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NSAIDs vs. Curcumin: Which One Relieves Joint Pain Without Stopping Healing? Darrell Miller 9/14/26
The Ultimate Guide to Cellular Longevity: NAD+, Methylation, and Senolytics Darrell Miller 9/10/26
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NSAIDs vs. Curcumin: Which One Relieves Joint Pain Without Stopping Healing?
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Date: September 14, 2026 11:22 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: NSAIDs vs. Curcumin: Which One Relieves Joint Pain Without Stopping Healing?


Comparative Analysis of NSAIDs versus Curcumin in Musculoskeletal Tissue Repair

Primary Biological Mechanisms and Pharmacological Targets

Managing soft tissue and joint injuries presents a persistent therapeutic challenge in musculoskeletal medicine. Acute inflammation triggers pain, localized swelling, and mechanical disability, which routinely drives patients toward pharmacological relief. For decades, nonsteroidal anti-inflammatory drugs (NSAIDs) such as ibuprofen, naproxen, celecoxib, and diclofenac have served as primary clinical interventions. While these synthetic agents effectively extinguish acute pain signals, expanding cellular and clinical research indicates that their biochemical mechanism interrupts the fundamental repair cascades required for long-term connective tissue healing. In contrast, curcumin - a natural polyphenolic compound derived from the rhizomes of Curcuma longa (turmeric) - exhibits a distinct, multi-targeted regulatory profile that calms hyperactive inflammation while protecting the structural components of cartilage and tendon tissue.   

The functional divergence between these two compounds becomes clear when considering an intuitive mechanical analogy. Tissue trauma resembles damage to a commercial building, where initial inflammation functions as the construction and demolition crew tasked with clearing rubble, stabilizing the foundation, and laying down fresh structural framing. NSAIDs function like abruptly cutting electrical power to the entire work site: the noisy machinery stops instantly and the immediate disturbance ceases, but the construction workers lose the power necessary to clean the debris and erect permanent walls. Conversely, curcumin operates as an experienced site manager: it silences unnecessary chaos and prevents site vandalism while ensuring that the skilled workers - specifically chondrocytes in cartilage and tenocytes in tendons - remain fully active, supplied, and capable of completing the restoration.   

At the cellular level, NSAIDs exert their effects through the catalytic inhibition of cyclooxygenase enzymes, categorized as constitutive cyclooxygenase-1 (COX-1) and inducible cyclooxygenase-2 (COX-2). Membrane phospholipids damaged during injury release arachidonic acid, which COX enzymes convert into pro-inflammatory lipid mediators known as prostanoids, most notably prostaglandin E2 (PGE2). Nonselective NSAIDs block both isoforms, while selective coxibs specifically target COX-2. By shutting off PGE2 production, NSAIDs rapidly elevate pain thresholds and blunt localized swelling. However, because PGE2 also functions as a vital signaling cue for cellular recruitment, angiogenesis, and cellular proliferation, this total enzymatic shutdown strips local repair cells of the baseline signals required to orchestrate tissue regeneration.   

Curcumin avoids this indiscriminate pathway paralysis by acting upstream on master transcriptional control switches rather than directly neutralizing isolated enzymes. Its primary therapeutic mechanism centers on the inhibition of Nuclear Factor-kappa B (NF-kB) and Activator Protein-1 (AP-1) signaling networks. Under acute stress or chronic inflammatory loads, the NF-kB protein complex is released from its cytoplasmic inhibitor, IkBa, and translocates directly into the cell nucleus, where it drives the transcription of catabolic cytokines such as interleukin-1 beta (IL-1ß), tumor necrosis factor-alpha (TNF-a), and interleukin-6 (IL-6). Curcumin blocks the phosphorylation and degradation of IkBa, effectively keeping NF-kB trapped in the cytoplasm. By preventing this nuclear entry, curcumin attenuates the expression of pro-inflammatory cytokines and downstream matrix-degrading enzymes while preserving baseline physiological functions. Furthermore, curcumin activates the nuclear factor erythroid 2-related factor 2 (Nrf2) and antioxidant response element (ARE) pathways, which upregulate endogenous cellular antioxidants to neutralize destructive reactive oxygen species (ROS) that induce cell death in injured joints.   

Pharmacological Characteristic Nonsteroidal Anti-Inflammatory Drugs (NSAIDs) Curcumin (Curcuma longa Polyphenol)
Primary Cellular Target Direct active-site inhibition of COX-1 and/or COX-2 enzymes Upstream inhibition of NF-kB, AP-1, and stimulation of Nrf2/ARE
Impact on Prostaglandin Synthesis Profound, systemic depletion of PGE2 and related prostanoids Modest, homeostatic modulation mediated via upstream cytokine reduction
Cytokine Regulation (TNF-a, IL-1ß) Minimal direct inhibitory effect on primary cytokine gene expression Significant downregulation of IL-1ß, TNF-a, and IL-6 secretion
Redox Balance and Oxidative Stress No intrinsic reactive oxygen species scavenging capabilities Direct free radical scavenger; stimulates endogenous antioxidant cascades
Organ-Level Safety Profile Documented risks of peptic ulceration, renal stress, and cardiovascular events Favorable tolerability profile; exhibits gastric mucosal cytoprotection
  

The Mechanisms of NSAID-Induced Inhibition in Cartilage and Tendon Repair

Articular cartilage and tendons are specialized, bradytrophic connective tissues characterized by relatively low basal metabolic rates and limited endogenous vascular supplies. These physical constraints make their cellular maintenance highly vulnerable to pharmaceutical disruptions. When synthetic compounds impair cell migration, survival, or extracellular matrix secretion, the intrinsic repair capacity of these structures is substantially degraded.   

Cartilage maintenance depends on chondrocytes, the sole cell type residing within articular joints, which are responsible for generating and maintaining the extracellular matrix of Type II collagen and water-binding proteoglycans such as aggrecan. Because adult articular cartilage lacks a direct vascular network, major defect repair relies heavily on the recruitment and chondrogenic differentiation of subchondral mesenchymal stem cells (MSCs) through endochondral ossification. Experimental evaluations demonstrate that systemic or intra-articular NSAID exposure halts this regenerative differentiation. Both nonselective NSAIDs and selective COX-2 inhibitors interfere with chondrocyte maturation and prevent successful tissue integration following cartilage transplantation or microfracture procedures.  At the cellular level, common NSAIDs - including indomethacin, ketorolac, and diclofenac - induce cell cycle arrest in chondrocytes by blocking transition from the resting G0 phase to the proliferative G1.

phase, substantially reducing viable cell numbers. Concurrently, NSAIDs downregulate Bone Morphogenetic Protein-2 (BMP-2), an essential anabolic signaling molecule that orchestrates matrix synthesis. Histological analyses in animal models reveal that NSAID administration causes a marked loss of extracellular proteoglycan content and widespread chondrocyte depletion, yielding elevated modified Mankin scores that signify advanced structural degeneration. In layman's terms, proteoglycans serve as water-absorbing structural sponges that grant cartilage its elastic shock absorption. When NSAIDs deplete these molecules, the joint surface dries out, becomes brittle, and rapidly wears down under routine mechanical friction.   

Tendon healing is similarly susceptible to disruption by NSAIDs. Tendons operate as high-tensile structural cables composed of longitudinally arranged Type I collagen fibers, maintained by specialized fibroblasts termed tenocytes and tenoblasts. Healing after acute rupture or chronic tear progresses through an initial inflammatory phase, followed by a proliferative phase of cell migration, and culminates in a lengthy remodeling phase of collagen alignment. In vitro and in vivo studies establish that NSAIDs directly suppress the migration and proliferative capacity of tenocytes during the critical early healing window. Without an adequate cellular workforce migrating into the wound bed, provisional collagen scaffolding cannot be synthesized effectively.   

The disruption is particularly pronounced at the enthesis, the specialized fibrocartilaginous junction where soft tendon inserts into rigid bone. Re-establishing this transition zone requires coordinated bone remodeling and chondrogenic differentiation, both of which are hindered by COX inhibition. In animal rotator cuff repair models, early administration of NSAIDs significantly delays collagen fiber organization and impairs mechanical integration at the insertion site, resulting in a measurable decline in load-to-failure strength and overall tendon toughness. Furthermore, while prolonged inflammation contributes to pathological degeneration, the transient synthesis of PGE2 during the initial hours following injury is essential for regulating localized microvascular flow and hyperemic nutrient delivery. By eliminating this early prostanoid pulse, NSAIDs starve the repair zone of oxygen and circulating factors precisely when the cellular metabolic demand is highest.   

Beyond direct biochemical cytotoxicity, systemic NSAIDs introduce a physical hazard known as analgesic arthropathy. In musculoskeletal biomechanics, pain functions as a protective feedback mechanism, forcing the patient to unload an injured joint or limb to prevent structural overload. By effectively blunting the pain reflex while simultaneously undermining the cellular synthesis of proteoglycans and collagen, NSAIDs create a deceptive state of perceived recovery. Patients prematurely resume unrestricted weight-bearing and strenuous activity, placing substantial, uncompensated mechanical forces onto compromised cartilage surfaces and unhealed tendon fibers. Over time, this recurring mechanical trauma accelerates joint space narrowing, promotes microfractures in the subchondral plate, and hastens functional joint breakdown.   

Chondroprotective and Tenogenic Mechanisms of Curcumin

In sharp contrast to the suppressive actions of synthetic COX inhibitors, curcumin exhibits a tissue-sparing, pro-regenerative biological profile. Rather than paralyzing cellular metabolism, curcumin modulates the microenvironment by suppressing destructive catabolic enzymes while supporting the baseline anabolic signals required for cartilage and tendon reconstruction.   

In articular cartilage, curcumin acts as a direct chondroprotective agent by dismantling the catabolic cascade induced by pro-inflammatory cytokines. When joint tissues are exposed to elevated IL-1ß and TNF-a, chondrocytes are provoked to synthesize matrix metalloproteinases - specifically collagenases such as MMP-1, MMP-3, and MMP-13 - along with aggrecanases like ADAMTS5. These enzymes function like enzymatic shears, systematically slicing through structural Type II collagen strands and degrading aggrecan cores. Curcumin suppresses the transcription and secretion of MMP-1, MMP-3, MMP-13, and ADAMTS5 by neutralizing NF-kB and AP-1 activation. Concurrently, it upregulates Cbp/p300 Interacting Transactivator with ED-rich tail 2 (CITED2), an essential transcriptional regulator that represses matrix metalloproteinases at the genomic level.   

In addition to halting extracellular degradation, curcumin protects chondrocytes from inflammatory apoptosis. Exposure to oxidative stress and inflammatory cytokines typically triggers programmed cell death by activating the intrinsic caspase cascade. Curcumin suppresses this apoptotic pathway by reducing the cleavage of executioner caspase-3, downregulating the pro-apoptotic factor Bax, and elevating anti-apoptotic Bcl-2 expression. Microscopic and histological analyses of osteoarthritic cartilage treated with curcumin consistently show robust Safranin O staining, intact surface regularity, preserved chondrocyte density, and significantly reduced Osteoarthritis Research Society International (OARSI) degradation scores.   

Within tendon biology, curcumin promotes active tissue regeneration (tenogenesis) rather than inert scar formation. In animal models of tendon rupture and surgical repair, curcumin guides tendon-derived stem and progenitor cells (TSPCs) toward mature tenocyte differentiation. This lineage-specific differentiation is orchestrated primarily through activation of the phosphatidylinositol 3-kinase/protein kinase B (PI3K/Akt) and Wnt/ß-catenin signaling cascades. As stem cells commit to the tenogenic pathway, they significantly upregulate crucial structural and phenotypic markers, including epithelial cell adhesion molecule (EpCAM), tenomodulin, and the master tendon transcription factor Scleraxis.   

Through this guided differentiation, curcumin supports the preferential synthesis and organized deposition of high-tensile Type I collagen fibers, the primary architectural building blocks of healthy tendons. Injured tendons typically fill with disorganized, loose Type III collagen, which forms a structurally inferior, compliant scar. Curcumin supplementation promotes the progressive maturation from primitive Type III collagen to densely packed, parallel Type I collagen fibrils, restoring native tensile strength and mechanical breaking force.   

A major clinical challenge following tendon surgery is the development of peritendinous adhesions, in which excessive fibrotic scar tissue binds the healing tendon to its synovial sheath, restricting range of motion and joint gliding. Postoperative tendon repair involves a balance between extrinsic healing (in which exterior fibroblasts infiltrate the defect and deposit messy scar tissue) and intrinsic healing (in which tenocytes within the tendon substance reconstruct the matrix). Curcumin suppresses excessive peritendinous inflammation and extrinsic fibrosis while accelerating intrinsic tenocyte repair. Biomechanical testing confirms that local or systemic curcumin administration yields lower adhesion scores, increased gliding distances, and superior functional mobility without sacrificing structural load-bearing capacity.   

Comparative Clinical Efficacy and Systemic Safety Profiles

Translating cellular findings into clinical practice requires weighing therapeutic outcomes against systemic safety profiles. While synthetic NSAIDs deliver potent, rapid analgesia during acute musculoskeletal pain events, their chronic administration is constrained by systemic toxicities across multiple organ systems.   

In randomized, active-controlled clinical trials of knee osteoarthritis, optimized curcumin preparations have demonstrated clinical pain reduction and functional recovery comparable to standard therapeutic doses of NSAIDs. In a randomized, open-label parallel-arm study evaluating 139 patients with symptomatic knee osteoarthritis, subjects received either 500 mg of a bio-enhanced curcumin extract three times daily or 50 mg of diclofenac sodium twice daily for 28 consecutive days. Patients treated with curcumin demonstrated comparable improvements in pain intensity on the Visual Analogue Scale (VAS) and functional scores on the Knee Injury and Osteoarthritis Outcome Score (KOOS) at days 14 and 28, showing no statistically significant difference in therapeutic efficacy compared to diclofenac.   

However, the systemic tolerability profiles between the treatments diverged markedly. Overall adverse events occurred in only 13% of the curcumin group compared to 38% of the diclofenac cohort. In the diclofenac arm, 28% of patients developed dyspeptic symptoms severe enough to require concurrent treatment with H2-receptor antagonists or proton pump inhibitors to prevent mucosal ulceration, whereas no patients in the curcumin cohort required gastroprotective intervention. Furthermore, the curcumin cohort experienced a significant reduction in flatulence and digestive discomfort, demonstrating beneficial gastric and intestinal cytoprotective effects.   

These safety observations are consistent across broader systematic reviews and meta-analyses. Nonsteroidal anti-inflammatory agents inherently compromise gastrointestinal integrity by systematically depleting cytoprotective prostaglandins, leaving the gastric epithelium vulnerable to acid erosion and hemorrhage. In addition, systemic inhibition of renal and vascular COX enzymes by NSAIDs reduces renal perfusion and disrupts the balance between prostacyclin and thromboxane, elevating the risk of fluid retention, hypertension, and adverse cardiovascular thrombotic events. Curcumin does not suppress these physiological prostanoid pathways, making it free from ulcerogenic, nephrotoxic, and cardiotoxic properties at therapeutic dosages.   

Clinical Parameter Conventional NSAIDs (e.g., Diclofenac, Ibuprofen) Formulated Curcumin (Curcuma longa)
Onset and Depth of Analgesia Rapid onset (1 to 2 hours); potent, broad suppression of acute pain Progressive onset (several days); steady, moderate-to-high pain relief
Functional Joint Scores (KOOS / WOMAC) Significant, established improvements in mobility and stiffness scores Statistically comparable improvements in functional and quality-of-life scores
Gastrointestinal Integrity Elevated incidence of dyspepsia, gastric erosions, and peptic ulcer bleeding Gastroprotective; exhibits anti-ulcer actions and improves digestive tolerance
Cardiovascular and Renal Strain Documented risks of fluid retention, renal dysfunction, and thrombotic events Favorable safety profile; provides systemic antioxidant and vascular benefits
Cartilage Matrix Dynamics Associated with proteoglycan depletion, cell arrest, and matrix breakdown Chondroprotective; inhibits MMPs/ADAMTS5 while preserving proteoglycans
Tendon Remodeling and Strength Suppresses tenocyte migration and compromises enthesis breaking strength Enhances tenogenesis, organizes Type I collagen, and limits adhesion formation
  

A longstanding limitation of standard curcumin supplementation in clinical settings has been its low oral bioavailability. Native curcuminoids are highly lipophilic, poorly soluble in aqueous gastric fluids, and subject to rapid hepatic and intestinal phase II metabolism into inactive glucuronides and sulfates, leading to swift biliary and fecal excretion. Consequently, raw culinary turmeric powders struggle to achieve the therapeutic systemic circulating concentrations required to Reach poorly vascularized joint and tendon compartments. Modern pharmacognosy has addressed this pharmacodynamic hurdle through advanced delivery formulations. Modern strategies - such as co-administration with the natural alkaloid piperine (which inhibits hepatic glucuronidation), micellar dispersions, phytosomal phospholipid complexes, and bio-enhanced submicron dispersions - elevate systemic blood bioavailability by ten- to thirty-fold compared to unformulated extracts. These modern delivery platforms ensure that therapeutic concentrations Reach synovial fluid, subchondral bone, and fibrous tendon sheaths without requiring excessive oral dosing.   

Conclusions and Translational Clinical Implications

The biological and clinical evidence reveals distinct physiological paths for NSAIDs and curcumin in orthopedic recovery. While NSAIDs remain powerful tools for the brief alleviation of acute, unmanageable pain, their ongoing administration during active tissue healing presents substantial biological compromises. Tendons and cartilage require a controlled, transient inflammatory cascade to signal cell recruitment, stimulate stem cell differentiation, and direct extracellular matrix synthesis. By completely shutting down cyclooxygenase enzymes and depleting local prostaglandins, NSAIDs disrupt this regenerative cascade. The resulting cellular consequences - including chondrocyte cell cycle arrest, proteoglycan loss, suppression of tenocyte migration, and weakened collagen tensile strength at the tendon-to-bone interface - demonstrate that pain relief from NSAIDs frequently comes at the cost of the structural integrity of healing connective tissues.   

In contrast, curcumin provides a tissue-preserving alternative that decouples pain and inflammation control from cellular suppression. Operating upstream at the level of NF-kB and AP-1 transcriptional activation, curcumin attenuates the expression of pro-inflammatory cytokines while leaving the physiological baseline of cellular metabolism intact. In cartilage, it actively represses the matrix-degrading enzymes MMP-1, MMP-3, MMP-13, and ADAMTS5, maintains water-binding proteoglycan content, and protects chondrocytes from inflammatory apoptosis. In damaged tendons, curcumin stimulates tenogenic differentiation of local stem cells via PI3K/Akt signaling, supports the proper maturation of dense Type I collagen fibers, and prevents restrictive peritendinous scar adhesions, preserving both joint mobility and mechanical breaking strength.   

From a translational perspective, these findings indicate that clinical protocols should reconsider relying on continuous NSAIDs as the default intervention for connective tissue injuries, post-surgical recovery, and chronic degenerative conditions. Where synthetic NSAIDs are deemed necessary, their use should be confined to short-term acute flare-ups to avoid interrupting early tissue remodeling. For long-term joint preservation, ongoing tendinopathy rehabilitation, and chronic osteoarthritis management, optimized bio-enhanced curcumin formulations deliver pain relief and functional restoration comparable to conventional pharmaceuticals, all while preserving the biological processes required for lasting musculoskeletal repair.   

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The Ultimate Guide to Cellular Longevity: NAD+, Methylation, and Senolytics
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Date: September 10, 2026 10:57 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The Ultimate Guide to Cellular Longevity: NAD+, Methylation, and Senolytics


Introduction: Understanding Cellular Aging and Energy Decline

Biological aging represents a progressive decline in cellular maintenance, structural repair, and energy generation. Over decades, tissues experience an attrition of functional reserves, compromised stress resilience, and persistent low-grade systemic inflammation. At the cellular scale, biological degeneration is driven by a failure to generate bioenergetic fuel, repair genetic code, and clear metabolic waste.

Cellular aging is characterized by interconnected biological disruptions known as the hallmarks of aging. These encompass genomic instability, epigenetic alterations, mitochondrial decay, loss of proteostasis, and cellular senescence. Rather than operating as isolated occurrences, these phenomena establish a self-reinforcing degenerative cycle: declining cellular power generation impairs enzymatic genetic repair, promoting the accumulation of damaged cells that enter irreversible growth arrest and poison surrounding healthy tissues. Mitigating cellular aging requires examining how microscopic bioenergetic pathways deteriorate and evaluating how targeted nutritional and biochemical interventions can restore cellular homeostasis.

The Role of Mitochondria and ATP Production

Every biological function - from muscular contraction to continuous DNA replication - depends on adenosine triphosphate (ATP), the primary biochemical energy currency of living systems. Cells produce the vast majority of this energy within mitochondria through oxidative phosphorylation. Within these specialized organelles, metabolic intermediates derived from dietary carbohydrates and lipids donate high-energy electrons to the electron transport chain. The flow of these electrons across protein complexes establishes an electrochemical proton gradient across the inner mitochondrial membrane, driving ATP synthase to manufacture ATP.

A youthful cell functions like an efficient municipal power grid, dynamically matching energetic demands with immediate ATP output. However, as biological aging progresses, mitochondrial efficiency declines. The electron transport chain becomes structurally leaky, inadvertently shedding electrons that react with ambient molecular oxygen to produce reactive oxygen species (ROS). While regulated levels of ROS participate in vital intracellular signaling, chronic excess induces widespread oxidative stress.

Mitochondria are exceptionally vulnerable to this oxidative burden because they carry their own circular genetic material, known as mitochondrial DNA (mtDNA). Unlike nuclear DNA, mtDNA lacks the protective shielding of histone proteins and possesses rudimentary repair systems. As a result, mtDNA sustains cumulative oxidative damage, encoding increasingly defective electron transport chain proteins. This dynamic generates a bioenergetic deficit: degraded mitochondria synthesize progressively less ATP while emitting greater volumes of damaging free radicals. Deprived of optimal ATP reserves, cells lack the energy necessary to drive vital enzymatic repair cascades, accelerating structural degeneration and functional exhaustion.

How Cellular Senescence Accelerates the Aging Process

When healthy cells confront critical physiological damage - such as severe telomere attrition, persistent DNA double-strand breaks, or oxidative stress - they activate protective cell cycle arrest pathways governed primarily by the p53/p21^CIP1 and p16^INK4a/Rb molecular checkpoints. This defensive shutdown, termed cellular senescence, permanently prevents the replication of potentially premalignant or mutated cells.

Senescent cells, colloquially known as "zombie cells," enter a state of permanent growth arrest while actively resisting programmed cell death (apoptosis). Over time, these cells accumulate within adipose depots, skeletal muscle, the vascular endothelium, and major organs, largely because immune surveillance and clearance pathways simultaneously lose functional efficiency.

The systemic danger of senescent cells stems from their secretome. Rather than remaining biologically inert, senescent cells develop a hyperactive secretory state termed the Senescence-Associated Secretory Phenotype (SASP). The SASP is a destructive mixture of pro-inflammatory cytokines, chemokines, extracellular matrix-degrading matrix metalloproteinases (MMPs), and reactive oxygen species.

Through this toxic secretome, even a small burden of senescent cells can impair whole-tissue architecture. SASP factors degrade surrounding structural proteins, induce insulin resistance in neighboring metabolic cells, and biochemically force adjacent healthy cells into secondary senescence. This persistent paracrine signaling fuels chronic, sterile, low-grade systemic inflammation, termed "inflammaging," which accelerates systemic tissue degeneration and elevates susceptibility to degenerative age-related pathologies.

Nicotinamide Riboside (NR) and the NAD+ Salvage Pathway

The Biochemistry of NAD+ Depletion Over Time

Nicotinamide adenine dinucleotide (NAD+) is an indispensable coenzyme present in every living cell. NAD+ fulfills a dual biological mandate: it serves as a central redox cofactor that shuttles electrons between cellular metabolic reactions, and it functions as an obligatory consumable substrate for regulatory enzymes that preserve cellular viability. In its redox capacity, NAD+ accepts electrons to form NADH during glycolysis, the tricarboxylic acid (TCA) cycle, and fatty acid beta-oxidation, subsequently donating those electrons to Complex I of the respiratory chain to power ATP synthesis.
NAD+ Pathway / Consumer Primary Biochemical Role Functional Impact of Age-Related Depletion
Mitochondrial Redox Reactions Shuttles electrons (NAD+ <--> NADH) to drive oxidative phosphorylation. Impaired ATP generation, diminished metabolic flexibility.
Sirtuin Enzymes (SIRT1-7) Removes acetyl groups from regulatory proteins; coordinates longevity defense. Blunted mitochondrial biogenesis, degraded metabolic regulation.
PARP Enzymes (PARP-1) Detects DNA strand breaks and synthesizes poly(ADP-ribose) scaffolds. Hyperactivation drains systemic NAD+ pools during genotoxic stress.
CD38 Ecto-Enzyme Glycohydrolase that consumes cellular NAD+ and its precursors. Upregulated by SASP, aggressively accelerating NAD+ depletion.
Tissue concentrations of NAD+ decline with advancing chronological age. Clinical evidence shows that systemic NAD+ levels in midlife and older adults can drop by 50% to over 80% compared to young adult baselines. This deficit is driven not only by reduced biosynthesis, but by accelerating enzymatic consumption.

The primary enzymatic driver of age-related NAD+ destruction is CD38, a membrane-bound glycohydrolase expressed on immune cells that is upregulated in response to chronic SASP exposure. Concurrently, lifelong genotoxic damage causes persistent activation of Poly(ADP-ribose) polymerase 1 (PARP-1), an enzyme that cleaves the glycosidic bonds of NAD+ to assemble branched poly(ADP-ribose) chains at DNA lesion sites. Because PARP-1 consumes NAD+ without directly recycling the molecule, chronic DNA damage depletes intracellular NAD+ pools, impairing bioenergetics and limiting sirtuin activity.

How NR Efficiently Boosts Cellular NAD+ Levels

The mammalian body maintains its NAD+ supply through three distinct biosynthetic routes: the de novo pathway from dietary L-tryptophan, the Preiss-Handler pathway from nicotinic acid (niacin), and the NAD+ Salvage Pathway. The de novo pathway requires substantial energy expenditure, consuming roughly sixty milligrams of dietary tryptophan to yield a single milligram of NAD+. The Preiss-Handler pathway, while effective, can induce cutaneous prostaglandin-mediated flushing at therapeutic intakes. Consequently, the salvage pathway serves as the primary mechanism for maintaining intracellular NAD+ pools.

