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The Ultimate Guide to Cellular Longevity: NAD+, Methylation, and Senolytics Darrell Miller 9/10/26
Why Dextrose is Important for Athletes and Bodybuilders Darrell Miller 10/10/22
Ashwagandha could be your next workout supplement VitaNet, LLC Staff 4/30/19
FDA Steps Up Warnings for Testosterone Darrell Miller 11/2/16
Can Glutamine Improve Nitrogen Balance in the Body? Darrell Miller 5/7/14
The Facts About Herb Dopa Mucuna Darrell Miller 12/15/13
Did You Know That Chromium Can Help Cells Absorb Glucose? Darrell Miller 11/3/13
Korean Ginseng Root Extract Darrell Miller 12/14/12
What Are The Health Benefits Of DMAE? Darrell Miller 4/26/12
Strengthen The Liver and Kidneys With Leucine Darrell Miller 4/27/09
L-Arginine An Amino Acid Essential Or Not You Be The Judge? Darrell Miller 1/6/09
Gamma Oryzanol Darrell Miller 8/29/08
GABA Darrell Miller 8/26/08
Advocacy Update Darrell Miller 5/17/08
A Testosterone Breakthrough to Restore Health and Youth Darrell Miller 5/29/06
Chromega 400 Darrell Miller 1/7/06
Anabol Naturals Metabolic Fat Burners Darrell Miller 1/7/06
The edge Darrell Miller 12/30/05
Gov Signs Bill Banning DHEA Sales to Minors Darrell Miller 9/26/05
Promilin Fenugreek Extract - Supports Healthy Blood Sugar Levels Darrell Miller 6/28/05
GlucosaMend™ Tissue/Joint Repair Complex Darrell Miller 6/2/05
Go Deep to the Underlying Cause of Symptoms* Darrell Miller 5/31/05



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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)


Why Dextrose is Important for Athletes and Bodybuilders
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Date: October 10, 2022 02:17 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: Why Dextrose is Important for Athletes and Bodybuilders

Dextrose, also known as glucose, is a simple sugar (monosaccharide) that is the primary source of energy for the body. It is important for athletes because it stimulates the body to drive, not only glucose, but amino acids and other nutrients into cells. This makes energy readily available to working muscles and helps to maintain glycogen stores. In addition, dextrose also helps to make important nutrients, such as creatine and branched-chain aminos, available for use by muscle tissue. From an athletic performance perspective therefore, it can help fuel intense activity, maintain exercise endurance, and support recovery from exercise.

How Dextrose Works

Dextrose enters the bloodstream rapidly after being consumed and raises blood sugar levels quickly.* Insulin is then released by the pancreas in order to shuttle glucose into cells for use or storage.* Glucose is stored in the liver and muscles in the form of glycogen; when these stores become depleted during exercise, blood sugar levels fall and fatigue sets in.* Dextrose can help delay this fatigue by replenishing glycogen stores and keeping blood sugar levels elevated.*

Dextrose And Creatine oppose each other hormonally; when insulin levels are elevated via carbohydrate consumption, creatine uptake into muscle cells is inhibited.* Conversely, when blood sugar levels are low (and insulin levels along with them), creatine uptake is enhanced.*Deoxyglucose acts as a transport vehicle for creatine, driving more of it into muscle cells where it can be used for energy production and protein synthesis – two key processes for supporting muscle growth.* Therefore, when combined with creatine, dextrose can further enhance its efficacy.

*BCAAs are essential amino acids that must be obtained through diet since they cannot be produced by the body; of the three BCAAs (leucine, isoleucine, and valine), leucine is the most Anabolic.*Leucine seems to work best when consumed with carbohydrates; when carbs and leucine are consumed together they stimulate insulin release – an Anabolic hormone that promotes protein synthesis as well as drives amino acids and other nutrients into cells where they can be used or stored for future use..* Therefore, dextrose can help enhance the Anabolic effects of leucine consumption.

In Summary:

Dextrose is a simple sugar that has many benefits for athletes. It helps to fuel intense activity, maintain exercise endurance, support recovery from exercise, and delay fatigue. It also helps to make important nutrients like creatine and branched-chain aminos more available for use by muscle tissue. If you are an athlete who wants to perform at your best, make sure you include dextrose in your diet.

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Ashwagandha could be your next workout supplement
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Date: April 30, 2019 04:04 PM
Author: VitaNet, LLC Staff (support@vitanetonline.com)
Subject: Ashwagandha could be your next workout supplement





The journal Nutrients has recently published a study showing 500 mg of the supplement ashwagandha when taken over the course of twelve weeks enhances upper and lower body strength thanks to its anti-inflammatory, anabolic, and antioxidant effects. The study took place with a sample size of 38 active men, which were split into an ashwagandha group and a placebo group. Those taking the ashwagandha had improvements in both squat and bench press, while experiencing less muscle soreness after workouts.

Key Takeaways:

  • Current studies, regarding the natural supplement Ashwagandha, build on earlier ones, revealing the root to possess, anti-inflammatory, antioxidant and anabolic properties.
  • To test the premise that the root aids physical endurance, experts found 38 adult, male, human subjects, all of whom were known to be recreationally active.
  • Recruited subjects received either the herb, or a rice flour placebo, and were closely monitored regularly during observed exercise routines.

"Carried out by researchers from the Center for Applied Health Sciences and Lindenwood University, the study looked at the effects of aqueous extract of the roots and leaves of ashwagandha (Withania somnifera) on strength training performance – which includes muscle strength, body composition, muscle endurance, power, and recovery."

Read more: https://www.naturalnews.com/2019-03-05-ashwagandha-could-be-your-next-workout-supplement.html

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FDA Steps Up Warnings for Testosterone
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Date: November 02, 2016 03:49 PM
Author: Darrell Miller (support@vitanetonline.com)
Subject: FDA Steps Up Warnings for Testosterone

Testosterone and other steroid drugs can cause heart attacks, personality changes and infertility. The FDA also warned that people abusing high doses of testosterone have reported withdrawal symptoms such as depression, irritability, decreased libido, insomnia and others. Testosterone is not approved for treating the effects of aging. Anabolic steroids are synthetic variations of testosterone. These are prescribed to treat conditions such as delayed puberty and diseases that cause muscle loss like cancer or AIDS.

Key Takeaways:

  • Reported serious adverse outcomes include heart attack, heart failure, stroke, depression, hostility, aggression, liver toxicity and male infertility.
  • They are legally prescribed to treat conditions such as delayed puberty and diseases that cause muscle loss, such as cancer or AIDS.
  • They are approved to treat men will medically diagnosed low levels of testosterone.

"They are legally prescribed to treat conditions such as delayed puberty and diseases that cause muscle loss, such as cancer or AIDS."



Reference:

//www.nbcnews.com/health/health-news/fda-steps-warnings-testosterone-other-steroids-n672681?cid=public-rss_20161029

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Can Glutamine Improve Nitrogen Balance in the Body?
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Date: May 07, 2014 09:08 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Can Glutamine Improve Nitrogen Balance in the Body?

