exactly why cartilage deteriorates will be useful in your understanding of how glucosamine sulfate can help towards repairing the damage.

Cartilage has several roles to play in your body, an example of which is to form curved body parts that would otherwise be unsupported, such as the external contours of your ears or a large part of your nose. Without cartilage you ears and nose would flop around a lot, and it is also contained in the spine, to prevent your discs from grinding against each other.

However, the part that we are interested in is as a shock absorber between the bones of your joints. It allows bones to slide over one another without damage, either through friction or shock, and is also nature’s shock absorber, helping to support your weight while you are active. Thus, your cartilage protects from impact damage when you are running or jumping down from a height. This type of cartilage, known as articular cartilage, is bathed in a lubricating fluid known as synovial fluid, which introduces its own problems when your cartilage becomes damaged.

This damage can occur in several ways: as the result of a fall, for example, or direct contact with the joint when playing a physical contact sport such as football or soccer. It can also become damaged through wear and tear over a period of time, such with long distance runners or soccer players (again), and is also associated with age. Many years of continual use, especially amongst those with active rather than sedentary occupations, eventually lead to wear and damage.

Problems with the joint structure itself, known as osteoarthritis, can also damage the cartilage, as can being overweight for a lengthy period. You can also experience cartilage damage if you are bedridden or other wise immobile for long periods, because the cartilage needs regular movement to function correctly. This is connected with the blood supply, which will be discussed shortly.

Cartilage is constructed of cells known as CHONDrocytes that generate a fibrous matrix known as collagen, a mixture of amino acids known as elastin that allows the cartilage to return to its original shape after deformation, and non-collagenous matrix tissue containing proteins, water and proteoglycans that contain sulfated glycosaminoglycan chains. That last mixture is often referred to as ‘ground substance.’

One of the problems with cartilage is its lack of a direct blood supply, and it relies on the compression and decompression of the articular cartilage, or on the flexing of elastic cartilage, to create a pumping action that drives blood to the CHONDrocytes. This is why inactivity can cause cartilage damage, due to a lack of blood supply, and why it is repaired more slowly than other body components.

Once an injury or wear and tear damages a joint, the body’s natural defense, the immune system, is activated, and the major part of that involved in cartilage damage is the inflammatory response. The joint becomes inflamed, the quantity of synovial fluid is increased to provide more protection and swells the joint, and enzymes (hyaluronidase) are produced which, although part of the natural defense system, actually degrade the synovial fluid and the cartilage.

This increases the amount of inflammation and the process becomes self-perpetuating, leading to the condition known as degenerative joint disease (DJD) because the body is unable to produce enough glucosamine to generate the proteoglycan needed for repair.

This is where glucosamine sulfate enters the scene. Glucosamine is a precursor for glycosaminoglycans (GAG), which as mentioned as above are components of proteoglycans in the cartilage matrix ground tissue. It has been shown to stimulate the biosynthesis of proteoglycan, and analysis has shown its presence within articular cartilage after administering it orally to patients with cartilage disease. It therefore makes its way to the right place.

Glucosamine is administered in the form of glucosamine sulfate, the highly electrically charged sulfate groups believed to aid in the compression properties of cartilage. It is rapidly absorbed into the bloodstream, although only about a quarter of the oral dose is eventually available to the body, and high concentrations accumulate in the liver, kidneys and in articular cartilage where it is used in the biosynthesis of GAG.

When in solution, glucosamine sulfate separates into ions: sulfate and glucosamine. Glucosamine ions are involved in the synthesis of GAG, that then combine with proteins to form proteoglycans, a component of the non-collagenous matrix of the cartilage. Although glucosamine is the major active component, there is evidence that the sulfate group contributes the stability of the matrix of the connective tissue since the uptake of sulfate ions increases with the amount of glucosamine sulfate used.

Another consideration here is that sulfate is an important part of proteoglycans, and glucosamine sulfate promotes not only the synthesis of glycosaminoglycans, but also of proteoglycans in general. Glucosamine is also active in regenerating the lubricating properties of the synovial fluid, and in hindering the activity of hyaluronidase, the enzyme that breaks down the hyaluronic acid in the synovial fluid.

Some people find that glucosamine, taken either alone or in conjunction with CHONDroitin sulfate and/or methyl sulfonyl methane (MSM), is more effective than the non-steroidal anti-inflammatory drugs (NSAIDs) used to reduce inflammation (e.g. Aspirin and Ibuprofen) and without the side effects of these substances. MSM contains dietary sulfur, which is necessary for cell structure and healthy cell repair. Methyl sulfone methane is know to be beneficial for painful conditions such as arthritis, and also improves the blood circulation. It might also play a part in helping glucosamine sulfate get to the site of the cartilage damage.

Glucosamine is a large molecule, however, and finds it difficult to make its way to the area around the joint due to the lack of a direct blood supply. It is therefore taken in relatively large doses to ensure that sufficient amounts get to where it is needed. Many people insist that glucosamine sulfate is very effective in reducing, or even eliminating, their pain, and it is finding increasing popularity in the treatment of arthritis and other conditions involving cartilage damage.

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Control Blood Sugar Naturally
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Date: October 01, 2008 12:10 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Control Blood Sugar Naturally


Diabetes is an inflammatory condition caused by the autoimmune system, and manifests as resting hyperglycemia. Your blood glucose levels have to be maintained within fine concentration limits: both too high and too low a blood glucose concentration can be dangerous to your well being.

Your blood glucose level is generally controlled by insulin and glucagons, both of which are biosynthesized in the pancreas. Insulin works by making the glucose bioavailable to the mitoCHONDria to convert into energy, while glucagon, the lesser known of this twosome, stabilizes the level of insulin and mobilizes it to do its job. There are two types of diabetes, known as Type I and Type II or A and B.

Type I diabetes, also known as juvenile onset diabetes, is an autoimmune condition in which the immune system destroys Beta cells because they are recognized as being foreign. It is the Beta cells that generate insulin, and so the condition can be fatal. Patients with Type I diabetes must take insulin throughout their lives, and while potential cures are currently under investigation, none are yet available. Although insulin can be effective it does not guarantee survival, and a better form of treatment is required.

Type II diabetes is by far the more common of the two, and is a form of resistance to insulin, where the body cells cannot use insulin properly. The pancreas initially reacts to this by producing more insulin in response to the increased blood glucose level, but through time it loses its ability to produce insulin as a reaction to an increase in blood sugar, even though this occurs as a result of digesting a meal.

The exact causes of either type of diabetes are not known for sure, although the general mechanism by which they work is known. However, Type II diabetes is believed to be due to some form of interaction between genetics and environment, and it is known that the majority of Type II sufferers are obese and also over 40.

The treatment for this type of diabetes is rarely insulin, but a controlled diet, control of your cholesterol level and blood pressure, exercise and specific medicines designed for sufferers of this form of diabetes. However, there are also natural supplements that can be used to control your blood sugar levels. Diabetes was the sixth leading cause of death of the USA in 1999, with 450,000 deaths, and by 2005 had reached about 300 million sufferers world wide. It is therefore a serious and widespread condition, though Type II is less serious than Type I.

It is important to do what you can to control your diabetes, since after several years it can lead to problems with your nerves, eyes, kidneys and gums, and can also lead to heart disease. With diabetes you are at least twice as likely to have a stroke or heart problem as those without it, although you can reduce the risk of this by keeping your blood pressure under control, and the levels of fats in your blood to a minimum. Stopping smoking helps, and there are some natural treatments that can also help you control your diabetes.

The most important means of control is to reduce your blood sugar levels. While there are natural products that will help you to do that, do not stop taking the medication prescribed by your doctor, but use these in addition to what you are already taking. Among specific substances that can help are:

Chromium: chromium helps your body to use insulin properly. When taken in the form of chromium picolinate, it helps to replace chromium that diabetics appear to be short of. Human studies have indicated that chromium can decrease insulin levels and improve the metabolism of blood sugar in those with Type II diabetes. Some claim that chromium is harmful to health, but the general opinion is that it helps, though you should consult your doctor before using it.

Cinnamon: If you take cinnamon daily, your blood sugar levels should gradually decrease. It appears to enable your cells to make better use of the insulin your blood, although there still discussion as to the mechanism by which this occurs and of the active ingredient in cinnamon that promotes it. Some claim it to be a flavonoid known as methylhydroxychalcone polymer, or MHCP. However, others claim it not to be MHCP, but polyphenol type-A polymer. Whichever it is, many people are finding cinnamon to be effective in reducing high levels of blood sugar to a more manageable level.

Milk Thistle: It is known that antioxidants can help to control blood sugar, and the flavolignins in Silymarin marianum, an herbal extract available from milk thistle seeds, work in this manner. It is also good for protecting the liver from toxins. Although it is not clear how it is done, silymarin appears to help to control Type II diabetes possibly by way of liver digestion of sugars in the blood. The liver processed glucose and improving its function through the consumption of milk thistle could help reduce blood sugar as well. Mulberry: The Chinese make what is known as “sugar control herbal tea” from mulberry leaves, green tea and jasmine. Mulberry leaves contain adenine, pectin and choline, and also high levels of Vitamins A and B types. This tea is used by the Chinese to control blood sugar levels, which might occur through the antioxidant effect of the mulberry constituents.

