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What Cellular Mitochondria Does in the Body Darrell Miller 4/28/22
Study: PQQ (pyrroloquinoline quinone) may prevent and even reverseAlzheimer's Darrell Miller 1/4/19
PQQ is effective in combating neurodegeneration that can affect theaging brain Darrell Miller 12/21/18




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?

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Study: PQQ (pyrroloquinoline quinone) may prevent and even reverseAlzheimer's
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Date: January 04, 2019 08:12 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Study: PQQ (pyrroloquinoline quinone) may prevent and even reverseAlzheimer's





Pyrroloquinoline quinone (PPQ) is a microbe that is derived from plants, and it is showing to have neurological benefits that are associated with the prevention of Alzheimer's progression. This particular microbe is able to reduce inflammation in the brain, which can lead to several neurological conditions. It also helps patients in post-stroke recovery because it is able to reduce the area of the brain that is impacted by stroke activity. Most importantly, it helps in the prevention of Alzheimer's due to how it can neutralize levels of oxidative stress.

Key Takeaways:

  • In the elderly, Alzheimer’s symptoms are gradual loss of memory while at the same time the body is getting weak.
  • The definitive cause behind Alzheimer’s disease that was discovered at the turn of the 20th century is still unknown.
  • One of the most reliable ways of delaying Alzheimer’s disease is by eating foods that are rich in antioxidants.

"Glutamate is an important chemical in the brain, but too much of it results in excitotoxicity, a risk factor in both stroke and neurodegenerative disease. PQQ protects the brain from overstimulation by glutamate and the resulting death of brain cells."

Read more: https://www.naturalnews.com/2018-12-15-ppq-can-prevent-alzheimers.html

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PQQ is effective in combating neurodegeneration that can affect theaging brain
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Date: December 21, 2018 08:53 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: PQQ is effective in combating neurodegeneration that can affect theaging brain





A nutrient called Pyrroloquinoline quinone (PQQ) has shown potential for combating the degenerative neurological symptoms of Alzheimer’s, according to research published by Life Extension. Mice that were given a PQQ supplement developed smaller deposits of toxic proteins in their brains compared to the mice that did not, and also demonstrated better recall, memory, motor skills and learning relative to the control group. Other research suggests PQQ may help with Parkinson’s symptoms, and improve blood circulation within the brain.

Key Takeaways:

  • Alzheimer's is said to affect one in every three senior citizens and be a leading cause of death.
  • PQQ research indicates that the supplement protects brains against neurotoxicity.
  • Studies using rodents showed that those subjects dosed with PPQ had better learning capacity and recall.

"But there are many ways in which a person can reduce their risk of neurodegeneration as they age, like healthy eating."

Read more: https://www.naturalnews.com/2018-12-13-pqq-combats-neurodegeneration-that-can-affect-the-aging-brain.html

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