The salvage pathway recycles the breakdown product nicotinamide (NAM), which is released whenever NAD+-consuming enzymes execute their functions. Under normal conditions, cells convert free nicotinamide into nicotinamide mononucleotide (NMN) via the rate-limiting enzyme nicotinamide phosphoribosyltransferase (NAMPT), after which NMN adenylyltransferases (NMNAT1–3) complete the conversion into NAD+. However, NAMPT expression declines with advancing age, chronic inflammation, and metabolic stress, limiting the recycling capacity of the cell.

Nicotinamide Riboside (NR) is a naturally occurring pyridine nucleoside that bypasses this enzymatic bottleneck. Upon cellular entry via equilibrative nucleoside transporters, NR is directly phosphorylated into NMN by nicotinamide riboside kinases (NRK1 and NRK2) using a single molecule of ATP. Because the NRK pathway remains intact and robust across the lifespan, NR provides an efficient alternative entry point into the NAD+ salvage cascade.

Clinical evaluations in humans confirm the safety, bioavailability, and pharmacokinetics of oral NR supplementation. Randomized, double-blind, placebo-controlled trials reveal that oral NR chloride produces dose-dependent increases in steady-state whole blood NAD+ concentrations. Dosing regimens of 100 mg, 300 mg, and 1,000 mg daily elevate blood NAD+ levels by approximately 22%, 51%, and up to 142%, respectively, within two weeks of administration, maintaining these elevations throughout continuous use. High-resolution metabolomic analyses also demonstrate parallel elevations in nicotinic acid adenine dinucleotide (NAAD), establishing it as a reliable biomarker of active intracellular NAD+ synthesis without hepatic or systemic toxicity.

Sirtuin Activation and DNA Repair Mechanisms

Replenishing intracellular NAD+ supports functions beyond mitochondrial ATP generation. NAD+ functions as an obligatory cofactor for sirtuins (SIRT1 through SIRT7), a family of class III histone and non-histone protein deacetylases that regulate stress resilience, metabolic homeostasis, and cell survival. Sirtuins couple the removal of acetyl groups from target lysine residues to the stoichiometric cleavage of NAD+, producing nicotinamide and O-acetyl-ADP-ribose. In states of NAD+ deficiency, sirtuin enzymes remain inactive regardless of cellular demand.

In the nucleus, SIRT1 coordinates defense against cellular decline. When activated by restored NAD+ levels, SIRT1 deacetylates peroxisome proliferator-activated receptor-gamma coactivator 1-alpha (PGC-1a), the master transcriptional coactivator of mitochondrial biogenesis. This deacetylation stimulates mitochondrial replication and assembly, expanding functional respiratory capacity. Concurrently, SIRT1 deacetylates the p65 subunit of nuclear factor-kappa B (NF-kB), suppressing the transcription of pro-inflammatory cytokines. In the mitochondria, SIRT3 utilizes NAD+ to deacetylate metabolic enzymes and superoxide dismutase 2 (SOD2), enhancing the organelle's capacity to neutralize reactive oxygen species.

At the same time, cellular NAD+ levels directly regulate genomic integrity through PARP-1. When genotoxic stress or oxidative damage induces single- or double-strand DNA breaks, PARP-1 binds to the damaged termini using its zinc-finger domains. Bound PARP-1 hydrolyzes NAD+ to synthesize extensive, negatively charged poly(ADP-ribose) polymers on itself and adjacent histones. This modification relaxes chromatin architecture and establishes an electrostatic scaffold that recruits base excision repair and homologous recombination complexes.

Recent discoveries demonstrate close crosstalk between sirtuins and PARP-1 during DNA repair. PARP-1 recruits SIRT1 to double-strand breaks, where SIRT1 deacetylates the chromatin-remodeling ATPase BRG1 to displace nucleosomes and facilitate homologous recombination. However, because PARP-1 and SIRT1 draw from the same intracellular NAD+ pool, severe NAD+ depletion forces a biological compromise: PARP-1 consumes the scarce remaining cofactor to address DNA damage, leaving sirtuins deactivated. Restoring NAD+ via NR prevents this deficit, enabling concurrent genomic repair and sirtuin-mediated metabolic defense.

Quercetin: A Powerful Senolytic and mTOR Regulator

Clearing Senescent "Zombie" Cells from Tissues

The accumulation of senescent cells has driven interest in senolytics: molecules that selectively eliminate senescent cells while sparing healthy, non-senescent populations. Senolytic agents exploit a specific vulnerability in senescent cells. Because senescent cells produce cytotoxic, pro-inflammatory SASP factors that would normally induce their own death, they become dependent on upregulated Senescent Cell Anti-Apoptotic Pathways (SCAPs) to survive. The SCAP network involves anti-apoptotic proteins (such as BCL-2 and BCL-xL), the PI3K/Akt kinase cascade, and cyclin-dependent kinase inhibitors.

Quercetin is a polyphenolic flavonoid found in capers, red onions, apples, and the flower buds of Sophora japonica. Beyond its classical antioxidant properties, quercetin functions as a senolytic compound that exerts multi-target inhibitory effects across the SCAP network. By inhibiting the upstream PI3K/Akt survival axis and downregulating anti-apoptotic defenses, quercetin disrupts the signaling that protects senescent cells from intrinsic apoptosis. Deprived of these survival signals, senescent cells undergo programmed cell death.

Preclinical studies demonstrate that senolytic protocols utilizing quercetin - often combined with the tyrosine kinase inhibitor dasatinib - reduce senescent cell burden across multiple tissues. This targeted clearance lowers circulating SASP factors, attenuates tissue fibrosis, restores endothelial reactivity, and improves functional health span. By removing senescent cells, quercetin mitigates the primary driver of chronic, low-grade inflammaging.

Modulating the mTOR Pathway for Optimal Autophagy

The mechanistic Target of Rapamycin (mTOR) is an evolutionarily conserved serine/threonine protein kinase that coordinates cellular metabolism by balancing anabolic growth with catabolic recycling. Operating within two multiprotein complexes - mTORC1 and mTORC2 - the mTOR pathway integrates signals from amino acids, growth factors, and intracellular energy levels. In nutrient-rich environments, mTORC1 promotes protein synthesis, lipogenesis, and cellular growth, while suppressing catabolic breakdown. Conversely, nutrient scarcity downregulates mTORC1, activating autophagy.

Autophagy is an intracellular degradation system that packages damaged organelles, misfolded protein aggregates, and biological debris into double-membraned autophagosomes for lysosomal degradation and recycling. A specialized branch of this pathway, mitophagy, selectively targets and clears damaged mitochondria. In modern metabolic conditions characterized by continuous caloric intake, mTORC1 can remain persistently active. This persistent signaling suppresses autophagy, causing damaged organelles and toxic aggregates to accumulate within tissues.

Quercetin functions as a natural modulator of mTOR signaling. By inhibiting upstream PI3K/Akt signaling and activating intracellular energy sensors, quercetin attenuates overactive mTORC1, mimicking the metabolic effects of caloric restriction. This down-regulation relieves inhibition on the ULK1 autophagy initiation complex, stimulating both general autophagy and mitophagy. As autophagy proceeds, cells clear protein aggregates and eliminate damaged mitochondria, supporting cellular longevity and proteostasis.

Enhancing Absorption: Phytosomes and Dietary Fats

Despite the biological activities of quercetin identified in experimental models, its clinical translation has historically been limited by poor oral bioavailability. Raw quercetin aglycone is a crystalline, hydrophobic polyphenol with poor solubility in water and gastrointestinal fluids. When ingested in unformulated powder forms, quercetin molecules aggregate in the gut lumen, resisting dissolution and passive absorption. Consequently, the vast majority of an unformulated dose passes into the colon unabsorbed, where it undergoes microbial degradation without Reaching meaningful systemic concentrations.

To address these pharmacokinetic limitations, advanced delivery systems such as phytosomes were engineered. A phytosome is a 100% food-grade molecular complex where individual polyphenolic molecules are bound to dietary phospholipids, typically sunflower-derived phosphatidylcholine. Unlike a classical liposome - which encapsulates water-soluble compounds inside an aqueous core enclosed by a lipid bilayer - a phytosome forms an amphiphilic complex at the molecular level.

The polar head of the phosphatidylcholine molecule forms hydrogen bonds with the hydroxyl groups of the quercetin molecule, while its lipophilic fatty acid tails extend outward. This structural arrangement shields the polar regions of the flavonoid, creating a lipid-compatible complex that integrates smoothly into the intestinal mucosa.

Pharmacokinetic Parameter Unformulated Quercetin (500 mg) Quercetin Phytosome (500 mg) Clinical Significance
Peak Plasma Concentration (C_max) 10.93 +- 2.22  ng/mL

[cite: 36]

223.10 +- 16.32 ng/mL

[cite: 36]

Approximately 20-fold higher peak circulating concentration.
Area Under the Curve (AUC_last) 4,774.93 +- 1,190.61  min . ng/mL

[cite: 36]

96,163.87 +- 9,291.31 min . ng/mL

[cite: 36]

Roughly 20-fold increase in total systemic biological exposure.
Time to Peak Concentration (T_max) 290.00 +- 31.19 min

[cite: 36]

202.50 +- 35.97 min

[cite: 36]

Faster intestinal absorption and systemic distribution.
Formulation Matrix Crystalline aglycone; high luminal aggregation. Phospholipid complex; enhanced membrane transit. Direct cellular entry via physiological lipid pathways.
Human pharmacokinetic trials demonstrate that quercetin phytosomes achieve up to 20-fold greater oral bioavailability compared to standard unformulated quercetin extracts. For standard, non-phytosome quercetin preparations, co-ingestion with dietary lipids provides an alternative method to enhance absorption. Ingesting fats stimulates the release of cholecystokinin, triggering biliary secretion and the formation of mixed micelles in the small intestine. These micelles solubilize hydrophobic quercetin molecules, facilitating their diffusion across the unstirred water layer of the enterocyte brush border.

The Importance of Methylation in Healthy Aging

Vitamin B-Complex and Choline as Essential Methyl Donors

Methylation is an essential biochemical process occurring billions of times each second across all human tissues. It involves the transfer of a single-carbon unit - a methyl group consisting of one carbon atom bound to three hydrogen atoms - (CH3) - from a donor molecule to diverse recipients, including DNA, RNA, structural proteins, neurotransmitters, and membrane phospholipids. This transfer of one-carbon units is coordinated by the methionine-homocysteine cycle, which sustains genetic stability, detoxification pathways, and cellular repair.

At the center of this pathway sits S-adenosylmethionine (SAM), the universal methyl donor in human biology. When a methyltransferase enzyme transfers a methyl group from SAM to an acceptor molecule, SAM is converted into S-adenosylhomocysteine (SAH). SAH functions as a potent competitive inhibitor of intracellular methyltransferases. To maintain functional methylation, SAH is rapidly hydrolyzed into homocysteine, a sulfur-containing amino acid that must be remethylated or cleared through transsulfuration.

Homocysteine clearance proceeds through two distinct remethylation pathways. The primary route operates across most tissues via the enzyme methionine synthase, which requires vitamin B12 in its active methylcobalamin form. Methionine synthase transfers a methyl group from 5-methyltetrahydrofolate (5-MTHF, the active form of folate) to homocysteine, regenerating methionine. The ongoing production of 5-MTHF depends on the enzyme methylenetetrahydrofolate reductase (MTHFR), which utilizes riboflavin (vitamin B2) as a cofactor.

Alternatively, excess homocysteine can be routed into the transsulfuration pathway by vitamin B6 (as pyridoxal-5'-phosphate) to synthesize cystathionine, cysteine, and ultimately the antioxidant glutathione.

A secondary remethylation pathway, active predominantly in hepatic and renal tissues, bypasses folate entirely. In this route, dietary choline is oxidized to betaine (trimethylglycine or TMG). The enzyme betaine-homocysteine S-methyltransferase (BHMT) then transfers a methyl group from betaine directly to homocysteine, yielding methionine and dimethylglycine.

When dietary intake of active B-vitamins or choline is insufficient, or when genetic variations like MTHFR polymorphisms reduce pathway flux, the methylation cycle slows. Homocysteine accumulates in circulation, promoting vascular and neurological inflammation, while SAM reserves decline, restricting cellular methylation capacity.

Understanding DNA Methylation and Epigenetic Health

Every somatic cell in an organism carries an identical genetic code. Cellular differentiation and tissue-specific functions are governed by the epigenome: a regulatory layer of chemical modifications that dictates gene expression without altering underlying DNA sequences. DNA methylation represents the primary and most stable epigenetic modification. In this process, DNA methyltransferase (DNMT) enzymes utilize methyl groups donated by SAM to add a methyl tag to cytosine bases adjacent to guanine residues, forming 5-methylcytosine within CpG dinucleotide sites.

Under physiological conditions, DNA methylation maintains genomic stability and coordinates transcription. Methylation of promoter regions condenses chromatin, repressing transposable elements and silencing genes inappropriate for a given cell type. Conversely, hypomethylated promoters maintain an open chromatin state, allowing transcription factors to bind and initiate gene expression.

During biological aging, this epigenetic landscape undergoes progressive dysregulation, a phenomenon termed "epigenetic drift". Aging cells experience global hypomethylation alongside focal hypermethylation of specific gene promoters. Global loss of methyl tags destabilizes the genome, activating retrotransposons and pro-inflammatory pathways. Simultaneously, hypermethylation at targeted promoter sites silences critical tumor suppressor genes and DNA repair complexes.

This systematic change in DNA methylation patterns is consistent across populations, allowing researchers to develop molecular "epigenetic clocks". Algorithms such as the Horvath clock, PhenoAge, and GrimAge quantify biological age by profiling the methylation status of specific CpG sites across the genome. These clocks assess whether individuals are aging faster or slower than their chronological years. Ensuring a steady supply of methyl donors and preventing unnecessary SAM depletion supports DNMT activity, maintaining epigenetic patterns and genomic stability.

How the Methylation Cycle Impacts Energy and Cognitive Focus

Beyond long-term epigenetic regulation, the methylation cycle directly modulates immediate biochemical processes that govern daily energy, neurotransmission, and cognitive focus. Compromised methylation capacity frequently manifests as cognitive slowing, executive fatigue, and reduced physical stamina.

A major consumer of methyl reserves is the endogenous synthesis of creatine. Approximately 40% of all SAM-derived methyl groups in the human body are utilized by guanidinoacetate N-methyltransferase (GAMT) in the liver to synthesize creatine. Creatine then translocates to the brain and skeletal muscle, where it is phosphorylated into phosphocreatine.

Phosphocreatine functions as a rapid energy buffer, donating a high-energy phosphate group to regenerate ADP into ATP in milliseconds during demanding physical or cognitive tasks. When methyl donor availability falls, endogenous creatine synthesis drops, depleting phosphocreatine reserves and increasing susceptibility to neuromuscular and cognitive fatigue.

Methylation is equally central to central nervous system architecture. SAM provides methyl groups to convert phosphatidylethanolamine into phosphatidylcholine, the predominant phospholipid comprising neuronal cell membranes and the myelin sheaths that insulate axons. Intact myelin preserves rapid action potential conduction throughout the nervous system.

Furthermore, free choline derived from this pathway is the direct precursor to acetylcholine, the neurotransmitter required for attention, working memory, and learning.

The methylation cycle also governs monoamine neurotransmitter metabolism. SAM is required for the synthesis of adrenaline (epinephrine) from noradrenaline, while catechol-O-methyltransferase (COMT) relies on SAM to degrade dopamine and norepinephrine within the prefrontal cortex. Sluggish methylation disrupts this balance, contributing to cognitive fatigue, mood variability, and impaired mental performance.

Building a Comprehensive Longevity Protocol

Synergizing NR, Quercetin, and Methylated B-Vitamins

Longevity supplementation often falters when single molecules are administered in isolation, ignoring interconnected metabolic pathways. Designing an effective cellular longevity protocol requires combining complementary mechanisms that reinforce one another while preventing secondary metabolic deficits. The combination of Nicotinamide Riboside, Quercetin Phytosome, and Methylated B-Vitamins illustrates this multi-target synergy.

This synergy is grounded in the direct biochemical intersection between the NAD+ salvage pathway and the methylation cycle. When high-dose NR is supplemented to boost systemic NAD+, sirtuins and PARP enzymes consume the newly synthesized cofactor, generating substantial quantities of free nicotinamide (NAM). This intracellular nicotinamide faces two primary metabolic fates: it can be recycled back into NAD+ through the NAMPT-dependent salvage loop, or it can be cleared via methylation.

When the influx of nicotinamide exceeds salvage recycling capacity, the excess is cleared to avoid feedback inhibition of sirtuin enzymes. To accomplish this, the enzyme nicotinamide N-methyltransferase (NNMT) transfers a methyl group from SAM directly onto nicotinamide, forming 1-methylnicotinamide (1-MNA/MNAM), which is subsequently excreted in urine.

Prolonged, high-dose precursor administration without nutritional methyl support can elevate NNMT flux, depleting intracellular SAM reserves. As methyl groups are consumed clearing nicotinamide, the cellular SAM-to-SAH ratio falls, which can elevate circulating homocysteine and reduce methyl availability for DNA methylation and neurotransmitter synthesis.

Co-administering a fully methylated B-complex alongside choline or betaine addresses this potential bottleneck. Providing active methyl donors (such as 5-MTHF, methylcobalamin, and betaine) maintains the one-carbon donor pool. Even during increased NNMT activity, SAM pools remain stable, protecting DNA methylation fidelity and maintaining homocysteine within safe parameters.

Quercetin reinforces this protocol through complementary mechanisms. By clearing senescent cells and reducing SASP-mediated inflammation, quercetin downregulates CD38, the primary enzyme responsible for age-related NAD+ degradation. Suppressing CD38 prevents unnecessary breakdown of newly synthesized NAD+, enhancing the efficiency of NR supplementation.

Furthermore, while NR provides the NAD+ necessary to activate SIRT1-driven mitochondrial biogenesis, quercetin concurrently modulates mTORC1 to stimulate autophagy. This coordinated action ensures that newly generated mitochondria operate in an environment cleared of proteotoxic cellular debris.

The Crucial Role of Magnesium Glycinate and Zinc in Cellular Function

Longevity protocols require essential mineral cofactors to function efficiently. Without adequate divalent minerals acting as enzymatic cofactors and structural stabilizers, metabolic longevity pathways cannot operate at full capacity. Among these, magnesium and zinc are required for cellular repair, genomic stability, and energy production.

Magnesium serves as an obligatory cofactor in over 300 enzymatic reactions, primarily through its interaction with ATP. In biological systems, ATP exists predominantly as a chelate with a divalent magnesium ion, forming biologically active Mg2+ -ATP.

Every enzymatic reaction that synthesizes, transfers, or consumes cellular energy - including the enzymes of the NAD+ salvage pathway (NRK and NMNAT) and DNA polymerases - strictly requires Mg2+ -ATP as its substrate. Magnesium deficiency impairs these phosphorylation reactions, reducing the cellular utilization of NAD+ precursors.

Additionally, magnesium is an essential cofactor for the enzymes that activate dietary B-vitamins into their active forms. Supplying magnesium as magnesium glycinate provides high gastrointestinal bioavailability, minimal laxative effect, and yields glycine to support inhibitory neurotransmission and restful sleep.

Zinc serves as a vital structural component for more than 3,000 human transcription factors and enzymatic proteins. Its most prominent structural role in longevity occurs within zinc-finger motifs. These are specialized protein conformations stabilized by a zinc ion coordinated to cysteine and histidine residues.

The DNA damage sensor PARP-1 utilizes three zinc-finger domains to identify, track, and physically bind to single- and double-strand DNA breaks. Without adequate intracellular zinc, PARP-1 cannot properly assemble or dock onto damaged chromosomes, impairing DNA repair and increasing genomic instability.

Zinc is also an obligatory structural component of copper/zinc superoxide dismutase (Cu/Zn-SOD or SOD1), the primary cytosolic antioxidant enzyme that dismutates superoxide radicals into hydrogen peroxide, protecting mitochondrial membranes and nuclear DNA from premature senescence.

Integrating Prebiotics (like Acacia and Inulin) for Gut-Derived Longevity Markers

A comprehensive cellular longevity framework must extend beyond somatic tissues to encompass the gut microbiome. The intestinal microbiome functions as a central regulator of systemic inflammatory tone, immune development, and metabolic signaling. Age-associated dysbiosis - characterized by the loss of beneficial commensals and an overgrowth of pathobionts - frequently leads to breakdown of the intestinal barrier.

The gut epithelium consists of a single-cell monolayer sealed by tight junction proteins, including zonula occludens-1 (ZO-1), occludin, and claudins. When this physical barrier is disrupted by poor dietary fiber intake or dysbiosis, gut permeability increases.

This allows lipopolysaccharide (LPS), a component of the outer membrane of Gram-negative bacteria, to enter the portal and systemic circulation. The resulting "metabolic endotoxemia" activates Toll-like receptor 4 (TLR4) on immune cells, inducing NF-kB and systemic pro-inflammatory cytokine production. This persistent gut-derived inflammation exacerbates the SASP, accelerates tissue senescence, upregulates CD38, and drains systemic NAD+ reserves.

Prebiotic Soluble Fiber Fermentation Kinetics Primary Physiological Benefits
Acacia Fiber (Gum Arabic) Slow, uniform fermentation throughout the distal colon. High digestive tolerance without sudden gas; sustained distal SCFA generation.
Inulin (Fructo-oligosaccharides) Rapid, targeted bifidogenic fermentation. Promotes Bifidobacteria; upregulates tight junctions; reduces LPS translocation.
Supplying non-digestible prebiotic soluble fibers, such as acacia fiber and inulin, directly targets this inflammatory cascade. Acacia and inulin resist enzymatic hydrolysis in the upper gastrointestinal tract, Reaching the colon intact to nourish beneficial commensal microbes, particularly Bifidobacterium species and Faecalibacterium prausnitzii. Through saccharolytic fermentation, these bacteria convert prebiotic fibers into short-chain fatty acids (SCFAs): acetate, propionate, and butyrate.

These short-chain fatty acids, particularly butyrate, exert direct protective effects on systemic longevity. Butyrate provides the primary metabolic fuel for colonic epithelial cells, supplying more than 70% of their baseline energy needs and supporting mitochondrial function within colonocytes.

Furthermore, SCFAs upregulate the expression of epithelial tight junction proteins (ZO-1, occludin, and claudin-1), restoring intestinal barrier integrity and preventing the translocation of inflammatory LPS into systemic circulation.

Systemically absorbed butyrate also functions as an endogenous histone deacetylase (HDAC) inhibitor, suppressing pro-inflammatory gene expression and supporting regulatory T cell (T_reg) development. Reducing metabolic endotoxemia dampens systemic inflammation, protecting vascular function and preventing premature NAD+ depletion.

Conclusion: The Integrated Cellular Longevity Matrix

Cellular longevity is achieved not by addressing isolated biomarkers in isolation, but by systematically supporting interconnected biological pathways. As bioenergetic capacity declines, cellular senescence accelerates, epigenetic patterns degrade, and gut barrier integrity weakens. A comprehensive approach addresses these biological vulnerabilities simultaneously.
Protocol Component Primary Biological Target Primary Biochemical Mechanism Coordinated Longevity Outcome
Nicotinamide Riboside (NR) NAD+ Salvage Pathway Phosphorylated by NRK1/2 to bypass rate-limiting NAMPT. Restores mitochondrial ATP, activates SIRT1/3, fuels PARP-1 DNA repair.
Quercetin (Phytosome Form) Senescent Cells & mTORC1 Disrupts anti-apoptotic SCAP networks and suppresses PI3K/Akt/mTOR. Clears zombie cells, blunts toxic SASP, and triggers autophagic cleanup.
Methylated B-Complex & Choline/TMG One-Carbon Methylation Cycle Supplies methyl groups to regenerate SAM and clear homocysteine. Offsets NNMT clearance demands, protects DNA methylation, and fuels creatine.
Magnesium Glycinate & Zinc Enzymatic Cofactors & DNA Binding Forms active Mg2+ -ATP; stabilizes zinc-finger repair motifs. Ensures optimal ATP function, powers salvage kinases, supports PARP-1 docking.
Prebiotic Fibers (Acacia & Inulin) Gut Microbiome & Intestinal Wall Fermented into SCFAs (butyrate) via beneficial commensals. Seals intestinal tight junctions, halts LPS endotoxemia, lowers inflammaging.
Integrating these interventions creates clear biological synergy. Nicotinamide Riboside raises intracellular NAD+, providing the substrate for sirtuin-mediated mitochondrial biogenesis and PARP-1-mediated DNA repair.

Quercetin Phytosome clears senescent cells and modulates mTORC1, stimulating autophagy while dampening the inflammatory SASP cascade that accelerates CD38-mediated NAD+ destruction.

Methylated B-vitamins, active folate, and choline replenish SAM reserves, balancing the methyl requirements of NNMT-mediated nicotinamide clearance, preserving epigenetic DNA methylation, and maintaining neurotransmitter production.

Magnesium glycinate and zinc provide the structural and catalytic foundation required for ATP utilization, B-vitamin activation, and PARP-1 zinc-finger DNA repair docking.

Finally, prebiotic fibers generate short-chain fatty acids like butyrate, reinforcing the intestinal barrier and preventing metabolic endotoxemia from fueling systemic inflammation.

By coordinating energy replenishment, cellular waste clearance, epigenetic maintenance, and the suppression of systemic inflammation, this unified approach directly addresses the underlying drivers of cellular aging to support long-term physiological vitality.

--
Content Put together by Darrell Miller CEO of VitaNet LLC

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6650)


Unlocking Your Cellular Vitality: Understanding the Role of Mitochondria in Energy and Aging
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Date: September 09, 2026 05:22 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Unlocking Your Cellular Vitality: Understanding the Role of Mitochondria in Energy and Aging


Introduction: Understanding Cellular Aging and Energy Decline

Have you ever wondered why you could bounce back from an all-nighter or an intense workout in your twenties, but in your forties or fifties, the same physical effort leaves you feeling drained for days?