Can Glutamine Improve Nitrogen Balance in the Body?

Glutamine also abbreviated as Q is one of the 20 amino acids the genetic code encodes. Glutamine is not an essential amino acid and this means the body can produce it. It is the most abundant of all amino acids with a concentration of 500 to 900 molecules per liter.

Glutamine structure

It has an amide side chain that is formed by replacement of an hydroxy group of glutamic acid. It is coded by COG and CAA.

Glutmine and nitrogen balance

Glutamine does actually improve nitrogen balance in the body. The regulation mechanism occurs by feedback inhibition mechanism. The deamination of glutamate by glutamate dehydrogenase leads tp production of ammonia (NH3) and an alpha ketoglutarate. High concentrations of ammonia can be dangerous to the body, they are neurotoxic and cause disruption of the Urea Cycle and affect the liver. High concentrations of ketoglutarate helps activate glutamine synthetase which acts a a catalyst in the synthesis of glutamate.

This process is controlled by 9 feedback inhibitors. Of the 9 inhibitors, six are products found in glutamate pathway cycle. This helps in regulation of nitrogen at cellular level which is very sensitive. It helps control ammonia levels which can be dangerous at high levels.

Improving Anabolic state of the body

Glutamine helps the body muscles recover after intense training. This occurs through energy repletion in the muscles. Boosting of the immune system has also being discovered to be associated by glutamine. It also buffers against the build up of lactic acid in muscles leading to muscle growth.

Glutamine increases the size of the cells and promotes the integrity of the intestines leading to increased absorption by the cells. It also releases a growth hormone that helps in muscle growth.

Conclusion

Essentials of glutamine have been found to be many. Nowadays there are commercially produced glutamine which are taken as strong anti-catabolic supplement.

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The Facts About Herb Dopa Mucuna
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Date: December 15, 2013 05:17 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: The Facts About Herb Dopa Mucuna

What is Herb Dopa Mucuna?


dopa mucunaDopa Mucuna has become used as an aphrodisiac. Which is still used to raise and help libido in both women and men. However it's an alternative treatment peculiarity now is extremely popular used as it provides potential and valuable results in managing Parkinson along with conditions. Pots include seeds called velvet beans or mucuna beans, these are glowing brown or black. Dopa Mucuna is generally be able to recover soil fertility and decrease weed infestation. In society medicine seeds can be used healing different conditions and disease. Mucuna beans have been used as a coffee alternate (ground and roasted) in Brazil, Central America, and other countries.

The primary acts of the plant are following :
  1. It is L-Dopa option - anti-Parkinson, and increase testosterone 
  2. It is aphrodisiac - can boosts libido, erectile dysfunction, and great for impotency
  3. It is a muscle mass builder which is used to induce growth of hormone - androgenic or Anabolic 
  4. It is reduces pain and lessens spasms – antispasmodic or analgesic 
  5. It is reduces blood pressure and also blood sugar ( hypotensive ) 
How its supplies L-Dopa?

You've surely would not heard about L-Dopa, except if you are associated with somebody who carries body builder or Parkinson's disease, you might not be familiar with about it. L-Dopa is a precursor to dopamine. The seeds of Mucuna bean is rich in lipids, protein, ash, dietary fiber, minerals, and carbohydrates. Moreover they are very high in sterols, alkaloids, and saponins. Mucuna seeds (along with the seeds of every Mucuna varieties) include high level of L-dopa is an immediate precursor of the neurotransmitter dopamine.

How does it works?

Low dopamine ranges are related to psychosis, addiction, schizophrenia, depression, and Attention Deficit Disorder. Because dopamine itself is unable to move the blood-brain barrier, it is transferred in a precursor condition is an outline that causes the brain to generate dopamine. L-Dopa is simply like a precursor. L-Dopa is located to work in improving concentrate, relieving depressive disorders, and managing Parkinson's Disease.


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Did You Know That Chromium Can Help Cells Absorb Glucose?
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Date: November 03, 2013 12:30 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Did You Know That Chromium Can Help Cells Absorb Glucose?

chromium

What is Chromium

Chromium is a trace mineral that human body needs in very small amounts for maintenance of health and digestion of food. In nature, chromium of occurs in two isotopes- trivalent (chromium 3+) and hexavalent (chromium 6+). The biologically active isotope is the trivalent isotope and it is found in various food types. The other isotope results from industrial pollution and is very toxic.

Chromium has been demonstrated to be an essential trace mineral in glucose handling by the body. It is known to enhance the action of insulin, a hormone that plays a vital role in metabolism and storage of carbohydrates, proteins and fat in the body. The effects of chromium on glucose metabolism were realized in 1957 when it was observed that a compound in brewer’s yeast could prevent age related decline in insulin sensitivity in rats. Studies found that his compound contained chromium.

How Does Chromium Work

This trace mineral helps cells absorb glucose. When taken in appropriate amounts, chromium enhances the action of the Anabolic hormone insulin in the cells. Usually, insulin is synthesized and stored in the pancreas. Intake of carbohydrates and indeed other food types stimulates the secretion of insulin from the pancreas into blood. Once in the blood it binds to specific receptors on cells, especially muscle and liver. This is where chromium comes in.

Chromium is believed to enhance the action of insulin by increasing the sensitivity of the cells to insulin. In other words, it promotes the absorption of glucose into cells. This has many benefits. It prevents the development of glucose intolerance and therefore the onset of type 2 diabetes mellitus. Those people with chromium deficiency may actually develop type 2 diabetes mellitus with its attendant complications. In addition to effects on insulin and glucose metabolism, chromium can also promote lipid metabolism, prevent loss of calcium and promote muscle building.

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Korean Ginseng Root Extract
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Date: December 14, 2012 12:28 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Korean Ginseng Root Extract

Korean ginseng is a perennial herb that has been long renowned for its medicinal properties in curing various health disorders. Extracts of the root of this plant are made by dilution of one part of ginseng root with one part of water and alcohol.

The Korean ginseng root has been a staple ingredient in traditional Chinese medicines for more than 2000 years. This herb was considered a miracle drug by them, and the theory of its beneficial properties has been passed down through the ages. People still recognize the miraculous powers of this root, and use it as a natural antidote for various ailments. The ginseng root is generally, powdered only after six years of its growth and is made available in the form of extracts at stores all over the world. The Korean root is believed to comprise of various phytochemicals which are the main cause of all beneficial properties.

  • Ginsenosides, possessing steroid-like properties, increase the brain activity and act as a stress-buster.
  • Panaxans, have the similar structure as Anabolic steroids, and can strengthen and build body muscles.
  • Polysaccharides, with a carbohydrate structure can boost mood, maintain blood sugar levels and promote cardiovascular health.

Benefits of Korean ginseng root extract

General health tonic

Ginseng is classified as an adaptogen, which acts as a complete health tonic. This extract can help the body rebound from fatigue, arising from various kinds of stress. It also aids in improving energy and physical endurance, thereby, contributing to the overall well-being of an individual.

Improves cardiovascular function

- This root extract can prevent organ and tissue prolapse, and improve blood circulation for improved cardiovascular function. It lowers the bad cholesterol levels and increases HDL cholesterol in the human body.