Salacia oblonga: This is an herb used in India and Sri Lanka that appears to cause a dramatic drop in the levels of insulin and sugar in the blood. It binds to enzymes in the intestine that break carbohydrates down into sugars, and so reduces the amount of sugar in your blood. That in turn reduces the amount of insulin released by the pancreas.

Apple Cider Vinegar: There is evidence that apple cider vinegar can help to control your blood sugar levels if taken before a meal. Just two tablespoons appears sufficient to give a noticeable result. This is one of those home remedies that might be just anecdotal, but might also work, so is worth trying.

Zinc: It has been discovered that diabetics suffer a deficiency in zinc. This mineral plays a part in the storage and production of insulin in your body, and a deficiency could cause an increase in your sugar level. Oysters, pecans, almonds, lamb and chicken are all good sources of zinc.

Glyconutrient complexes: we know that diabetes is an autoimmune disease for type I individuals. Supporting a properly function immune system requires a good diet as well as a diet rich in Glyconutrients. The polysaccharides found in glyconutrient formulas can help the immune system communicate better with the body and just possibly correct some autoimmune diseases which attach our cells.

These are the natural supplements that people are taking to help control their blood sugar and diabetes. It is important that you take nothing that interferes with the medicines given to you by your physician, so you should let your doctor know of any natural supplement that you are using in addition to your prescription medicines. However, it is possible to control your blood sugar with natural supplements, and those mentioned above are just a few of the natural substances available that can help diabetics control their condition and so avoid the side effects.



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Gamma Oryzanol
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Date: August 29, 2008 09:20 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Gamma Oryzanol

Gamma Oryzanol is extracted from rice bran oil, and is a mixture of substances that includes ferulic acid and sterols. It is not restricted to rice barn oil, and is also found in the bran of other grains, and some fruits and vegetables. It is commonly used as a sports supplement, although possesses other uses including treatment of menopausal symptoms and high cholesterol levels.

Athletes use gamma oryzanol to increase their muscle bulk through it increasing the levels of testosterone and other anabolic hormones. Although there is little scientific evidence for these effects, bodybuilders claim excellent results and the other benefits that the substance offers make it worthwhile taking. The reported benefits are so common and widespread that they are difficult to ignore, and it can be assumed that, in the absence of scientific evidence through test results, the athletes and bodybuilders are right until proven wrong.

Gamma oryzanol is reported to promote a number of metabolic effects on the body such stimulation of the Human Growth Hormone that is involved in increasing muscle bulk. It also induces increased release of endorphins, and improves recovery after exercise. Ferulic acid promotes increased strength, reduced fatigue and improved recovery.

The catabolic effect of cortisol is also reduced. Cortisol is produced during exercise and it is destructive to muscle tissue. What this does in practice is to increase your recovery time, and after a long run it can take two days to recover and allow your exercise effectively again. It is important that your body is conditioned to rapidly reduce its cortisol content after exercise, and ferulic acid helps you to do this.

Athletes have reported no side effects from doses of up to 900 mg of gamma oryzanol and 60 mg ferulic acid, which appears to be up to thirty times as bioavailable to the human body as gamma oryzanol. However, there are many more uses of the supplement than just metabolic ones.

Gamma oryzanol possesses strong antioxidant properties. Ferulic acid is a phenolic phytochemical, and a derivative of trans-cinnamic acid. As such, it is an antioxidant with strong reducing properties towards free radicals. Free radicals are implicated in cardiac problems cause by the oxidation of LDL cholesterol, leading to atherosclerosis that is responsible for strokes and blockages of the cardiac arteries.

Lipid peroxides can be formed by the oxidization of fats, and can damage nerve cells and muscle tissue. Antioxidants can also lead to premature aging through the destruction of human body cells, damage to DNA and also many forms of cancer. Although it is believed that components of gamma oryzanol can inhibit the initiation of some cancers, the evidence is still scanty and the research in its infancy.

Any substance that destroys free radicals is of benefit to your health, and Ferulic acid stands beside other strong antioxidants such as Vitamins A, D and E, and many of the high colored phytochemicals such as beta carotene. It is believed to have anti-cancer properties with some forms of cancer, such as breast and liver cancer, though, as referred to above, studies are continuing.

Paradoxically, intensive physical exercise can lead to the generation of more free radicals, since they are a by-product of the generation of energy in the mitoCHONDria from blood glucose, and so, in addition to its beneficial metabolic and anti-catabolic properties, gamma oryzanol should be taken during exercise in order to reduce the effect of these dangerous molecules.

The effect of gamma oryzanol on cholesterol levels has been demonstrated, and complement the same effect offered by the fatty acid component of the bran oil. It appears to prevent the absorption of cholesterol by the digestive tract, and so allow it to be excreted naturally before doing any harm. It is believed that the phytosterols present in rice bran oil block the cholesterol absorption sites in the intestine, so is must continue down the intestinal canal until it is evacuated.

Cholesterol itself is essential to human metabolism and biochemistry, and without it we could not survive. Cholesterol is not soluble in water, and it has to be bound to low density lipids (LDL) to enable it to be transported round the blood to where it is needed: usually in the arteries to heal up arterial damage, a bit like a sticking plaster.

However, free radicals oxidize these LDLs and deposit them along with their cholesterol on the artery walls: that is the problem, not the cholesterol itself, and is why antioxidants such as gamma oryzanol are so important to us. Rice bran oil has been used by the Japanese for many years to treat elevated cholesterol levels and also to reduce high triglyceride levels.

It also acts as an anti-inflammatory, specifically in the stomach and can be used to treat gastritis, in that it reduces the inflammation of the stomach lining. There is some evidence from studies on animals that the substance could be effective in treating gastric ulcers, although the results with animals have not yet been tried on human subjects. Another mechanism, other than the anti-inflammatory route, is through the normalization of the secretion of the gastric juices.

Another use to which gamma oryzanol has been successful put is in the treatment of menopause symptoms. This is another of those situations where some trials have proved unsuccessful, but those that use it has found it be effective. Hot flashes and aging syndromes are two symptoms that have been effectively treated by use of the supplement, with one study reporting a 50% reduction in symptoms in 70% of patients.

The way this is theorized to work is through the inhibition of the secretion of leutinizing hormone by the pituitary gland, which promotes the hypothalamus to release endorphins. Endorphins help to overcome the effects of the menopause.

Gamma oryzanol, then, has found use by many athletes and bodybuilders in its metabolic properties in helping to increase muscle bulk and reduce fat, and by shortening recovery times by reducing the catabolic effect of cortisol. However, apart from these sports-related benefits, it possess antioxidant and anti-inflammatory properties that are beneficial to your general health.

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Garcinia Cambogia
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Date: August 28, 2008 09:33 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Garcinia Cambogia

Garcinia Cambogia is found naturally in India and parts of Asia, and also on the Pacific coast of South and Central America all the way from Peru up to Mexico, and likes a humid forested environment. Also known as Brindall berries, garcinia is believed to act as an appetite suppressant and allows you to lose weight by diminishing your desire for food.

The Malabar tamarind, as it is also known, is about the size of an orange resembling a small pumpkin, and an extract from the fruit and rind is used in several weight loss products. The health risks presented by synthetic diet pills render a natural product extremely attractive were it to be effective. So can Garcia curb your appetite? What is the scientific evidence for it, and what biochemical route would it take?

Although tests on animals have been very positive, human results have been inconsistent. In some double blind tests using a placebo, weight loss was up to three times that of the control, but in others there was no apparent difference between those taking garcinia, and those given a placebo. However, doubts have been raised of the validity of some of the negative tests, so what does science tell us?

The active ingredient in the cambogia extract is hydroxycitric acid (HCA), which is a powerful inhibitor of ATP citrate lyase, an enzyme that catalyzes the reaction between citrate and Coenzyme A to Acetyl CoA and oxaloacetate. Since the acetyl CoA is necessary in the synthesis of fatty acids and lipogenesis (the conversion of glucose to fatty acids), then anything that inhibits the biosynthesis of acetyl CoA must help to reduce the amount of fat stored in your body.

By inhibiting this reaction, that occurs outside the mitoCHONDria so is not a direct part of the Citric Acid Cycle, HCA should theoretically suppress the formation of fats from carbohydrates, reduce food intake and thereby induce weight loss. But that is not the only mechanism.

A study at Georgetown University in Washington found that after 8 weeks of taking the garcinia extract, there was a 5.4% reduction in body weight and body mass index, and a significant reduction in low density lipoproteins (LDL) and triglycerides with an associated rise in high density lipoproteins (HDL). This is good news for those suffering from high cholesterol levels, since the LDL lipoproteins are those that carry cholesterol to the major blood vessels, and which when oxidized by free radicals deposit fatty plaques on the artery walls. These plaques constrict the arteries and the resultant atherosclerosis can lead to cardiac problems and strokes. HDL lipoproteins carry cholesterol back to the liver for destruction, and is known popularly as ‘good cholesterol’.

The studies also indicated modifications to certain indicators of the status of fat deposits in the body and of appetite modifiers in the brain. In this respect they found 38% decreases in serum leptin and increases in serotonin levels of 44%, and the excretion of fat metabolites in the urine increased from between 32% and 104%.