Most people think aging is something that happens strictly on the outside - fine lines around the eyes, stiff joints, or gray hairs. In reality, aging begins at a microscopic scale inside your cells, the microscopic building blocks that make up every tissue, muscle, and organ in your body.

Every single day, your body relies on roughly 30 trillion cells working in unison. When your cells are young and resilient, they operate like a well-oiled machine: they repair minor damage instantly, clear away waste, and produce abundant energy. But over time, two fundamental biological shifts take place:

  1. Your cellular power plants start slowing down, reducing the steady flow of energy your body needs to thrive.
  2. Damaged cells refuse to recycle themselves, lingering behind and creating biological friction for healthy neighbors.
Understanding how cellular aging works is not just fascinating science - it is the master key to understanding why vitality declines and how we can support our bodies to feel energized, resilient, and sharp at every stage of life.

The Role of Mitochondria and ATP Production

To understand where your daily energy comes from, you have to look inside your cells at tiny structures called mitochondria.

Often called the "powerhouses" of the cell, mitochondria function like miniature power stations. A single cell can house hundreds or even thousands of them, especially energy-hungry cells like those in your heart, brain, and skeletal muscles.

The Body’s Energy Currency: What is ATP?

Your body cannot directly use a sandwich or a cup of coffee to power muscle contractions or brain signals. Instead, your mitochondria take the nutrients from your food and combine them with the oxygen you breathe to manufacture a chemical molecule called adenosine triphosphate (ATP).

Think of ATP as your body’s universal energy currency:

  • Every heartbeat "spends" ATP.
  • Every thought, muscle contraction, and cellular repair job requires a steady supply of ATP coins.
  • In the folds of the inner mitochondrial membrane (the cristae pictured above), microscopic protein motors called ATP synthase act like tiny hydroelectric turbines, churning out billions of ATP molecules every second.

Why Cellular Energy Production Declines with Age

When you are young, your mitochondria are abundant, pristine, and remarkably efficient. However, the very process of creating energy comes with an unavoidable side effect: oxidative stress.

Much like an engine produces exhaust fumes while burning fuel, mitochondria produce reactive byproducts known as free radicals (reactive oxygen species). Over decades, these "exhaust fumes" slowly damage the inner machinery of the mitochondria:

  • Mitochondrial DNA Damage: Unlike other parts of the cell, mitochondria possess their own distinct DNA, which sits right next to where the oxidative "exhaust" is released. Because this DNA lacks the robust defense systems of your main cellular nucleus, it accumulates wear and tear faster.
  • Leaky, Less Efficient Turbines: Damaged mitochondria struggle to produce ATP at full capacity. Instead of generating clean energy, they burn fuel inefficiently and generate even more oxidative stress.
  • Reduced Mitochondrial Number: As damaged mitochondria break down faster than the cell can replace them, the total number of working power generators inside each cell drops.
When your cellular energy currency dries up, you experience it in real life as persistent fatigue, brain fog, slower physical recovery, and a general feeling that your internal battery will no longer hold a full charge.

How Cellular Senescence Accelerates the Aging Process

If mitochondrial decline is a problem of power shortage, cellular senescence is a problem of biological clutter and pollution.

In a healthy body, normal cells follow a strict lifecycle: they divide, perform their jobs, and when they incur significant damage or Reach the end of their useful lifespan, they undergo a tidy self-destruction process called apoptosis (programmed cell death). Your immune system then clears away the debris, making room for fresh, vibrant cells.

Cellular senescence happens when this cleanup process fails.

The "Zombie Cell" Phenomenon

When a cell experiences extreme stress - such as shortened telomeres (the protective caps on chromosomes), severe DNA breaks, or severe mitochondrial dysfunction - it Reaches a biological crossroads. To prevent the damaged cell from dividing uncontrollably (which could lead to tumors), the body puts the brakes on.

The cell enters a permanent state of dormancy:

  • It permanently stops dividing.
  • Crucially, it refuses to die.
Because they neither live normally nor clear out to make room for new life, scientists colloquially call senescent cells "zombie cells."

Why Zombie Cells Are So Damaging: The Bad Apple Effect

Having a few retired cells hanging around might not sound catastrophic, but senescent cells do not sit quietly. Instead, they secrete a toxic chemical cocktail known as the Senescence-Associated Secretory Phenotype (SASP).

This cocktail is packed with pro-inflammatory cytokines, chemokines, and tissue-degrading enzymes. Picture one spoiled apple sitting in a fruit basket: the ethylene gas it emits quickly causes the healthy apples surrounding it to rot.

In the same way, the toxic secretions from zombie cells:

  1. Spread the Damage: They trigger inflammation and induce premature senescence in healthy neighboring cells.
  2. Break Down Healthy Tissue: The enzymes degrade the extracellular matrix (the collagen and elastin scaffolds that keep skin firm and arteries flexible).
  3. Exhaust the Immune System: Your immune cells are dispatched to manage the constant, low-grade alarm signals, gradually wearing out your natural defense network.
This persistent, body-wide smoldering inflammation driven by senescent cells is often referred to as "inflammaging."

The Vicious Cycle of Cellular Aging

Mitochondrial decay and cellular senescence are not isolated events; they feed directly into one another:
Cellular Component The Healthy State The Aging State Everyday Customer Impact
Mitochondria Abundant, high ATP output, minimal oxidative leaks Fewer power plants, high free-radical leakage Low stamina, brain fog, slow workout recovery
Cellular Turnover Old cells self-destruct (apoptosis) and get recycled Damaged cells linger as senescent "zombie cells" Tissue stiffness, chronic low-grade inflammation
Tissue Environment Clean, cooperative, nutrient-rich cellular matrix Bathed in inflammatory secretions (SASP) Premature aging of skin, joints, and organs
When mitochondria lose efficiency, the excess free radicals they emit trigger DNA damage, forcing the cell into senescence. In turn, the inflammatory chemicals pumped out by senescent cells degrade the mitochondria of neighboring cells.

What This Means for Everyday Health

The good news from modern longevity science is that cellular decline is not entirely out of our hands. While aging is natural, the rate at which our cellular engines degrade can be influenced by daily habits:
  • Exercise Stimulates New Power Plants: High-intensity intervals and resistance training trigger a process called mitochondrial biogenesis - prompting your cells to build brand-new, clean-burning mitochondria.
  • Fasting & Caloric Balance Trigger Autophagy: Periods between meals signal cells to clean house, breaking down dysfunctional proteins and clearing away debris.
  • Targeted Micronutrients & Antioxidants: Supporting key cellular cofactors (such as NAD+, CoQ10, and polyphenols) helps shield mitochondrial membranes from oxidative strain and supports the body's natural cellular renewal pathways.
By taking care of the microscopic engines and cleanup crews inside your cells, you lay the groundwork for sustained energy, mental clarity, and long-term vitality.

Summary:

Aging is fundamentally a microscopic process occurring inside the body's trillions of cells, which naturally become less resilient over time. Central to this decline are the mitochondria, the tiny structures that function as the cell's "power plants" to produce adenosine triphosphate (ATP), the universal chemical currency for everyday energy. While young mitochondria are abundant and pristine, decades of producing ATP generate oxidative stress through byproducts called free radicals, which eventually wear down and damage mitochondrial DNA and machinery. This damage results in fewer, less efficient power generators, lowering total cellular energy output, which individuals experience as real-world physical fatigue and mental fog.

Aging is further accelerated by cellular senescence, a condition where damaged cells stop dividing but, instead of naturally self-destructing like healthy ones, linger behind as dormant "zombie cells." These senescent cells secrete a pro-inflammatory chemical mixture known as the Senescence-Associated Secretory Phenotype (SASP), which functions like a "bad apple" by poisoning healthy neighboring cells and tissues, creating a state of chronic biological pollution termed "inflammaging." Mitochondrial decay and senescence feed into one another in a vicious cycle that directly drives overall aging. However, longevity science highlights that healthy lifestyle habits, including regular exercise and periods of fasting, can support continued vitality by encouraging the development of new mitochondria and the clearing of this toxic cellular clutter.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6649)


The Dual Action of DLPA: Endorphin Shielding and Neurotransmitter Support 
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Date: May 22, 2026 12:27 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The Dual Action of DLPA: Endorphin Shielding and Neurotransmitter Support 


What is DLPA and How Does It Help Relieve Pain?



DLPA (DL-phenylalanine) is a nutritional supplement that offers a unique approach to managing chronic pain. Instead of suppressing inflammation or directly numbing nerves like over-the-counter pain relievers, DLPA works by protecting and prolonging the body’s own built-in painkillers.

To understand how it works, it helps to break down the molecule. DLPA is a 50/50 mixture of two stereoisomers (mirror-image structures) of the essential amino acid phenylalanine:

Form Origin Primary Biological Role
L-phenylalanine Naturally occurring in protein-rich foods Synthesizes neurotransmitters like dopamine and epinephrine
D-phenylalanine Synthesized in a laboratory Inhibits enzymes that destroy the body's natural painkillers
While they share the exact same chemical formula, their reversed 3D structures give them completely different jobs. The pain relief comes entirely from the "D" half, while the "L" half provides necessary neurological support.

How D-Phenylalanine Relieves Pain

The human body has an endogenous analgesia system—a built-in network for managing pain perception. D-phenylalanine acts as a biochemical shield for this system through a very specific mechanism:
  1. The Endorphin Release: When you experience physical trauma or chronic stress, your central nervous system releases endogenous opioids, primarily endorphins and enkephalins. These peptides bind to receptors in the brain and spinal cord, effectively blocking pain signals from Reaching your conscious awareness.
  2. The Enzymatic Breakdown: The body doesn't leave these natural painkillers active indefinitely. To maintain physiological balance, it produces specific enzymes—known as enkephalinases and endorphinases—that rapidly degrade and destroy these peptides shortly after they are released.
  3. The Intervention: D-phenylalanine functions as an enkephalinase inhibitor. By binding to and slowing down the enzymes responsible for clearing out endorphins, DPA protects your natural painkillers from premature destruction.
Essentially, D-phenylalanine doesn't block pain directly; it simply allows your natural endorphins and enkephalins to circulate longer and concentrate in higher amounts, providing sustained musculoskeletal comfort.

Why Include the "L" Form?

You might wonder why a supplement doesn't just use pure D-phenylalanine if that's the part that stops the pain.

Chronic pain rarely exists in a vacuum—it is deeply linked to systemic fatigue, mood degradation, and depression. Because chronic pain is neurologically exhausting, it frequently depletes the brain's stimulating neurotransmitters.

The L-phenylalanine half of DLPA acts as the raw precursor material for the catecholamine pathway. Your body converts it into tyrosine, which is then synthesized into dopamine, norepinephrine, and epinephrine (adrenaline). By combining both forms, DLPA provides a dual-action effect: the D-form raises the pain threshold, while the L-form combats the mental fatigue and mood dips that inevitably accompany long-term discomfort.

Key insight: Because DLPA relies on shifting enzyme levels and allowing endorphins to accumulate, it is primarily effective for chronic pain (like osteoarthritis or lingering injuries) rather than acute, immediate pain. It often requires several days to weeks of consistent use to Reach its full therapeutic effect.

Summary:

DLPA (DL-phenylalanine) is a nutritional supplement combining two mirror-image forms of an essential amino acid to provide a unique approach to chronic pain management. Unlike standard pain relievers that suppress inflammation, the "D" form of the molecule acts as a biochemical shield for the body's built-in painkilling system. It functions as an enkephalinase inhibitor, meaning it blocks the specific enzymes responsible for destroying circulating endorphins and enkephalins. By protecting these natural opioids from premature breakdown, DLPA allows them to accumulate and remain active longer, effectively raising the body's natural pain threshold.

Because chronic pain is neurologically exhausting and frequently leads to fatigue or lowered mood, the "L" half of the supplement provides critical mental support. L-phenylalanine serves as a raw precursor for synthesizing stimulating neurotransmitters, including dopamine, norepinephrine, and epinephrine (adrenaline). Together, this dual-action mechanism addresses both the physical sensation of lingering discomfort and the mental fatigue that accompanies it, making DLPA uniquely suited for sustained, long-term pain conditions rather than immediate, acute injuries.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6639)


Beyond Choline: How DMAE Flushes Cellular Waste for Longevity 
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Date: May 21, 2026 03:43 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Beyond Choline: How DMAE Flushes Cellular Waste for Longevity 


How is DMAE and Methylation connected?

Understanding the relationship between DMAE (dimethylaminoethanol) and the methylation cycle is a nuanced dive into nutritional biochemistry. While DMAE is a popular compound for cognitive and cellular health, its interaction with the body’s methyl pool is a critical factor to consider.

DMAE and the Methylation Connection

Biochemically, it is often considered important to support the methylation cycle when supplementing with DMAE. This is due to how the body processes DMAE to create choline.

The "Methyl Drain"

DMAE is a precursor to choline, but the conversion process requires the addition of methyl groups. Specifically, the body uses SAMe (S-adenosylmethionine), the universal methyl donor, to methylate DMAE into choline.

If you supplement with high doses of DMAE without adequate methyl support, you may inadvertently "drain" your methyl pool. This can lead to:

  • Increased Homocysteine: When SAMe donates its methyl group, it eventually turns into homocysteine. Without enough B-vitamins or methyl donors to recycle it, homocysteine levels can rise.
  • Reduced Methylation Capacity: A strained methyl pool can affect other vital functions, such as DNA repair, neurotransmitter synthesis, and phase II liver detoxification.

Strategic Co-factors

To balance this, many researchers suggest pairing DMAE with methyl donors to ensure the cycle remains fluid. Key co-factors include:
  • TMG (Trimethylglycine/Betaine): Directly donates methyl groups to recycle homocysteine.
  • Methylated B-Vitamins: Specifically Methylcobalamin (B12) and Methylfolate (5-MTHF).
  • Choline: Taking choline alongside DMAE can reduce the "demand" on the body to convert DMAE, sparing methyl groups.

How DMAE Supports Longevity

DMAE is often categorized as a "longevity" nutrient because of its impact on cellular waste and membrane integrity.

1. Reduction of Lipofuscin

One of the most cited longevity benefits of DMAE is its ability to reduce lipofuscin (often called "age spots" or "wear-and-tear pigment"). Lipofuscin is a metabolic waste product that accumulates in the heart, brain, and skin cells over time. High levels of lipofuscin can impair cellular function; DMAE helps the body flush these deposits, potentially slowing the cellular aging process.

2. Membrane Stabilization

DMAE acts as a free radical scavenger specifically within the cell membranes. By protecting the lipid bilayer from oxidative stress, it helps maintain membrane fluidity. Flexible, healthy membranes are essential for efficient nutrient transport into the cell and waste removal out of the cell.

3. Acetylcholine Precursor

While its primary longevity mechanism is cellular, DMAE’s role as a precursor to acetylcholine supports cognitive longevity. Maintaining healthy levels of this neurotransmitter is vital for focus, memory, and muscle control as the nervous system ages.

4. Skin Health and "Lifting"

In the context of physical appearance and anti-aging, DMAE is known for its "firming" effect. It is thought to increase the tone of the underlying skin muscles, providing a subtle "lift" and reducing the appearance of fine lines and sagging.

Summary: While DMAE offers potent cellular cleaning and membrane protection, it functions best when the body has a robust supply of methyl donors to handle its conversion without taxing the system.

Does DMAE efficiently convert to Acetylcholine?

The conversion of DMAE (dimethylaminoethanol) into the neurotransmitter acetylcholine is a multi-step biochemical process. Because DMAE is not a direct precursor to acetylcholine, it must first be integrated into the phospholipid metabolism of the cell.

To make this conversion efficient, the body requires specific methyl donors and enzymatic co-factors.

The Two-Step Conversion Process

1. The Methylation Step: DMAE to Choline

DMAE is essentially a "dimethylethanolamine." To become choline (trimethylethanolamine), it requires the addition of a third methyl group.
  • SAMe (S-adenosylmethionine): This is the primary methyl donor. Without sufficient SAMe, DMAE cannot efficiently convert to choline.
  • The Methylation Support Team: To keep SAMe levels high, the body requires Methyl-B12, Methylfolate, and TMG (Trimethylglycine). These nutrients recycle homocysteine back into methionine, which is then used to create more SAMe.

2. The Acetylation Step: Choline to Acetylcholine

Once DMAE has been methylated into choline (or integrated into phosphatidylcholine), it must be acetylated by the enzyme Choline Acetyltransferase (ChAT).
  • Acetyl-CoA: This is the "acetyl donor." It is a byproduct of glucose metabolism and the Krebs cycle. Efficient mitochondrial function is necessary to ensure a steady supply of Acetyl-CoA.
  • Vitamin B5 (Pantothenic Acid): B5 is the fundamental building block of Coenzyme A (CoA). Since Acetyl-CoA is required for the final "acetyl" attachment, B5 is often considered the most critical co-factor for this specific stage.

Optimal Co-factors for Efficiency

To maximize the "brain-boosting" effects of DMAE, the following nutrients are typically used to support the pathway:
Nutrient Role in the Pathway
Vitamin B5 Precursor to Acetyl-CoA; facilitates the acetylation of choline.
TMG / Betaine Provides methyl groups to convert DMAE into choline.
Alpha-GPC / Citicoline Provides a direct source of choline, sparing DMAE for other cellular tasks.
Magnesium Required for ATP production, which fuels the enzymatic reactions in the brain.

The "Choline Sparer" Effect

It is worth noting that DMAE is often more efficient at crossing the blood-brain barrier than standard choline. However, because it "competes" for the same transport systems and enzymes, taking it alongside a high-quality choline source and a B-complex ensures that the body isn't forced to choose between building cell membranes and creating neurotransmitters.

What is it better to consume choline or DMAE?

Deciding between DMAE and choline depends entirely on whether your priority is systemic health (liver and cell membranes) or cognitive performance (acetylcholine production and focus). While choline is technically a "cheaper" raw material, the "efficiency" changes once you factor in how the body processes each compound.

The Efficiency Comparison

Efficiency in this context is usually measured by how well a compound crosses the blood-brain barrier (BBB) and how many metabolic steps are required to Reach the final goal: Acetylcholine.

1. Choline Bitartrate (The "Budget" Option)

  • Cost: Extremely low.
  • Efficiency: High for the liver and general cellular structure, but low for the brain.
  • The Issue: Standard choline salts (like bitartrate or citrate) are often broken down by gut bacteria or filtered by the liver before they can Reach the brain. They do not cross the BBB effectively, meaning you have to take very high doses to see a cognitive effect, which can lead to digestive upset (the "fishy" odor side effect).

2. DMAE (The "Specialist")

  • Cost: Moderate.
  • Efficiency: High for membrane stabilization and waste removal, but variable for acetylcholine.
  • The Issue: Unlike choline, DMAE crosses the BBB quite easily. However, its efficiency is hampered by the "Methyl Drain" mentioned previously. To become choline (and then acetylcholine), it must be methylated. This makes it a multi-step process that can be "expensive" for your body’s biochemistry if you aren't also supplementing with methyl donors like TMG or Methyl-B12.

3. Alpha-GPC & CDP-Choline (The "Premium" Options)

  • Cost: High.
  • Efficiency: Maximum.
  • The Benefit: These are considered the gold standard for efficiency because they are highly bioavailable and pass the BBB effortlessly. They are direct precursors that "skip" the difficult conversion steps required by DMAE or basic choline salts.

Cost-Efficiency Analysis

Feature Choline Bitartrate DMAE Alpha-GPC / CDP-Choline
Price per Gram Lowest Moderate Highest
Brain Penetration Poor Good Excellent
Metabolic Cost Low High (Requires Methylation) Minimal
Primary Use Liver health, pregnancy Anti-aging, waste removal Focus, memory, power output

Which is better?

  • For pure cost-efficiency: If you are simply looking to meet your daily essential nutrient requirements for liver health and general cellular integrity, Choline Bitartrate is the winner. It provides the most "raw" choline per dollar.
  • For cognitive efficiency: If your goal is mental clarity or "nootropic" benefits, Alpha-GPC or CDP-Choline are actually more "efficient" despite the higher price tag. Because they Reach the brain so effectively, you can take much smaller doses to achieve a significantly greater effect than a mountain of cheap choline bitartrate.
  • The DMAE Exception: You would choose DMAE not as a "cheap choline," but for its unique ability to clear lipofuscin (cellular waste) and stabilize membranes. In this regard, choline cannot replace DMAE.
Verdict: If you are already supporting your methylation cycle (using TMG or B-vitamins), DMAE becomes much more efficient. However, if you want the most direct path to brain health without "taxing" other systems, a high-quality choline like Alpha-GPC is generally the superior choice.

Summary:

Supplementing with DMAE (dimethylaminoethanol) creates a unique biochemical dynamic in the body, particularly regarding cognitive performance and cellular longevity. While DMAE crosses the blood-brain barrier effectively, its conversion into the crucial neurotransmitter acetylcholine requires an additional methyl group, a process that can significantly drain the body's universal methyl donor, SAMe. To prevent this "methyl drain" and avoid issues like elevated homocysteine, it is highly beneficial to pair DMAE with strategic co-factors and methyl donors such as TMG (trimethylglycine) and methylated B-vitamins. Beyond its role in acetylcholine production, DMAE supports longevity through distinct cellular mechanisms that standard choline cannot replicate, specifically by neutralizing free radicals to stabilize cell membranes and flushing out lipofuscin, an age-related cellular waste product.

When evaluating whether to replace DMAE with direct choline supplementation for cost and efficiency, the decision hinges on your specific physiological goals. Standard budget options like choline bitartrate are highly cost-effective for general liver health and systemic cell structures, but they suffer from very poor brain penetration. Conversely, premium forms like Alpha-GPC and CDP-Choline are far more efficient for cognitive optimization and memory because they cross the blood-brain barrier effortlessly without taxing the body's methylation cycle. Ultimately, while cheap choline salts cannot replicate DMAE's unique cellular cleaning properties, choosing a premium choline source is a more direct and biochemically efficient path for raw cognitive enhancement, especially if you want to avoid the multi-step metabolic cost associated with converting DMAE.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6638)


Why Do Sugar and Vitamin C Compete for the Same "Doorway" in Your Body?
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Date: April 10, 2026 02:40 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Why Do Sugar and Vitamin C Compete for the Same "Doorway" in Your Body?


The relationship between sugar and the immune system is primarily centered on a concept called competitive inhibition. When you consume high amounts of sugar, it essentially "crowds out" the nutrients your immune cells need to function.

1. Why Sugar Suppresses the Immune System

The primary mechanism of sugar-induced immune suppression involves phagocytosis—the process by which white blood cells (specifically neutrophils and macrophages) engulf and "eat" harmful bacteria and viruses.
  • Phagocytic Inhibition: High levels of glucose in the bloodstream slow down these white blood cells. They become sluggish and less effective at identifying and destroying pathogens.
  • Reduced Adhesiveness: Research suggests that high sugar levels reduce the "stickiness" of white blood cells, making it harder for them to attach to and exit blood vessels to Reach the site of an infection.

2. Consumption Levels and Duration

Based on classic studies (notably the Sanchez et al. study from 1973), the "tipping point" for immune suppression is surprisingly low:
Metric Detail
Consumption Level 75 to 100 grams of sugar (approx. 20 teaspoons). For context, two 12oz cans of soda typically contain about 80g of sugar.
Magnitude of Effect A reduction of up to 50% in the ability of white blood cells to engulf bacteria.
Onset Suppression starts as soon as 30 minutes after ingestion.
Peak Effect The greatest suppression occurs 1 to 2 hours after consumption.
Duration The effect can last for up to 5 hours post-ingestion.

3. Why Sugar Reduces Vitamin C Absorption

Sugar (glucose) and Vitamin C (ascorbic acid) are chemically very similar. In fact, most animals can synthesize Vitamin C directly from glucose. Because of this "molecular mimicry," they use the same "doorways" to enter your cells: the GLUT-1 receptors.
  • Competitive Binding: Your white blood cells have a high concentration of GLUT-1 receptors because they require massive amounts of Vitamin C to function. However, these receptors have a higher "affinity" for glucose.
  • The "Crowding" Effect: If your blood is flooded with glucose, the receptors will prioritize the sugar, leaving the Vitamin C "locked out" of the cell. This means that even if you have enough Vitamin C in your blood, it can't get into the cells where it's actually needed.

4. How Vitamin C Supports the Immune System

Vitamin C is not just a general "booster"; it plays several highly specific roles in the immune response:
  • The "Mop" Effect (Antioxidant): When white blood cells attack a virus, they release "oxidative bursts" - essentially a form of biological bleach—to kill the pathogen. This bleach can also damage the immune cell itself. Vitamin C acts as a powerful antioxidant (a "mop") that neutralizes the excess bleach, protecting the immune cell so it can keep fighting.
  • Chemotaxis: It helps "guide" immune cells to the site of infection faster, acting like a chemical GPS.
  • Production of Interferon: Vitamin C helps the body produce interferons, which are proteins that signal the rest of the immune system to prepare for a viral attack.
  • Collagen Synthesis: It is vital for building strong skin and mucosal barriers, which are the body's first line of defense against entering pathogens.
By keeping your sugar intake low, you ensure the "doorways" (GLUT-1 receptors) remain open for Vitamin C to enter your immune cells and perform these critical tasks.

How much vitamin c should one consume if a cold comes on to effectively boost immune function ?

When a cold starts to settle in, your immune cells (especially those hungry white blood cells we talked about) begin to burn through Vitamin C at an accelerated rate. To "effectively" boost function during this window, you shift from a maintenance dose to what is often called a loading or therapeutic dose.

1. The "Rescue" Dose (Symptom Onset)

Research (including a significant meta-analysis by Cochrane) suggests that while daily Vitamin C doesn't always prevent a cold, taking a high dose the moment you feel a scratchy throat can shorten the duration.
  • The "Day 1" Protocol: Some clinical studies have seen success with 4 to 8 grams (4,000-8,000 mg) on the very first day of symptoms.
  • The Follow-up: After the first 24 hours, many protocols drop down to 2,000 mg daily until symptoms resolve.

2. The Golden Rule: Divided Doses

Your body has a "speed limit" for Vitamin C absorption. If you take 2,000 mg in one giant pill, your gut will likely rebel, and most of it will end up in the toilet.
  • Max Absorption: The body absorbs Vitamin C most efficiently in chunks of 500 mg or less.
  • The Strategy: Instead of one big dose, take 500 mg every 2-3 hours. This keeps your blood levels saturated throughout the day rather than creating a single "spike and crash."

