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NSAIDs vs. Curcumin: Which One Relieves Joint Pain Without Stopping Healing?
Date:
September 14, 2026 11:22 AM
Comparative Analysis of NSAIDs versus Curcumin in Musculoskeletal Tissue RepairPrimary Biological Mechanisms and Pharmacological TargetsManaging soft tissue and joint injuries presents a persistent therapeutic challenge in musculoskeletal medicine. Acute inflammation triggers pain, localized swelling, and mechanical disability, which routinely drives patients toward pharmacological relief. For decades, nonsteroidal anti-inflammatory drugs (NSAIDs) such as ibuprofen, naproxen, celecoxib, and diclofenac have served as primary clinical interventions. While these synthetic agents effectively extinguish acute pain signals, expanding cellular and clinical research indicates that their biochemical mechanism interrupts the fundamental repair cascades required for long-term connective tissue healing. In contrast, curcumin - a natural polyphenolic compound derived from the rhizomes of Curcuma longa (turmeric) - exhibits a distinct, multi-targeted regulatory profile that calms hyperactive inflammation while protecting the structural components of cartilage and tendon tissue.The functional divergence between these two compounds becomes clear when considering an intuitive mechanical analogy. Tissue trauma resembles damage to a commercial building, where initial inflammation functions as the construction and demolition crew tasked with clearing rubble, stabilizing the foundation, and laying down fresh structural framing. NSAIDs function like abruptly cutting electrical power to the entire work site: the noisy machinery stops instantly and the immediate disturbance ceases, but the construction workers lose the power necessary to clean the debris and erect permanent walls. Conversely, curcumin operates as an experienced site manager: it silences unnecessary chaos and prevents site vandalism while ensuring that the skilled workers - specifically chondrocytes in cartilage and tenocytes in tendons - remain fully active, supplied, and capable of completing the restoration. At the cellular level, NSAIDs exert their effects through the catalytic inhibition of cyclooxygenase enzymes, categorized as constitutive cyclooxygenase-1 (COX-1) and inducible cyclooxygenase-2 (COX-2). Membrane phospholipids damaged during injury release arachidonic acid, which COX enzymes convert into pro-inflammatory lipid mediators known as prostanoids, most notably prostaglandin E2 (PGE2). Nonselective NSAIDs block both isoforms, while selective coxibs specifically target COX-2. By shutting off PGE2 production, NSAIDs rapidly elevate pain thresholds and blunt localized swelling. However, because PGE2 also functions as a vital signaling cue for cellular recruitment, angiogenesis, and cellular proliferation, this total enzymatic shutdown strips local repair cells of the baseline signals required to orchestrate tissue regeneration. Curcumin avoids this indiscriminate pathway paralysis by acting upstream on master transcriptional control switches rather than directly neutralizing isolated enzymes. Its primary therapeutic mechanism centers on the inhibition of Nuclear Factor-kappa B (NF-kB) and Activator Protein-1 (AP-1) signaling networks. Under acute stress or chronic inflammatory loads, the NF-kB protein complex is released from its cytoplasmic inhibitor, IkBa, and translocates directly into the cell nucleus, where it drives the transcription of catabolic cytokines such as interleukin-1 beta (IL-1ß), tumor necrosis factor-alpha (TNF-a), and interleukin-6 (IL-6). Curcumin blocks the phosphorylation and degradation of IkBa, effectively keeping NF-kB trapped in the cytoplasm. By preventing this nuclear entry, curcumin attenuates the expression of pro-inflammatory cytokines and downstream matrix-degrading enzymes while preserving baseline physiological functions. Furthermore, curcumin activates the nuclear factor erythroid 2-related factor 2 (Nrf2) and antioxidant response element (ARE) pathways, which upregulate endogenous cellular antioxidants to neutralize destructive reactive oxygen species (ROS) that induce cell death in injured joints.