Improves functioning of the nervous system

The plant nutrients found in the herb extract can enhance the cognitive abilities and act as memory boosters. They can cure problems related to poor concentration, memory, insomnia and anxiety.

Diabetes control

The ginseng extract holds great promises for people with type-2 diabetes as it can result in greater glucose and insulin resistance.

Prevents cancer

Ginseng extract has also been proved to act as a preventive remedy for several kinds of cancer.

Immunity support

The extracts of this herb act as a stimulant for boosting the immunity and effectively prevent all kinds of flu and cold.

Korean ginseng root extract has worked miracles on improving the general well-being of a person. The numerous benefits of ginseng extract might seem compelling but it is advisable to exercise caution, as with other herbal supplements. Consult your physician before consuming ginseng to explore probable side-effects with existing medication.

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What Are The Health Benefits Of DMAE?
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Date: April 26, 2012 12:57 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: What Are The Health Benefits Of DMAE?

DMAE

Dimethylaminoethanol or DMAE is anorganic compound that is metabolically produced by the adrenal glands, testes and the brain in small quantities. It is converted into testosterone, estrogen and cortisone by the body. It is a known fact that the liver processes DMAE into choline, but the molecule thus produced is charged and cannot break the blood-brain barrier. Studies have shown that DMAE methylated in the brain acts as the precursor for the manufacture of acetylcholine, a neurotransmitter that plays a key role in the conduction of signals in the brain as well as the nervous system.

DMAE also stimulates phosphatidylcholine, a crucial part of cell membranes. However, the DMAE naturally produced by the body is sufficient only to maintain healthy brain and functions. It will not improve their functions. Though DMAE is found in fish such as salmon, anchovies, and sardines, supplementation in the pill form is important because of the practical difficulties having these foods in the right form and quantity on a daily basis to derive the benefits. DMAE supplements for oral consumption are through stores that sell health foods and groceries.

Daily consumption of DMAE in the supplement form provides a number of benefits to the body. Some of the benefits are as follows:

It helps prevent as well as treat cardiovascular problems and boost the body's immune system because of its strong antioxidant properties.It protects cells from the harmful effects of free-radicals by helping them retain the nutrients that are essential and expelling waste.As a precursor in the production of the neurotransmitter acetylcholine, it supports the functioning of the brain in a number of ways. It increases a person's attention span, relieves behavioral problems and hyperactivity or attention deficit hyperactivity disorder. It is also helpful in treating memory lapses and Alzheimer's disease.

It helps stop production of arachidonic acid which is responsible for wrinkling and aging of skin. Topical creams containing DMAE help tighten skin and reduce wrinkles and fine lines.It is found to be effective in burning fat because of its involvement in the production of acetylcholine. It increases the metabolism in the body because of its thermogenic effect.It can be beneficial as an anti-inflammatory as well.It can reduce the amount of sleep required for a person by up to one hour.It can safely be used as a substitute for Anabolic steroids.

research

Research studies have shown that consumption of 200 to 500 mg of DMAE on a daily basis is helpful in improving health. However, it is important to start with a low dosage of DMAE and then gradually increase the dosage level to the optimum level. Higher dosage can cause headaches, insomnia and muscle tension. People suffering from conditions such as schizophrenia, mental depression and epilepsy should not have DMAE supplements. Pregnant and lactating women also should not have DMAE.

Summarizing, consumption of recommended amounts of DMAE is believed to be safe. Side effects due to consumption of DMAE are rare and not generally serious. However, it is important to use high-quality supplements in order to increase DMAE levels in the body and reap the benefits.

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Strengthen The Liver and Kidneys With Leucine
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Date: April 27, 2009 02:08 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Strengthen The Liver and Kidneys With Leucine

L-leucine is an amino acid that is used by the body to fuel exercise and muscle-building to provide you with that athletic edge that gets you ahead of your opponents. It does so in a number of ways, none of them specifically by the direct generation of energy as such.

It is also an essential amino acid, since it cannot be manufactured by your body and hence must be taken as a supplement or as part of your diet. Foods rich in leucine include nuts, whole wheat products such as wholemeal bread, and brown rice. It is a hydrophobic amino acid, meaning that it does not like water.

It is also one of three essential branched chain amino acids, the other two being L-valine and L-isoleucine, and offers many benefits to athletic performance that shall be discussed below It also helps to preserve the body's stores of glycogen, used as an emergency energy source. Other than these properties, it possesses others, such as the maintenance of the nitrogen balance in the body.

So how does it work to fuel your body while you are exercising? The answer is not as you might think. L-leucine doesn't increase your energy levels as creatine does when it elevates your ATP (adenosine triphosphate) levels. ATP is the molecule of energy that is synthesized in your body cells, and is then converted back to ADP, the diphosphate, with the release of energy in the form of muscular contractions.

This amino acid is what is referred to as a 'limiting' substance, in that the other amino acids cannot do their jobs in your body unless you have sufficient L-leucine in proportion to them. Specifically, you need two parts of L-valine and two parts of L-leucine to one part of L-isoleucine for optimum usage of the food that you eat.

Therefore you cannot just take the supplement without considering how much should be taken to ensure this balance. Excess will be wasted and a deficiency would fail to make proper use of the protein content of your food.

If you suffer from a deficiency, therefore, your body cannot make best use of the protein in your diet to the extent that muscle tissue will not be generated during exercise. In fact it causes catabolism, or the breakdown of muscle tissue, resulting in a loss of performance and possible increase in fatty tissue as opposed to lean muscle. The only way to build muscle is take in sufficient nitrogen in the form of amino acids and protein, along with L-leucine to put that protein to best use.

One of the major properties of L-leucine is in stimulating the synthesis of skeletal muscle tissue and by using a supplement, the protein balance can be positive after a workout. It has been shown that this protein balance is generally negative until specifically L-leucine is consumed.

The way it works is to activate a muscle-generating pathway known as mTOR (mammalian Target of Rapamycin). mTOR is normally activated when the levels of ATP in the muscle cells is high, and when these levels drop then mTOR is deactivated. The activity of mTOR is sensitive to the concentration of L-leucine, and when the concentration of the amino acid in the body rises it informs mTOR that the protein in the diet is sufficient to manufacture skeletal muscle tissue, and so mTOR s activated.

Exactly how this is done is unknown, but is a fact the mTOR depends upon both L-leucine concentration and also ATP levels. This amino acid also decreases catabolism through a number of different mechanisms, one of which involves increasing insulin levels.

In fact, when insulin and L-leucine levels increase at the same time, there is a synergy that promotes the synthesis of new protein. Not only that, but the response of insulin to the presence of carbohydrates is enhanced, this resulting in an enhancement of your body's metabolism.

The amino acid can also be used to help those suffering from kidney and liver problems because it increases liver protein synthesis. It is therefore a useful adjunct both to diabetics and those suffering from liver and kidney disease.

However, because L-leucine is an essential amino acid with so many important properties, a deficiency can have specific consequences. Catabolism has been stated earlier as one such reaction to a deficiency, and others include decreased energy levels and irregularities in the levels of blood sugar.