3. Finding Your "Bowel Tolerance"

In functional medicine, people often use the "Bowel Tolerance" method during illness. Because your body uses more Vitamin C when you're sick, your gut can actually handle higher doses than usual without issues.
  • The Signal: You gradually increase your dose (e.g., 1,000 mg every hour) until you experience gas or loose stools.
  • The "Dose": Once you hit that point, you back off slightly. This is theoretically your body's way of saying, "I'm full; I can't use any more than this right now."

?? Important Reality Checks

  • The Sugar Trap: If you take your Vitamin C in the form of sugary gummies or with a big glass of orange juice, you're re-introducing the competitive inhibition problem. The glucose in the juice will compete with the supplement for those GLUT-1 "doorways." Take it with water.
  • The Upper Limit (UL): The official "Tolerable Upper Intake Level" for adults is 2,000 mg per day. Going significantly over this for more than a few days can cause diarrhea, nausea, and—in susceptible individuals—increase the risk of kidney stones (since excess Vitamin C is excreted as oxalate).
  • Quality Matters: Look for "buffered" Vitamin C (like magnesium or calcium ascorbate) if you have a sensitive stomach; it’s less acidic than straight ascorbic acid.
The "TL;DR" Plan: At the first sign of a sniffle, aim for 500 mg every 2 hours (totaling ~3,000-4,000 mg for the first day), then stick to 2,000 mg/day in divided doses until you’re back on your feet.

Sugar intake directly hinders immune function by slowing down phagocytosis, the process where white blood cells destroy pathogens, with just 75 to 100 grams of sugar reducing this activity by up to 50% for approximately five hours. This occurs because glucose and Vitamin C share a nearly identical molecular structure and compete for the same GLUT-1 receptors to enter cells; when blood sugar is high, glucose "crowds out" Vitamin C, preventing immune cells from utilizing the nutrient for essential tasks like antioxidant protection and interferon production. To effectively bolster the immune response at the onset of a cold, it is recommended to take a therapeutic loading dose of Vitamin C - roughly 4,000 to 8,000 mg in divided 500 mg increments throughout the first day - while strictly limiting sugar intake to ensure the Vitamin C can successfully navigate these cellular doorways.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6635)


"The Butyrate Paradox" Does Butyrate Trigger Apoptosis in Just Colon Cancer or All Cancers Throughout The Body?
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Date: November 20, 2025 12:16 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: "The Butyrate Paradox" Does Butyrate Trigger Apoptosis in Just Colon Cancer or All Cancers Throughout The Body?


The Butyrate Paradox primarily refers to the differential effect of butyrate on normal versus cancerous cells in the colon.

In the context of the colon, the paradox states that butyrate is a promoter of life for healthy colon cells but an inducer of death (apoptosis) for colon cancer cells.

Regarding its effects on all cancers throughout the body, studies show that butyrate's pro-apoptotic (death-inducing) properties are not limited to colon cancer, but the paradox itself is largely defined by the unique metabolic environment of the colon.

?? Understanding the Butyrate Paradox in the Colon

The paradox is explained by a fundamental difference in how normal colonocytes and cancerous colonocytes get their energy, a phenomenon known as the Warburg Effect.
Feature Normal Colonocyte Cancerous Colonocyte
Primary Energy Source Butyrate (via B-oxidation) Glucose (via glycolysis - the Warburg Effect)
Metabolism Butyrate is rapidly consumed/burned for fuel. Butyrate is poorly metabolized and accumulates.
Result of Butyrate Stimulates Proliferation (feeds the cell). Accumulates, acts as an HDAC Inhibitor, and triggers Apoptosis (cell death).

Mechanism of the Paradox

  1. Fuel vs. Poison: Normal colon cells efficiently use butyrate as their primary energy source. They quickly absorb it and burn it up in the mitochondria. This prevents butyrate from accumulating inside the cell.
  2. Accumulation is Key: Colon cancer cells, having undergone a metabolic shift (the Warburg effect), become addicted to glucose and are poor at metabolizing butyrate. Consequently, butyrate that enters these cancerous cells accumulates in the nucleus.
  3. The Master Switch (HDAC Inhibition): The accumulated butyrate acts as a Histone Deacetylase (HDAC) inhibitor. HDACs normally keep DNA tightly wound. When inhibited, the DNA unwinds (hyperacetylation), leading to the expression of genes that promote cell cycle arrest and apoptosis (programmed cell death).
This opposing effect - fueling normal cells while poisoning cancerous ones - is the essence of the butyrate paradox.

?? Apoptosis in Cancers Outside the Colon

Butyrate's ability to trigger apoptosis is not exclusive to the colon, as its core mechanism—Histone Deacetylase (HDAC) inhibition - is a potent anti-cancer strategy relevant to many tumor types.

Evidence for Anti-Cancer Effects Beyond the Colon

Butyrate, or its sodium salt (sodium butyrate), has been shown in various in vitro (cell culture) and animal studies to inhibit proliferation and induce apoptosis in several non-colonic cancer cell lines, including:
  • Breast Cancer
  • Prostate Cancer
  • Leukemia (certain types)
  • Liver Cancer
  • Medulloblastoma (a brain tumor)

Key Distinction: Local vs. Systemic Concentration

The challenge for non-colon cancers is delivery and concentration.
  • Colon: Butyrate is produced by the microbiota at very high, physiologically relevant concentrations (millimolar range, 5 - 25 mM) right next to the cancer cells. This makes its anti-cancer effect extremely potent and direct.
  • Systemic: Once absorbed into the bloodstream, butyrate is rapidly metabolized by the liver and other tissues, meaning the concentration that Reaches a tumor in the breast or brain is typically much lower than the concentration found in the colon lumen.
Therefore, while the mechanism (HDAC inhibition) works on many cancer types, the Butyrate Paradox as a naturally occurring phenomenon is primarily associated with colon cancer due to the incredibly high and local concentrations of the short-chain fatty acid.

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6629)


Probiotics and Mood Enhancement: The Power of Lactobacillus Reuteri and Oxytocin
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Date: January 29, 2025 10:41 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Probiotics and Mood Enhancement: The Power of Lactobacillus Reuteri and Oxytocin


Unlocking the Benefits of Lactobacillus Reuteri 2.5 Billion by Now Foods


Probiotics have gained considerable attention for their ability to support gut health and overall well-being. Among the many probiotic strains, Lactobacillus reuteri stands out not only for its digestive benefits but also for its unique ability to stimulate the production of oxytocin. Now Foods Lactobacillus reuteri 2.5 Billion offers a targeted and effective way to harness these advantages. Let’s explore the fascinating connection between probiotics, oxytocin, and the wide-ranging benefits this “feel-good” hormone offers.

What Is Oxytocin and Why Does It Matter?

Oxytocin, often referred to as the "love hormone," is a powerful molecule released in the brain that promotes feelings of bonding, trust, and emotional connection. It plays a vital role in childbirth, breastfeeding, and even in fostering social interactions. However, oxytocin isn't just limited to emotional well-being—it impacts physical health in surprising ways.

By regularly consuming Now Foods Lactobacillus reuteri 2.5 Billion, you can naturally boost your body's oxytocin levels. This is because the probiotic strain Lactobacillus reuteri has been shown in research to stimulate the production of this hormone. But what does that mean for your overall health? Let's take a closer look.

The Physical and Emotional Benefits of Oxytocin

Increasing your oxytocin levels can have remarkable effects on your health. Below is a breakdown of some of the most notable benefits:

1. Improved Stress Levels and Mental Clarity

Oxytocin helps reduce cortisol levels, the body’s primary stress hormone, creating a calming and relaxing effect. Lower stress levels mean better focus, fewer mood swings, and improved mental clarity, which can significantly enhance your quality of life.

2. Enhanced Heart Health

Oxytocin contributes to cardiovascular health by reducing blood pressure and promoting anti-inflammatory effects on the heart. This hormone supports a healthy circulatory system and reduces the risk of heart-related diseases.

3. Stronger Relationships and Social Connections

By fostering feelings of trust and empathy, oxytocin plays a crucial role in building and maintaining relationships. Whether it’s with family, friends, or your partner, increased oxytocin leads to stronger bonds and deeper emotional connections.

4. Pain Relief and Healing

Research indicates that oxytocin has natural pain-relieving properties. It can alleviate headaches, muscle pains, and even chronic conditions by acting as a natural analgesic. Furthermore, oxytocin promotes cellular repair and wound healing, enabling the body to recover faster.

5. Better Sleep

Higher oxytocin levels can improve sleep quality by calming the nervous system and reducing anxiety. This means you’ll wake up feeling more refreshed and energized to take on your day.

6. Boosted Digestive Health

Oxytocin complements the role of probiotics in supporting overall digestive wellness. With Now Foods Lactobacillus reuteri 2.5 Billion, not only will your gut be balanced and healthy, but your body will also benefit from the additional oxytocin-boosting effects.

How Does Lactobacillus Reuteri Help Produce Oxytocin?

Lactobacillus reuteri works within the gut microbiome to stimulate pathways that lead to oxytocin production. Studies suggest that this strain interacts directly with the vagus nerve—the nerve that connects the gut to the brain—reinforcing the mind-body connection. This explains why Lactobacillus reuteri isn't just good for digestive support, but also for mental and emotional health.

What sets Now Foods Lactobacillus reuteri 2.5 Billion apart is its high-quality formulation designed to ensure maximum potency and effectiveness. Each capsule delivers 2.5 billion viable organisms, formulated to survive harsh stomach acids and Reach your intestines where they are most effective.

Why Choose Now Foods Lactobacillus Reuteri 2.5 Billion?

Now Foods is a brand known for its commitment to quality, safety, and value. Their Lactobacillus reuteri 2.5 Billion product meets rigorous standards, ensuring you receive a pure, reliable probiotic supplement every time. This probiotic is non-GMO, gluten-free, and packaged to preserve potency, making it a trusted choice for health-conscious individuals.

Additionally, Now Foods has earned a reputation for transparency. They follow Good Manufacturing Practices (GMP) to ensure that every ingredient is of the highest quality, making their wellness products stand out in a crowded market.

Adding This Probiotic to Your Routine

Including Now Foods Lactobacillus reuteri 2.5 Billion in your daily routine is simple. For optimal results, take the capsule with a meal or as directed by your healthcare provider. Over time, you may notice improvements in your mood, digestion, and energy levels as oxytocin-boosting effects take hold.

A Perfect Match With VitaNet

When shopping for health supplements, purchasing from a trusted platform is key. VitaNet is a reputable source for high-quality wellness products, offering competitive prices and reliable customer service. By shopping on VitaNet, you can enjoy the benefits of Now Foods Lactobacillus reuteri 2.5 Billion with the confidence of knowing you’ve chosen a trustworthy supplier.

Elevate Your Health Today

Whether you’re looking to enhance your digestive health, improve your mood, or simply support your overall well-being, Now Foods Lactobacillus reuteri 2.5 Billion is a powerful addition to your wellness routine. Thanks to its oxytocin-boosting properties, this probiotic goes beyond basic gut support to deliver benefits that enhance emotional, physical, and mental health.

Take Action Today!

Don’t wait to experience these incredible benefits for yourself. Shop at VitaNet today and order Now Foods Lactobacillus reuteri 2.5 Billion to unlock better health and happiness. Your well-being starts with a single step—make it now.

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Now Foods Inulin: Nurturing Your Gut Health and Strengthening Your Immune System
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Date: December 06, 2024 04:02 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Now Foods Inulin: Nurturing Your Gut Health and Strengthening Your Immune System

Now Foods Inulin: Nurturing Your Gut Health and Strengthening Your Immune System


Discover the Power of Inulin, a Soluble Fiber that Feeds Friendly Bacteria

The human gut is a complex ecosystem teeming with trillions of microorganisms, collectively known as the gut microbiota. This intricate network of bacteria plays a fundamental role in our overall well-being, influencing digestion, metabolism, and even immune function. Maintaining a healthy gut microbiota is crucial for optimal health, and one way to support this delicate balance is through the consumption of dietary fibers like inulin.

Understanding Inulin

Inulin is a type of soluble fiber found in various plants, such as chicory root, dandelion root, and Jerusalem artichoke. It is composed of a chain of fructose molecules linked together and serves as a prebiotic—a substance that selectively stimulates the growth and activity of beneficial bacteria in the gut. Unlike other carbohydrates, inulin passes through the upper digestive tract largely intact and Reaches the large intestine, where it serves as a valuable fuel source for our gut microbiota.

Nurturing Your Gut Microbiota

The gut microbiota thrives on diverse nutrients, with inulin serving as a key fuel source. Beneficial bacteria like Bifidobacteria and Lactobacilli ferment inulin into short-chain fatty acids (SCFAs), which energize gut cells, promote gut health, and support immune function.

Strengthening Your Immune System

A robust immune system is essential for defending against harmful pathogens and maintaining overall health. Research suggests that the gut microbiota has a profound influence on immune function, playing a pivotal role in immune regulation and response. By nourishing the beneficial bacteria in our gut, inulin supports a healthy balance of immune cells, enhances the integrity of the gut barrier, and promotes anti-inflammatory responses, ultimately bolstering immune defenses.

Incorporating Inulin into Your Diet

Now Foods Inulin, made from chicory root, is an easy-to-use powder that supports gut health and immunity. Mix it into drinks, smoothies, or baked goods for a simple wellness boost.

To experience the benefits of Now Foods Inulin, VitaNet, a reputable online retailer specializing in health and wellness products. VitaNet is your go-to for Now Foods Inulin. Support your gut health and immune system—shop Now Foods Inulin today!

Invest in your well-being today and embark on a journey towards a healthier you with Now Foods Inulin!

Remember, a healthy gut lays the foundation for a healthier life. Nurture your gut microbiota, support your immune system, and embrace the transformative power of Now Foods Inulin.

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The History of Stevia: From Ancient Sweet Leaf to Global Sweetener
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Date: May 31, 2024 11:05 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The History of Stevia: From Ancient Sweet Leaf to Global Sweetener


The History of Stevia: From Ancient Sweet Leaf to Global Sweetener


Stevia, a natural sweetener that has become globally popular in recent years, boasts a rich history spanning centuries. This article delves into the origins and historical significance of stevia, shedding light on its traditional use by indigenous peoples and its evolution into a mainstream alternative to sugar.

The Origins of Stevia

Stevia, scientifically known as Stevia rebaudiana, originates from South America. This small, green plant is part of the Asteraceae family, which also includes daisies and sunflowers. The leaves of the stevia plant contain sweet compounds known as steviol glycosides, which are responsible for its sweetness.

Traditional Use by the Guaraní People

The historical journey of stevia begins with the Guaraní people of Paraguay and Brazil, who have used the plant for over 1,500 years. The Guaraní referred to stevia as "ka'a he'ê," which translates to "sweet herb." They traditionally used stevia leaves to sweeten beverages like yerba maté, a popular herbal tea, and to enhance the flavor of various traditional dishes.

Stevia wasn't just a sweetener for the Guaraní; it also held medicinal importance. The leaves were used to treat a variety of conditions, including burns, stomach issues, and as a general tonic. This dual use of stevia as both a sweetener and a medicinal plant highlights its invaluable role in indigenous culture.

Stevia's Journey to the Modern World

Rediscovery by European Explorers

The modern history of stevia began in the 16th century when European explorers first arrived in South America. Spanish botanist and physician Pedro Jaime Esteve (1500–1556) is often credited with the early European studies on stevia, although the plant was not widely documented until later.

Interest in stevia grew in the early 20th century when it was scientifically studied by Paraguayan chemist Ovidio Rebaudi. Rebaudi analyzed the sweet properties of stevia leaves and confirmed that they were much sweeter than sugar, which caught the attention of the scientific community.

Introduction to Asia and Beyond

In the 1970s, stevia began gaining traction in Japan as the country sought alternatives to artificial sweeteners. Japanese researchers developed methods for extracting and refining steviol glycosides from stevia leaves, making it possible to use stevia as a commercial sweetener. The success of stevia in Japan set the stage for its global acceptance.

Stevia in the Modern Health Movement

Health Benefits and Advantages

Stevia's rise in popularity can be attributed to its myriad of health benefits. Unlike sugar, stevia is calorie-free, making it an attractive option for those managing their weight. Additionally, stevia has a negligible effect on blood glucose levels, which is beneficial for individuals with diabetes or those monitoring their carbohydrate intake.

Moreover, steviol glycosides are stable at high temperatures, making stevia a versatile sweetener suitable for cooking and baking. This thermal stability, combined with its natural origin, has positioned stevia as a preferred option for health-conscious consumers.

Regulatory Approval and Global Adoption

The journey of stevia to becoming a global sweetener has involved rigorous scientific scrutiny and regulatory approval. In 2008, the United States Food and Drug Administration (FDA) granted stevia the status of "Generally Recognized As Safe" (GRAS), which paved the way for its use in a wide range of food and beverage products.

Following the FDA's approval, other countries, including those in the European Union, Canada, and Australia, also approved the use of stevia in food and beverages. Today, stevia is found in everything from soft drinks to baked goods, reflecting its widespread acceptance and global Reach.

Challenges and Future Prospects

Overcoming Obstacles

Despite its many advantages, the path to widespread adoption of stevia has not been without challenges. One of the initial hurdles was the aftertaste associated with some of the early stevia extracts. However, advances in extraction and formulation techniques have significantly improved the taste profile of stevia, making it more palatable for consumers.

Another challenge has been ensuring the sustainable cultivation of stevia. As demand grows, it is essential to implement agricultural practices that support environmental sustainability and fair labor conditions for farmers.

Research and Innovation

The future of stevia holds exciting possibilities as ongoing research continues to explore new applications and improvements. Scientists are currently investigating the potential of stevia extracts in providing health benefits beyond sweetness, such as their antioxidant properties and possible roles in managing certain health conditions.

Innovations in biotechnology are also paving the way for the development of new stevia varieties with enhanced sweetness and improved agronomic traits. These advancements could further solidify stevia's position as a key player in the global sweetener market.

In Summary

The history of stevia is a fascinating journey from the rainforests of South America to the shelves of supermarkets around the world. From its traditional use by the Guaraní people to its rediscovery by European explorers and subsequent global adoption, stevia has proven to be a remarkable sweetener with enduring significance. As the modern world continues to prioritize health and wellness, stevia's natural sweetness offers a much-needed alternative to sugar, promising a future where we can enjoy the sweetness of life without compromising our health.

Are You Ready to Make a Sweet Change?

If you've been searching for a healthier way to satisfy your sweet tooth, the journey of stevia offers a compelling reason to make the switch. With its rich history rooted in traditional use by the Guaraní people, and its scientifically-backed benefits recognized globally, stevia stands out as a truly remarkable sweetener. Free from calories and gentle on blood glucose levels, it's an excellent choice for both weight management and diabetes care. Plus, its versatility in cooking and baking means you won't have to compromise on your favorite recipes.

Join the growing number of health-conscious consumers who are choosing stevia for a naturally sweet life. Explore its various forms—from whole leaves to refined steviol glycosides—and incorporate this natural sweetener into your diet today. Embrace the future of sweetening and enjoy the benefits of stevia for yourself and your loved ones.

Frequently Asked Questions (FAQ) About Stevia

What is stevia?

Stevia is a natural sweetener derived from the leaves of the Stevia rebaudiana plant, which is native to South America. It has been used for centuries by the Guaraní people and is known for being much sweeter than sugar while containing zero calories.

How is stevia used as a sweetener?

Stevia can be used in various forms, including whole leaves, powdered extracts, and liquid concentrates. It is commonly used to sweeten beverages, baked goods, and other foods. Thanks to its stability at high temperatures, stevia can also be used in cooking and baking.

Is stevia safe to consume?

Yes, stevia is considered safe for consumption. The United States Food and Drug Administration (FDA) has granted stevia the status of "Generally Recognized As Safe" (GRAS). It has also been approved for use in many other countries, including those in the European Union, Canada, and Australia.

Can stevia help with weight management?

Stevia can be an effective tool for weight management because it contains no calories. Replacing sugar with stevia in your diet can help reduce overall calorie intake, which may contribute to weight loss or maintenance.

Is stevia suitable for people with diabetes?

Stevia is suitable for people with diabetes as it has a negligible effect on blood glucose levels. This makes it a preferable alternative to sugar for those needing to monitor their carbohydrate intake. However, it is always best to consult with a healthcare provider before making any significant changes to your diet.

Does stevia have any side effects?

Stevia is generally well-tolerated and considered safe for most people. However, some individuals may experience mild side effects, such as digestive discomfort, when consuming large amounts. It is advisable to use stevia in moderation.

What does stevia taste like?

Stevia is known to be much sweeter than sugar, and its taste can vary depending on the form used and the specific product. Early versions of stevia extracts were noted for having a slight aftertaste, though modern formulations have significantly improved the taste profile.

How is stevia cultivated?

Stevia is typically grown in subtropical and tropical climates. Sustainable cultivation practices are essential as the demand for stevia increases. These practices include using environmentally friendly agricultural methods and ensuring fair labor conditions for farmers.

Are there any environmental benefits to using stevia?

Stevia has the potential to be more sustainable than traditional sugar crops. It requires less land and water to produce the same level of sweetness, which can reduce the environmental impact associated with sugar cultivation.

Can stevia be used in baking?

Yes, stevia can be used in baking due to its high-temperature stability. However, because it is much sweeter than sugar, recipes may need to be adjusted to account for its intensity. Many commercially available stevia sweeteners come with specific usage guidelines for cooking and baking.

Are there different types of stevia products?

Yes, stevia products come in various forms, including whole leaves, powdered extracts, and liquid concentrates. Some products are blended with other sweeteners or filler ingredients to better mimic the taste and texture of sugar.

How does stevia compare to artificial sweeteners?

Stevia is a natural sweetener, which sets it apart from many artificial sweeteners. It is derived from a plant and does not undergo extensive chemical processing. Many consumers prefer stevia because it is perceived as a more natural and healthier option.

What research is being done on stevia?

Ongoing research on stevia explores its potential health benefits beyond sweetness, such as its antioxidant properties and possible roles in managing certain health conditions. Innovations in biotechnology are also working to develop new stevia varieties with enhanced sweetness and other desirable traits.

Where can I buy stevia?

Stevia products are widely available at VitaNet LLC. Stevia can be found in the baking aisle or the section dedicated to natural and alternative sweeteners.

By understanding the benefits and uses of stevia, you can make an informed decision about incorporating this natural sweetener into your diet. With its rich history, proven health benefits, and versatility, stevia offers a compelling alternative to traditional sugar.

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six top-notch supplements that can help you achieve your goals.
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Date: December 06, 2023 04:55 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: six top-notch supplements that can help you achieve your goals.

If you're looking to stay in the game longer and improve endurance while promoting rapid recovery, we've got you covered! six top-notch supplements that can help you achieve your goals.

For most of us, life can feel like quite the balancing act. In an ideal world, we would all have ample time throughout the day to dedicate to our health and well-being. However, reality paints a different picture, where 24 hours can seem like an insufficient amount of time to squeeze in work, school, family, and the countless responsibilities that life throws at us. In recent years, the use of supplements for recovery has gained popularity, becoming more common than ever before.

Our bodies face a barrage of daily stresses, including exposure to environmental toxins, electromagnetic pollution, and the strain of intense physical activity. These factors increase our body's demands for antioxidants and essential nutrients that aid in the process of recovery. While consuming antioxidant-rich foods can certainly make a difference, it can be challenging to meet these requirements solely through our diet. That's where a well-rounded supplement regimen can play a crucial role in promoting optimal health and aiding in recovery. Even with our best efforts to exercise regularly, eat nutritious meals, and get sufficient sleep, life in the 21st century can be incredibly demanding, depleting our bodies on a cellular level.

For athletes, consistent training is key to Reaching desired performance levels. It's important to understand that the muscle recovery and building process primarily occurs between gym sessions. Developing a comprehensive recovery strategy during this crucial window, through the use of supplements, proper nutrition, and adequate rest, can help athletes perform at their best week in and week out. Failing to make the most of this recovery period may result in free radical damage and delayed onset muscle soreness (DOMS). To maximize the benefits, it's important to prioritize food as the primary source of vital nutrients, while also recognizing the significant role supplements can play in providing the necessary building blocks for muscle repair due to their rapid absorption rate. However, it's essential to ensure that any chosen supplements are clinically validated, demonstrating efficacy and supported by solid scientific evidence.

In today's fast-paced world, there is a growing demand for quick and convenient solutions to jumpstart the recovery process. Nevertheless, when it comes to choosing supplements, it's important to remember that one size does not fit all. The market offers an overwhelming array of options, often leaving individuals feeling bewildered about which products to select.

Before diving into my recommendations for the top six supplements to aid in recovery, I believe it's crucial to emphasize the significance of cellular renewal and its direct impact on the recovery process. This, in my opinion, serves as the key to achieving a quick and effective recovery.

Oxidation and Free Radical Damage

A fundamental key to staying young and maintaining optimal health is cellular renewal and minimizing the damage to cells over time. We all age, but studies have shown that some individuals age better than others. Have you ever wondered why? Well, recent research has linked oxidative stress to the aging process. So, what exactly is oxidative stress? Allow me to explain in simple terms – oxidation occurs when the body produces by-products commonly known as free radicals. It's almost like a machine rusting, but instead of rust forming on iron, our bodies experience the effects of aging and age-related diseases.

Now, our bodies naturally produce free radicals as part of our daily metabolism, and they can also be produced as a result of environmental pollutants from everyday things like air, water, and even sun exposure. As we age, our bodies become more vulnerable to the long-term effects of oxidative stress, which simply means we accumulate too many free radicals and experience increased inflammation at the cellular level.

As interesting as it may sound, the process of oxidation is actually abundant and can be beneficial for our bodies to function properly. But, and this is an important "but," this very process can also cause potential harm. You see, the oxidizing process creates these molecules called free radicals, which are electrically charged. These free radicals interact with our cells, and this interaction can lead to both positive and negative outcomes. For example, our immune system utilizes free radicals to help fight infection. However, when LDL cholesterol (often referred to as bad cholesterol) is oxidized, it can become a concern (cholesterol buildup).