The Mechanisms of NSAID-Induced Inhibition in Cartilage and Tendon RepairArticular cartilage and tendons are specialized, bradytrophic connective tissues characterized by relatively low basal metabolic rates and limited endogenous vascular supplies. These physical constraints make their cellular maintenance highly vulnerable to pharmaceutical disruptions. When synthetic compounds impair cell migration, survival, or extracellular matrix secretion, the intrinsic repair capacity of these structures is substantially degraded.Cartilage maintenance depends on chondrocytes, the sole cell type residing within articular joints, which are responsible for generating and maintaining the extracellular matrix of Type II collagen and water-binding proteoglycans such as aggrecan. Because adult articular cartilage lacks a direct vascular network, major defect repair relies heavily on the recruitment and chondrogenic differentiation of subchondral mesenchymal stem cells (MSCs) through endochondral ossification. Experimental evaluations demonstrate that systemic or intra-articular NSAID exposure halts this regenerative differentiation. Both nonselective NSAIDs and selective COX-2 inhibitors interfere with chondrocyte maturation and prevent successful tissue integration following cartilage transplantation or microfracture procedures. At the cellular level, common NSAIDs - including indomethacin, ketorolac, and diclofenac - induce cell cycle arrest in chondrocytes by blocking transition from the resting G0 phase to the proliferative G1. phase, substantially reducing viable cell numbers. Concurrently, NSAIDs downregulate Bone Morphogenetic Protein-2 (BMP-2), an essential anabolic signaling molecule that orchestrates matrix synthesis. Histological analyses in animal models reveal that NSAID administration causes a marked loss of extracellular proteoglycan content and widespread chondrocyte depletion, yielding elevated modified Mankin scores that signify advanced structural degeneration. In layman's terms, proteoglycans serve as water-absorbing structural sponges that grant cartilage its elastic shock absorption. When NSAIDs deplete these molecules, the joint surface dries out, becomes brittle, and rapidly wears down under routine mechanical friction. Tendon healing is similarly susceptible to disruption by NSAIDs. Tendons operate as high-tensile structural cables composed of longitudinally arranged Type I collagen fibers, maintained by specialized fibroblasts termed tenocytes and tenoblasts. Healing after acute rupture or chronic tear progresses through an initial inflammatory phase, followed by a proliferative phase of cell migration, and culminates in a lengthy remodeling phase of collagen alignment. In vitro and in vivo studies establish that NSAIDs directly suppress the migration and proliferative capacity of tenocytes during the critical early healing window. Without an adequate cellular workforce migrating into the wound bed, provisional collagen scaffolding cannot be synthesized effectively. The disruption is particularly pronounced at the enthesis, the specialized fibrocartilaginous junction where soft tendon inserts into rigid bone. Re-establishing this transition zone requires coordinated bone remodeling and chondrogenic differentiation, both of which are hindered by COX inhibition. In animal rotator cuff repair models, early administration of NSAIDs significantly delays collagen fiber organization and impairs mechanical integration at the insertion site, resulting in a measurable decline in load-to-failure strength and overall tendon toughness. Furthermore, while prolonged inflammation contributes to pathological degeneration, the transient synthesis of PGE2 during the initial hours following injury is essential for regulating localized microvascular flow and hyperemic nutrient delivery. By eliminating this early prostanoid pulse, NSAIDs starve the repair zone of oxygen and circulating factors precisely when the cellular metabolic demand is highest. Beyond direct biochemical cytotoxicity, systemic NSAIDs introduce a physical hazard known as analgesic arthropathy. In musculoskeletal biomechanics, pain functions as a protective feedback mechanism, forcing the patient to unload an injured joint or limb to prevent structural overload. By effectively blunting the pain reflex while simultaneously undermining the cellular synthesis of proteoglycans and collagen, NSAIDs create a deceptive state of perceived recovery. Patients prematurely resume unrestricted weight-bearing and strenuous activity, placing substantial, uncompensated mechanical forces onto compromised cartilage surfaces and unhealed tendon fibers. Over time, this recurring mechanical trauma accelerates joint space narrowing, promotes microfractures in the subchondral plate, and hastens functional joint breakdown. Chondroprotective and Tenogenic Mechanisms of CurcuminIn sharp contrast to the suppressive actions of synthetic COX inhibitors, curcumin exhibits a tissue-sparing, pro-regenerative biological profile. Rather than paralyzing cellular metabolism, curcumin modulates the microenvironment by suppressing destructive catabolic enzymes while supporting the baseline anabolic signals required for cartilage and tendon reconstruction.In articular cartilage, curcumin acts as a direct chondroprotective agent by dismantling the catabolic cascade induced by pro-inflammatory cytokines. When joint tissues are exposed to elevated IL-1ß and TNF-a, chondrocytes are provoked to synthesize matrix metalloproteinases - specifically collagenases such as MMP-1, MMP-3, and MMP-13 - along with aggrecanases like ADAMTS5. These enzymes function like enzymatic shears, systematically slicing through structural Type II collagen strands