Everything about this substance is not good however, and when taken by itself in excess, it can reduce the amount of the other amino acids in the blood, particularly of the other two branched chain amino acids (BCAAs). This in turn upsets the balance of amino acids, and reduces further the ability of the body to produce muscle tissue until a balanced supplement is taken.

Leucine also helps to maintain the nitrogen balance. It is essential for the human body to maintain a positive nitrogen balance, and L-leucine supports this. In fact, one study has demonstrated that after 12 hours infusion with L-leucine, nitrogen balance was improved by as much as 23%.

A supplement alone is not always sufficient to maintain a positive nitrogen balance. It is generally essential that you rest your body for a sufficient length of time to allow protein to be generated. If you don't take the required amount of rest, a surplus of protein could be used to maintain energy levels rather than replace lost protein and maintain a good nitrogen balance.

A positive nitrogen balance is essential for the generation of muscle tissue, such as in bodybuilding for example, since all proteins contain nitrogen and the net nitrogen intake must exceed the excretion rate. Not in gaseous form, of course, but in the intake of amino acids and proteins. The more positive your nitrogen balance is, the faster you will recover after exercise. It is essential for Anabolic exercise.

L-leucine, therefore, is a supplement that can help to maintain your current muscle mass while undergoing strenuous exercise, in addition to increasing it while resting. It offers other health benefits, one being helping to maintain clarity of thought in the aged. However, it is for its effect on muscular build-up and the athletic edge that provides that the supplement is most commonly taken.

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

--
Buy L-Arginine at Vitanet ®, LLC

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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GABA
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Date: August 26, 2008 04:58 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: GABA

GABA is gama amino butyric acid, and is an inhibitory neurotransmitter that is essential for the proper function of your brain and the central nervous system, and has the effect of reducing excessive brain activity and promoting a state of calm.

For many people, the rush of daily life, with its problems, worries and external stimuli, can over-stimulate the brain to the extent that it can all seem too much for them. They feel anxious and overwhelmed, and wish that they could just go into a quiet corner to get away from it all. Most people have felt like that at some time, but the demands of life do not allow them that luxury. They just have to bear it and get on with life.

That is where GABA can come in. It can be used to bring your nervous system back to base, and make you feel more relaxed, calmer and more able to meet these challenges that life often throws at you. When you feel that you just can’t relax or concentrate on what you are doing, GABA can help you. If you look around you and everybody else seems OK, without apparently feeling the stress and irritability that you feel, and then perhaps your problem is due to a GABA deficiency. GABA is the principal inhibitory neurotransmitter in your brain, and a deficiency would certainly give you the symptoms that you are feeling. Let me explain why.

As your brain becomes excited, it can run out of control and needs some form of modification or inhibition to keep it acting as normal. Without this you would become increasingly more restless and irritable, and ultimately have seizures. GABA is not only the main inhibitor in your brain, but also helps in the production of endorphins that provide you with a sense of well being. That sense of calm you feel when endorphins are produced, for example during exercise or sexual intercourse, is commonly referred to as the ‘endorphin effect’.

GABA is at its highest concentration in specific areas of the brain, including the hypothalamus, the hippocampus and the central brain area, and is present in up to 40% of all synapses, the small gaps between neurons across which brain cells can communicate with each other.

It is produced during the Krebs or Citric Acid Cycle that is responsible for cell respiration or the production of energy from carbohydrates. It is synthesized from alpha-keto glutarate, which is produced just before the Succinyl Co-A stage of the Krebs Cycle in the brain. Vitamin B6 in involved in its metabolism, and a Vitamin B6 deficiency can lead to a deficiency in GABA that might result in seizures.

Basically GABA works by inhibiting the firing of neurons in your brain, and thus reducing general brain activity. The GABA receptor allows more chloride ion to enter the brain cell, thus helping to maintain the electrical charge within the cells. Bezodiazepines (e.g. diazepam) work by increasing the effectiveness of GABA in opening the chloride ion cells to allow more chloride ion to enter the neurons, and caffeine does the opposite, and inhibits this property of GABA. Thus diazepam works as a minor tranquilizer and caffeine as a stimulant.

Alcohol has a similar effect to the benzodiazepines, increasing the release of chloride into the neurons, and is the major way in which alcohol affects the brain. In fact, tolerance to drugs and withdrawal symptoms can be explained by the receptors adapting to the drug. They may increase in number, which means that more of the drug is needed to work on them, and they can become hypoactive in the event of the drug being withdrawn, that enhances the symptoms that the drug was intended to treat.

So basically, that is the way that GABA works. In simple terms it increases the flow of chloride electrolyte to the brain, and in so doing affects our mood. This effect is enhanced by prescription drugs such as Valium and Ativan, which are used by those that suffer the effects of a GABA deficiency. However, these drugs have side effects, not the least of which is dependency due to the GABA receptors becoming modified to suit the drug. There is a more natural way to overcome many stress problems and symptoms of mood swings.

Knowing what causes these symptoms, it makes sense to eat foods that stimulate the creation of neurotransmitters to replace those that are deficient. Since GABA is produced in the Krebs Cycle and complex carbohydrates produce glutamine that is an important part of that Cycle, and is also the precursor to GABA, then the consumption of such foods should in theory produce more GABA. In this case the theory works, and you should eat foods rich in complex carbohydrates such as whole grains, brown rice and oats as part of your diet.

Other foods that are high in glutamine or its precursors, glutamic acid and glutamate, include citrus fruits, beef liver, broccoli, halibut and lentils. A useful supplement to take is L-theanine, an amino acid found in green tea, and available in supplement form. L-theanine can calm your nerves while maintaining clarity of thought. In other words it calms you down, but doesn’t make you drowsy and allows you to enjoy your day with anxiety.

Your doctor can determine whether or not you have a neurotransmitter deficiency through a simple urine test, and might also test your saliva for hormone content. A GABA supplement might be indicated, and if so it other beneficial effects on your body other than its effect on your brain cells.

It improves your sleep cycles and promotes vivid dreaming, and can also have a positive effect on your blood pressure. It is also an effective pain killer, and can provide relief from such conditions as back pain and arthritis. Its stimulating effect on the anterior pituitary gland to secrete Human Growth Hormone might also be regarded as a benefit by many. Increasing the level of HGH in your blood can lead to fat loss and improved Anabolic activity (increase in muscle tissue). This can be of benefit to older people whose level of HGH secretion has dropped off, and who find it more difficult to lose fat.

GABA is a substance that has many known benefits and no known side effects other than a slight tingling and increase in heart rate when the supplement is first used. It has a definite benefit for people to whom the world seems too hectic and overwhelming.