Let's talk about oxidative stress. It occurs when the level of free radicals overwhelms the body's natural antioxidant defense system, resulting in cell damage. As I mentioned earlier, while free radicals serve useful functions in the body, they are highly unstable molecules. If they remain uncontrolled, they have the potential to wreak havoc by causing damage to cells, enzymes, and even our DNA, which ultimately accelerates the aging process. In addition, these free radicals can also contribute to the development of various age-related diseases, including arthritis, cancer, and heart disease

Now, inflammation is triggered by free radical damage, and it is this inflammation that leads to the negative effects of free radicals due to oxidation. The question then becomes, how can we address this in our daily nutritional regimen? The answer lies in the incorporation of antioxidants, which play a vital role in combating oxidative stress and minimizing the damage caused by free radicals in our bodies. You'll be glad to know that there are foods rich in antioxidant content that can help us on this journey. In fact, certain foods contain phytonutrients that, according to many health professionals, hold the potential to unlock the secrets of longevity and overall well-being.

So, my dear friend, let's take a proactive approach, nourish our bodies with antioxidant-rich foods, and strive to minimize the effects of oxidative stress caused by free radicals. It's never too late to make positive choices for our health and age gracefully.

Phytonutrients, also known as health boosters, are substances produced by plants to protect themselves from harmful bacteria and viruses. However, these compounds also offer significant benefits to the human body. Packed with essential nutrients, phytonutrients play an active role in promoting good health. They belong to the antioxidant family, responsible for eliminating harmful free radicals and thus slowing down the aging process. Incorporating a diet rich in high antioxidant foods like fresh fruits and vegetables is crucial as the first line of defense against aging.

While vitamins A, C, and E are commonly known antioxidants, there are other antioxidants available in both food and supplement form. These antioxidant supplements play a vital role in bridging the nutritional gap left by processed foods, lacking the necessary antioxidants and nutrients to combat free radicals effectively.

Let's take a closer look at my top six supplement recommendations, known for their efficacy in fighting oxidative stress and promoting optimal recovery:

Beta Alanine: As an amino acid derivative, Beta Alanine is proven to enhance intramuscular carnosine content, improving the body's ability to buffer hydrogen ions. During exercise, the body accumulates hydrogen ions, contributing to fatigue and lowering pH levels. Beta Alanine supplementation can reduce fatigue, enhance exercise performance, and increase training volume. Whether it's interval training or weightlifting to improve running economy, incorporating beta-alanine can have a positive impact on endurance performance and overall training results.

BCAAs: Branched Chain Amino Acids (BCAAs) have become a staple supplement for athletes due to their role in muscle and energy production during exercise. Consisting of three essential amino acids - leucine, isoleucine, and valine - BCAAs have been shown to significantly reduce muscle soreness and expedite the recovery process. Supplementing with BCAAs helps prevent muscle breakdown, as the body does not need to rely on its own muscle tissue for energy. Consequently, protein synthesis remains high, supporting muscle growth and repair.

Creatine, a natural molecule found in muscle cells. When engaging in high-intensity workouts like weightlifting, Creatine helps your body produce adenosine triphosphate (ATP), a vital energy source. This amazing compound improves strength, boosts lean muscle mass, and aids in faster muscle recovery.

Flavonoid Root, a breakthrough extract known for its cardiovascular benefits. This extract is packed with potent antioxidants and acts as a nitric oxide booster, promoting increased endurance during workouts. Studies have shown that it fights against free radical damage and increases the flow of oxygen-rich blood, ensuring optimal cardiovascular health. You can also boost nitric oxide with beet root, and l-citruline.

Speaking of studies, a published research paper in Food and Nutrition Research (April 2016) highlighted the effects of the unique flavonoid root extract on arterial health. The study revealed that after one year of consumption, participants experienced a decrease in artery wall thickness, total cholesterol, LDL levels, and blood pressure. This indicates that the extract may help reduce the risk of oxidation-related cerebral vascular issues and improve overall cardiovascular health

Glutamine. It's the most abundant amino acid in the human body and plays a vital role in muscle recovery and repair. Glutamine aids in preventing muscle soreness, optimizing post-workout recovery, and supporting muscle rebuilding. By facilitating nitrogen transport, regulating acid-base balance, and acting as an antioxidant, Glutamine ensures faster post-workout muscle recovery, giving you the freedom to train harder for better results.

Protein plays a crucial role in replenishing and repairing your muscles after a workout, making it a key nutrient to consume alongside carbohydrates. By opting for a protein shake as a post-workout option, you can efficiently supply amino acids to your muscles, stimulating muscle protein synthesis, enhancing recovery, and promoting growth. It's important, though, to choose a protein shake that contains high-quality ingredients, as prioritizing quality over quantity is key when it comes to protein.

Apart from protein, there are several other supplements that work through various mechanisms to provide natural, broad-spectrum antioxidant and nutrient support, ultimately contributing to optimal health and recovery. Taking preventative measures to protect the health of different body systems is much easier than trying to restore their function after damage has occurred. With this in mind, retailers should suggest a preventive program to their customers, aiming to limit free radical damage and promote recovery. As the adage goes, "an ounce of prevention is worth a pound of cure," emphasizing the significance of protecting and preserving one's health.

In conclusion, the role of antioxidants, particularly phytonutrients, in maintaining overall health and combating oxidative stress cannot be overstated. These beneficial compounds not only slow down the aging process, but also enhance the body's ability to recover from physical exertion. Various supplements, including Beta Alanine, BCAAs, Creatine, Flavonoid Root, Glutamine, and Protein, each offer distinct benefits in supporting muscle growth, improving athletic performance, and promoting quicker recovery. The incorporation of these supplements into one's regimen can effectively bridge the nutritional gap left by processed foods. A preventive strategy, emphasizing a diet rich in antioxidants and high-quality supplements, holds the key to optimal health and longevity. As the saying goes, 'an ounce of prevention is worth a pound of cure'.

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Why Your Sodium to Potassium Ratio Is Important
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Date: August 04, 2023 02:09 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Why Your Sodium to Potassium Ratio Is Important

The typical Western diet is largely comprised of processed foods, which are notoriously high in processed table salt. This results in an imbalance in the sodium to potassium ratio, a significant health concern. Sodium is necessary for a variety of bodily functions; however, too much can be detrimental, leading to hypertension and other cardiovascular diseases. Simultaneously, potassium is often neglected, despite its crucial role in muscle function, nerve signaling, and balancing fluids.

The general dietary advice suggests a potassium to sodium intake ratio of 3:1. However, the reality in diets, particularly those in America, often sees this ratio inverted. The excessive sodium consumption is linked to a myriad of health complications, including high blood pressure and heart disease. Conversely, potassium, a mineral that aids in nerve function and muscle control, is consumed in insufficient quantities. This is a troubling trend that underscores the importance of dietary change towards natural, unprocessed foods.

The importance of potassium is often overshadowed by the emphasis on limiting sodium for reducing chronic disease risk factors. Potassium plays an essential role in maintaining healthy blood pressure levels by counteracting the effects of sodium. Furthermore, the mineral is crucial for other functions like heart and muscle cell functioning, nerve transmission, and maintaining fluid balance.

A study published in the New England Journal of Medicine discovered that individuals with the lowest risk for heart complications or death from any cause were those consuming between four to six grams of sodium per day. This is a fascinating discovery, as this intake is significantly higher than the U.S. daily recommended limits. It suggests a need for a reconsideration of current sodium intake guidelines.

Another consideration to balance the sodium-potassium ratio is the type of salt consumed. Unprocessed, natural salts like sea salt and Himalayan salt contain higher potassium levels compared to standard table salt. These natural salts provide a variety of minerals and trace elements that contribute to our overall health and wellness. It's crucial to note that switching to natural salt should be part of a broader shift towards a diet rich in fresh, unprocessed foods.

Why You Should Focus on Increasing Potassium

While it's beneficial to monitor and moderate sodium intake, it's equally important to shift our focus towards increasing potassium consumption. Potassium-rich foods, such as leafy green vegetables, bananas, potatoes, and beans, not only contribute to a well-rounded and nutritious diet but also help in maintaining an optimal sodium-potassium balance in the body. A high potassium intake can counteract the effects of sodium, aiding in blood pressure regulation and reducing the risk of cardiovascular diseases. Moreover, an elevated potassium level supports various bodily functions, including nerve transmission, muscle contraction, and fluid balance. Thus, prioritizing potassium intake forms a cornerstone for an overall healthier dietary approach. It is recommended that individuals consume 5 grams of potassium daily and potassium to salt ratio should be 2 to 1. To boost potassium intake, one can take a potassium supplement or add the following foods to their diet or both: Watermelon, Orange juice, Boiled red potatoes, Avocado, Bananas, Cantaloupe, Oranges, Coconut water, Tomatoes, Yogurt, Winter squash, and Wild-caught salmon.

Why Low-Salt Advice Can Be Harmful

Contrary to popular belief, adhering to low-salt advice can sometimes pose risks to certain individuals. While it is true that excessive sodium intake can lead to high blood pressure and heart problems, sodium still plays a vital role in our bodies. It assists in nerve conduction, muscle contraction, and maintaining the body's fluid balance.

In fact, low sodium levels in the body, a condition known as hyponatremia, can lead to symptoms such as headache, nausea, fatigue, and in severe cases, coma or even death. Moreover, a low-salt diet may lead to increased levels of cholesterol and triglycerides, hormonal imbalances and insulin resistance. This can potentially elevate the risk of developing cardiovascular disease.

Low-salt diets can also exacerbate the risk of certain health conditions. For instance, individuals with conditions like Addison's disease or certain kidney disorders, where the body struggles to maintain a balance of electrolytes, might find a low-salt diet harmful.

Therefore, it is crucial to balance the intake of sodium, considering both the potential risks associated with too much, or too little, sodium. The key is to consume sodium from natural and unprocessed sources, such as Himalayan salt, fruits, vegetables, grains, and lean meats, which also provide a host of other nutrients necessary for overall health. As with most things in nutrition, moderation and balance seem to hold the answer rather than extreme restriction. The RDA - recommended daily allowance of sodium is 3.5 grams. It is advised to consume 3.5 grams of natural salt each day by way of foods or combination of foods plus Himalayan salt to Reach that goal.

The Impact of Excessive Salt Intake on Certain Health Conditions

While moderate salt intake is vital for normal physiological functions, its excessive consumption can have detrimental effects, particularly for individuals with certain health conditions. For instance, endocrine disorders, high aldosterone levels, Cushing's syndrome, and elevated cortisol levels can all heighten the body's sensitivity to sodium, making it even more essential to monitor and limit salt intake.

Endocrine disorders, which involve imbalances in the body's hormone production, can often lead to increased sodium retention, exacerbating issues of water retention and swelling. Similarly, high aldosterone levels, a hormone that regulates sodium and potassium balance, can cause the body to retain excessive sodium, leading to high blood pressure and potential damage to the cardiovascular system.

Cushing's syndrome, a condition characterized by excessive cortisol production, can lead to a host of symptoms, including high blood pressure and rapid weight gain, both of which can be intensified by high sodium intake. The excessive cortisol found in Cushing's syndrome promotes sodium retention, further elevating the risk for hypertension.

Similarly, elevated cortisol levels, even outside of Cushing's syndrome, can lead to heightened sodium retention, contributing to high blood pressure, fluid retention, and an imbalance of electrolytes. Therefore, individuals with these conditions should be particularly mindful of their sodium intake.

In these scenarios, reducing salt consumption can help mitigate the associated health risks and symptoms. Switching to a diet rich in whole, unprocessed foods, and taking conscious steps to limit the use of added table salt can play a crucial role in managing these health conditions. As always, it is essential to seek personalized advice from a healthcare professional, as individual needs may vary.

In summary, while salt is often villainized in the health community, its consumption, especially from natural sources, is vital for maintaining bodily functions like nerve conduction, muscle contraction, and fluid balance. However, excessive or inadequate sodium intake can have adverse health effects, such as hypertension, imbalances in cholesterol and triglycerides, and even hyponatremia in severe cases. Certain health conditions, including endocrine disorders, high aldosterone levels, Cushing's syndrome, and elevated cortisol levels, can also exacerbate these risks, making it crucial for individuals with these conditions to carefully monitor their salt intake. On the other hand, increasing potassium intake can help maintain an optimal sodium-potassium balance, reducing blood pressure and lowering the risk of cardiovascular diseases. In a nutshell, moderation and balance are key in sodium consumption, but the emphasis should be on consuming more potassium-rich foods to ensure your potassium intake is higher than sodium levels which will ensure a healthier dietary approach.

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5 Reasons to Look Forward to Cooler Weather with Cocoa Lovers™ Organic Hot Cocoa
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Date: January 19, 2023 04:43 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 5 Reasons to Look Forward to Cooler Weather with Cocoa Lovers™ Organic Hot Cocoa

As the weather starts to cool down, there’s no better way to warm up than with a cup of hot cocoa. Cocoa Lovers™ Organic Hot Cocoa is the perfect treat for those crisp fall and winter days. Here are five reasons why you’ll look forward to the cooler months with Cocoa Lovers™ in your cupboard.

1. Crafted for Quality – Cocoa Lovers™, we believe that quality always comes first. That’s why our organic hot cocoa is made from only the best ingredients available, including premium organic Dutch-processed cocoa powder, organic sugar and natural flavors like vanilla, cinnamon and nutmeg. Everything is blended together until it forms a rich and creamy concoction that will have you coming back for more!

2. Natural Goodness – If you’re looking for something to indulge in without having to worry about putting your health at risk, then our organic hot cocoa is perfect for you. Not only is it free of artificial preservatives, colors and flavors but it also contains no added trans fats or hydrogenated oils so you can feel good about what you put into your body.

3. Versatility – Our hot cocoa mix isn't just good for making hot chocolate — it can also be used in baking recipes such as cakes, cookies and brownies! And if you're feeling adventurous, why not try adding some spices like chili powder or cardamom for a unique twist? The possibilities are endless!

4. Convenience – No need to spend hours slaving away over a stove because our organic hot cocoa mixes come ready-to-go that make preparing your drink quick and easy, you can mix it thick or thin, it tastes good both ways! Just add water (or milk!) and heat until desired temperature is Reached — it's that simple!

5. Great Taste – But of course, all of this would be meaningless if our product didn't taste great — which thankfully it does! Our customers rave about the sweet yet complex flavor profile that's sure to please even the pickiest palates out there; plus, each packet makes two servings so you can share with friends or family members who may not like their drinks as sweet as yours.

So if you’re looking for an easy way to warm up during these cooler months while also indulging in something delicious without compromising on quality or nutrition value, then Cocoa Lovers'™ Organic Hot Cocoa should definitely be on your list! Whether enjoyed alone or with friends and family around the fireplace; whether stirred into cakes or cookies; whether served with marshmallows or topped with whipped cream—enjoying some hot cocoa during these chilly days has never been easier (or tastier)!

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L-Histidine: Support Immunity, Brain Function And Cardiovascular Health
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Date: October 21, 2022 12:12 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: L-Histidine: Support Immunity, Brain Function And Cardiovascular Health

L-Histidine is an essential amino acid that plays a role in a variety of important bodily functions. Histidine is best known for its role in the production of histamine, an important mediator of immune system responses. However, histidine is also critical for normal brain function and for the maintenance of a healthy skin barrier. In addition, histidine plays important roles in muscle function, cardiovascular health, protection against free radicals, and the elimination of heavy metals from the body. Let's take a closer look at some of these benefits.

The Role of Histamine in the Immune System Response

As we mentioned before, histamine is an important mediator of immune system responses. When your body comes into contact with a foreign invader, such as a virus or bacteria, mast cells release histamine into the bloodstream. This leads to the dilation of blood vessels and increased permeability of capillaries, which allows white blood cells and other immune cells to more easily Reach the site of infection. In addition, histamine release triggers sneezing and increased mucus production, which helps to expel foreign invaders from the body.*

Histamine and Brain Function

Histamine is also involved in regulating wakefulness and sleep cycles.* In fact, l-histidine deficiency has been linked to insomnia.* Histamine regulates serotonin levels in the brain and has been shown to improve cognitive function.* Additionally, histamine plays a role in memory formation and has even been shown to protect against age-related cognitive decline.*

L-Histidine and Cardiovascular Health

L-histidine has also been shown to have protective effects on the cardiovascular system.* Histamine promotes vasodilation—the widening of blood vessels—which can help to lower blood pressure.* L-histidine also inhibits platelet aggregation—the clumping together of blood cells—which can help to prevent blood clots from forming.* These effects can help to reduce the risk of heart attack and stroke.*

As you can see, l-histidine is involved in a variety of important bodily functions. From its role in immunity and brain function to its protective effects on the cardiovascular system, l-histidine is an amino acid that offers many benefits. If you are looking for a way to boost your health and well-being, consider adding l-histidine to your diet!

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Date Sugar - A Raw Food Enthusiast's Delight
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Date: October 08, 2022 10:35 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Date Sugar - A Raw Food Enthusiast's Delight

For raw food enthusiasts, you can't get much better than date sugar. Unlike typical refined sugar from cane or beets, date sugar is actually finely chopped dry dates. There's no processing whatsoever, so you get an unrefined sweetener that's uniquely suited to certain culinary applications.

In this blog post, we'll take a closer look at date sugar and some of its key benefits. We'll also explore how to use date sugar in the kitchen to create raw food masterpieces!

The Benefits of Date Sugar

Date sugar is an excellent alternative to refined cane or beet sugar for a number of reasons. First, date sugar is unrefined, meaning that it retains all of the natural nutrients found in dates. These include vitamins, minerals, antioxidants, and fiber. Second, because date sugar is made from 100% dried dates, it contains no added sugars or artificial sweeteners. This makes it a great choice for those looking to avoid processed foods. Finally, date sugar has a lower glycemic index than refined sugars, which means it won't cause spikes in blood sugar levels.

How to Use Date Sugar in the Kitchen

Date sugar can be used in any recipe that calls for cane or beet sugar. However, because it is less processed and has a higher moisture content than refined sugars, date sugar is best suited for baked goods such as cakes, cookies, muffins, and quick breads. When using date sugar in place of refined sugars, you may need to make adjustments to your recipe. For instance, you may need to add more liquid to your batter or dough since date sugar will absorb moisture from the ingredients around it.

If you're looking for araw food-friendly alternative to refined cane or beet sugar, date sugar is a great option. This unrefined sweetener is made from 100% dried dates and contains no added sugars or artificial sweeteners. Plus, date sugar has a lower glycemic index than refined sugars—making it a healthier choice overall. So next time you're baking up a batch of raw food goodies, Reach for date sugar instead of refined cane or beet sugar—your tastebuds (and waistline!) will thank you!

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The Importance of Vitamin D-3
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Date: September 28, 2022 01:10 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The Importance of Vitamin D-3

Vitamin D is a vital nutrient that helps the body absorb calcium and phosphorus, two minerals essential for strong bones and teeth. Vitamin D also supports the health of the immune system, heart, and lungs. Despite its many benefits, vitamin D is not found in many foods. As a result, many people rely on supplements to ensure they are getting enough vitamin D.

There are two ways to get vitamin D: through food and supplements, or through exposure to sunlight. Foods that contain vitamin D include fatty fish such as salmon, tuna, and mackerel; beef liver; cheese; egg yolks; and fortified foods such as milk, orange juice, and cereals. You can also get vitamin D through supplements. Supplements come in two forms: vitamin D3 (cholecalciferol) and vitamin D2 (ergocalciferol).

Vitamin D from Sunlight

The body can also produce vitamin D from exposure to sunlight. Ultraviolet B (UVB) rays from the sun trigger vitamin D synthesis in the skin. However, exposure to UVB rays is limited by the use of sunscreen, clothing, glass windows, and time spent indoors. In addition, UVB rays do not penetrate clouds, so weather can also affect vitamin D production. The latitude of a location also affects the amount of UVB radiation that Reaches the earth's surface—the closer a person lives to the equator, the more UVB radiation is available. For example, people living in Boston (latitude 42°N) have access to about one-half the amount of UVB radiation that is available to people living in Miami (latitude 25°N). As a result, people who live in northern locations are at greater risk for vitamin D deficiency because they have less access to UVB radiation year-round.

Vitamin D Deficiency

Although sunshine is the best source of vitamin D, many people do not get enough sunlight exposure to generate sufficient amounts of this important nutrient. In addition, older adults cannot convert as much 7-dehydrocholesterol to vitamin D3 as younger adults because their skin contains less 7-dehydrocholesterol and their kidneys are less efficient at converting 25(OH)D to 1,25(OH)2D. As a result, older adults are at increased risk for vitamin D deficiency. African Americans are also at increased risk because melanin reduces skin penetration by UVB radiation. People with darkly pigmented skin may need up to 10 times more sun exposure than people with lightly pigmented skin to generate an equivalent amount of vitamin D3.

In Summary:

Vitamin D is an important nutrient that helps support bone health and immunity. While most people get some amount of vitamin D from exposure to sunlight, many do not get enough. This can put them at risk for deficiency, which can lead to health problems such as osteoporosis and Rickets. Luckily, there are many ways to increase your intake of vitamin D through diet and supplementation so you can experience all the benefits this nutrient has to offer!

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Cheer Up Buttercup! Essential Oil Blend can Be Uplifting, Refreshing, and Energizing!
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Date: September 28, 2022 11:46 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Cheer Up Buttercup! Essential Oil Blend can Be Uplifting, Refreshing, and Energizing!

In today's fast-paced world, it's easy to get bogged down by the hustle and bustle of everyday life. That's why we created Cheer Up Buttercup! This essential oil blend is uplifting, refreshing, and energizing! It contains Bergamot Oil, Orange Oil, Lime Oil, Grapefruit Oil, and Lemon essential Oils. Whether you're feeling stressed out or just need a pick-me-up, Reach for Cheer Up Buttercup!

Bergamot Oil: Bergamot oil has a light, citrusy scent that is both refreshing and uplifting. It has been used for centuries in Italy as a traditional remedy for anxiety and depression. Bergamot oil is also known for its ability to boost energy levels and improve circulation.

Orange Oil: Orange oil is extracted from the peel of oranges. It has a sweet, citrusy scent that is uplifting and invigorating. Orange oil is rich in antioxidants and can help to improve skin tone and texture. Additionally, orange oil has mood-boosting properties that can help to reduce stress and anxiety.

Lime Oil: Lime oil has a tart, citrusy scent that is energizing and refreshing. Lime oil is rich in antioxidants and can help to protect the skin from damage caused by free radicals. Additionally, lime oil can help to improve mental clarity and focus.

Grapefruit Oil: Grapefruit oil has a fresh, citrusy scent that is invigorating and uplifting. Grapefruit oil is rich in antioxidants and can help to improve circulation. Additionally, grapefruit oil can help to reduce stress and anxiety.

Lemon Essential Oil: Lemon essential oil has a fresh, citrusy scent that is invigorating and uplifting. Lemon essential oil is rich in antioxidants and can help to improve mental clarity and focus. Additionally, lemon essential oil can help to reduce stress and anxiety.

So next time you're feeling down in the dumps, Reach for Cheer Up Buttercup! This potent blend of essential oils will have you feeling refreshed and invigorated in no time!

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Date: July 08, 2022 12:42 PM
Author: Darrell Miller (support@vitanetonline.com)

If you're like most people, you probably think of olive oil as a healthy cooking oil. But what you may not know is that olive oil has some amazing health benefits, including the ability to improve brain function. In this blog post, we will discuss the science behind olive oil and brain function and explore how this powerful oil can help improve your cognitive performance.

What is olive oil and where does it come from

Olive oil is a type of vegetable oil that is extracted from olives, the fruit of the olive tree. Olives are thought to originate from the Mediterranean region, and they have been cultivated for thousands of years. Olive trees are well-suited to the Mediterranean climate, and they produce a high quality of olive oil. The oil is then extracted from the olives using a cold-pressing process. This process helps to preserve the flavor and nutrients of the oil. Olive oil is a popular cooking ingredient, and it is also used in cosmetics and pharmaceuticals. It is a healthy source of fat, and it contains antioxidants that can protect against cell damage.

The benefits of olive oil

There are many benefits to using olive oil, both for cooking and for health. Olive oil is a healthy alternative to other oils, as it is lower in saturated fat and contains high levels of monounsaturated fat. In addition, olive oil contains antioxidants that can protect against cell damage. Some studies have also shown that olive oil can help to lower cholesterol levels and reduce the risk of heart disease. When used for cooking, olive oil can add flavor and depth to dishes. It is also a healthy way to cook, as it does not produce harmful chemicals when heated. Overall, olive oil is a versatile and healthy option that can be used in many different ways.

How olive oil can improve brain function

Recent studies have shown that olive oil can improve brain function. The main active ingredient in olive oil is oleocanthal, which is a powerful anti-inflammatory. Studies have shown that inflammation is a major contributing factor to cognitive decline. By reducing inflammation, oleocanthal can help to improve brain function. In addition, olive oil also contains antioxidants, which can protect the brain from damage. These properties make olive oil an ideal food for people who are looking to improve their brain health.

The science behind olive oil and brain function

Olive oil is a healthy fat that has been shown to have numerous benefits for the body, including brain function. Numerous studies have shown that olive oil can help improve cognitive function and memory, as well as protect against age-related decline. The beneficial effects of olive oil on brain function are thought to be due to its high content of monounsaturated fatty acids, as well as its antioxidant and anti-inflammatory properties. Additionally, olive oil is a rich source of phenolic compounds, which have also been shown to boost cognitive function. To get the most benefit from olive oil for brain health, it is best to use extra virgin olive oil, which contains the highest levels of these beneficial compounds.

How to use olive oil for better brain health

There is growing evidence that olive oil can help to improve brain health. Numerous studies have shown that olive oil can help to protect the brain from age-related damage, and it may also have neuroprotective properties. One way to get the benefits of olive oil is to take a teaspoonful each day. This can help to increase levels of healthy fats in the brain, which are essential for cognitive function. Another option is to use olive oil when cooking. This can help to improve the absorption of nutrients from other foods, and it also provides a healthy source of calories. Also, your body needs fats to manufacture hormones. Either way, incorporating olive oil into your diet is a simple and effective way to boost brain health.

Olive oil a needed fat for the body to produce hormones.

While fat has gotten a bad rap in recent years, the truth is that our bodies need fat in order to function properly. Fats help to insulate our organs, protect our joints, and produce essential hormones. And while there are different types of fats, olive oil is one of the healthiest choices thanks to its high levels of monounsaturated fatty acids. These healthy fats can help to lower bad cholesterol levels and reduce the risk of heart disease. In addition, olive oil is a rich source of antioxidants, which can help to protect cells from damage. So next time you Reach for that bottle of cooking oil, remember that olive oil isn’t just good for your health—it’s essential for it.