These are significant findings, and further research has indicated that HCA helps to suppress appetite. Serum leptin is an indicator of the level of fat stores in the body, and as the leptin levels in the blood reduces, the hypothalamus is given an instruction to increase the appetite so as to increase the fat levels again. However, it is believed that HCA possesses leptin-like properties, and this signal is either not generated or is modulated.

The increase in serotonin has the same effect. It is known that serotonin controls the appetite, although the exact mechanism has not yet been established. What is known is that serotonin activates certain neurons and melanocortin-4 receptors (MC4R) in the brain, that not only curb appetite but also block the effect of other neurons that would normally increase appetite by blocking the effect of MC4Rs.

This is how the banned anti-obesity and serotonin inciting drug Fen-Phen operated, and it appears that the hydroxycitric acid in garcinia cambogia extract acts in a similar, but safer, way. The problem with drugs such as Feb-Phen was that they created cardiac problems which could be dangerous to obese people whose hearts might have been weakened.

However, now that the biological pathway by which serotonin controls weight is believed to be known, if not fully understood, the way is becoming clearer as to how safer weight loss pills, acting through appetite suppression, might be developed. It also provides a valid scientific explanation for the effect of garcinia cambogia extract which might in itself prove to be that safer way.

The biochemistry supports the evidence of its effect on those wanting to lose weight, and also bolsters the claims that those tests and trials found to be negative were in some way flawed. Until the full chemical pathway is understood, the factors that can lead to flawed tests are unknown, although one could be the use of excessive fiber in some trials that could reduce the effect of the extract.

One of the effects of HCA is to limit the ability of your body to convert carbohydrates into fat (the Acetyl CoA inhibition mentioned above). That, combined with suppression of your appetite and a higher rate of thermogenesis, prevents the body from storing excess carbohydrates as fat. Instead you will have increased energy levels, so you should exercise to use this up while taking garcinia extract. For this reason it is popular with athletes and bodybuilders seeking an energy source that has not yet been banned from sport.

Although diet pills based on the same principle had side-effects and could make the user feel on edge, there are none known with garcinia. However, it is possible to reduce the absorption of some essential nutrients due to appetite suppression, so do not exceed the recommended dose. An excessive amount can also led to gastric discomfort, but none of these effects have been noted when the recommended doses have been adhered to.

However, if you are diabetic, pregnant or a nursing mother, you should consult with your physician or health professional before taking the extract. Garcinia Cambogia presents no specific risk to such people, and this warning should be given for all non-prescriptive treatments that your physician might be unaware of you taking.

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Coconut Oil
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Date: August 18, 2008 12:01 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Coconut Oil

Whether coconut oil is good for weight loss or not, it is becoming an increasingly popular component of a weight loss diet. So how justified is this in view the fact that fats and oils are not normally regarded as being the best form of food to take if you want to lose weight?

Apart from any other considerations, fats are actually very important components of any diet. Consider, for example, how many vitamins are fat soluble: vitamins A, D, E and K are all fat soluble, and without fats in your diet vitamins would not be able to circulate and be taken to where they do most good. Fats are also essential building blocks for hormones and cell membranes. In short, you cannot survive without fats. Coconut oil is a fat.

In referring to coconut oil here, we are discussing virgin oil, not the refined form that is high in cholesterol. Refined, or processed coconut oils, is hydrogenated, which renders it more in nature to the longer chain fatty acids. Virgin coconut oil contains what are known as medium chain fatty acids (MCFA), which are easily metabolized by your liver into energy.

The longer chain fatty acids, also called triglycerides, are not easily broken down into smaller components, and tend to be stored in the body as fat. This fat can be particularly dangerous if stored round the midriff, and so long chain fatty acids are dangerous to your health. This does not apply to MCFAs, and a possible mechanism for this is discussed later.

An inability to distinguish between the different types of fats and oils in your diet is largely due to a lack of education in the chemistry of fats, and the lumping together of all fats and oils under the 'fatty' flag. Perhaps it is the use of the word 'fat' for the overweight condition and the fact that the triglycerides and other chemicals are known generically as 'fats' that triggers a connection between the two, but although this is logical, and in some cases justified, it is not always the case. There are fats and fats, just as there are lubricating oils and greases, and edible cooking oils and greases.

The fatty acids in coconut oil are composed of relative small carbon chain lengths. Caprylic acid and capric acid contain 8 and 10 carbon atoms in the backbone compared to the 18 of the stearic acid that is commonly contained in animal fats. The longer the carbon chain in the molecule, the more difficult it is to break down, and the more likely it is to be stored in the body as a dense fatty deposit that places a strain on the heart.

Due to the shorter chain length the medium chain fatty acids hold less energy per unit weight. Apart from any other reasons then, coconut oil contains fewer calories than other fats and so if used as the bulk of your fat requirement, will be less liable to generate body fat. Not only that, but as inferred earlier, due to the smaller molecule these calories are more readily released as energy for use by your body rather than stored unused.

However, that is not the whole story on either count: coconut contains saturated fats, and also monounsaturated and polyunsaturated fats, although in small quantities. These, however, are present in only small amounts, although would still be expected to undergo oxidation and produce the rancid taste commonly found in aged unsaturated oils and fats. However, even after a year this does not happen, which indicates that coconut oil possesses some form of antioxidant properties. This is confirmed by the fact that people eating a diet rich in coconut oil has less of a need for the strong oil-soluble antioxidant vitamin E.

In fact, the metabolism of fats is usually connected with the carnitine transport system in the mitoCHONDria, although the shorter chain fatty acids do not need carnitine for their metabolism. What happens then is that because carnitine promotes oxidation during stress, and causes oxidative damage to body cells, its absence in metabolism of coconut oil fatty acids results in a reduction in the oxidation that degrades unsaturated fats. Hence the lack of rancidity.

Taking this further, then, this lack of oxidation infers that those that take a diet rich in coconut oil (for example using it for cooking rather than animal and vegetable oils containing longer chain fatty acids) should be partially protected against cell oxidation in general. Oxidative effects such as aging, cardiovascular diseases and some cancers should be reduced, and studies have shown this to be the case. Those consuming coconut oil rather than other oils tend to age more slowly, suffer less from heart disease and tend to experience fewer incidences of cancer.

With regard specifically to weight loss, it is believed that consumption of medium chain triglycerides, as opposed to longer chain triglycerides, results in a higher rate of thermogenesis, or the conversion of carbohydrates to energy (fats are also carbohydrates). The first step in this process requires the presence of Coenzyme A in the form of the enzyme acyl-CoA-dehydrogenase, and measurement of the activity of this enzyme has indicated that medium chain triglycerides exhibit much higher expenditure of energy than the metabolism of long chain triglycerides when being converted to fatty tissue. However, though the energy used up in this reaction, known as lipogenesis, was higher, the formation of fatty tissue was the same.

Hence, MCA uses more energy to produce the same amount of fat as LCA, and therefore, although more energy is used up, no new fat is generated by the liver. Since your dietary fat intake can ultimately have only three fates: burned as energy, stored as the emergency energy source glycogen, or deposited as fat, then it is logical that the more energy generated then the less fat will be stored.

In this way, coconut oil, with a high content of medium chain fatty acids, has a scientific explanation for causing weight reduction when used as a source of fat in the diet rather than animal or other vegetable fats or oils. It is converted to energy rather than fatty tissue, and if you exercise to use up that energy then your weight loss can be significant.

What this theory also states, however, is that coconut oil should be used as a replacement for other fats, and not in addition to it. If you take coconut oil in addition to your normal diet, do not expect to see results.

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Vitamin C
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Date: August 12, 2008 01:37 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Vitamin C

Vitamin C is the most widely taken nutritional supplement on the market and is available in a variety of forms, including tablets, drink mixes, crystals in capsules or bulk powdered crystals. Vitamin C is present in mother's milk and, in lower amounts, in raw cow's milk, with pasteurized milk containing only trace amounts. This vitamin is most present in the liver and least present in the muscle but needed through out the body.

Vitamin C is required for the synthesis of collagen, an important structural component of blood vessels, tendons, ligaments, skin, and bone. Vitamin C can regenerate other antioxidants such as vitamin E; in the body vitamin E can regenerate C as well. This vitamin is required for the growth and repair of tissues in all parts of your body. Relatively large doses of vitamin C may cause indigestion, particularly when taken on an empty stomach.

It has been shown that smokers who have diets poor in vitamin C are at a higher risk of lung-borne diseases than those smokers who have higher concentrations of Vitamin C in the blood. Biological tissues that accumulate over 100 times the level in blood plasma of vitamin C are the adrenal glands, pituitary, thymus, corpus luteum, and retina.

Studies suggest the presence of large quantities of sugar either in the intestines or in the blood can slow absorption of this vitamin. Several studies have demonstrated a blood pressure lowering effect of vitamin C supplementation. Also, when consumed in high doses it appears to interfere with the blood thinning effects of warfarin by lowering prothrombin time, as noted in case reports in the 1970s so consult your doctor if on medications..

In one Study, researchers instructed patients with documented coronary artery disease to take a single oral dose of either 2 g vitamin C or a placebo. Results, the researchers discovered that high doses of vitamin C can help prevent blood platelet sticking and fight cholesterol oxidation. Also, researchers discovered this vitamin can reduce the formation of potentially carcinogenic nitrogen-containing compounds in the stomach, offering protection from stomach cancer, researchers have reported.