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Advocacy Update
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Date: May 17, 2008 10:17 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Advocacy Update

Recently, the Natural Products Association has experienced a flurry of activity on the legislative front. One month ago, Natural Products Association members went to Washington, D.C. to meet with their representatives and discuss legislation important to the association and the industry. Many who could not visit Washington in person were part of our "virtual march" on Washington that delivered e-mails, petitions, and videos to Congress on the importance of natural products. Natural Products Day was a great success, boasting higher than ever attendance at our evening Congressional reception, and resulting in additional co-sponsors for S. 771, the Child Nutrition Promotion and School Lunch Protection Act sponsored by Tom Harkin (D-Iowa). The bill now boasts co-sponsorship of more than a quarter of the Senate. Its companion bill in the House of Representatives, H.R. 1363, sponsored by Lynn Woolsey (D-Calif.), has gained an additional five co-sponsors as the result of Natural Products Day meetings and now has 140 co-sponsors. These bills continue to build momentum, thanks to your support.

More recently, the Natural Products Association urged supporters to contact their legislators to include an amendment to the "Farm Bill" allowing food stamp recipients to purchase dietary supplements. This provision was similar to free-standing bills that have been introduced in the current and previous Congresses by Sens. Harkin and Orrin Hatch (R-Utah) and have earned the association's support. Although the amendment advanced further than other versions in previous sessions, it did not make the final Farm Bill, which was reported out of conference today. The good news is that the Farm Bill did contain significant increases in nutrition programs and increased funding for organic farming, another supported goal of the Natural Products Association. Because of the strong effort of our supporters on the amendment's behalf, the bill was placed on Congress's radar screens and has greatly improved the chances as stand-alone legislation, S. 770, the Food Stamp Vitamin and Mineral Improvement Act, of seeing passage. We will continue to ask for support on this important bill as this legislative session progresses.

In addition, the Natural Products Association has been leading the fight to protect Dehydroepiandrosterone (DHEA), and to keep this important, safe, and effective supplement available to elderly consumers. The same players behind S. 762, which would wrongly classify DHEA as an Anabolic steroid, proposed S. 2470 in late 2007 as a misplaced reaction the release of the Mitchell Report, which chronicled the abuse of steroids by professional baseball players. Although DHEA has no performance enhancing attributes, this bill was proposed to limit the access of minors to DHEA. The Natural Products Association and its supporters have worked hard to inform Congress of the benefits of DHEA, and that it is not an Anabolic steroid and should not be classified as one. We have been able so far to prevent any movement on the bill, but the association continues to monitor its progress and make sure that this supplement remains accessible to the seniors who need it most.

Thanks to your help, the Natural Products Association continues to have an active presence on Capitol Hill that is felt by legislators. We could not do it without the help of you, our supporters, who know how important it is to stand up for natural products. The impact of your messages to legislators continues to help the Natural Products Association to ensure all natural products - from natural and organic foods to dietary supplements and health and beauty aids - are accessible to Americans. With your continued support we will continue to be known as a vocal group with a wide base of support through the rest of this legislative session and beyond.

To get involved, please visit our action center at www.capwiz.com/nnfa/issues/



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A Testosterone Breakthrough to Restore Health and Youth
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Date: May 29, 2006 07:17 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: A Testosterone Breakthrough to Restore Health and Youth

There is a powerful new performance-enhancing ingredient clinically proven in humans. Its called LJ100 Tongkat Ali. Four years ago no one in the United States had heard of Tongkat Ali. Today the herb is becoming increasingly well-known as an athletic performance enhancer, overall youth-promoting agent, and libido builder.

Tongkat Ali is the popular folk name for Eurycoma Longifolia, a medium sized, slender rain forest tree. The name Tongkat Ali means Ali’s walking stick and the plant is native to Malaysia, lower burma, Thailand and Indonesia. Tongkat Ali enjoys a history of use that dates back to the 1700’s, and today there is a growing body of serious science that corroborates its traditional uses, specifically for the patented and proprietary brand LJ100 Tongkat Ali standardized extract containing 28% bioactive glycopeptides.

LJ100 Tongkat Ali

LJ100 is a proprietary, patented ingredient, and has become recognized as the premier brand of Eurycoma Longifolia for supplements that build and tone muscles, boost energy levels, decrease body fat, slow the aging process, and increase libido for health-conscious consumers. LJ100 has undergone an exclusive, patented extraction process to capture the most potent, biologically active compounds. SourceOne Global Partners, headquarters in Chicago, holds the exclusive distribution rights to market and sell LJ100 Tongkat Ali in dietary supplements.

ATP and Lean Muscle

In studies, LJ100 Tongkat Ali extract greatly increases ATP production. ATP, or adenosine triphosphate, is the basic unit of energy in the body, responsible for keeping us alive and going. By increasing ATP, overall energy and vitality are increased. Most people seek more energy and LJ100 Tongkat Ali provides it, without hyper stimulation, jittery nerves or insomnia. Promoting human energy production is a valuable health benefit by itself to make LJ100 Tongkat Ali an enduring botanical superstar. People want energy more than just about any other functional attribute.

Endocrinologists have known for a long time that testosterone increases the body’s ratio of lean muscle mass to fat. In both animals and humans, LJ100 Tongkat Ali increases muscle mass. In a study of men, half the subjects ingested LJ100 and half did not. In an eight-week physical training program the men who consumed LJ100 experienced greater gains in muscle mass and strength than those that did not. This demonstrates the powerful Anabolic properties of Tongkat Ali. Instead of turning to the use of dangerous and potentially lethal steroids, it is recommended that more athletes opt for Tongkat Ali. In Malaysia, many professional field hockey players use LJ100 Tongkat Ali as an androgen and swear to its performance-enhancing effects. According to Chris Kilham, ethno botanist, author and lecturer, in a recent article in Physical Magazine,. “LJ100 Tongkat Ali has potential to revolutionize the sport nutrition category.”

Maintaining Normal cortisol / Testosterone Ratios

LJ100 is clinically proven to enhance weight loss and maintain high energy levels by maintaining normal levels of cortisol and testosterone during weight loss. More particularly, LJ100 studies have shown it to help maintain normal (low) cortisol and normal (high) testosterone levels during the stress of weight loss. This hormonal control provides energy to a person in a weight loss phase while simultaneously helping them lose weight. As a result, effective doses of LJ100 help prevent the body from seeking to gain weight by storing fat and increasing appetite. LJ100 can help stop the “yo-yo” diet effect where a dieter’s initial weight loss of a few pounds sends the body into catabolic state, leading to binge eating and fat storage.

LJ100’s Testosterone Breakthrough

LJ100 Tongkat Ali root contains numerous beneficial compounds, including potent protective antioxidants which inhibit cellular aging. What excites many people about LJ100 Tongkat Ali is that the root significantly boosts libido in men and women by increasing testosterone. Agents identified as glycoproteins are now proven to be the libido boosting ingredients in the plant.

Increasing testosterone is the key factor is the key factor in increasing libido. Testosterone is the most important of the male sex hormones, known as androgens, produced in the gonads. Testosterone plays a key role in the development and maturity of male sex organs. The hormone promotes secondary sex characteristics, including appearance of facial hair, enlargement of the larynx (producing a deeper voice), sexual desire and sexual behavior. Testosterone also stimulates metabolism, promotes lipolysis (Burning of fat), increases the formation of red blood cells and accelerates muscle growth.