Olive oil is a healthy fat that has been shown to have numerous benefits for the body, including brain function. Numerous studies have shown that olive oil can help improve cognitive function and memory, as well as protect against age-related decline. The beneficial effects of olive oil on brain health are thought to be due to its high content of monounsaturated fatty acids, as well as its antioxidant and anti-inflammatory properties. Additionally, olive oil is a rich source of phenolic compounds, which have also been shown to boost cognitive function. To get the most benefit from olive oil for brain health, it is best to use extra virgin olive oil, which contains the highest levels of these beneficial compounds.

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Can the Liver Be Repaired Once It Is Damaged?
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Date: April 29, 2022 11:33 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Can the Liver Be Repaired Once It Is Damaged?

https://vitamins.vitanetonline.com/wp-content/uploads/liver-2934612_1920.png The liver is a vital organ in the body that performs many essential functions. It can be damaged by a variety of factors, including disease, alcohol abuse, and exposure to toxic chemicals. Once the liver is damaged, can it be repaired? In this article, we will explore the answer to that question. We will also discuss the various ways that the liver can be damaged and how those damages can be repaired.

What is the liver and what does it do?

The liver is a large, multi-functional organ that plays a vital role in the body. Its primary function is to filter the blood and remove toxins, but it also helps to regulate metabolism, store nutrients, and produce bile. The liver is divided into two main lobes, the right lobe and the left lobe. The right lobe is slightly larger than the left lobe and includes the quadrate lobe and caudate lobe. The left lobe contains the left lateral section and the medial section. The hepatic veins drain blood from the liver and pass it through the inferior vena cava to be returned to the heart. The hepatic arteries supply oxygenated blood to the liver tissue, while the portal vein carries nutrient-rich blood from the digestive organs. The bile ducts transport bile produced by the liver cells to the gallbladder, where it is stored until needed for digestion.

The liver is a hardworking organ that performs many crucial functions in the body. By keeping it healthy, we can help to ensure that our entire body remains healthy and functioning properly.

What can damage the liver and how does that damage occur?

The liver is a vital organ that performs many important functions, such as filtering toxins from the blood and producing bile to help digest fats. However, the liver can be damaged by a number of different agents, including viruses, alcohol, and certain medications. Viruses such as hepatitis C and hepatitis B can cause inflammation of the liver, which can lead to scarring and eventually to liver failure. Alcohol abuse is also a major cause of liver damage, as it can lead to fatty deposits, inflammation, and scarring. In addition, certain drugs (such as acetaminophen) can cause toxic damage to the liver cells. If the liver is not functioning properly, it can result in a build-up of toxins in the blood, which can lead to serious health problems.

Can the liver be repaired once it is damaged, and if so, how is that done?

The liver is a amazing organ. It is responsible for so many important functions in the body, from filtering toxins to producing bile to breaking down fats. When it is damaged, it can often repair itself. This is because the liver has a high regenerative capacity. hepatocytes, which are the main type of liver cell, can divide and grow back quickly when necessary. In fact, as long as about 25% of the liver remains healthy, it can regenerate itself completely over the course of a few weeks. There are a number of ways to damage the liver, such as through alcohol abuse or viral infections, but fortunately there are also ways to help it repair itself. Eating a healthy diet, getting enough exercise, and avoiding toxins, take liver supporting supplements like milk thistle and NAC can all support liver health and regeneration.

How can people prevent their livers from being damaged in the first place?

The liver is a vital organ that plays an important role in metabolism. However, the liver can also be easily damaged by alcohol, drugs, prescriptions, and environmental toxins, which are in the foods we eat. To help prevent liver damage, it is important to avoid excess alcohol consumption or avoid it all together, take medication as directed and if you are on medications that cause liver damage to discuss alternatives that do not harm the liver, and eat a healthy diet along with taking liver supporting supplements. Additionally, it is important to get regular exercise, as this helps to keep the liver healthy and functioning properly. By taking these steps, people can help to prevent liver damage and keep their organs healthy.

Are there any lifestyle changes or supplements that can help improve liver function even if it has been damaged already?

Liver damage is a serious concern for many people, as it can lead to a number of health problems. While there is no guaranteed way to reverse liver damage, there are some lifestyle changes and supplements that may help improve liver function. One potential change is to limit alcohol consumption, as alcohol is known to be damaging to the liver, mixing alchol and drugs can enhance the progress of liver damage. Additionally, eating a healthy diet and exercising regularly can help improve overall liver function. There are also a number of herbal supplements that are thought to be beneficial for the liver, such as milk thistle and dandelion root. However, it is important to speak with a healthcare provider before starting any new supplement, as some may interact with other medications.

What are the possible consequences of not repairing a damaged liver?

Liver damage can have serious consequences if left untreated. Depending on the cause, there may be a variety of negative effects that result from an injured liver. For example, if the damage is due to excessive alcohol consumption, then scarring and inflammation of the liver tissue can interfere with its ability to filter toxins out of the blood. This can lead to a host of potentially dangerous health problems, including nausea, chronic fatigue, jaundice, and cirrhosis. You must address the cause before change for the good can happen. In addition, unresolved inflammation can increase one's risk of developing more serious conditions such as cancer or heart disease. To prevent these possible consequences, it is important to seek medical attention as soon as possible after suffering from liver damage. This will allow doctors to properly diagnose the issue and develop an appropriate treatment plan. Addressing the cause is always preferable over simply treating symptoms alone. Ultimately, taking action now can help you protect your health in the future.

How can people find out if their livers need repair and where they should go for help if that is the case?

When it comes to liver health, there are a number of ways to find out if your liver needs some repairs. One method is to get tested for elevated liver enzymes, which are indicative of problems with the organ. You can also watch out for certain symptoms, such as fatigue, bloating or skin discoloration. If you notice any of these markers, you may want to consult with your doctor or a specialist in liver disease, who can help determine the best course of action. Depending on the underlying cause of your liver problem, treatment options may include changes to your diet and exercise habits, medications or even surgery in extreme cases. Whatever route you choose, it is essential that you address any issues with your liver as soon as possible in order to protect your overall wellbeing.

Generally, symptoms only show when liver function has dropped significantly.

Liver damage can often go undetected until it has Reached a advanced stage. This is because the liver has an incredible capacity for regeneration and can continue to function even when up to 75% of it has been damaged. As a result, symptoms of liver disease often only become apparent when the organ has been severely compromised. By that point, the damage may be irreversible and serious complications may have developed. Therefore, it is important to be aware of the early signs of liver damage so that treatment can be started as soon as possible. These include fatigue, weight loss, abdominal pain, and yellowing of the skin and eyes.

Fortunately, Supplements like Milk thistle and NAC may help the body assist the liver in its repair.

The liver is a hardworking organ that is constantly exposed to toxins. As a result, it is susceptible to damage. Fortunately, supplements like milk thistle and NAC may help the body assist the liver in its repair. Milk thistle contains silymarin, a compound that helps to protect the liver from damage. NAC is an amino acid that helps to remove toxins from the liver. NAC also helps to replenish glutathione, a substance that plays a key role in liver detoxification. Together, these supplements can help to keep the liver healthy and functioning properly.

Whether you are looking for preventative measures to protect the liver or have an existing issue, it can never hurt to take either milk thistle, NAC, or both to support healthy liver function.

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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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Not just for dessert: Add a dash of cinnamon to your coffee for a healthier and richer, less bitter drink
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Date: May 14, 2019 04:05 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Not just for dessert: Add a dash of cinnamon to your coffee for a healthier and richer, less bitter drink





When your coffee is too bitter, you do not need to reach for the cream and sugar. Try adding cinnamon to your coffee instead. This is much healthier than cream or sugar. Adding cinnamon reduces the bitterness of coffee. Besides reducing the bad health effects of cream and sugar, cinnamon actually helps add nutrients to your coffee. Cinnamon is rich in calcium, manganese and Vitamin K. Cinnamon has also been shown to help brain function.

Key Takeaways:

  • Cinnamon is a very old spice that has aromatic, flavorful, and medicinal purposes.
  • Cinnamon is an ideal spice to add for people that are looking to lose weight or are diabetics.
  • Add cinnamon to your coffee instead of other additives for an healthier and possibly tastier alternative.

"They add cream or milk to increase the smoothness and richness of the drink, as well as sugar to directly counter the bitterness with its polar opposite flavor."

Read more: https://www.naturalnews.com/2019-04-04-add-a-dash-of-cinnamon-to-your-coffee.html

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Natural anxiety relief: Scientific study reveals how ashwagandha root can help
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Date: May 08, 2019 02:35 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Natural anxiety relief: Scientific study reveals how ashwagandha root can help





The many health benefits of the ashwagandha root is well known to ayurvedic medicine. It is only recently that conventional medicine is becoming aware of this due to the increase in the number of published articles on the effectiveness of ashwagandha root. It is known that the ashwagandha root is a good adaptogen and it is prolific for combating stress, for giving support to the adrenal system, and also for help in balancing the hormones in the body. It can also serve as an exceptional herb for aiding sleep. This effect on the body is due to the richness of alkaloids including sioinidosides that can be found in ashwagandha root which makes it serve as a mild sedative for natural anxiety relief. A recent study in which 64 human subjects were used and half were given a placebo while the other half ashwagandha root extracts gave impressive results in showing that ashwagandha root extracts is effective for boosting resistance to stressors and can help adults suffering from chronic stress. Furthermore, there is no side effect with taking ashwagandha roots even if one is not feeling stress.

Key Takeaways:

  • As research continues to support the successful use of ashwagandha for healing especially in ayurvedic medicine, it is expected that conventional doctors will begin to embrace it.
  • In a clinical trial that involved 64 human subjects, half were given a placebo while the other half were given ashwagandha for 60 days with impressive results.
  • Ashwagandha has been confirmed to be one of the natural healing remedies for stress relief, and it also supports the adrenal system and balances hormones.

"This study further propels holistic medicine’s reach into the mainstream by confirming that ashwagandha root extract boosts resistance to stressors and can be safely utilized as an adaptogen for adults suffering from chronic stress issues."

Read more: https://www.naturalhealth365.com/ashwagandha-root-anxiety-2908.html

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Discover how a special kind of pine bark improves heart health byreducing the risk of metabolic syndrome
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Date: April 24, 2019 03:57 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Discover how a special kind of pine bark improves heart health byreducing the risk of metabolic syndrome





With more and more consideration placed on ways to make you more healthy and physically well, there has been an increase in the holistic forms and natural remedies that have been implemented. In doing so, one interesting trend that is recently being discovered is that of pine bark, a more specific type, that is seen for heart health. By using this pine bark in different foods, it can decrease the risk of metabolic syndrome in individuals.

Key Takeaways:

  • Metabolic syndrome has reached pandemic proportions in the US. This is a linked cluster of undesirable health conditions which include high blood pressure, high blood sugar, and elevated cholesterol.
  • Research has shown that natural substances like pine bark are amongst the list of herbs that can be used to support a good heart function.
  • The pharmaceutical industry in western countries wield so much power and influence in media and medicine so they keep many people ignorant about these natural remedies.

"Disease-fighting OPCs in pine bark are not only antioxidant (helping to scavenge dangerous free radicals), but have anti-inflammatory, anticancer, anti-allergenic, antibacterial and anti-aging effects as well."

Read more: https://www.naturalhealth365.com/pine-bark-heart-health-2823.html

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Exotic spice saffron found to be safer, more effective thanantidepressants
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Date: April 23, 2019 02:51 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Exotic spice saffron found to be safer, more effective thanantidepressants





Saffron has been used for centuries in treating various ailments both mentally and physically. Recent studies are showing support in the fact that this exotic spice can do wonders for those who are suffering from depressive symptoms. In fact, a recent control group proved that when people take adequate amounts of saffron on a routine basis, it has the ability to alleviate their symptoms just as much as mainstream antidepressants such as Prozac and other serotonin inhibitors.

Key Takeaways:

  • The number of Americans reported to be suffering from depression is reaching record numbers and in 2015 it was recorded that over 16 million Americans had one depressive episode.
  • Some 11 percent of Americans take some form of antidepressant for their condition and these antidepressant most have side effects with taking them.
  • As people continue to search for alternative treatments to treat their depression it was discovered that a spice, saffron, could be useful.

"Along with the growing rates of depression, the use of antidepressant medication has continued to skyrocket. Some 2013 estimates from the CDC reveal that usage of these drugs increased by upwards of 400 percent in just 25 years."

Read more: https://www.naturalnews.com/2019-02-27-exotic-spice-saffron-safer-more-effective-antidepressants.html

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Plant proteins found to help prevent Type 2 diabetes
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Date: April 22, 2019 04:18 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Plant proteins found to help prevent Type 2 diabetes





A recent study published in the British Journal of Nutrition analyzed the diets of more than 2,000 men. It specifically sought to find a correlation between protein sources and diabetes. It found that, in general, men with a higher intake of protein from plants were less likely to develop Type 2 diabetes. Conversely, men who got most of their protein from processed or unprocessed meats were more likely to develop Type 2 diabetes. Several other studies from Harvard have reached parallel conclusions.

Key Takeaways:

  • Researchers from the University of Eastern Finland looked at the dietary habits of 2000 men to try to learn the impact of protein sources on heart health.
  • Plant-based diets are associated with significant drops in the risk of Type 2 diabetes, even when subjects also are less healthy foods as well.
  • One serving of red meat per day is enough to substantially raise the risk of type 2 diabetes relative to non-meat eaters.

"According to the study, men who had the highest intake of plant proteins were 35 percent less likely to develop Type 2 diabetes compared with those who had the lowest consumption."

Read more: https://www.naturalnews.com/2019-02-17-plant-proteins-found-to-help-prevent-type-2-diabetes.html

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9 Reasons You’re Not Losing Weight on Keto
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Date: April 22, 2019 04:13 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 9 Reasons You’re Not Losing Weight on Keto





The keto diet can be a very effective way for individuals to shed excess pounds, but if it is not practiced correctly, the results will remain limited. In order to optimize the diet’s effectiveness, dieters who find their progress stalling should attempt to reduce the amount of carbohydrates and proteins they are eating, assess whether their overall food intake might be either too low or too high, focus on triggering ketosis, get regular sleep and exercise. If these strategies fail, it might be time to adjust inflated expectations or consider the possibility of a medical condition that is inhibiting weight loss.

Key Takeaways:

  • Eating too much protein can actually stop the ketosis process if your body processes some of the extra protein into glucose.
  • Eating too much can defeat the purpose of dieting, especially if you snack a lot, but eating too little can make your body conserve more calories by tricking it into guarding against “starvation.”
  • It can be hard for keto diet neophytes to know exactly if they’ve even reached ketosis yet except through testing for ketones.

"To calculate net carbs, simply subtract the total grams of fiber from the total grams of carbs in your foods. High-fiber keto foods like certain veggies are great choices to help keep carb consumption low while squeezing in plenty of vitamins and minerals to support better health."

Read more: https://draxe.com/reasons-not-losing-weight-on-keto/

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High levels of vitamin C can significantly lower your risk ofpremature death, researchers find
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Date: March 06, 2019 01:34 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: High levels of vitamin C can significantly lower your risk ofpremature death, researchers find





Exactly 473 men and 475 women have been studied in order to see if high levels of vitamin C can help lower the risk of facing a premature death. Although several people did meet an early demise due to heart disease and other common ailments, it was shown that the individuals who were in the top 25 percentile when it comes to their vitamin C levels had a much lower risk in reaching an early death.

Key Takeaways:

  • A 16-year study of almost 1000 Chinese men and women found that those with the highest Vitamin C plasma concentrations were less likely to have died of any cause during the study.
  • Vitamin C’s benefits probably result from its ability to suppress oxidative stress and the resulting inflammation.
  • Kiwis, papayas, chili peppers, red bell peppers, mangos, kale and pineapple are all rich sources of Vitamin C.

"Proper nutrition can be incredibly powerful when it comes to preventing disease and protecting your health, so take a look at your typical diet and try to find new ways to incorporate vitamin C-rich foods to give your longevity a boost."

Read more: https://www.naturalnews.com/2019-02-13-high-levels-of-vitamin-c-can-significantly-lower-your-risk-of-premature-death-researchers-find.html

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Is vitamin C the key to fighting pneumonia?
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Date: February 14, 2019 09:49 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Is vitamin C the key to fighting pneumonia?





As a whole, most individuals in society know that once those cold feels start kicking in, it is time to reach for your Vitamin C, juice, powder, pill, it doesn’t matter. This article, however, highlights the use of Vitamin C to fight pneumonia as well. It provides basic education on what the vitamin does and also lists a few fruits and vegetables the vitamin can be often found in. This general informational blurb will be just the thing you need to learn more about vitamin C and pneumonia.

Key Takeaways:

  • Pneumonia, which is common in those with vulnerable immune systems like pregnant women, the elderly and children below two, is treated based on whether it is viral or bacterial.
  • It has been discovered that Vitamin C is a powerful antibiotic for pneumonia and its effects come without the side effects associated with antivirals and antibiotics.
  • Many persons are aware that Vitamin C boosts the immune function and many drugs that are used to fight flu and cold are fortified with Vitamin C.

"Pneumonia, an infection of the lungs caused by either a virus or bacteria, is the leading cause of death from infection in the U.S."

Read more: https://www.naturalnews.com/2019-02-10-is-vitamin-c-the-key-to-fighting-pneumonia.html

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Supplementing with vitamin D can promote weight loss, study finds
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Date: December 03, 2018 02:03 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Supplementing with vitamin D can promote weight loss, study finds





There are a lot of people out there that love to have vitamins on a daily basis. They understand all the good things that they can provide for someone and how important they can be as you get older. Diet is one of those things that is constantly not getting enough credit in the health circles of today's world. However, studies are now showing that Vitamin D can promote weight loss and help people achieve their body image goals.

Key Takeaways:

  • Vitamin D is the vitamin that does not get enough fan fare as it really does deserve.
  • For people who want to lose more weight, vitamin D is one of those things that can help you.
  • Everyone's body is different but vitamins for all is something that should be preached.

"Childhood obesity has become a significant health problem around the world. Not only is it dangerous for children right now, but it also sets them up to develop serious problems later in life, such as diabetes and heart disease."

Read more: https://www.naturalnews.com/2018-11-30-supplementing-with-vitamin-d-promotes-weight-loss.html

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12 Essential Oils for Arthritis Pain
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Date: November 22, 2018 09:27 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 12 Essential Oils for Arthritis Pain





Arthritis is a disease that affects the body's joints. It is common in older adults as well as people who play sports. There are dozens of types of arthritis, all of which can be debilitating. Patients can use essential oils to help minimize some of the arthritis pain they feel. But, don't reach for the first oil that you find when it is the 12 listed here that provide the most effective results for your condition.

Key Takeaways:

  • As you get older, your chances of suffering from arthritis go way up.
  • The earlier that you start to prepare for these types of things, the better off you will be.
  • Everyone deals with pain in a different manner but these oils are proven to help arthritis pain.

"Arthritis pain can have a profound effect on a person’s quality of life, affecting the ability to fall and stay asleep, having a slow start in the morning and the ability to complete everyday tasks."

Read more: https://www.care2.com/greenliving/12-essential-oils-for-arthritis-pain.html

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8 Essential Oils for Burns and Cuts
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Date: October 19, 2018 10:52 AM
Author: VitaNet, LLC Staff (support@vitanetonline.com)
Subject: 8 Essential Oils for Burns and Cuts





8 Essential Oils for Burns and Cuts

If you need help for minor cuts or burns, instead of reaching for the medicine cabinet, why not reach for your garden - or rather, essential oils from the garden. The oils of several garden plants(as well as others) can help ease pain, inflammation and promote healing. Some of the common garden plants include rosemary, lavender, oregano and peppermint. But these are not the only plants you have available: the oils of rose geranium, myrrh, eucalyptus and helichrysum are also helpful for cuts and burns.

Key Takeaways:

  • If you are suffering from something like this, make sure to take care of it.
  • A small little slit in your skin can actually be something more serious if you do not take care of it.
  • It is interesting to see the effects of these things when using them on certain people.

"In this article, we will walk you over the best essential oils for burns and cuts, take note study shows that they really work."

Read more: https://t2conline.com/8-essential-oils-for-burns-and-cuts/

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Is Cholesterol Bad for Your Brain? Science Says No
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Date: September 11, 2018 09:52 AM
Author: VitaNet, LLC Staff (support@vitanetonline.com)
Subject: Is Cholesterol Bad for Your Brain? Science Says No





Is Cholesterol Bad for Your Brain? Science Says No

Having too much cholesterol is bad for you. Most people know this fact as it is preached to us from a young age. Do not have too much cholesterol or you will end up having high blood pressure and problems as you get older. However, some people like foods such as eggs a bit too much and this forces them to consume far more cholesterol than they realize. It can be a dangerous match if not handled.

Key Takeaways:

  • If you eat way too many eggs, the chances are that you will have some cholesterol problems.
  • Be smart when you eat and remember that too much of any one thing is usually not good for you.
  • It is crazy to think about all of the bodily functions that go on within us on a daily basis.

"Cholesterol is extremely important for cognitive function. While your brain represents about 2-3 percent of your total body weight, 25 percent of that cholesterol in your body is found in your brain."

Read more: https://www.zliving.com/health/cholesterol-for-your-brain-117041/

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Acai for colon health: The polyphenols from the Amazon superfruit can carry prebiotic benefits through the digestive tract
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Date: August 10, 2018 09:53 AM
Author: VitaNet, LLC Staff (support@vitanetonline.com)
Subject: Acai for colon health: The polyphenols from the Amazon superfruit can carry prebiotic benefits through the digestive tract





Acai for colon health: The polyphenols from the Amazon superfruit can carry prebiotic benefits through the digestive tract

Acai is already known in the scientific community as a superfood. A new study is showing another health benefit of the fruit. A new study shows the polyphenol content of the fruit may provide prebiotic benefits in both the digestive track and colon because the polyphenol content can survive the digestive environment. The experiment used a powder of Acai that had been freeze dried and ground up, and then simulated the digestive environment. After the simulated digestive process they found up to fifty percent of the polyphenol content was still available. This means the polyphenol content could reach the colon extending the health benefit of the fruit.

Key Takeaways:

  • After putting acai pulp through a simulated digestive process, researcher found that almost half of the fruit’s polyphenol content was still available.
  • Acai polyphenols are known to serve as a prebiotic agent, helping the gut maintain a healthy bacteria balance.
  • The fermentation process that occurs during the digestive process can reduce inflammation and boost the body's metabolism.

"The scientific community has long branded acai berry as a superfood due in part to its many health benefits."

Read more: https://www.naturalnews.com/2018-08-08-acai-for-colon-health.html

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Gut microbes play a significant role in the central nervous system digestive health is linked to your risk of neurodegenerative diseases
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Date: August 07, 2018 09:53 AM
Author: VitaNet, LLC Staff (support@vitanetonline.com)
Subject: Gut microbes play a significant role in the central nervous system digestive health is linked to your risk of neurodegenerative diseases





Gut microbes play a significant role in the central nervous system digestive health is linked to your risk of neurodegenerative diseases

Neurodegenerative diseases like Alzheimers are becoming more and more common in the United States, and pose an increasing risk to aging populations. A recent study has identified gut microbes as one of the causes of these diseases - a huge breakthrough in the field, and one with significant implications for how we view our brain's health. These microbes release chemicals that can change the nature of the brain. It's a finding that shows that caring for our digestive health can be one of the most important steps to preventing diseases like Alzheimers, later on.

Key Takeaways:

  • Alzheimers and other neurogenerative diseases are becoming some of the biggest challenges aging populations are facing.
  • A recent study established a link between gut microbes and neurogenerative diseases.
  • Our digestive health, then, plays a much bigger role in our brain's health than previously thought.

"They reached their conclusions after examining gut microbes and changes in mouse models of multiple sclerosis. They discovered the compounds produced by the breakdown of tryptophan cross the blood-brain barrier and activate an inflammatory pathway that can limit neurodegeneration."

Read more: https://www.naturalnews.com/2018-07-30-gut-microbes-play-a-significant-role-in-the-central-nervous-system.html

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Drinking chilled yerba mate can help you achieve your weight loss goals
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Date: July 27, 2018 09:53 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Drinking chilled yerba mate can help you achieve your weight loss goals





Drinking chilled yerba mate can help you achieve your weight loss goals

Consuming chilled yerba mate can enable humans to burn over 50% more calories than they would without drinking it! This boost in energy expenditure not only relates to more fat loss, but it also helps regulate and improve the cardiovascular system. A study that included 23 participants concluded these findings, showing just how beneficial the consumption of chilled yerba mate is much more useful to the body than simply consuming hot varieties of herbal teas.

Key Takeaways:

  • A drink needs to reach your body's natural temperature in order to digest it as is. When something is colder, it burns energy while digesting the product.
  • Not only can yerba mate help decrease body fat when you have it cold, but it also contains much less sugar than other tea drinks.
  • The antioxidant properties that are present within yerba mate will still be contained when it is in a chilled form.

"Data from the study showed that iced yerba mate tea produced over 50 percent more energy expenditure, or calorie burning, versus hot tea, or 8.3 percent compared to 3.7 percent."

Read more: https://www.naturalnews.com/2018-06-14-drinking-chilled-yerba-mate-can-help-you-achieve-your-weight-loss-goals.html

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People really want their dogs to chill out with CBD and demand is sky high
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Date: July 26, 2018 01:53 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: People really want their dogs to chill out with CBD and demand is sky high





People really want their dogs to chill out with CBD and demand is sky high

CBD is being used by children and adults across the nation. Scientists have proven that it has an immaculate number of health benefits, even stopping seizures in children when nothing else worked. Now, pet owners are reaching for CBD to stop their dogs anxiety and hyperactivity at rates so high it is not easy to keep the product on the shelves. CBD is all-natural, has instant results and has proven itself worthy of use time and time again and pet owners are thrilled with the results

Key Takeaways:

  • Barkshop is an affiliate store of Barkbox known for selling fun, whimsical toys aimed at pet owners.
  • Barkshop has been expanding its repertoire, offering doggy-centered health options, like multi-vitamins and biscuits with CBD oil.
  • The CBD options have had mixed reviews, with some owners reporting their pets improved response to stress and others noting less, or no change.