French and German researchers found that vitamin C appeared to keep cells in the blood vessel wall from dying. The researchers, who studied immune indicators, such as serum immunoglobulin and neutrophil phagocytosis (how well your white blood cells can engulf and digest foreign bodies), concluded that vitamin C exerts a remarkable immuno-modulating action, in other words, improved immune function in all those who consumed vitamin C on a regular basis.

What are deficiency symptoms for vitamin C?

Scurvy is a disease resulting from lack of vitamin C, since without this vitamin, the synthesized collagen is too unstable to perform its function. Scurvy was common among those with poor access to fresh fruit and vegetables, such as remote, isolated sailors and soldiers. The amount of vitamin C required to prevent “chronic disease” appears to be more than that required for prevention of scurvy which is 30 – 60 milligrams per day. Based on scientific research, vitamin C also appears to improve oral absorption of iron, which is good news for those that are anemic.

Half of us in the United States will die from heart disease. The foundation of heart disease is atherosclerosis, the narrowing of our arteries with plaque. Treatment with vitamin C has consistently resulted in improved dilation of blood vessels in individuals with atherosclerosis as well as those with angina pectoris, congestive heart failure, high cholesterol, and high blood pressure. Researchers believe this protection from cell death could explain previous study findings which suggest that vitamin C benefits blood vessel function in people with congestive heart failure.

Vitamin C supplements are also generally regarded as safe in most individuals in recommended amounts, although there are rarely reported side effects including nausea, vomiting, heartburn, abdominal cramps, and headache. In addition, this vitamin is required for the synthesis of l-Carnitine, a small amino acid that is essential for the transport of fat to cellular organelles called mitoCHONDria, for conversion to energy. If you have chronic fatigue syndrome, vitamin C may help by boosting energy production through the mitoCHONDria.

Therefore, as in many studies of vitamin C intake and cardiovascular disease risk, it is difficult to separate the effects of vitamin C on stroke risk from the effects of other components such as diet and the consumption of fruits and vegetables. As with all dietitians an emphasis on the benefits of a diet rich in fruits and vegetables is important to maintain a healthy cardiovascular system. If one can not consume fruits and vegetables on a daily basis then supplementation of vitamin C is need in either capsule of tablet to fight the risk of disease.

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What is Alpha Lipoic Acid?
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Date: July 18, 2008 12:36 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: What is Alpha Lipoic Acid?

You can be sure that a supplement has some remarkable therapeutic possibilities when it makes headlines on the five o’clock news. A recent experiment which showed the conditions of rats that had been fed a diet that was totally deficient in vitamin E tested alpha lipoic acid, which caused the rats to return to full health even though no vitamin E was replenished. The results of this test are profound, as giving these rats an alpha lipoic acid caused existing stores of vitamin E that the body was previously unable to use to be regenerated.

Alpha lipoic acid is a vitamin-like antioxidant that has been used in Europe for a long period of time. It has recently emerged as an extremely impressive therapeutic agent that scavenges free-radicals. Recent studies have suggested that it has the ability to stop some degenerative diseases, the oxidative process of aging, and restores the health of diseased organs. Additionally, it has the ability to make up deficits of vitamin E or C and could potentially be one of the best treatments that have emerged for diabetes. Alpha lipoic acid (ALA) is considered to be more potent than vitamins E and C, as well as coenzyme Q10. Unlike other antioxidants, ALA has properties that make it superior because it is able to replace certain nutritional supplements, while potentiating others, and inhibiting tissues from deterioration that is associated with diseases. This supplement is also both fat and water soluble, which allows it to protect lipid and aqueous cell structures.

Alpha lipoic acid is a compound that is synthesized in small amounts in the body, but can also be supplied from food or supplement sources. A vitamin-like substance, it contains sulfur and also plays a crucial role in energy reactions. It can be found in liver, yeast, spinach, organ meats, broccoli, red potatoes, and red meat. When it is orally ingested, alpha lipoic acid is not compromised in the GI tract or the liver.

Numerous studies have been conducted on ALA, all of which confirm its positive effect on metabolic processes, with recent clinical tests supporting its ability to enhance free-radical protection, slow the aging process, and guard against a variety of degenerative diseases. ALA was discovered in the 1930s, where it was originally classified as a vitamin, and later categorized as an essential coenzyme when scientists discovered that it was involved in the energy processes of cell mitoCHONDria. It wasn’t until 1988 that scientists found that it also has powerful antioxidant effects.

Alpha lipoic acid is important because it protects us from free-radicals which are present in a body as a result of the number of toxic substances such as auto exhaust, tobacco smoke, pollution, preservatives, and additives that we are exposed to on a daily basis. These free radicals can actually accelerate the aging process, causing premature tissue breakdown to occur. Additionally, our environment will continue to surround us with these pollutants that create free radicals.

There are things we can do to minimize our health risks, which include exercising, eating nutritiously, and not smoking. However, these measures are rarely enough to decrease our risk for certain degenerative disease a substantial amount. ALA is beneficial because it scavenges oxidants that are left behind and helps to convert carbohydrates, fatty acids and protein to energy that is needed to drive muscle movements.

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Antioxidants For The Body
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Date: June 10, 2008 11:27 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Antioxidants For The Body

Eating the fruits and vegetables that naturally contain antioxidants is the best way to get them into your system. Mixing them into a well-balanced and healthy diet is the best method of all. This way you reap the benefits of all of the antioxidants in a natural combination.

The benefit of dietary antioxidants is that they slow the chemical process of oxidation. This oxidation is what causes narrowing of the arteries and heart-related health problems due to cholesterol deposits. Eating a regular variety of herbs, vegetables and fruits that contain antioxidants is the best way to maintain good health. Some foods that contain antioxidants include:

* Tomatoes
* Garlic
* Onions
* Rosemary
* Grapes
* Pomegranates

Antioxidant supplements are available, lab testing have shown that they are just as effective as their natural counterparts. Natural foods contain ranges of antioxidants that work together synergistically. These combinations of antioxidants are much more effective.

More Benefits:

Antioxidants and other nutrients are needed by the body to protect against cell damage. They also may reduce the risks of certain forms of cancer.

It has been discovered that the mitoCHONDria (cell power plants) are a major source of oxidant production. They are also a target for the damaging effects of the very oxidants that they produce. This is a major cause in the advancement of cellular aging, called apoptosis.

It is believed that in apoptosis, each cell has a fixed number of cell divisions that it is capable of. After the cell has used its allotted number of divisions, it ceases to function. Oxidative damage is also a contributing factor of DNA mutation, which causes further malfunction of the cells.

Most Common Antioxidants:

The following is a list of the most common antioxidants, what benefits they offer and where to find them:

*Beta-carotene keeps the skin healthy and promotes growth and development of bones. It also helps to prevent night blindness and fight infection. Beta-carotene is found in vegetables and fruits: carrots, cantaloupe, apricots, broccoli, peppers, tomatoes, spinach, sweet potatoes and pumpkin.

* Vitamin C destroys free radicals inside and outside cells. It helps in the healing of wounds, preventing bruising, formation of connective tissue, iron absorption and keeping gums healthy. Vitamin C is being studied for its beneficial effects in reducing cataracts, cancer and heart disease. Foods high in vitamin C include tomatoes, citrus fruits and juices, berries, mango, papaya, peppers, cabbage, spinach, broccoli and potatoes.

* Vitamin E acts as the essential fat protector in cell membranes and red blood cells. It reduces the risk of heart disease, cancer and other diseases associated with age. Vitamin E is found in peanut butter, nuts, seeds, vegetable oils, margarine, whole grains, wheat germ, salad dressings and avocado.

* Selenium helps the body maintain healthy hair and nails. It also enhances immunity and, along with Vitamin E, prevents cell damage. Vitamin E reduces the risk of cancers, especially prostate, lung and colorectal. The best sources of Selenium include brazil nuts, garlic, meat, eggs, poultry, seeds, seafood and whole grains. The amount of selenium found in plants depends on the soil content in which they are grown.

Antioxidants benefit the body by providing a layer of protection for the tissues and cells. They are the front line of the body's protection against free radicals. Free radicals are unstable by-products of oxygen that cause premature aging and degenerative diseases. They also come from environmental sources, such as pollution, UV rays and other toxins. Foods rich in antioxidants help to clean free radicals from the body. They also help to prevent various age-related diseases, cancers and heart disease.

Maintaining a healthy, nutritionally balanced body that has the ability to fight disease and infection is a prime way to live a long, disease free and happy life. Regular ingestion of antioxidant rich foods or supplements is the best method to achieve this.

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Other Uses
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Date: May 29, 2008 12:35 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Other Uses

The Japanese have used deer antler velvet for years in treating male sexual dysfunction. Chinese medical practitioners have prescribed it to men for impotence and to women for infertility and frigidity. In the United States, it is promoted as a sexual energy booster and an aphrodisiac. Studies are ongoing to determine if these are legitimate claims. Other studies are building evidence that deer antler velvet may also be helpful in:

* Cancer prevention * Drug addiction support * Immune system support * Liver protection * Osteoporosis treatment * Pain control * Sports performance

Deer antler velvet, which has been found to contain cartilage, is also being studied for it effectiveness in treating arthritis. It is being promoted as an effective treatment for osteoarthritis. This is usually caused by physical injury or is a result of the aging process. The main cause of osteoarthritis is the breakdown of cartilage in the joints. Joints that are usually most affected are in the hands, knees, back and hips.