Testosterone doesn’t stay with us from age 30 or so, blood levels of this hormone decline at a rate of about 2 percent per year. By age 50, the level is around 55 percent. As testosterone decreases, muscle tone, energy and sex drive all begin to decline. But testosterone is not just for men. The same decline in testosterone occurs in women, though the amounts involved are lower. In both sexes, sex drive, function, fat metabolism and energy decline into middle age.

One of the questions that many health researchers have pondered is what if you could boost your testosterone levels to more youthful levels? With LJ100 Tongkat Ali extract you can. And that makes LJ100 are true fountain of youth.

LJ100 Tongkat Ali “is the Greatest”

Don’t be fooled by wannabes. Only LJ100 delivers efficacy, standardization and supporting scientific research. When compared against lesser quality products, research showed LJ100 to increase serum testosterone levels 100% after two weeks, while some other products showed only an 8% improvement in serum testosterone level. Ali is the greatest only if it is LJ100 TongKat Ali.

Dr. Zheng-Xian Liu, PhD, has more than 18 years of experience in the Nutraceutical business and more than 34 years of experience in R & D. he received a doctorate of biochemistry and nutrition at Virginia Polytechnic Institute and State University. He was an NIH post-doctorate research fellow at Duke University Medical Center, specializing in free radical biochemistry, and a Pratt research fellow in nutrition. He also served as a member of the editorial board of journal of Advancement in Medicine and has published more than 60 papers in peer-reviewed scientific journals.



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Chromega 400
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Date: January 07, 2006 01:04 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Chromega 400

Chromega 400: Lose the fat, keep the muscle. Chromium Picolinate (400mcg) improves the efficiency of insulin, an Anabolic hormone that transports carbohydrates and amino acids, for a physique that is both lower in body fat and higher in muscle.

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Anabol Naturals Metabolic Fat Burners
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Date: January 07, 2006 01:01 PM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Anabol Naturals Metabolic Fat Burners

Founded in 1983, Anabol Naturals has been the premier provider of the highest quality pharmaceutical-grade, free form amino acids for 22 years. The Anabol Naturals cutting edge line of free form, amino acid-based formulas in renowned for purity, quality and efficacy by professional and world-class athletes, fitness enthusiasts, health and natural food stores, as well as longevity and wellness specialists.

Driving sales nationally and internationally has been the recognition and recommendation of the Anabol Naturals line for product effectiveness and consumer satisfaction in such leading health bestsellers as Prescription for Nutritional Healing by Phyllis Balch and Healthy Healing by Linda Page.



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The edge
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Date: December 30, 2005 08:55 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: The edge

The edge

If you consider yourself a serious, competitionminded athlete, you already know how important the “edge” is when it comes to your success. Regardless of whether it’s shaving a second off your personal best, squeezing out one more rep on the bench, or bumping up your batting average by just a tenth of a point, the difference between achieving fi rst place and an honorable mention may be a simple as knowing what specialty nutrients can make it so.

Thanks to impressive advances in the science of sports nutrition, there are plenty to choose from these days. Creatine monohydrate, for example, helps foster the production of adenosine triphosphate (ATP), a mitochondrial chemical that makes it possible to store, produce and use energy for muscular contractions. Another, branched chain amino acids (BCAA), help increase protein synthesis by promoting Anabolic balance by preventing the catabolism that typically occurs during intense training. Pyruvate, a unique pairing of calcium and pyruvic acid, helps facilitate the transfer of glucose from the bloodstream into muscles where it supports the production of metabolic energy.

When it comes to fueling your body with the nutrients and compounds it needs to perform at its pinnacle, quality takes top priority. Purchasing a line of supplements based on the allure of the label won’t do a thing for your ability to improve, physically. In fact, it may end up costing you more than just money in the long run. NOW Sports supplements are developed under the same demanding, science-based standards inherent to every NOW product, and guaranteed to be exceptional in potency, purity and quality.

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Gov Signs Bill Banning DHEA Sales to Minors
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Date: September 26, 2005 09:05 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Gov Signs Bill Banning DHEA Sales to Minors

Springfield, III. On July 26th, III.Gov. Rod Blagojevich signed into law S.B. 102, which amends the Illinois Controlled Substances Act to include dietary supplements containing ephedrine or Anabolic steroid precursors, including DHEA. Effective immediately, the amended act deems it a Class A misdemeanor to sell or supply supplements containing the prohibited ingredients. It also requires retailers in the state to verify the age of anyone attempting to buy such products, it the person appears under 18 years of age. As ephedrine alkaloids and andro-related products are already banned by federal law, this illinois ban takes the further step to include DHEA.



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Promilin Fenugreek Extract - Supports Healthy Blood Sugar Levels
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Date: June 28, 2005 10:44 AM
Author: Darrell Miller (dm@vitanetonline.com)
Subject: Promilin Fenugreek Extract - Supports Healthy Blood Sugar Levels

  • Supports Healthy Blood Sugar Levels
  • Sports Nutrition and Blood Sugar
  • Benefits of PROMILIN

  • .. Your body’s ability to manage blood sugar may well be the single most crucial factor affecting your health and longevity, and the one most affected by diet and lifestyle. But today’s high-glycemic carbs and sugar-laden foods — combined with lack of exercise — are creating a serious challenge to your body’s intricate glucose/insulin regulatory system. The resulting cellular stress and deterioration have serious repercussions for both your mind and body. To promote optimal wellness through healthy sugar metabolism, Source Naturals formulated PROMILIN™ FENUGREEK EXTRACT, a potent extract from the highly valued herb fenugreek, into an advanced nutritional supplement designed to assist insulin production and support healthy glucose levels. As a complement to your diet, Source Naturals PROMILIN™ FENUGREEK EXTRACT is an excellent strategy to improve blood sugar levels, and consequently, quality of life.

    The basis of Source Naturals PROMILIN™ FENUGREEK EXTRACT is fenugreek (Trigonella foenum-graecum), a respected culinary and medicinal herb used throughout history. One of the formula’s fenugreek extracts is rich in galactomannan, a mucilaginous fiber that may benefit the bowel. The other extract is Promilin, a patent-pending complex of bioactive amino acids standardized to contain 20% 4-hydroxyisoleucine. This extraordinary amino acid derivative assists the pancreas in production of insulin. Several studies with animals and with human cell cultures demonstrate this extract’s positive effect on reducing post-meal glucose levels — with little or no increase in blood insulin concentrations — a clear indicator of improved insulin sensitivity.

    Sports Nutrition and Blood Sugar

    Athletic energy and endurance depend on the ability of muscles to recover from exercise. Because PROMILIN promotes utilization of glucose and insulin by the the body’s muscle cells, “weekend warriors” will feel less fatigue on Monday morning. In a clinical study, PROMILIN increased glycogen re-synthesis by 63% over carbohydrate alone. This is the rate at which post-exercise muscle glycogen (energy) is restored. PROMILIN may also play a role in weight management because it helps your body metabolize carbohydrates more efficiently. And the less time glucose spends in your bloodstream, the less chance it will be converted into fat. By supporting glucose metabolism, Source Naturals PROMILIN™ FENUGREEK EXTRACT may help protect against a harmful process called glycation, where excess glucose reacts with amino acids to form crosslinked sugardamaged proteins that damage the linings of blood vessels, the lens of the eye, and the myelin sheath that insulates brain cells.