and degrading aggrecan cores. Curcumin suppresses the transcription and secretion of MMP-1, MMP-3, MMP-13, and ADAMTS5 by neutralizing NF-kB and AP-1 activation. Concurrently, it upregulates Cbp/p300 Interacting Transactivator with ED-rich tail 2 (CITED2), an essential transcriptional regulator that represses matrix metalloproteinases at the genomic level. In addition to halting extracellular degradation, curcumin protects chondrocytes from inflammatory apoptosis. Exposure to oxidative stress and inflammatory cytokines typically triggers programmed cell death by activating the intrinsic caspase cascade. Curcumin suppresses this apoptotic pathway by reducing the cleavage of executioner caspase-3, downregulating the pro-apoptotic factor Bax, and elevating anti-apoptotic Bcl-2 expression. Microscopic and histological analyses of osteoarthritic cartilage treated with curcumin consistently show robust Safranin O staining, intact surface regularity, preserved chondrocyte density, and significantly reduced Osteoarthritis Research Society International (OARSI) degradation scores. Within tendon biology, curcumin promotes active tissue regeneration (tenogenesis) rather than inert scar formation. In animal models of tendon rupture and surgical repair, curcumin guides tendon-derived stem and progenitor cells (TSPCs) toward mature tenocyte differentiation. This lineage-specific differentiation is orchestrated primarily through activation of the phosphatidylinositol 3-kinase/protein kinase B (PI3K/Akt) and Wnt/ß-catenin signaling cascades. As stem cells commit to the tenogenic pathway, they significantly upregulate crucial structural and phenotypic markers, including epithelial cell adhesion molecule (EpCAM), tenomodulin, and the master tendon transcription factor Scleraxis. Through this guided differentiation, curcumin supports the preferential synthesis and organized deposition of high-tensile Type I collagen fibers, the primary architectural building blocks of healthy tendons. Injured tendons typically fill with disorganized, loose Type III collagen, which forms a structurally inferior, compliant scar. Curcumin supplementation promotes the progressive maturation from primitive Type III collagen to densely packed, parallel Type I collagen fibrils, restoring native tensile strength and mechanical breaking force. A major clinical challenge following tendon surgery is the development of peritendinous adhesions, in which excessive fibrotic scar tissue binds the healing tendon to its synovial sheath, restricting range of motion and joint gliding. Postoperative tendon repair involves a balance between extrinsic healing (in which exterior fibroblasts infiltrate the defect and deposit messy scar tissue) and intrinsic healing (in which tenocytes within the tendon substance reconstruct the matrix). Curcumin suppresses excessive peritendinous inflammation and extrinsic fibrosis while accelerating intrinsic tenocyte repair. Biomechanical testing confirms that local or systemic curcumin administration yields lower adhesion scores, increased gliding distances, and superior functional mobility without sacrificing structural load-bearing capacity. Comparative Clinical Efficacy and Systemic Safety ProfilesTranslating cellular findings into clinical practice requires weighing therapeutic outcomes against systemic safety profiles. While synthetic NSAIDs deliver potent, rapid analgesia during acute musculoskeletal pain events, their chronic administration is constrained by systemic toxicities across multiple organ systems.In randomized, active-controlled clinical trials of knee osteoarthritis, optimized curcumin preparations have demonstrated clinical pain reduction and functional recovery comparable to standard therapeutic doses of NSAIDs. In a randomized, open-label parallel-arm study evaluating 139 patients with symptomatic knee osteoarthritis, subjects received either 500 mg of a bio-enhanced curcumin extract three times daily or 50 mg of diclofenac sodium twice daily for 28 consecutive days. Patients treated with curcumin demonstrated comparable improvements in pain intensity on the Visual Analogue Scale (VAS) and functional scores on the Knee Injury and Osteoarthritis Outcome Score (KOOS) at days 14 and 28, showing no statistically significant difference in therapeutic efficacy compared to diclofenac. However, the systemic tolerability profiles between the treatments diverged markedly. Overall adverse events occurred in only 13% of the curcumin group compared to 38% of the diclofenac cohort. In the diclofenac arm, 28% of patients developed dyspeptic symptoms severe enough to require concurrent treatment with H2-receptor antagonists or proton pump inhibitors to prevent mucosal ulceration, whereas no patients in the curcumin cohort required gastroprotective intervention. Furthermore, the curcumin cohort experienced a significant reduction in flatulence and digestive discomfort, demonstrating beneficial gastric and intestinal cytoprotective effects. These safety observations are consistent across broader systematic reviews and meta-analyses. Nonsteroidal anti-inflammatory agents inherently compromise gastrointestinal integrity by systematically depleting cytoprotective prostaglandins, leaving the gastric epithelium vulnerable to acid erosion and hemorrhage. In addition, systemic inhibition of renal and vascular COX enzymes by NSAIDs reduces renal perfusion and disrupts the balance between prostacyclin and thromboxane, elevating the risk of fluid retention, hypertension, and adverse cardiovascular thrombotic events. Curcumin does not suppress these physiological prostanoid pathways, making it free from ulcerogenic, nephrotoxic, and cardiotoxic properties at therapeutic dosages.