"BarkShop became the first online retail retailer to sell CBD products to dogs in March."

Read more: https://mashable.com/2018/07/23/barkshop-cbd-products-for-dogs/

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The bedtime mistakes that are making you gain weight
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Date: July 07, 2018 05:54 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: The bedtime mistakes that are making you gain weight





The bedtime mistakes that are making you gain weight

Are you one of many people who are trying to lose weight. Here are several bad bedtime habits that might be standing in your way of reaching that goal. Ignore your craving for a late night snack. Some researchers believe that insufficient sleep can affect weight too. That includes staying off any devices, like your phone, laptop or tablet. Avoiding caffeine at night will help you sleep as well. Also, sleep with the light off and get regular exercise to regulate your body for sleep.

Key Takeaways:

  • Eating late at night has been shown to increase insulin levels and cholesterol levels, besides being implicated in weight gain.
  • Two significant hormones that help to regulate appetite are thrown off balance when you don't get sufficient sleep.
  • The blue light on our devices, which are good for increasing focus, are conversely poor for inducing sleep and should be avoided before slumber-time.

"Believe it or not, your bedtime routine may be a contributing factor to your weight gain, but the good news is that by adjusting your routine slightly you can get back on track to reach your desired goal weight."

Read more: https://www.healthnutnews.com/the-bedtime-mistakes-that-are-making-you-gain-weight/

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Eating more fennel keeps your heart healthy â?? especially when consumed regularly
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Date: July 07, 2018 09:54 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Eating more fennel keeps your heart healthy â?? especially when consumed regularly





Eating more fennel keeps your heart healthy – especially when consumed regularly

If you want to lower your chances of getting cardiovascular disease, exercise will go a long way toward helping you reach that admirable goal. In fact, an active exercise routine can lower hypertension and also other chemicals in your body that are responsible for many chronic conditions, like diabetes. However, for a small few, exercise won't significantly help them fight it so many are turning to fennel for its many benefits including its lowering of antihypertensive in people.

Key Takeaways:

  • Exercise is highly effective against cardiovascular disease (CVD) as well as in controlling chronic conditions like diabetes.
  • The authors of this study were looking at how long-term use of fennel or Nigella sativa (NS) could aid in preventing cardiovascular disease apart from exercise.
  • Although the findings of the study showed that fennel or Nigella sativa could help prevent cardiovascular disease, they concluded that more studies need to be done.

"For this study, the researchers trained their eyes on the fennel or Nigella sativa (NS)."

Read more: https://www.naturalnews.com/2018-07-05-eating-more-fennel-keeps-your-heart-healthy-especially-if-you-take-them-regularly.html

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Five Ways to Get CBD Oil and Concentrates
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Date: June 03, 2018 09:16 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Five Ways to Get CBD Oil and Concentrates





Five Ways to Get CBD Oil and Concentrates

Recently, Cannabidiol (CBD) oil has become very popular on the alternative medicine markets. Fuego (2018) discusses its' increasing popularity in the article titled, "Five Ways to Get CBD Oil and Concentrates". According to the article, CBD oil is used for the following conditions: anxiety, pain, seizures, pain, and sleep disorders. The product comes from marijuana and hemp. It is predicted that CBD oil sales will reach about $ 1.153 billion in sales by the year 2020.

Key Takeaways:

  • If you live in a state where you have legal retail dispensaries, you can get CBD oil there.
  • States that have legal recreational marijuana have head shops that sell CBD oil as well.
  • Ordering it online is probably the easiest and most efficient way to buy CBD oil.

"The legality of CBD oil made from hemp depends on whom you ask, but it can still be purchased in fifty states."

Read more: http://www.westword.com/marijuana/cbd-oil-how-and-where-to-get-it-10329926

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Selenium, vitamin K2 and nicotinamide riboside ride new research toward roles beyond being ...
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Date: May 26, 2018 09:16 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Selenium, vitamin K2 and nicotinamide riboside ride new research toward roles beyond being ...





Selenium, vitamin K2 and nicotinamide riboside ride new research toward roles beyond being ...

When we're in need of a new multivitamin, we typically just run to the local drug store and take whatever we see on the shelf. Lately, researchers have been digging deeper into what these mainstream pharmaceutical companies are putting into these multivitamin supplements. A good example is a chemical called selenium. Studies by certain commercial corporations claim that it has cancer fighting abilities, but the research seems to be a bit vague and even watered down.

Key Takeaways:

  • Many of the controversial ingredients in vitamin K2 are found originally in fermented products.
  • Fortunately, one benefit of vitamin K2 is that it has been shown to improve the transportation of calcium which improves vascular health.
  • Niacin was discovered all the way back in the 1930's by Conrad Elvehjem, PhD. He was an experienced biochemist.

"New indications for ingredients that have been featured in many multivitamin products have helped to expand their reach into different formulations and even standalone products."

Read more: https://www.nutraingredients-usa.com/Article/2018/04/24/Selenium-vitamin-K2-and-nicotinamide-riboside-ride-new-research-toward-roles-beyond-being-multivitamin-bit-players

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Prevent vision loss by protecting your heart with a healthy diet
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Date: May 03, 2018 09:17 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Prevent vision loss by protecting your heart with a healthy diet





Prevent vision loss by protecting your heart with a healthy diet

The amount of those suffering from eyesight across our nation is expected to reach over a staggering 22 million by the year 2050. Many physicians are now recommending that their patients adhere to healthier diets in order for the odds to be in their favor when it comes to keeping their eyesight long-term. It is important to eat healthy foods due to them being high in antioxidants which can help fight harmful bacteria in our body that can lead to disorders that cause vision loss.

Key Takeaways:

  • Age-related macular degeneration happens because light-sensitive cells in the eye's retina become permanently damaged.
  • There are two distinct versions of the disease, dealing specifically with the macular portion of the eye's retina.
  • The dry version, which involves the thinning and then the eventual breaking down of the macula, is more problematic as there is no known treatment options so far.

"Joshi’s colleague, Dr. Nancy Kunjukunju, M.D. gets even more specific. She states that a heart-healthy diet and lifestyle are essential for those who are afraid of getting AMD because the disease runs in the family."

Read more: https://www.naturalnews.com/2018-05-01-prevent-vision-loss-by-protecting-your-heart-with-a-healthy-diet.html

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Eat These 3 Oils In The Morning To Drop Weight Fast
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Date: January 09, 2018 03:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Eat These 3 Oils In The Morning To Drop Weight Fast





Three oils in your daily routine can help you lose weight and vitalize your day. These three oils are essential to a healthy body. The first oil is peppermint oil. This oil will prevent muscle spasm during a workout. Adding this to your morning or afternoon tea helps with inflammation and oxygenates the blood. This helps clear brain fog. Lemon oil boots the immune system. Coconut oil is the most versatile. You can brush your teeth with it, cook with it, or use it as a hand lotion. The benefits are enormous for these three oils.

Key Takeaways:

  • Peppermint oil is great for soothing muscles and letting you push through that final motion
  • Lemon oil, like it citrus cousins, is great for the immune system and helps keep you healthy
  • Coconut oil is perfect for skin and hair health, but due to its fatty acids, can help boost your metabolism

"Instead of reaching for something that could ruin your hard work and progress, consider using oils in your morning routine to help you drop weight fast."

Read more: https://www.thealternativedaily.com/eat-these-3-oils-in-the-morning-to-drop-weight-fast/

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This Drink Helps You Get Rid of Bloating & Belly Fat Naturally
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Date: October 07, 2017 12:14 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: This Drink Helps You Get Rid of Bloating & Belly Fat Naturally





Bloating can be painful or just very uncomfortable. Your clothes don't fit correctly when it's going on either. This can actually be embarrassing because of a button being left undone or something. This drink can help make it better. It can also help with excess belly fat which is a very hard kind of fat to burn off. It might be good to add this yto your diet since belly fat doesn't melt off even when you work out sometimes.

https://www.youtube.com/watch?v=Tcz2FGPpymY&rel=0

Key Takeaways:

  • So, what’s the best way to put them together without compromising any of their natural properties? A simple, delicious tea works wonders. Follow these steps to start taking advantage of this unusual
  • Boil one cup of water on the stove. After it comes to a steady boil, remove it from the heat and add one small slice of ginger. Cover it and allow it to steep for five minutes. Then, add the juice.
  • Remember these natural ingredients only work if they are added to a healthy diet free from junk food, soft drinks, an increased amount of sodium. Get plenty of exercise and consume at least two liters

"This combination can compliment a healthy diet to help you Reach your goal."

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Top 7 Foods That Fight High Blood Pressure Naturally
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Date: July 23, 2017 05:14 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Top 7 Foods That Fight High Blood Pressure Naturally





High blood pressure can be dangerous. Hypertension is when it gets really high and that's a real concern for many. This gives examples of foods which can help fight it, though, so there's hope. High blood pressure can be caused by stress. Many people have it for this reason. It would e easy enough to add these foods to your diet even if you can't do much about your stressers. All you have to do is find recipes you like which contain the ingredients, but watch your salt intake since that is counterproductive.

https://www.youtube.com/watch?v=6yBxbacWL0s&rel=0

Key Takeaways:

  • Some of the common risk factors for high blood pressure include excessive red meat intake, excessive alcohol use, smoking, sedentariness, and living a high stress lifestyle.
  • Unfortunately, although hypertension is common and dangerous, it can be hard to detect, as its symptoms are not highly visible or recognizable
  • There are many foods we can eat to help keep our blood pressure under control, such as bananas, pumpkin and watermelon seeds, garlic, onions, yogurt, and potatoes

"For millions of people, blood pressure can Reach dangerously high levels."

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Are You Taking Enough Water With Your Vitamins?
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Date: June 12, 2017 11:14 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Are You Taking Enough Water With Your Vitamins?





People need to be consuming nearly three quarts of water daily or half their bodies weight in ounce to maintain a health and promote internal wellness. If a person does not intake the daily requirement of water than vital organs like the heart, kidneys, liver may not function properly. In the long run, the lack of water can lead to permanent functional damage within the body. Arthritis, ulcers, and Alzheimer are a few conditions cause from chronic lack of water. To prevent these symptoms from occurring and to prevent the use of pharmaceutical drugs people should strive to reach a healthy daily intake of water.

Read more: Are You Taking Enough Water With Your Vitamins?

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Keto Diet for Women: Benefits, Food List & Tips to Overcome Side Effects
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Date: June 06, 2017 09:14 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Keto Diet for Women: Benefits, Food List & Tips to Overcome Side Effects





While existing somewhat below the radar, the ketogenic, or keto diet, has been around for almost a hundred years. In a nutshell, it requires the follower to get three fourths of their diet from healthy fat sources, a radical shift from the high carb diet prevalent today. Notable as a good way to shed pounds and avoid complications of aging, such as insulin resistance and neurological impairment, the diet’s statistical backup has so far centered mainly around rodents and male humans. Anecdotal evidence does suggest, however, that the diet is beneficial for women undergoing perimenopause and menopause. One practitioner, in particular, advocates combining a keto diet with an alkaline diet, to avoid some of the discomfort users have when undergoing the radical shift in intake. A more alkaline pH is good for the body. So, the combination is a win/win.

Key Takeaways:

  • An alkaline ketogenic diet combined with intermittent fasting has health benefits for women.
  • The combination diet promotes anti-aging, better sleep,and normalizing blood sugar while reaching and maintaining healthy weight.
  • Combining the alkaline with the ketogenic leads to diminished side effects from eating mainly low carb foods.

"Fasting is a key aspect of a healthy diet and has many anti-aging effects."

Read more: https://draxe.com/keto-diet-women/

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Osteoporosis: what it is and how you can fight back
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Date: June 02, 2017 11:14 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Osteoporosis: what it is and how you can fight back





What is Osteoporosis? Well it is a bone disorder that affects one of five women who is past the age of fifty. There are steps you can take to prevent Osteoporosis. You can have a good healthy diet, exercises, know your risk factors, go get checked at the doctor's office, take steps to prevent bone fractures and lastly, get information about medications that can be most helpful to you. This is something you should consider talking to your doctor about.

Read more: Osteoporosis: what it is and how you can fight back

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Understanding protein shakes
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Date: May 28, 2017 12:14 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Understanding protein shakes





There are many kinds of protein shakes out there. They come in different flavors and formulas. Many don't understand exactly what they're supposed to do for the body. It is said they can help with weight loss by curbing hunger. They are also good for those who can't eat a solid diet. They are good for you because protein is but what exactly is their purpose? This is outlined here so you can be sure you really need them before taking them.

Key Takeaways:

  • Protein shakes may now be mainstream and healthy, but the shakes may not be right for everyone.
  • Shakes do not have enough carbohydrates, vitamins, minerals and healthy fats to substitute a meal.
  • Because protein shakes could have up to 40 grams of protein, consumers could be taking in too much protein, which can lead to health problems.

"While protein shakes can be beneficial, the International Society of Sports Nutrition recommends that those who exercise should try to reach their protein requirements via whole foods."

Read more: http://www.wmicentral.com/community_beat/health/understanding-protein-shakes/article_f73db31b-f5e3-596c-9fa4-ab5b2e5f701f.html

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Drink This To Get Rid Of Your Migraine
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Date: May 20, 2017 06:44 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Drink This To Get Rid Of Your Migraine





Preventing migraines through diet involves whole, fresh, organic and unprcessed foods. Instead of reaching for a pill the next time a migraine hits, try one of these natural drinks instead: Ginger (with lemon and raw honey), Caffeine (small amounts can reduce a migraine in early stages), Feverfew Tea (due to presence of parthelonide), Cayenne Pepper in warm water, a Water, Lemon and Himalayan Salt mix (salt to boost electrolytes and enzymes), Peppermint Tea (relaxing nerves and spasms), and pure, raw grape juice, but without added sugar!

Read more: Drink This To Get Rid Of Your Migraine

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ATTENTION. 5 Things You Should NEVER Do After Eating!!
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Date: May 06, 2017 04:29 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: ATTENTION. 5 Things You Should NEVER Do After Eating!!





What do you do after consuming a big meal? If you are like many people, you are doing one of these five things after you eat, and if you are, it is time to get a new routine. These five items are all important to avoid doing after you've eaten, and the sooner that you make this a priority, the better. What shouldn't you do once you're finished with dinner and up from the table?

https://www.youtube.com/watch?v=x3VbSiyTges&rel=0

Key Takeaways:

  • Avoid sleeping several hours before bed to avoid bloating, sleeping problems, and other health problems
  • Eating fruit on a full stomach makes it hard to break down
  • Avoid showering due to the decrease in blood flow this causes to the stomach

"After a satisfying meal, many of us just want to lay down for the rest of the night and watch a great movie or TV show. But little do we know, this is actually one of worse things you can do after you eat! It’s small bad habits like this that can get in the way of Reaching our healthiest potential."

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4548)


Millions of people with metabolic syndrome may need more vitamin E
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Date: April 25, 2017 06:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Millions of people with metabolic syndrome may need more vitamin E





There are all types of syndromes that affect all types of people in the world.metabolic syndrome is a very specifi one that can lead to various problems. These problems can cause all types of blocks in everyday life that can hold you or someone you know back from fully attaining their life and beyond catering to their needs, fully enjoying life can be a lock or cusp that is reached and mostly a barrier that affect the quality of life, studies show that people with metabolic syndrome may need more vitiman E.

Read more: Millions of people with metabolic syndrome may need more vitamin E

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This All-Natural Cancer Treatment Is Saving Lives
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Date: April 16, 2017 03:44 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: This All-Natural Cancer Treatment Is Saving Lives





The cure for cancer, the most far reaching, and devastating disease known to man, might be found in cannabis. The THC in Marijuana is the potent that gives the stimulated high. There are other benefits for cancer patients who venture into the world of marijuana. There is still much research to be done, however for some cancer patients after consuming cannabis in it's many form has proven to be beneficial. Cancer cells have been stimulated to commit suicide. However every person is different and should consult with their doctor to see if marijuana might be of benefit to negatively stimulate cancer cells.

Key Takeaways:

  • -It’s well known that cannabis can help to alleviate pain and nausea associated with chemotherapy, but can cannabis oil actually kill cancer cells? A number of studies point in that direction, and the
  • -When cancer patients use cannabis oil to inhibit the growth of cancer cells, they often use the Rick Simpson Oil (RSO) Protocol. The method involves consuming 60 grams of cannabis oil over the course
  • -And should you add cannabis or cannabis oil to your treatment plan? Probably. But rely on it completely to cure cancer? Experts say this isn’t a good idea — yet.

"To date, several studies on humans and animals have solidified the link between cannabis compounds and cancer cell death."

Read more: http://www.thealternativedaily.com/cannabis-natural-cancer-treatment/

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Is pine tree bark the key to healthier, stronger teeth?
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Date: April 13, 2017 03:44 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Is pine tree bark the key to healthier, stronger teeth?





Not many people would associate pine tree bark with stronger teeth, but it's proving to be useful in strengthening the teeth and making fillings bind more effectively. This is because the compounds in pine tree bark are shown to strengthen the layer of teeth underneath the enamel. Tests performed by Dr. Guido Pauli are showing that this extract can strengthen dentine (the teeth material under the enamel) by up to ten times. Read this article for more details.

Key Takeaways:

  • -Pine tree bark extract is shown to alter the chemical structure of our teeth, strengthening them, and allowing our fillings to bind to them better
  • -that suggest the tree bark extracts can strengthen dentine by as much as ten times.
  • -Dr. Pauli, and his colleague Dr. Ana Bedran Russo, reached this conclusion after testing the extracts of the Chinese red pine

"Dr. Guido Pauli of the University of Illinois at Chicago says the “weak link in the chain of bonding is the interface between the resin and the dentine."

Read more: http://www.naturalnews.com/2017-04-08-is-pine-tree-bark-the-key-to-healthier-stronger-teeth.html

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6 Ways to Instantly Stimulate Your Vagus Nerve to Relieve Inflammation, Depression, Migraines and More
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Date: April 04, 2017 03:44 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 6 Ways to Instantly Stimulate Your Vagus Nerve to Relieve Inflammation, Depression, Migraines and More





The vagus nerve is the longest nerve strand in the body. This nerve performs many necessary functions. The tone of the vagus nerve is essential to the functioning of your nervous system. High vagus tone improves overall body functioning. Low vagus tone is associated with serious health conditions like stroke and hypertension. Inflammatory conditions, including autoimmune disorders, are also reported to be caused by low tone in the vagus nerve. There are several easy ways to improve vagus nerve tone and overall body functioning and immune health.

Key Takeaways:

  • Stimulating the vagus nerve can relieve inflammation especially from debilitating rheumatoid arthritis.
  • The vagus nerve is the body's longest nerve reaching from the brain to the digestive system, liver, spleen, pancreas, heart, and lungs.
  • An increased vagal tone has a positive health impact on your body.

"If you suffer from digestive complaints, high blood pressure, depression or any inflammatory condition, please read on."

Read more: http://www.healthnutnews.com/6-ways-instantly-stimulate-vagus-nerve-relieve-inflammation-depression-migraines/

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Eat a billion bacteria daily for better health
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Date: April 04, 2017 06:44 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Eat a billion bacteria daily for better health





Research suggests that food can prevent disease. Probiotics and yeasts can help compliment medicines. The microbiota in the digestive tract play an important role in digestive health. Probiotics help keep those microbiota in working order. Probiotics have been researched to help with many illnesses, including kidney disease and diarrhea. Probiotics also can help cholesterol, all helping to prevent longer term illnesses like diabetes. To truly be effective probiotics have to reach the intestinal tract still active. They also need to be numerous in quantity. Supplementing probiotics in the diet is the easiest way to achieve this, with specialty products now on the market to do that.

Read more: Eat a billion bacteria daily for better health

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Drink This EVERY Morning You Will Feel 10 Years Younger Turmeric amazing
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Date: March 20, 2017 11:44 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Drink This EVERY Morning You Will Feel 10 Years Younger Turmeric amazing





Natural herbs and even some fruits and vegetables contain known and unknown compounds which will not only help to keep you healthy, but may even help control and slow the process of aging. Among the many plants which can help slow aging is Turmeric. Turmeric contains compounds which help to rejuvenate the skin and help to keep the entire body healthy, Turmeric is used in many anti aging formulations. Using Turmeric combined with Black Pepper, helps with absorption of the valuable compounds in Turmeric. There is a recipe for a Turmeric tonic known as Golden Milk. Anyone interested in using Turmeric for anti aging should learn where to purchase, or learn to make, Golden Milk!

https://www.youtube.com/watch?v=iBCN44MI6Ng&rel=0

Key Takeaways:

  • Turmeric is a natural anti-inflammatory agent with strong antioxidant capabilities.
  • One Japanese population, where Turmeric is a regular dietary component, reports far more of the population uniformly Reaching a healthy old age than the norm.
  • Turmeric powder, milled pepper, almond milk and honey are components of a drink, called Golden Milk, which can assists the body in combating the signs of aging.

"Aging is a natural process and you cannot prevent it, but you can do all that is needed to age healthy."

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4237)


Study: Turmeric can Slash your Heart Attack Risk by 56%
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Date: March 16, 2017 02:44 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Study: Turmeric can Slash your Heart Attack Risk by 56%





Tumeric is a colorful herb that is used in many dishes, particularly Asian foods. It adds awesome flavor to a dish, which hints at a kick of spice. What makes a dish better? New evidence suggests that consumption of tumeric has an array of health benefits for you to enjoy. One of the best is a reduction in your risk of heart attack. Studies show that you decrease heart attack risk considerably when you consume Tumeric. What are you waiting for?

Key Takeaways:

  • Turmeric has many health benefits because it contains antioxidants and anti-aging properties.
  • The curcumin in turmeric increases cardiovascular function and reduces heart attack risks by 56%.
  • Turmeric can be consumed as a spice added to food and teas or as a juice.

"This incredible ability of curcumin has been particularly helpful for postmenopausal women who reach the age where heart problems can arise and become a health concern."

Read more: http://www.healthnutnews.com/study-turmeric-can-slash-heart-attack-risk-56/

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'Good' bacteria is potential solution to unchecked inflammation seen in bowel diseases
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Date: March 16, 2017 01:44 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 'Good' bacteria is potential solution to unchecked inflammation seen in bowel diseases





Valuable microscopic organisms might be the way to turning around a cycle of gut irritation found in certain fiery inside ailments, College of North Carolina Lineberger Far reaching Tumor Center scientists have found. Scientists found that including back a sort of advantageous microscopic organisms that ordinarily develops in the gut can help end this cycle, recommending another treatment for incendiary inside ailment. The two most basic fiery entrail infections, Crohn's illness, and ulcerative colitis influence an expected 1.6 million individuals in the Unified States, as indicated by the Crohns and Colitis Establishment of America. They trust their discoveries could conceivably prompt to medications for individuals with fiery gut illnesses with diminished NLRP12 expression. You can focus on the irritation that downstream of NLRP12 with mitigating medications, or you could simply nourish the creatures particular microscopic organisms that advantage, and it causes a move that made them less defenseless to the ailment.

Key Takeaways:

  • Scientists know that these diseases involve an abnormal reaction of the immune system to food, bacteria or other materials in the intestines.
  • researchers found that adding back a type of beneficial bacteria that normally grows in the gut can help end this cycle, suggesting a new treatment for inflammatory bowel disease.
  • Beneficial bacteria may be the key to helping to reverse a cycle of gut inflammation

"NLRP12 has been known to suppress inflammatory signals to prevent an overactive immune response. But an analysis uncovered low levels of NLRP12 in twins with ulcerative colitis, but not in paired twins without the disease. And in mouse models that lacked this protein, they found higher levels of inflammation in the colon."

Read more: https://www.sciencedaily.com/releases/2017/03/170313135055.htm

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3 Seeds That Pack A Nutritional Punch
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Date: March 13, 2017 05:14 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 3 Seeds That Pack A Nutritional Punch





It is all in the seed. If you want to consume a snack that packs real value to your nutritional needs, its the seeds that you need. But, before you reach for just any seeds, you should learn the top three types of seeds that you can eat to exceed your health and expectations. Best of all, the seeds are tasty and keep you full until it is time to eat your meal. Get ready for this seedy situation.

Key Takeaways:

  • These super seeds are an almost perfect food to consume
  • Each seed contains fat, protein, and fiber and can be enjoyed 1 tablespoon at a time
  • Chia, flax, and hemp seeds comprisethe bunch known as super seeds

"One tablespoon of a super seed contains about 50 calories, yet it provides a balanced mix of two grams each of protein, fat, and fiber. Indeed, these tiny kernels might just be nature's perfect food."

Read more: http://www.huffingtonpost.ca/lifetime-daily/seeds-nutritional-punch_b_15210690.html

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3 Seeds That Pack A Nutritional Punch
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Date: March 13, 2017 04:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 3 Seeds That Pack A Nutritional Punch





It is all in the seed. If you want to consume a snack that packs real value to your nutritional needs, its the seeds that you need. But, before you reach for just any seeds, you should learn the top three types of seeds that you can eat to exceed your health and expectations. Best of all, the seeds are tasty and keep you full until it is time to eat your meal. Get ready for this seedy situation.

Key Takeaways:

  • These super seeds are an almost perfect food to consume
  • Each seed contains fat, protein, and fiber and can be enjoyed 1 tablespoon at a time
  • Chia, flax, and hemp seeds comprisethe bunch known as super seeds

"One tablespoon of a super seed contains about 50 calories, yet it provides a balanced mix of two grams each of protein, fat, and fiber. Indeed, these tiny kernels might just be nature's perfect food."

Read more: http://www.huffingtonpost.ca/lifetime-daily/seeds-nutritional-punch_b_15210690.html

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Developments in the Legal Cannabis Industry
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Date: March 03, 2017 10:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Developments in the Legal Cannabis Industry





The legal marijuana industry is currently the fastest-growing business in the United States. If it continues to expand and Reaches all 50 states, it could become even bigger than the organic foods market. According to The ArcView Group, a research company focused on cannabis industry investment, the U.S. market grew 74% in 2014, up from the prior year of $1.5 billion.

Key Takeaways:

  • states that have legalized cannabis are benefiting from taxes.
  • Colorado is expected to generate $135 million in cannabis taxes and licenses fees in fiscal year 2015-16
  • the Cannabidiol (CBD) market will grow to a $2.1 billion market in consumer sales by 2020 with $450 million of those sales coming from hemp-based sources.