Recent studies are showing that deer antler velvet contains nutrients that are important to the immune system and the joints. Some of these include calcium, phosphorus, prostaglandins, CHONDroitin and glucosamine sulfate.

In patients suffering from osteoarthritis, the administration of deer antler velvet has led to reduced joint pain at three and six month intervals. It has proven to be safe to take in conjunction with prescription arthritis medications.

As with any natural or herbal product, quality is the key to finding a good and helpful source of deer antler velvet. Because it is not a synthetic product, quality and effectiveness may vary between batches and suppliers.

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D-Ribose
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Date: May 17, 2008 10:07 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: D-Ribose

Discovered by Phoebus Levene in 1905, D-ribose is a monosaccharide, and is a component of RNA that is needed for genetic transcription. It is a stereoisomer of ribose, and although not regarded as an essential nutrient since it is synthesized in the body, it is essential for life. It also takes part in human metabolism, helping to generate energy from food, and is a component of all living cells – animal or vegetable. It is contained in ATP and NADH and we could not live without it.

Because it is contained in all living organisms, D-ribose is a common component of the human diet, and required as a supplement only for specific needs. It for this reason that the human species developed and survived: the chemicals needed for life are either commonly found in nature or are manufactured by the body itself from other raw materials which themselves are common in our diet. The other stereoisomer is L-ribose, and this plays no part in human metabolism.

Energy is needed not only to enable us to walk and to run, but also to drive every part of human physiological activity, and all of the physical and chemical processes of life. Because of its nature energy cannot travel round the body in our bloodstream as if were a chemical entity, but must be released or generated where and when it is needed. For that reason every cell in our body contains an area called the mitoCHONDria in which energy is generated. The molecule of energy, if there is such a thing, is called ATP, or adenosine triphosphate.

ATP controls the production of energy everywhere in the body, and allows muscles to contract and relax. This muscular activity is responsible for all movement, including the circulation of our blood through heart contractions, the diaphragm movement that creates the vacuum that allows us to breathe, and the operation of the digestive system by means of the peristaltic motion of the esophagus and the intestines. Each of the two ways in which ATP is generated involves D-ribose.

One is by means of D-ribose being used to produce new ATP, and the other is the recycling of used ATP. In the latter, D-ribose and ATP react to form ADP (adenosine diphosphate and D-ribose-5-phosphate with the release of energy. This diphosphate then reacts again with the ADP to produce new ATP and D-ribose. The reaction is catalyzed by an enzyme known as a ribokinase, a phosphotransferase that specifically catalyzes reactions involving phosphorus groups with an alcohol receptor group.

The heart muscle is operated by means of the calcium pump that depends upon both calcium and ATP for its operation. When ADP and phosphate are created by the effect of calcium and ATP coming together, then energy is provided to the muscle fibers of the heart. ADP then reacts with the phosphate and D-ribose in the presence of magnesium to reform the ATP. ATP is therefore essential for the continuation of the pumping action of the heart that maintains life in all mammals.

D-ribose is also part of the base of RNA and DNA, without which there could be no life. Because the cardiac muscle is easily depleted of ATP, the presence of D-ribose is of extreme importance and it has been proved that cardiac failure begins with the reduction in energy levels of the heart muscle that can be brought about by a lack of ATP in the muscle cells.

An important property of D-ribose is that it is unchanged by the liver, which is the chemical plant of your body in which a large part of the biochemistry needed for life takes place. This means that D-ribose can be taken in the diet and pass through the liver virtually unchanged, and then be transported in the bloodstream to where it is needed for the maintenance of ATP levels. That is why D-ribose is frequently given to treat heart attacks: because it can rapidly replace lost ATP and enable the calcium pump to get to work and keep the heart beating at its normal strength. Maintenance levels of this important sugar would not go amiss.

However, there are other uses to which the body can put this marvelous substance. Among these is the body’s ability to form Coenzyme A from it. This coenzyme is needed in the body for the breakdown of fatty acids, and many other chemical reactions, and also provides the raw material for many other necessary substances in human biochemistry.

Patients with low energy levels can frequently fail to be able to recover from illness. This is because that when illness stresses your body, your mitoCHONDria become overwhelmed with work and begin to fail to produce sufficient ATP to keep the body going. Naturally, as your energy level drops, and your body cells are unable to respond to this, then the condition you are suffering from gets worse, and become stronger leading ultimately to possible death. Your immune system is put under a great deal of stress that uses up what little ATP you have left.

That is why when people start to get really ill, they tend to fade very rapidly: not because of the spread of the disease, but through a reduction in the ATP needed to provide the energy required for the body to fight the disease. Without an adequate supply of energy, your body would rapidly fade.

By taking a D-ribose supplement that passes unchanged right into your bloodstream and taken to where it is needed most, you body can rapidly generate sufficient ATP to keep up the fight against the agent that is making you ill. Your immune system is given a massive energy boost, and more importantly, your heart is kept beating. D-ribose is the answer to the prayer of many sick people, and also to athletes and bodybuilders needing quick bursts of energy. But what did they use before D-ribose was discovered to have the properties that it has?

At one time, it was adenosine monophosphate (that’s right, not ATP or ADP, but AMP) that was administered intravenously to those suffering from chronic fatigue, this substance being synthesized to ATP in the body over a period of time. However, it take a lot of time to be effective, and the injections had to be made daily into the muscle tissue, so it fell out of favor.

Then came an ATP supplement that could be taken orally, but the side effects were unpleasant, and that too went out of favor. However, towards the end of the 1990’s D-ribose was found to overcome all of these disadvantages, and not only be able to be taken orally, but also to work almost immediately by providing the mitoCHONDria with a direct source of the sugar they need to generate energy.

It is now one of the most popular energy providing supplements on the market, and also a remedy for chronic fatigue that helps the patient to overcome energy-sapping medical conditions both directly and by providing the immune system with the energy needed to keep it operating effectively against masses of invading bacteria and viruses. There is nothing better than D-ribose for providing you with the energy boost that you need, whenever you require it, either to provide energy for your sport or to help you overcome illness.

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Copper
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Date: May 15, 2008 01:21 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Copper

Copper is an essential trace mineral necessary for life, and it is necessary for the proper function of certain enzymes that allow certain biochemical functions of the body to take place. Without copper neither plant nor animal life would be possible.

Dietary sources include nuts, grains, seeds, beans and other vegetable protein sources. Although it is also obtained from animal sources, these tend to be rich in zinc, and for reasons that will be discussed shortly, the presence of zinc can deplete copper absorption. Other common sources are copper cooking utensils and drinking water from copper pipes. After digestion, copper is absorbed into the body through the stomach and the small intestine. It is also possible for copper to be absorbed through the skin from copper bracelets.

Once absorbed, copper is bound to albumin and taken by the blood to the liver, where it is bound to a plasma protein known as ceruloplasmin. Among the enzymes with which copper is associated as a ‘helper’ are Cytochrome C oxidase, used in the conversion of glucose to energy, Dopamine hydroxylase, an essential component in the biochemical production of adrenaline, and superoxidase dismutase, that protects against the oxidative damage of cell tissue. Of particular benefit are its anti-inflammatory and antioxidant properties, and its role in energy production. Because of its antioxidant effect, copper could well play a very important role in protecting against atherosclerosis, and cardiovascular disease, the ravaging effects of free radicals on body cells and also certain forms of cancer.

Copper is also important in electron transport, and is responsible for the blue coloration of the blood of most molluscs and many arthropods. This is because rather than hemoglobin, these animals use the copper-based hemocyanin for oxygen transport in the blood. Rather than the iron-containing hemoglobin making the blood of these creatures red as it is with mammals, theirs is blue due to the hemocyanin. Copper salts are generally green and blue, as are the blue copper proteins plastocyanin and azurin.

So how is copper used by the body? It is, after all, fairly toxic, as little as 30 grams being fatal to humans, bringing on similar symptoms to those of arsenic poisoning. It is in fact the reason for its toxicity that also renders it so useful to the body. The toxicity is largely due to the ability of copper to accept and donate electrons as it changes between oxidation states. This results in the generation of very reactive radicals that can cause severe oxidative stress. The complete reason for its toxicity has yet to be determined, but the stress caused to body cells by free radical oxidation is a very serious condition.

It is this rapid change in its oxidation state that is valuable to the enzymes with which it is associated. The ceruloplasmin is responsible for most of the transport of bivalent copper around the body, in the tissues of which it helps to form the bivalent copper enzymes previously mentioned, such as Cytochrome C oxidase and Lysyl oxidase. In doing so the copper is converted to the monovalent state.

It also helps to aid in the production of the strong antioxidant Superoxide dismutase (SOD). What this enzyme does is to catalyze the formation of oxygen and hydrogen peroxide by the dismutation of superoxide, a negative ion consisting of two oxygen atoms and a free electron, and hence a very powerful free radical. Dismutation is the simultaneous oxidation and reduction of the species, rendering the free radical relatively harmless. This type of action on free radicals is a very powerful one, and essential in the body’s fight against such free radical species that are so dangerous to animal cells.