    Benefits of PROMILIN

  • • Promotes healthy blood sugar metabolism.
  • • Enhances natural metabolic sensitivity in healthy people.
  • •May assist in the transport of glucose to skeletal muscle.
  • • Promotes lean-muscle mass and aids Anabolic recovery.
  • • Reduces body fat potential. Taking personal responsibility for your health and exploring safe natural alternatives to support prevention is the basis for the current revolution in health care. PROMILIN is a simple yet profound strategy for the increasingly recognized importance of maintaining proper blood sugar levels. Health food outlets are the center of this wellness revolution because only here can Source Naturals PROMILIN™ FENUGREEK EXTRACT and hundreds of other powerful natural compounds be found.

    References
    Madar Z., Abel R., Samish S., Arad J., 1988. Glucose-lowering effect of fenugreek in noninsulin dependent diabetics. European J of Clinical Nutrition Jan 42 (1): 51-4. Sauvaire Y., Petit P., Broca C., Manteghetti M., Baissac Y., Fernandez, Alvarez J., Gross R., Roye M., Leconte A., Gomis R., Ribes G., 1998. 4- Hydroxyisoleucine: a novel amino acid potentiator of insulin secretion Diabetes Feb;47(2):206-10. Sharma RD., Ragtura TC., Rao NS., 1990. Effect of fenugreek seeds on blood glucose in type I diabetes; European J of Clinical Nutrition Apr 44 (4) 301-6.



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    GlucosaMend™ Tissue/Joint Repair Complex
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    Date: June 02, 2005 11:19 AM
    Author: Darrell Miller (dm@vitanetonline.com)
    Subject: GlucosaMend™ Tissue/Joint Repair Complex

    GlucosaMend

    More than 40 million Americans experience joint discomfort. But exciting new research proves you can do something about it. Our health and well-being is inextricably linked to lifestyle choices: the right combination of exercise, weight training and supplementation can strengthen muscles and joint tissues to minimize stress and degradation. Targeted nutrition to the multiple body systems related to joint and connective tissue can help maintain flexibility and joint comfort. GLUCOSAMEND supports the musculoskeletal system with structural building blocks and tissue production cofactors, as well as aiding the body’s mechanisms for soothing relief and antioxidant defense.

    Bio-Aligned Formula™ GLUCOSAMEND is uniquely effective because it is a Bio-Aligned Formula. Source Naturals evaluates the underlying causes of system imbalances. Then we design formulas that provide targeted nutrition to bring your interrelated body systems back into balance.

    Musculoskeletal System—Structural Building Blocks

    Certain building blocks of joints and connective tissue can help maintain joint integrity and comfort. Glucosamine is a major constituent of glycosaminoglycans, which in turn form proteoglycans, molecules that hold and bind the water that lubricates joints, disperses stress and nourishes joint tissue. The amino acids proline and lysine are structural components of collagen and elastin, which give strength to connective tissue. GLUCOSAMEND contains glucosamine sulfate, N-acetyl glucosamine, proline and lysine.

    Musculoskeletal System—Tissue Production Cofactors

    Some micronutrients are necessary as cofactors in the production of connective tissue. For example, vitamin C and copper help form hydroxyproline and hydroxylysine, main constituents of collagen. A unique property of grape seed extract is its ability to form a bond between broken collagen fibers, helping to repair them and restore flexibility and strength to connective tissues and joints. GLUCOSAMEND provides vitamin C, zinc, manganese, copper, and grape seed extract to address these cofactors.

    Soothing Relief Mechanisms

    Some herbs and nutrients have the capacity to support the body’s natural mechanisms for increasing comfort. Boswellia, for example, is an herb with soothing properties, while vitamin B-6 helps to stabilize collagen and elastin. Additional herbs and nutrients, acting in conjunction with antioxidant protectors, support tissue comfort and health. GLUCOSAMEND contains Boswellia serrata, quercetin, copper, and vitamin B-6.

    Antioxidant Defense

    The health and integrity of joints and tissues—specifically of cell membranes— is supported by botanicals and nutrients that support the body’s natural antioxidant response. When tissues become damaged, the body mounts a repair process that ultimately generates free radicals. These free radicals can also break down healthy cells and tissues in the process, hence the need for antioxidants to neutralize and break the cycle. GLUCOSAMEND provides grape seed extract, vitamin C, zinc, selenium, copper, quercetin to neutralize free radicals.

    Lifestyle Tips for Healthy Joints: A Strategy for WellnessSM

    Healthy lifestyle habits should be part of your individual strategy for joint wellness. Source Naturals believes in a holistic approach to living. Not only can supplements bring balances to your individual body systems but certain lifestyle choices can also bio-align your health. Exercise Regularly: Regular physical activity helps lubricate cartilage, strengthens muscles around joints, and promotes weight control. An exercise program geared to joint health includes stretching, mild weight training, and low-impact aerobics. Watch Your Weight: Population-based studies, including the well-known Framingham study, have consistently shown a link between obesity and challenges to joint health. Excess weight causes pressure on joints, and can speed the rate at which cartilage wears down. Eat Healthy: To support healthy joints, increase your intake of omega-3 fatty acids from salmon, sardines, flax seeds or flax oil, avoid excess protein intake, and replace animal with plant proteins when possible. You should also eat lots of organically grown fruits and vegetables, limit saturated fat and eliminate hydrogenated oils. Rest and Relaxation: Regularly scheduled rest gives your body time to recover and rebuild, allowing you to make the most of your exercise program. It’s important to know when to slow down. Supplementation: Source Naturals offers a range of products that can supplement your strategy for joint wellness. These include the pineapple enzyme BROMELAIN; SAME, a natural compound formed from the amino acid methionine, which has been found to support joint comfort and mobility; and CHONDROITIN to promote water retention and elasticity in cartilage and inhibit enzymes that break down cartilage.