"A report published by The Hemp Business Journal estimates that the Cannabidiol (CBD) market will grow to a $2.1 billion market in consumer sales by 2020 with $450 million of those sales coming from hemp-based sources. In 2015, the market for consumer sales of hemp-derived CBD products was $90 million, plus another $112 million in marijuana-derived CBD products which were sold through dispensaries - bringing a total CBD market to $202 million last year"



Reference:

https://www.google.com/url?rct=j&sa=t&url=//www.prnewswire.com/news-releases/developments-in-the-legal-cannabis-industry-614706044.html&ct=ga&cd=CAIyGjViYjkzZDJlODZhNjI0ZWE6Y29tOmVuOlVT&usg=AFQjCNF1jG0FcTxCJrY6tW_jWu1BLTmmNA

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4063)


New year, new you: The healthy way to get into shape
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Date: February 16, 2017 02:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: New year, new you: The healthy way to get into shape





I am writing a summary its anew year and to get into shape bringing it in right .sticking to a diet can be tough . 65 % feel like fai?ure when they don't Reach their desired weight . you shouild consume 1900 calories a day and exercise and start each day with a nice breakfast with fruits and veggies .. Make sure you eat at all times of the day breakfast lunch and dinner all nutrisist and healthy with excersise . thank you for reading my summary .

Key Takeaways:

  • One-in-three of us who make resolutions put starting a diet at the top of our list but the chances are that within a few weeks old habits will creep back in.
  • The fact is that nearly a quarter of Britons feel they simply don’t have enough willpower to stick to a diet.
  • Thankfully, we’re here to help. We’ve conducted extensive research to find out why people find it so hard to stick to a diet and have teamed up with LighterLife Fast to create an exclusive two-week plan that tackles these reasons head-on.

"Our two-week plan could not be easier to follow."



Reference:

https://www.google.com/url?rct=j&sa=t&url=//www.express.co.uk/life-style/diets/749214/health-shape-diet-new-year-resolution&ct=ga&cd=CAIyGmZjNGVlYTM1NDU3YmZmOGU6Y29tOmVuOlVT&usg=AFQjCNE4Gyf1fqRLKohqr5kijFmWs4DS8g

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3956)


20 Minute Body
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Date: February 15, 2017 07:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 20 Minute Body





This book is easy to read, and mainly very easy to follow. The 20 minutes workout doesn't include the warm up, which will take you around 4-5 minutes. If you follow the 20 minutes workout as instructed, you will be sweating like crazy within 10 minutes, and your muscles will be store. Moves are easy to perform, nothing fancy or that requires reading the instructions over and over.

Key Takeaways:

  • The former Biggest Loser star and celebrity trainer presents a high intensity workout and eating plan that delivers big results in just 20 minutes a day.
  • Bret Hoebel knows that when people log hours on a treadmill, they’ll lose weight, but he also knows that most of his clients don’t have the schedule or the desire to spend that much time at the gym.
  • In The 20-Minute Body, Brett explains why the key to long-term weight loss is building muscle.

"This site can’t be Reached couponlink1122.download60coaching.club’s server DNS address could not be found."



Reference:

https://www.google.com/url?rct=j&sa=t&url=https://couponlink1122.download60coaching.club/20-minute-body___20mbody___product-detail.html&ct=ga&cd=CAIyGjBhMmIxOTgxN2IyMDM3NjI6Y29tOmVuOlVT&usg=AFQjCNELUjE1aqMVFCFNRpOjGZsuFSfGEw

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3945)


A way out of the junk-food eating cycle
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Date: February 07, 2017 05:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: A way out of the junk-food eating cycle





It may seem like it impossible to not eat junk food, but you can break the cycle. One of the main reasons people Reach for junk food is because of learned ques. By trying to retrain yourself you may be able to break these bad habits. This is what new research shows, you may be able to beat these feelings.

A way out of the junk-food eating cycle

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3899)


Seasonal Flu Reaches Epidemic Levels in US
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Date: February 06, 2017 05:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Seasonal Flu Reaches Epidemic Levels in US





When you think about a horrible disease you may not think about the flu, but it's turning into an epidemic. This may have something to do with a lower number of flu shots being handed out. The CDC is looking into the way this may affect society, the flu could be very bad this year.

Seasonal Flu Reaches Epidemic Levels in US

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3892)


Menopause: anti-inflammatory diet could help prevent fractures and boost bone health
TopPreviousNext

Date: February 03, 2017 02:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Menopause: anti-inflammatory diet could help prevent fractures and boost bone health





A new study shows women ages 50 to 79 could reap big benefits from an anti-flammatory, Mediterranean diet. Such a diet could help reduce bone loss, resulting in fewer fractures. In addition, Mediterranean diets, which focus on fruits, vegetables and beneficial fats, have been shown to lower the risk of heart disease and cancer.

Key Takeaways:

  • Menopause: anti-inflammatory diet could help prevent fractures and boost bone health.
  • As they Reach menopause, at around 50 years of age, many women discover that they are suffering from osteoporosis, a condition that weakens bones,
  • Younger white women following high-inflammatory diets were found to be at greatest risk of suffering fractures.

"An anti-inflammatory, Mediterranean-style diet -- already beneficial to heart health -- could help prevent fractures linked to reduced bone density in certain women, according to researchers in the USA."



Reference:

https://www.yahoo.com/news/menopause-anti-inflammatory-diet-could-help-prevent-fractures-101411015.html?ref=gs

(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3877)


Forget the “New Year, New Me” Goal Hype – Consider Focusing on Life Habits Instead
TopPreviousNext

Date: January 17, 2017 02:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Forget the “New Year, New Me” Goal Hype – Consider Focusing on Life Habits Instead





Many fail when it comes to following through on their resolutions each New Year. If you want to be more successful, try making a resolution to change small life habits that will make your life better in the long run. Set a goal to make a habit of something that will get you to your real goal in the future. For instance, strive to go to the gym at least once a week. Once that is met, increase it until you are more comfortable. This can help you lose weight. Prioritize and be proactive and it will happen.

Key Takeaways:

  • Adults and teens alike often achieve results by setting goals and taking actionable steps to Reach those goals.
  • Most adults and teens understand what it means to set a goal. Whether you want to learn a new language, lose 20 pounds, write a book or train for a 5K, you set a goal and then take action to Reach your dream.
  • You evaluate what you need to do to Reach that goal, such as buying books on the language, listening to podcasts or CDs, watching YouTube videos, visiting a foreign country or taking college classes.

"Adults and teens alike often achieve results by setting goals and taking actionable steps to Reach those goals."



Reference:

//psychcentral.com/blog/archives/2016/12/30/forget-the-new-year-new-me-goal-hype-consider-focusing-on-life-habits-instead/

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These Essential Vitamins Are A Must Have After You Turn 40 - BoldSky
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Date: January 06, 2017 07:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: These Essential Vitamins Are A Must Have After You Turn 40 - BoldSky





There are certain birthdays that send a mental shockwave through our body and one of those is when we Reach 40. One way we combat this is by supplementing with vitamins and once you hit the big 4-0 you need vitamin b12. B12 is needed for normal functioning of the brain and for normal blood function. Another two big ones are calcium and vitamin D. Meat is a great source and your body can absorb enough when you are younger but as you age, your body becomes less able to absorb as much through food.

Key Takeaways:

  • After a person turns forty there are certain essential vitamins that must be taken at all cost in order to prevent diseases that come with ageing.
  • Vitamin B12 is one of them. It is essential for the proper functioning of the brain and for normal blood function
  • Calcium, Vitamin D, and Magnesium are also required by people over forty.

"Calcium intake is necessary to prevent several diseases like heart attack, stroke and osteoporosis and also to prevent fracture."



Reference:

//www.boldsky.com/health/nutrition/2016/essential-vitamins-you-need-after-forty-109406.html

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Can Cannabis Help with Inflammation for Athletes?
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Date: December 24, 2016 07:59 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Can Cannabis Help with Inflammation for Athletes?





With opioid dependence and overdose deaths Reaching epidemic levels, athletes suffering from injuries need alternatives to widely prescribed painkillers. Research suggests that components of the cannabis plant, including THC, CBD, and terpenes can play a role in reducing pain and inflammation. Although it is not as powerful a painkiller as opioids, cannabis could be used to help wean athletes off of opioid medication, as well as manage long-term chronic pain.

Key Takeaways:

  • Athletes today are bigger, stronger, and faster than they were just a decade or so ago.
  • Men and women are becoming more competitive thanks in part to technological advancements designed to improve workouts and recovery time.
  • With these innovations, however, come drawbacks.

"One possible alternative to prescription painkillers may come from certain components of the cannabis plant. Recent studies have found that cannabis could possibly reduce inflammation, acting almost like Tylenol."



Reference:

https://www.google.com/url?rct=j&sa=t&url=https://www.leafly.com/news/health/can-cannabis-help-athletes-inflammation&ct=ga&cd=CAIyGmZmMDFkMTU2YWMzMmQ5OTU6Y29tOmVuOlVT&usg=AFQjCNHAJ2F2qAtwCOfBQJ3oxDpQe1n_4g

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Acai berries actually come from palm trees
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Date: December 11, 2016 02:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Acai berries actually come from palm trees





Most people have heard of acai berries by now. They are known for their high nutritional content, but a lot of people do not know of their exact origin. Many would assume they come from a bush like other similar berries. However, they actually come from palm trees in Brazil. For years, they were food for the poorer families in South America due to their availability and amount of nutrition. Unfortunately, the surge of popularity for the berries in other countries has driven up demand and prices for the fruit and caused them to be unattainable for most poor families.

Key Takeaways:

  • Acai berries have become very famous in recent years as an antioxidant-packed superfood.
  • Unfortunately, the growing global popularity of acai berries has led its price to increase in some parts of Brazil, pushing it out of Reach for some of the poorest families.
  • This is a classic example of how global food politics can have unintended consequences and is a good reason to preferentially eat local superfoods over imported ones.

"Acai berries have become so famous in recent years as an antioxidant-packed superfood that even many people who don't stay actively informed on health food topics have heard of them."



Reference:

//www.naturalnews.com/056199_acai_berries_palm_trees_antioxidants.html

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Putting Sugary Soda Out of Reach
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Date: November 24, 2016 12:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Putting Sugary Soda Out of Reach





Are you trying to lose weight? Have you noticed that it seems like so many different people tell you so many different things, including what you should and shouldn't be doing with your body -- and what you should or shouldn't be putting in your mouth? No matter where you stand on some of those tips, "Putting Sugary Soda Out of Reach" helps out the people that are trying their best to go ahead and keep soda out of their lives (and their bodies).

Key Takeaways:

  • Last year, U.C.S.F. removed sugar-sweetened beverages from every store, food truck and vending machine on its campus. Even popular fast-food chains on the campus, like Subway and Panda Express Coca-Cola and their sugary brethren at the university’s request.
  • With sugary sodas now a rare sight on campus, the university found that it had the perfect conditions to study what happens when people who were drinking large amounts of sugar during their workday suddenly stop.
  • The university’s experiment comes at a time of growing battles over policies aimed at curbing soda consumption. On Tuesday, three cities in Northern California and one in Colorado will be voting on whether to tax soft drinks.

"The institution is believed to be one of the largest employers to remove sugary drinks from the workplace."



Reference:

//www.nytimes.com/2016/11/08/well/eat/putting-sugary-soda-out-of-Reach.html?partner=rss&emc=rss&_r=0

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World Osteoporosis Day: Smoking, high alcohol consumption increasing incidence of Osteoporosis
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Date: November 23, 2016 04:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: World Osteoporosis Day: Smoking, high alcohol consumption increasing incidence of Osteoporosis





Osteoporosis is a disease that affects bone density and is especially prevalent in women over 50. Women younger than 50, and even as young as 30 are experiencing this disease at a higher rate; poor lifestyle choices such as smoking and consuming alcohol may be the cause. Learn how, an active lifestyle, calcium intake and sun exposure can decrease the risk of osteoporosis, especially before menopause is Reached.

Key Takeaways:

  • At 38 years of age, Pratima (name changed) believed she was too young to suffer from low bone density. However, after when she suffered a fracture in her arm after a minor fall, tests revealed she had osteoporosis of the level usually prevalent in women over 60!
  • Doctors at Columbia Asia Hospitals, Gurgaon say the incidence of osteoporosis or osteopaenia in women under 50 has markedly increased over the past 20 years. Bone loss is a silent condition which generally occurs slowly over a long period.
  • Osteoporosis may be linked to multiple risk factors. Smoking is an important factor depleting bone health in women today. Firstly, the toxic components of smoke upset the hormonal balance in the body, particularly affecting estrogen production.

"Tobacco smoking has a series of negative repercussions on health. While increased risk of cancer and cardiovascular disease is the most talked about."



Reference:

https://www.google.com/url?rct=j&sa=t&url=//www.indiainfoline.com/article/news-top-story/world-osteoporosis-day-smoking-high-alcohol-consumption-increasing-incidence-of-osteoporosis-116110100312_1.html&ct=ga&cd=CAIyGmU0N2NhMzY3ZTc4ODMzY2U6Y29tOmVuOlVT&usg=AFQjCNFCiSzwvyNyMux731JZIPQ1hhQztQ

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Breathe. Exhale. Repeat: The Benefits of Controlled Breathing
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Date: November 22, 2016 02:59 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Breathe. Exhale. Repeat: The Benefits of Controlled Breathing





Some researchers believe that overcoming stress and depression may be as easy as breathing. Many studies have been done to test the effect of slow and steady breathing on the body. Scientists have found that people who practice breathing meditation on a regular basis are able to lower their stress hormones and cytokines that have an adverse effect on the body. So, the next time you feel stressed, just practice some deep breathing to help calm yourself.

Key Takeaways:

  • Controlled breathing, like what you just practiced, has been shown to reduce stress, increase alertness and boost your immune system.
  • For centuries yogis have used breath control, or pranayama, to promote concentration and improve vitality.
  • Buddha advocated breath-meditation as a way to Reach enlightenment.

"Controlled breathing, like what you just practiced, has been shown to reduce stress, increase alertness and boost your immune system."



Reference:

//www.nytimes.com/2016/11/09/well/mind/breathe-exhale-repeat-the-benefits-of-controlled-breathing.html?partner=rss&emc=rss&_r=0

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10 Tips for Women to Make Better Food Choice
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Date: November 18, 2016 10:04 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 10 Tips for Women to Make Better Food Choice





What are you eating? If you are a woman, you need extra vitamins and minerals to maintain your good health and active lifestyle. Although it isn't always easy to eat the right foods, you can strive for greatness and better food choices. The 10 tips offered here are sure to inspire you to Reach for the best of foods.

Key Takeaways:

  • Depend on your age, height, weight, and level of physical activity, you will need different foods. Use an online nutrient tracker or find a dietitian to have a customized diet plan.
  • Switch to a smaller plate to help control your food and calories intake. Take your time to enjoy smaller amounts of food.
  • Buy foods that are high in calcium like fat-free or low-fat milk, cheese, yogurt, and fortified soymilk to strengthen bones.

"Your body needs water to survive. Always have a bottle of plain water handy so that you can stay hydrated throughout the day."



Reference:

https://www.google.com/url?rct=j&sa=t&url=//hellodoktor.com/healthy-living/10-tips-for-women-to-make-better-choice/&ct=ga&cd=CAIyGjBhMmIxOTgxN2IyMDM3NjI6Y29tOmVuOlVT&usg=AFQjCNHHHtQY6a8MlNmIoUPpW1FZPYE0-A

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7 Very Simple Tips For Healthy Living When You Are On A Tight Budget
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Date: November 10, 2016 07:04 AM
Author: Darrell Miller (support@vitanetonline.com)
Subject: 7 Very Simple Tips For Healthy Living When You Are On A Tight Budget





These days everyone is interested in how to stay healthy and active without spending a large part of their income to achieve those goals. In reality, fitting plenty of exercise and a healthy diet into a limited budget is not difficult. With some simple research and planning these goals are easy to Reach.

Key Takeaways:

  • People with a limited budget are often concerned about the potential costs of making changes in their life that will improve their overall health.
  • One of the major causes of low levels of fitness and poor health is not getting enough exercise.
  • People often argue that they do not have the money to start a new exercise regime as a gym membership is usually expensive.

"One of the major causes of low levels of fitness and poor health is not getting enough exercise. People often argue that they do not have the money to start a new exercise regime as a gym membership is usually expensive. However, there are plenty of ways that you can exercise for free and the easiest one of these is walking."



Reference:

https://www.google.com/url?rct=j&sa=t&url=//www.huffingtonpost.com/toby-nwazor/7-very-simple-tips-for-he_1_b_12667490.html&ct=ga&cd=CAIyGjVkYjY3ZDViNDdiNGM3ZTc6Y29tOmVuOlVT&usg=AFQjCNEEcK7rs2EcEkFnQxQpluRBI1gYzg

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Did you know about these natural, highly effective substitutes for ibuprofen?
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Date: November 07, 2016 02:54 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Did you know about these natural, highly effective substitutes for ibuprofen?




If you Reach for ibuprofen to treat aches and pains of various sorts, you probably appreciate its fast-acting relief. But what if you knew there were natural alternatives that work just as well as ibuprofen without the potential health risks? Now you can learn more about natural alternatives and make lifestyle changes today.

Key Takeaways:

  • This stance is understandable given the many dangers of common over-the-counter painkillers like ibuprofen.
  • They can also interfere with conception. These medications can harm a fetus when taken during pregnancy and even cause lifelong problems once the baby is born.
  • The good news is that you don't have to just grit your teeth and suffer through your pain if you're trying to avoid ibuprofen and similar drugs.

"The good news is that you don't have to just grit your teeth and suffer through your pain if you're trying to avoid ibuprofen and similar drugs."



Reference:

//www.naturalnews.com/055865_ibuprofen_substitutes_natural_medicine.html


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Why is it Important that Your Probiotics are Enteric Coated?
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Date: September 28, 2016 05:41 PM
Author: Darrell Miller
Subject: Why is it Important that Your Probiotics are Enteric Coated?

By definition, the term probiotic refers to live bacteria that are used for the purpose of boosting the health of a person. Even though most people think of bacteria as pathogenic organisms, the fact is that the body is made up of both beneficial and destructive bacteria. Probiotics are therefore classified as useful bacteria since their activities are beneficial to the body. This article discusses the rationale behind the enteric coating of these substances.

There is one main reasons as to why probiotics should be enteric coated. The first rationale is the fact that the coating technique facilitates the survival of the bacteria until it Reaches the desired destination. In the process of being ingested, the probiotics are generally exposed to destructive conditions while it passes through the first stage of digestion.

 For instance, the acidic conditions prevailing in the stomach are very harsh to the bacteria and can result to their instant destruction. The coating is therefore used as a means of increasing the chances of survival for these products.

To ensure that the probiotics you consume make it to the intestinal tract where they can thrive and improve health. make sure your probiotic is enteric coated.



References

//www.ncbi.nlm.nih.gov/pubmed/24914724

//www.webmd.com/digestive-disorders/features/what-are-probiotics

https://www.consumerlab.com/answers/Do+probiotics+have+to+be+enterically+coated+to+be+effective%3F/probiotics_enteric_coating/

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NSAID stands for Non-Steroidal anti-inflammatory drugs
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Date: August 09, 2016 03:00 PM
Author: Darrell Miller
Subject: NSAID stands for Non-Steroidal anti-inflammatory drugs

NSAID drugs are used by millions of people daily around the world.  Most people do not even think twice about their safety, whether these kind of drugs are safe to use?

These include aspirin, ibuprofen and naproxen. 

They work by inhibiting or blocking COX 1 and 2 Enzyme pathways that cause inflammation in the body.  These drugs do work but have sever health issues, this is why COX 1 and 2 enzyme pathways should never be blocked. 

If you take any of these drugs and other cyclooxygenase blocking drugs, consider the consequences:

  • Double risk of heart attack and stroke
  • Double risk of death from heart attack and stroke
  • Gastrointestinal bleeding, sometimes fatal
  • Gastric ulcers
  • Kidney failure
  • Liver failure
  • Blood thinning leading to prolonged bleeding after surgery and injury

There are 16,500 deaths per year from NSAID drugs and the number keeps climbing each year.  Fortunately, curcumin can help lower inflammation safely with out side effects.  Consider taking curcumin instead of Reaching for the NSAID drugs.


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How to Detoxify the Body
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Date: January 27, 2016 08:46 PM
Author: Darrell Miller
Subject: How to Detoxify the Body

Free radicals are elements in the body that attacks healthy cells, resulting to cellular and tissue damage. When this happens, mild conditions such as weight gain to serious illnesses such as cancer may occur. The production of more and more free radicals intensifies due to several factors. Pollution, the food you eat, different kinds of chemicals found in the environment and the daily stress you go through are all factors that contribute to the increase of free radicals. Thus, detoxification should be a must for everybody.

Detox means cleansing the body of toxins and harmful elements. The importance of detoxification has intensified as years go by. The modern world has not only offered outstanding innovations but many deadly diseases. The many benefits of detox can help counter these unhealthy occurrences.


What are some of the Benefits of Detoxifying the Body?

  • Energy boosts

This is among the exciting benefits one can get from detoxification. Just like a clean house or a clean car engine, you would feel a heightened vitality as harmful elements are flushed out of your system. This boosts in energy will help you accomplish daily tasks and even go to the gym after work.

  • Healthier organs

Detoxification cleanses essential organs such as the liver, kidneys and colon. These organs are crucial in the body’s waste management system. Buildup of toxins in the body can slow down the work that they do. Overtime, when the stress is too much to bear, these organs may experience fatigue, disrupting their function. Diseases associated with abnormally functioning liver and kidneys can become serious medical conditions. Therefore, proper care and management is important.

  • Weight loss

Weight loss can just be a bonus when you choose to detox. Because you are choosing to live healthily, you can rid yourself of excessive calories, salt, sugar and other unhealthy foods that compromises your detoxification process. Also, as you continue with a good cleansing regimen, your organs will be able to function well, improving your metabolism.


How Can You Detoxify?

The “father of plants”, Alfalfa, is gaining popularity in the field of detox. Alfalfa has roots that can Reach 20 to 30ft down the ground. For this unique characteristic, minerals and essential vitamins are rich in Alfalfa. Traditionally, the herb’s parts from its leaves to the seeds are used as medicine. It is a good source of minerals such as Calcium, Iron, Potassium, Phosphorous and Zinc, as well as vitamins A, C and E.

Alfalfa


Alfalfa, as early as the 6th century, has been beneficial for its role in treating many health issues such as kidney problems, arthritis, cardiovascular disorders, digestive problems and auto-immune illnesses. Today, more and more health problems are being addressed by the use of Alfalfa. Detoxification using the herb also became popular due to its natural ability to eliminate excess fluid and toxins in the body. Aside from this, its vitamins and mineral properties are useful for people who are trying to lose weight.

Detoxification should be a healthy process. Make sure to make it as one by using the right detox ingredient.


References

https://bestofmotherearth2012.wordpress.com/2009/01/13/detox-with-alfalfa/

//www.drugs.com/npc/alfalfa.html

//www.webmd.com/vitamins-supplements/ingredientmono-19-alfalfa.aspx?

//www.homeremediesweb.com/alfalfa_health_benefits.php


632651520011

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Inflammation Pain Got You Down? EPA Fish Oil Can Help
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Date: October 12, 2015 12:55 AM
Author: Darrell Miller
Subject: Inflammation Pain Got You Down? EPA Fish Oil Can Help

There's absolutely no doubt as to whether fish oil contains anti-inflammatory benefits. The main question is how one can tap into these benefits. How fish oil helps in inflammation pain is well understood. Basically, fish oil contains EPA and DHA which are Omega 3 fatty acids. Our body cannot make these essential fats on its own, and it's therefore important to have them in included in the diet just like other minerals and vitamins.


Effects of Inflammation Pain
There are many case studies that have been published to demonstrate the anti-inflammatory activity of EPA-rich fish oil. Inflammation is generally a response that our body uses to respond to any tissue injury or infections. These inflammatory processes have recently been understood as the underlying causes of many diseases of the modern world including obesity, diabetes, cardiovascular disease, osteoarthritis, Alzheimer's disease, degenerative disc disease and many more.

Fish oil has shown to have potential benefits to all these diseases, but the main question is how one substance could help so many different conditions. However, fish oil contains essential omega 3 fats that benefit a wide variety of health conditions, either related or caused by inflammation.


How EPA helps inflammation

EPA (Eicosapentaenoic acid) is an omega 3 fatty acid present in fish oil and is used by the body as a building block for manufacturing a group of chemicals with anti-inflammatory effects. This simply means that EPA acts as the fuel for the ability of our body to make its own anti-inflammatory chemicals. Scientists and nutritionists have shown that our modern diet is deficient in these omega 3 fatty acids. They also suggest that this may serve as an explanation of the current epidemic of inflammatory pain related illnesses that are being experienced in most western countries.


EPA fish oil dosage

In order to achieve significant anti-inflammatory effects, you must take a large daily dose of EPA-rich fish oils. One study has shown that patients suffering from disabling pain are able to achieve a significant pain relief that could not be helped by prescriptive pain medications, after taking high doses of fish oil for a prolonged period of time. In this study, all the patients had suffered severe disabling pain that could not be relieved through prescriptive pain medications. The pain was caused by something different in each of the cases.

One of the patients had second and third-degree burns over large parts of his body and was still experiencing pain despite taking morphine. Another patient had suffered a disc herniation in his neck. In all these cases, patients experienced significant relief after taking high doses of EPA fish oils and were able to return to their normal daily living. The fish oil daily dosage included 3200 mg to 7000 mg of EPA and DHA combined.


Assessing your need for omega 3

The expected results from taking fish oil largely depend on your current intake of omega 3 fats. If your body is currently depleted on omega 3 fats, it will certainly take much longer before it Reaches the optimal levels of omega 3 and to achieve the full benefits of EPA. To determine your current omega 3 status, a simple blood test can measure your Omega-Index.

 

 

Resources:

//www.webmd.com/diet/what-to-know-about-omega-3s-and-fish
//fishoildeal.com/what-is-fish-oil-good-for/fish-oil-anti-inflammatory/
//www.ncbi.nlm.nih.gov/pubmed/20500789


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