SOD exists in more than one form, and can also contain zinc, manganese and nickel in addition to copper. The internal fluid (cytosol) of practically all eukaryotic cells (cells containing a nucleus) contain a form of Superoxide dismutase dependent on copper and zinc, while most mitoCHONDria contain an SOD with manganese.

Another of the important uses that your body can find for copper lies in the production of hemoglobin. This is because copper is needed for the storage and release of iron to produce hemoglobin, the protein in red blood cells. It is believed that ceruloplasmin is involved in the catalytic formation of ferric iron by the oxidation of ferrous iron, so allowing the iron to be attached to a protein that transfers it round the body to enable its use in the biosynthesis of various ferrous compounds, especially of hemoglobin.

Copper bracelets are commonly worn by arthritis sufferers, and there is a scientific explanation for that. As previously inferred, it is believed to be possible to absorb copper through the skin and copper is known to be involved in the formation of collagen and is a commonly used treatment for arthritis and osteoporosis. Part of its effect on arthritis is likely due to the antioxidant effect of the SOD that helps to reduce the inflammation at arthritis sites.

Although a deficiency in copper can lead to serious health problems, an excess is also harmful. Potential conditions include neurological problems, liver damage and bone abnormalities, although deficiency is far more common because of the competition between copper and zinc. Zinc is a copper antagonist, as is iron and manganese, and copper imbalances can be moderated by the use of these as supplements.

The symptoms of a copper deficiency include fatigue, hair loss, stunted growth, anorexia and a host of other conditions. Luckily, however, a deficiency is rare and most people receive a sufficient amount of copper in their diet. Supplements are available to ensure an adequate intake.

There is still much to be learned about the interaction between copper and enzymes, and there is also a great deal still to be learned of its role in human metabolism and biochemistry than is currently known. However, sufficient is known already for us to be certain that copper is a very important trace element and that we should be certain that our intake is sufficient, given that zinc iron and manganese compete to prevent copper being absorbed by the body.

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Lipid content by percentage
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Date: May 13, 2008 04:54 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Lipid content by percentage

Phosphatidylcholine (PC) 68% Assists in the introduction of DHA into the or Marine Lecithin heart muscle. Protects the mitoCHONDria from oxidative damage, decreasing the impact of auditory and visual aging.

Phosphatidylethanolamine (PE) 11% Combined with PC, helps in the building of the myelin sheath.

Phosphatidylserine (PS) 9% The most widespread of all membrane PLs, protects from ischemic attacks (stroke) or age-related dementias.

Phosphatidylinositol (PI) 5% Acts on the regulation of cellular calcium. Has shown its effectiveness on obsessive compulsive disorders, panic attacks, depression, manic depression and Alzheimer’s disease.

Sphingomyelin (Sph) 5% Its pro-apoptotic activity decreases the risks of coronary hear t disease and cancer of the bowel (colon). Decreases parietal cell toxicity of bile salts. Sphingolipids are mostly present in the myelin sheathes.

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B Vitamin Supplements
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Date: May 07, 2008 03:18 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: B Vitamin Supplements

The fact that B vitamins have had to be coenzymated before they can be used by your body has been known for some time, but it is only over the past few years that they have been made commercially available in that form. Before we discuss the B vitamins in their coenzyme form it might be appropriate to discuss what coenzymes are and how they differ from ordinary enzymes.

An enzyme is like an organic catalyst: it takes part in biochemical reactions by allowing such reactions to take place, but itself remaining unchanged. All enzymes are proteins formed in your body from amino acids and other protein material. A coenzyme, on the other hand, is somewhat like an enzyme for the enzymes, in that it is needed for the enzyme to do its job. Without a coenzyme, many enzymes could not promote the biochemical reaction it is responsible for.

The B vitamins are all water soluble, which means that they are readily excreted and it is not impossible that if you take a B vitamin supplement, the whole lot will be immediately excreted in your urine if not used by your body. Whether they are or not it is a fact that your body can quickly become depleted of the B vitamin group, especially if you drink a lot. Alcoholics in particular are frequently vitamin B deficient. Although the liver can store unused vitamin B, they are only very small quantities and insufficient to prevent a deficiency.

A deficiency in the B vitamins can cause a wide range of unpleasant conditions that are rapidly remedied with supplements. Pellagra is due largely to a deficiency in Vitamin B3, and causes hair loss, horrible skin lesions and many other side effects that you don’t want to know about. Vitamin B12 deficiency can cause loss of memory, and is common in alcoholics and some vegetarians (vitamin B12 is animal derived). Other symptoms of a general B vitamin deficiency include exhaustion, heart palpitations, fibrillation, anxiety, restlessness, attention deficit disorder and many, many more.

It is not pleasant so you make sure that take enough vitamin B in your diet: dietary sources are far superior to pills although supplements will help you get over the symptoms of the deficiency until your diet takes over. Supplementation is also a good way to maintain a regular supply of vitamin B complex irrespective of your diet. The effects of a deficiency are so bad that a regular supplement is well worth taking.

However, back to coenzymes and why they are needed for the metabolism of B vitamins in your body. Most B vitamins are, in fact, coenzymes themselves. Keep in mind that the definition of a vitamin is an organic substance that is essential for the normal health of your body. If you lack even one vitamin, your health with suffer and eventually you will be likely to die. That describes all of the B vitamins perfectly, and they also just happen to be coenzymes. This is not coincidence, of course, and their biochemistry must have been recognized before the concept of coenzymes was formulated.

The B vitamins proper consist of eight distinct proteins: B1 (thiamine), B2 (riboflavin), B3 (niacin), B6 (pyridoxine), B9 (folic acid), B12 (cyanocobalamin), and biotin and pantothenic acid. They are all essential components in human and animal metabolism, and most are also coenzymes.

Every cell in your body depends on B vitamins for its existence, which is why pregnant women should include a good supply of them in their diet, especially folic acid (B9). They are essential for the cellular development of the fetus. Folic acid is necessary for the synthesis of nucleic acids that allow cell growth and the production of red blood cells. However, not one can be placed in importance above any other since they are all essential.

With respect to the coenzyme factor, the vitamin B coenzymes are responsible for many of the biochemical reactions upon which life depends. Coenzyme B-12 for example is essential for two types of reaction that it catalyzes, one being a hydrogen atom exchange with alcohol and amine functional groups, the other being connected with methyl group transfer between molecules.

In humans, the first of these is responsible for an essential step that results in energy being metabolized from fats and proteins in the mitoCHONDria and the second for DNA production in cells that is indirectly responsible for growth. Each of these is why a vitamin B-12 deficiency leads to excessive fatigue and also a lack of fetal growth (although folic acid can make up for the latter deficiency).

Thiamine (Vitamin B1) is a coenzyme for the metabolism of carbohydrates to energy. In the body it is present in the form of thiamine diphosphate, a coenzyme that assists in the decarboxylation of pyruvate as part of the citric acid cycle, otherwise known as the Krebs Cycle, that takes place in the mitoCHONDria and is responsible for the generation of energy through aerobic respiration.

Another coenzyme that is involved in the Krebs Cycle is formed in the body from Vitamin B3, or niacin. This coenzyme, nicotinamine adenine dinucleotide, has a redox potential and can store energy for use later on. Vitamin B5 can be converted in the body to Coenzyme A that not only breaks proteins down into individual amino acids, but also takes part in the first part of the Krebs Cycle. There is a common pattern emerging here where the B vitamins have an important part to play in the generation of energy from fats and carbohydrates.

Similarly, Vitamin B6 is present in the body as the coenzyme Pyridoxal 5'-phosphate that helps to break down the body’s emergency energy store, glycogen, into energy when needed.

In these ways, and more, the coenzymes created in the body from the B vitamins help many of the reactions of life to take place, and without these coenzymes life could not exist. Hence the importance of the B vitamins themselves, and any deficiency could be disastrous to the metabolic processes that generate energy and keep you alive. It is not just the energy needed for exercise and normal human activity that will be compromised, but also that which keeps the heart beating and your diaphragm moving to allow you to breath.

Without a doubt, a Vitamin B supplement is one of the most valuable of all the vitamin supplements, and they are available in many forms. You might also find some of the B vitamins in their coenzyme form, though some of them may be unstable. However, whatever form they are taken in, Vitamin B complex should be one of the first on your vitamin supplement shopping list.

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Shark Cartilage
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Date: April 30, 2008 03:03 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Shark Cartilage

Sharks do not have skeleton of bone but of cartilage, which is a dense form of connective tissue. Its main components are cells known as CHONDrocytes that are responsible for producing collagen fibers, an elastic protein called elastin that is responsible for the skin returning to its original shape after being pinched, and ground substance that is rich in proteoglycan, a protein with glycosaminoglycan chains.

Shark cartilage is said to be beneficial in the treatment of many conditions including arthritis, psoriasis (allied to arthritis), rheumatism, eczema, acne, allergies and the most controversial – cancer. It is said to inhibit tumor growth by inhibiting angiogenesis – the formation of new blood vessels by growing them from old ones. This can lead to metastasis, or the spread of cancer between organs and also feed the cancer cells with blood.