    Structural Building Blocks N-Acetyl Glucosamine, Glucosamine Sulfate, L-Lysine, L-Proline Tissue Production Cofactors Grape Seed, Copper, Manganese, Zinc, Vitamins A, B-6 and C, Niacinamide Soothing Relief Mechanisms Boswellia Serrata, Quercetin, Turmeric, Copper, Magnesium, Zinc, Vitamin C Antioxidant Defense Grape Seed, Quercetin, Manganese, Selenium, Zinc, Vitamins A, C and E

    References
    Bhavan’s, B. H. Selected Medicinal Plants of India (A Monograph of Identity, Safety, and Clinical Usage) Bombay: Chemexcil, 1992. Dore-Duffy, P., et al. (1990, Nov-Dec.). “Zinc profiles...” Clinical and Experimental Rheumatology 8.6: 541-46. Ellis, J. M. (1985, Winter). “Vitamin B6 deficiency and rheumatism.” Anabolism. Lakshmi, R., et al. (1991, Oct-Dec.). “Effect of riboflavin or pyridoxine deficiency on inflammatory response.” Indian Journal of Biochemistry and Biophysics 28.5-6: 481-84. Leibovitz, B., (1991). Nutrition Update 5.3: 5. Levine, M. (1986). “New concepts in the biology and biochemistry of ascorbic acid.” New England Journal of Medicine 314: 892-902. Pavelka, K, Gatterova, J., Olejarova, M, Machacek, S., Giacovelli, G., Rovati, L.C., (2002). “Glucosamine Sulfate Use and Delay of Progression of Knee Osteoarthritis: A 3-Year, Randomized, Placebo-Controlled, Double-Blind Study. Arch Intern Med, 2002 October 14; 162(18):2113-23. Roubenoff, R., et al. (1995, Jan.). “Abnormal vitamin B6 status...” Arthritis and Rheumatism 38.1: 105-9. Shampe, P., and R. Harvey. Lippincotts Illustrated Reviews: Biochemistry. Philadelphia: J. B. Lippincott Company, 1987. Tarp, U., et al. (1985). Scandanavian Journal of Rheumatology 14.2: 97-101. Volpi, N., (2002). “Oral bioavailability of chondroitin sulfate (Condrosulf) and its constituents in healthy male volunteers,” 2002 Oct; 10(10):768.



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    Go Deep to the Underlying Cause of Symptoms*
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    Date: May 31, 2005 05:37 PM
    Author: Darrell Miller (dm@vitanetonline.com)
    Subject: Go Deep to the Underlying Cause of Symptoms*

    Go Deep to the Underlying Cause of Symptoms*

    Bio-Aligned Formulas Balance Your Body Systems

    Source Naturals comprehensive Bio-Aligned Formulas go deep to address the root causes of nutritional symptoms*. Our expert formulators exhaustively review the latest scientific research on nutrition and health. Then they design scientifically based formulas that help bring alignment to your multiple, interdependent body systems. Only this in-depth formulation approach can bring you the most effective formulas possible.

    Cardiovascular Symptoms*

    Your heart function and circulation can be disrupted by factors including diet, stress, and free radicals. Bio-Aligned Formulas supply nutrients to meet the heart’s energy requirements, nutrients necessary for the maintenance of blood vessels, antioxidants to help control cholesterol oxidation, minerals to support normal electrical rhythms, vitamins for regulation of homocysteine levels, and fibers to help with the exertion of cholesterol. The following formulas help align these systems: CHOLES RESPONSE™, CHOLESTREX ®, HEART SCIENCE ™, and POLICOSANOL CHOLESTEROL COMPLEX ™.

    Cognitive & Mood Symptoms*

    Brain health can be affected by nutrition, lifestyle and environmental factors, leaving you susceptible to problems in memory, concentration, and perception. Bio-Aligned Formulas provide ingredients such as neurotransmitters for brain cell communication, phospholipids that are components of nerve cell membranes, nutrients to fuel the brain’s energy demands, and herbs for stress response. The following formulas help balance these underlying systems: ATTENTIVE CHILD™, CALM THOUGHTS ™ KAVA, HIGHER MIND ™, MEGAMIND ™, MENTAL EDGE®, NIGHT REST ™, POSITIVE THOUGHTS™, and VISUAL EYES™.

  • *The term symptom as used in this literature refers to the effects of nutrient shortages or imbalances and is not related to the diagnosis, treatment, cure or prevention of any disease.
  • Digestive, Eliminative & Metabolic Symptoms* Without adequate nutrition, your liver can’t perform its critical functions: detoxification, metabolism, and conversion of vitamins into usable forms. Bio-Aligned Formulas provide antioxidants, herbs that detoxify and promote bile flow, ingredients for the liver’s energy needs, nutrients that support glucose metabolism and pancreatic activity, and digestive enzymes. The following formulas bring these systems into alignment: ESSENTIAL ENZYMES™, GLUCO-SCIENCE™, HERBAL RE:STORE™, and LIVER GUARD™.

    General Symptomatic Conditions*

    Daily well-being requires nutrition for your major body systems. While typical multiples supply just enough ingredients to meet minimum requirements, Bio-Aligned Formulas provide nutrients to support energy and liver function, heart-friendly botanicals, herbs that promote circulation to the brain, immune-supporting vitamins, minerals for your skeletal system, and antioxidants for general protection. These multiples bio-align your body systems: ÉLAN VITÀL™ MULTIPLE, and LIFE FORCE™ MULTIPLE.

    Immune Symptoms*

    Appropriate immune response is critical for seasonal health and wellness all year around—but it can be compromised by stress, lack of sleep, and poor diet. Bio-Aligned Formulas supply botanicals that modify histamine release, nutrients for the adrenals, clearing herbs, and antioxidants to defend white blood cells. The following formulas help bring these systems into balance: ALLERCETIN™, ALLER-RESPONSE™, CAT’S CLAW DEFENSE COMPLEX™, WELLNESS COLD & FLU™, WELLNESS COUGH SYRUP™, WELLNESS EARACHE™, WELLNESS FORMULA®, and WELLNESS MULTIPLE™.

    Joint, Bone, and Muscular Symptoms*

    Healthy joints, bones, and muscles require continuous nutrition. Bio-Aligned Formulas provide components of joint and connective tissue, bone-building minerals, soothing herbs, and nutrients that support muscular energy. The following formulas help align these systems: FIBRO RESPONSE™, GLUCOSAMEND™, MUSCLE MASS™, ULTRA-CAL NIGHT™, and ULTRA JOINT RESPONSE™.

    Men’s & Women’s Symptoms*

    The health of men and women can be impacted by diet, stress, and aging. Bio-Aligned Formulas provide phytoestrogens for hormonal balance, calming neurotransmitters, ingredients for metabolic support, and nutritional support for skin, hair, and nails. The following formulas help harmonize these systems: LUSTRE™, MALE RESPONSE™, MENOPAUSE MULTIPLE™, MONTHLY COMFORT™, MOOD BALANCE™, PROSTA RESPONSE™, SKIN ETERNAL PLUS™ and ULTRA BONE BALANCE™.

    Choose Your Bio-Aligned Formula

    In a world of dizzying consumer choices, shopping for the right supplement can leave you confused and frustrated. And since few companies disclose the rationale behind their formulas, it’s hard to make an informed choice. The best place to start is at your local health food store. The natural foods industry is unique in its dedication to holistic health, self-care and consumer education. And the Source Naturals Bio-Aligned Formulas Chart Book—now available at participating health food stores as well as online—is an invaluable tool. The Chart Book helps you pick the formula that is appropriate for your nutritional symptoms* by explaining how each formula supports specific, interdependent body systems. Source Naturals Bio-Aligned Formulas are expertly designed using groundbreaking nutrients, clinically substantiated potency levels, cofactors that facilitate the action of key ingredients, bioavailable forms, and effective delivery systems. Together, these ingredients can help bring you the power of Bio-Alignment.



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    VitaNet ®
    VitaNet ® Staff

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