Shark cartilage has been used medicinally for thousands of years, particularly in ancient China where its use is documented, and might also have been in other areas where the consumption of fish was high. However, the production of shark cartilage and its trade is not well documented. The major cartilage consuming countries are Australia, India, Japan and the USA, although it is used or consumed in many other countries, especially Hong Kong, Taiwan, China and, increasingly, Europe.

The best quality of cartilage is from the blue shark due to its higher CHONDroitin quality. Chemically, CHONDroitin is an acid mucopolysaccharide, and a very large molecule that is used for a variety of purposes. In arthritis it is difficult to get it to the source of the problem due to its physical size and large doses are used to ensure that at least a proportion passes through the capillaries to the joints.

Arthritis is a particularly prevalent disease and comes in two forms: osteo- and rheumatoid arthritis. Osteoarthritis develops over a long period of time, and generally the cartilage roughens and becomes thin, while the bone becomes thinner. Extra synovial fluid, that lubricates the joint, can be formed and that causes swelling. The bone tried to repair itself, but degeneration continues and the tendons become affected. Eventually inflammation can occur leading to severe swelling and pain. There are several causes, the most common being injury or repetitive hard use of the joints.

Rheumatoid arthritis, on the other hand, is completely different, and is caused by the immune system rather than wear and tear. The immune system mistakes parts of your joints as being foreign, and attacks the synovial membrane, or lining of the joint. It might also attack the sheath around the tendons. This eventually causes the cartilage to thin and the joints to wear, and the inflammatory response can cause painful inflammations. There is no apparent cause, though heredity, lifestyle and hormones might all be connected.

The effect of shark cartilage on arthritis is well documented, and in one study in the 1970s, only 11% of patients did not respond well to a treatment of cartilage injections. The pain relief the injections provided lasted from six weeks to over a year, though no reason could be provided for the vast difference. However, it did seem to demonstrate that the remedy was more than just a placebo. In another study involving bedridden osteoarthritis patients, eight out of ten could leave their beds after only three weeks of oral cartilage treatment. Shark cartilage appears to be effective when administered both intravenously and orally.

In a later placebo study involving 147 arthritis patients, they were given either shark cartilage or a placebo. Those with the placebo were encouraged to use other treatments when their pain became severe. After five years the placebo group reported a 5% drop in pain scores compared to 85% of the group taking shark cartilage. The joint deterioration in each group was assessed, and was considerably less in the cartilage group, who also lost less time at work through pain.

All of these results indicate that shark cartilage can be used to relieve osteo- and rheumatoid arthritis pain in at least 60% of sufferers. Since rheumatoid arthritis has been linked to psoriasis, this could also explain its effects on psoriasis. What the studies did indicate is that you need not wait five years to find if the treatment is effective or not: if you do not experience positive results within between four and six weeks, then shark cartilage treatment will likely not work for you.

There is no doubt that shark cartilage can provide relief to painful, swollen joints, and this is likely due to the mucopolysaccharides. It can also prevent the undesirable growth of new blood vessels into the cartilage and appears to help to regulate the immune system. These are also two of the reasons why it is believed by some to be an effective treatment for cancer by preventing metastasis.

It was the publication of the book “Sharks Don’t get Cancer” that started the rush for shark cartilage as a a treatment for cancer, but the problem is that sharks do get cancer – they even get cancer of the cartilage! However, that does not mean that the scientific reasons for the inhibition of metastsis are invalid. They are valid, and it is metastsis rather than the original cancer that ferquently leads to death. Metastsis is the spread of the disease round the body by the bloodstream, and shark cartilage appears to be able to help to prevent that. It also prevents the growth of blood cells into cancerous areas to feed the cancers with oxygen and other nutrients.

Although there are few reported side effects of shark cartilage, in the interest of safety it is advised that children and pregnant women should avoid it. The same is true of people recovering from recent surgery since it could slow healing due to its effect on repairing blood vessels. If you have a low white blood cell count, do not have a shark cartilage enema since it can cause a potentially fatal infection.

Otherwise it should be safe to take, and is available in many forms including creams, capsules, powders and injections. The recommended dosage is 1 gram dried shark cartilage for each 7 Kg (15 lb) body weight. Once you begin to see an effect on the pain of your arthritis, one can then try to reduce the dose to 1 gram for each 18 Kg (40 lb) body weight.

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Cherry Fruit Extract
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Date: April 28, 2008 02:45 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Cherry Fruit Extract

Cherry fruit extract contains organic compounds known as flavanoids, which is a form of phytochemical frequently found in highly colored fruits and vegetables. If you eat a fruit such as pomegranate, blueberry, blackberry or cherry, or if you eat red peppers, aubergines and broccoli, you are eating foods that are rich in flavanoids.

Such foods provide you with remarkable health benefits that your ancestors knew about but did not understand. They ate these highly colored foods because they knew they helped prevent certain medical conditions, and to help others get well faster. They knew nothing about phytochemicals – chemicals contained in plants – or flavanoids, but knew about the results of eating them.

In fact, flavanoids are very powerful antioxidants and anti-inflammatories, and each of these require more detailed explanation since between them, oxidants and inflammation are responsible for most of the non-infectious common ailments of the human body. First, let’s have a look at antioxidants.

In chemical terms oxidation is the removal of an electron from an atom or molecule. There are species within your body known as free radicals whose sole purpose in their short life is to steal an electron from the nearest molecule to them. This is almost instantaneous, and most free radicals are very short lived. The concept of free radicals roaming your body and your bloodstream waiting to pounce on the first unwary molecule is a fairy tale. In fact the vast majority react as soon as they are formed.

When they do react, they remove an electron from a stable molecule, render it unstable and thus destroy it. If that molecule is part of a cell, and enough of them are robbed of their electrons, then the cell is destroyed. One result in visible terms is wrinkling of your skin, as your skin cells become destroyed, and hence you age quicker. In terms that you are not immediately aware of, oxidation can lead to many unwanted changes in your body.

For example, the low density lipids, that carry the cholesterol in your blood to areas of the body where it is needed, are oxidized by free radicals which causes the LDL to deposit along with their cholesterol on the walls of your arteries as a layer of plaque. Eventually that will build up to constrict the artery and cause a condition known as atherosclerosis – the arteries become blocked, and you can suffer from heart attacks and strokes.

These free radicals are formed by the normal metabolism of the body when energy is created in the cell mitoCHONDria, by pollutants such as pesticides, cigarette smoke and traffic fumes, and by radiation such as excessive exposure to the UV radiation in sunlight.

Flavanoids, contained in cherry fruit extract, are antioxidants, which prevent this oxidation of body cells from taking place. They do so by being in the right place at the right time. If a flavanoid molecule is close to a free radical when it is generated, then the antioxidant will reduce the free radical and neutralize it.

If you eat a lot of cherries, or drink cherry fruit extract, you will be consuming a massive amount of flavanoids molecules that are ready and willing to destroy these free radicals. However, that is not all that flavanoids do. They are also, as has already been stated, anti-inflammatories.

The inflammatory response is the reaction of the body to a foreign presence such as bacteria. The tissues around the infected area receive an increased blood supply, and the cell walls produce gaps allowing the large immune system blood cells, or macrophages, to pass through. The temperature around the area increases due to the concentration of blood, and this itself is controlled by the body since bacteria die off after a certain body temperature has been reached, hence the reason for fever in the immune response.

The area swells up due to the concentration of fluid and protein, and becomes painful due to pressure on nerve endings. Anti-inflammatories, such as the flavanoids, work to relieve the symptoms of inflammation without interfering with the way the immune system deals with infection.

Many inflammatory conditions occur without any apparent reason, and while anti-inflammatories might not be used to suppress the immune system, it is used in such conditions as rheumatoid arthritis where the inflammation is a mis-firing of the immune system. Cherry fruit extract can be used to alleviate many similar conditions such as gout, and osteoarthritis where its use is well known and recorded.

It can also be used to help reduce the effects of atherosclerosis through its anti-oxidant properties, and cherries contain, not only a good supply of flavanoids, but also anthocyanins, another group of powerful antioxidants. They also contain vitamin C which is also a strong antioxidant.

Another property of flavanoids is their collagen strengthening properties, which they achieve by cross-linking the fibers to form a string fibrous network. That can be used to strengthen the walls of veins, and render them less liable to stretch or expand, thus providing them with the rigidity needed to prevent varicose veins caused by the puddling of blood below weak valves. They have the same effect on arteries, providing increased strength and a reduction in the blood pressure needed to pump blood round the body.

A good intake of cherry fruit in your diet will help to improve the condition of your cartilage and other connective tissue in addition to your veins and arteries, and is particularly appropriate for athletes who place great stresses on connective tissues such as the tendons that transfer muscular energy to the levers – the long bones.

In summary, then, cherry fruit extract and the flavanoids and anthocyanins it contains, posses properties to help relieve the symptoms of gout, and various forms of arthritis, to reduce the likelihood of cholesterol oxidation that leads to heart disease and strokes, to help strengthen the walls of veins and arteries and to improve the strength of connective tissue such as cartilage and tendons.

In other words, to improve the quality of life of the majority of the population that suffers from one or more of these conditions. After learning about the health benefits of cherries and all the mounting evidence in research, my question to you is why did the FDA make cherry farmers pull the health benefits of cherries from their websites with threats of legal action if not removed? Makes a person wonder who is on our side and who isn’t?

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GTF Chromium
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Date: April 23, 2008 11:21 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: GTF Chromium

Chromium is a trace element in your body, meaning that it is present only in very small quantities, yet like many trace elements it is extremely important to your health. Most people associate chromium with the shiny finish on car fenders, but it is more than that.

Chromium oxide was discovered as being a part of crocoite, better known as red lead, which is actually lead chromate, sometimes containing some molybdate and perhaps vanadium. Although it was discovered in the middle of the 18th century, it was not until 1797 that chemist Louis-Nicholas Vauquelin discovered it for what it was. He synthesized it in his laboratory in 1798, which is the ultimate proof of the identity and chemical structure of any substance.

It was eventually named chromium, after the Greek ‘chroma’ meaning color, because its compounds are highly colored, normally yellow, red and green, and it is chromium that gives emerald its green color. It is also found in low concentrations in the human body, but too low, thankfully, to color your body red, green or yellow! Perhaps Martians contain a lot of chromium!

The first indication of the potential benefits of chromium to health was when a pork kidney extract called the Glucose Tolerance Factor was discovered in 1957 to enable rats to improve their use of insulin in maintaining the effective use of blood sugar in generating energy. The GTF contained chromium, and that was believed to be the effective ingredient.

Diabetes is a condition in which people either do not generate enough insulin or cannot use it properly. Insulin is a hormone biosynthesized in a group of cells known as the islets of Langerhen in the pancreas and is a necessary part of your metabolism. Your metabolism converts carbohydrates and various sugars into glucose, and when the glucose level reaches a certain concentration in your blood, you stop feeling hungry and the pancreas is stimulated into secreting insulin.

The insulin allows the cells to admit sugar and the mitoCHONDria within them to convert the glucose to energy. Your body likes the blood glucose level to be maintained at between 70 and 110 mg/dl. If it falls below 70, then you will be suffering from hypoglycemia, but you can be above 110 if you have recently eaten. If your blood glucose is being measured it must be at least four hours after your last meal, which is why you are asked to fast first. The absolute maximum is 180 mg/dl, above which you are in trouble and suffering hyperglycemia.

If your pancreas cannot produce any insulin you are regarded as having Type 1 diabetes, and if it produces too little or your body cannot use it effectively, it is Type 2 diabetes. It is believed today that chromium is one of the factors involved in allowing the cells to absorb glucose, and that without it the mitoCHONDria are unable to convert your blood glucose into energy.

Although up to 90% of Americans are thought to have a low chromium content, few are believed to be deficient and there is a big difference between the two. However, pregnant women and the elderly are particularly prone to a deficiency, as are those that consume too many sugary foods. A deficiency in chromium not only leads to an excess of blood sugar however, but also of cholesterol and triglycerides. This can in turn lead to atherosclerosis, heart disease and strokes.

Although the role of chromium in the control of blood sugar levels was discovered in the 1950s, it was not until the 1970s that it was proven. As with many such proofs it came about accidentally, through what was known as Total Parenteral Nutrition (TPN). This provided intravenous nourishment to patients who were unable to eat, and contained a mixture of the nutrients believed to be essential to life.

However, the mixture was based on current knowledge, and it was found that some patients developed the symptoms of hyperglycemia, or high blood sugar levels. This was what would have been expected of untreated diabetics, but none were diagnosed with the condition so the cause was a mystery. The physicians responsible for the treatment had no option but to administer insulin, even though there appeared to be no deficiency in the patients.

If you are with us so far, then you will realize that the insulin would not have had the expected result. That is because the condition is not caused by too much sugar or carbohydrate in the diet, and also not caused by a deficiency of insulin. However, due to the known role of chromium in the action of insulin, it was then thought that TNP solution would be improved by adding chromium. When chromium was added in small quantities of under 50 micrograms (5 hundredths of a gram) the patients’ condition improved to normal, and the effect of chromium on blood sugar levels was finally proven.

So how does chromium achieve this? In fact the biochemistry is complex, and dietary chromium works in a different way to the chromium picolinate that is the most popular form of chromium supplement. However, in a nutshell, what appears to happen is that its effect on human tissue may be through an increase in the activation of Akt Phosphorylation, which is a protein within the body cells that enables the easy absorption of glucose into the cells.

In addition to that, cell membranes contain insulin receptor sites that respond to biochemical signals from messengers such as hormones and nutrients, and it is believed that chromium might be involved in promoting the binding of insulin to these sites. Alternatively, it is possible that it may promote the reactions that occur after the insulin has bound to the receptor site, an occurrence that is referred to as a post-receptor event.

Whether chromium is involved in a post-receptor event or in binding the insulin top the receptor sites, there is no doubting the importance of the element to the overall insulin-glucose-energy metabolism, and that the trace element chromium is indeed important in helping your body cells to absorb glucose.



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Health And Applications Of Coenzyme Q10
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Date: April 17, 2008 02:57 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Health And Applications Of Coenzyme Q10

Coenzyme Q10 is a critical cofactor in the biological energy process. It is a powerful antioxidant and plays a vital role in our health and wellness. Coenzyme Q10 is involved in many disease states, consuming adequate coenzyme Q10 can ensure that one maintains good health which can reduce the risk of chronic disease such as the ones listed below:

Cardiovascular disease

  • Cardiomyopathy
  • Angina pectoris
  • Arrhythmias
  • Mitral valve prolapse
  • Hypertension
  • Atherosclerosis
  • Cardiotoxicity (drug induced)

Neurodegenerative disease

  • Huntington’s disease
  • Parkinson’s disease
  • Amyotrophic lateral sclerosis (ALS)

Neuromuscular disease

  • MitoCHONDrial cytopathies (melas, merrf, ect.)
  • Muscular dystrophy
  • Ataxias
  • Chronic obstructive pulmonary disease
  • Asthma
  • Immune disorders
  • Periodontal disease
  • Chronic fatigue syndrome

Many prescription drugs can cause Coenzyme Q10 to deplete especially statin drugs (cholesterol meds). Beta blocking drugs and anti-diabetic drugs can also leach the body of vital Coenzyme Q10 which could lead to the above diseases if left un-checked over time.

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L-Carnitine For Health And Wellness
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Date: April 16, 2008 03:25 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: L-Carnitine For Health And Wellness

Research continues to mount evidence that l-carnitine can help boost energy and quality of life. Carnitine comes from the Latin word for flesh: caro or carnis. L-carnitine was discovered and isolated from meat in the early 1900s. At that time, scientists thought that l-carnitine played a role in muscle function; this was many years before technology would advance so that this theory could be proved. Today, we know that this amino acid is found mostly in tissue of the body that requires lots of energy such as the heart, skeletal muscles, and liver.

L-carnitine is considered a non-essential amino acid since the body manufactures it from l-methionine and l-lysine. Depending on one’s diet, the body manufactures most of, not all, the l-carnitine it needs every day. There are circumstances where a rare genetic disease can cause the body to not manufacture its own l-carnitine resulting in a deficiency which can cause secondary diseases such as cirrhosis of the liver, chronic renal failure, diabetes, heart failure or Alzheimer’s disease. Some medications can cause a deficiency as well, check with your doctor about prescriptions.

The primary energy source for the body is long-chain fatty acids. L-carnitine plays an essential role in energy production process. This amino acid transports long-chain fatty acids into the mitoCHONDria, where it is used to produce energy for each cell in the body. l-carnitine then removes the “acyl” group by products out of the mitoCHONDria as they accumulate. Both the transporting in and out of the cells mitoCHONDria is vital for continued muscle function to occur.

Researchers suggest that the limiting factor in high intensity exercise is from the availability of l-carnitine in the muscle tissue. Studies conducted with this amino acid suggest that athletes experience improved performance when supplementing with l-carnitine by reducing post exercise lactate acid levels and improving recovery from exercise stress.

Some research suggests that l-carnitine can help chronic fatigue individuals by shuttling long-chain fatty acids into the mitoCHONDria where the body manufactures energy. The bulk of this research was done on chronic fatigue patients who consumed 2 grams per day of l-carnitine. Additional research was performed on individuals over 100 years of age and the results were these individuals experiences increase physical endurance and improved cognitive activity.

L-carnitine can help cardiovascular conditions including angina, congestive heart failure, and peripheral artery disease. Recent studies showed male fertility improvement when l-carnitine was consumed on a regular basis. Men participating had better sperm motility which increases the changes of one reaching an egg and improving the odds of fertilization.

Research also demonstrated that 1 gram of this amino acid daily over three months can help one reduce weight by improving fat metabolism. This holds consistent with the findings that l-carnitine transports long-chain fatty acids (fat) into cellular mitoCHONDria so it can be burned as energy. With a good diet and exercise plan, reports suggest that even more weight loss can be achieved.

Safety is of particular concern when adding extra supplements to one’s diet such as l-carnitine. Good news, l-carnitine is very safe at 1 – 3 grams each day, even higher doses are safe with no side effects. With the mounting evidence on the benefits of l-carnitine consumption, what is stopping you from adding l-carnitine today to your supplement diet to improve health and wellness?

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