A longstanding limitation of standard curcumin supplementation in clinical settings has been its low oral bioavailability. Native curcuminoids are highly lipophilic, poorly soluble in aqueous gastric fluids, and subject to rapid hepatic and intestinal phase II metabolism into inactive glucuronides and sulfates, leading to swift biliary and fecal excretion. Consequently, raw culinary turmeric powders struggle to achieve the therapeutic systemic circulating concentrations required to reach poorly vascularized joint and tendon compartments. Modern pharmacognosy has addressed this pharmacodynamic hurdle through advanced delivery formulations. Modern strategies - such as co-administration with the natural alkaloid piperine (which inhibits hepatic glucuronidation), micellar dispersions, phytosomal phospholipid complexes, and bio-enhanced submicron dispersions - elevate systemic blood bioavailability by ten- to thirty-fold compared to unformulated extracts. These modern delivery platforms ensure that therapeutic concentrations reach synovial fluid, subchondral bone, and fibrous tendon sheaths without requiring excessive oral dosing. Conclusions and Translational Clinical ImplicationsThe biological and clinical evidence reveals distinct physiological paths for NSAIDs and curcumin in orthopedic recovery. While NSAIDs remain powerful tools for the brief alleviation of acute, unmanageable pain, their ongoing administration during active tissue healing presents substantial biological compromises. Tendons and cartilage require a controlled, transient inflammatory cascade to signal cell recruitment, stimulate stem cell differentiation, and direct extracellular matrix synthesis. By completely shutting down cyclooxygenase enzymes and depleting local prostaglandins, NSAIDs disrupt this regenerative cascade. The resulting cellular consequences - including chondrocyte cell cycle arrest, proteoglycan loss, suppression of tenocyte migration, and weakened collagen tensile strength at the tendon-to-bone interface - demonstrate that pain relief from NSAIDs frequently comes at the cost of the structural integrity of healing connective tissues.In contrast, curcumin provides a tissue-preserving alternative that decouples pain and inflammation control from cellular suppression. Operating upstream at the level of NF-kB and AP-1 transcriptional activation, curcumin attenuates the expression of pro-inflammatory cytokines while leaving the physiological baseline of cellular metabolism intact. In cartilage, it actively represses the matrix-degrading enzymes MMP-1, MMP-3, MMP-13, and ADAMTS5, maintains water-binding proteoglycan content, and protects chondrocytes from inflammatory apoptosis. In damaged tendons, curcumin stimulates tenogenic differentiation of local stem cells via PI3K/Akt signaling, supports the proper maturation of dense Type I collagen fibers, and prevents restrictive peritendinous scar adhesions, preserving both joint mobility and mechanical breaking strength. From a translational perspective, these findings indicate that clinical protocols should reconsider relying on continuous NSAIDs as the default intervention for connective tissue injuries, post-surgical recovery, and chronic degenerative conditions. Where synthetic NSAIDs are deemed necessary, their use should be confined to short-term acute flare-ups to avoid interrupting early tissue remodeling. For long-term joint preservation, ongoing tendinopathy rehabilitation, and chronic osteoarthritis management, optimized bio-enhanced curcumin formulations deliver pain relief and functional restoration comparable to conventional pharmaceuticals, all while preserving the biological processes required for lasting musculoskeletal repair. References: NSAID therapy effects on healing of bone, tendon, and the enthesis The Detrimental Effects of Systemic Ibuprofen Delivery on Tendon Conservative management of symptomatic knee osteoarthritis - PMC Positives and negatives of nonsteroidal anti-inflammatory drugs in (PDF) Conservative management of symptomatic knee osteoarthritis Non-steroidal anti-inflammatory drugs influence cartilage healing Is Curcumine Useful in the Treatment and Prevention of ... - PMC - NIH Efficacy and mechanisms of curcumin in the treatment of osteoarthritis Biological actions of curcumin on articular chondrocytes - PubMed Curcumin slows osteoarthritis progression and relieves ... - PMC - NIH Do Nonsteroidal Anti-Inflammatory Drugs Have a Deleterious Effect Anti-inflammatory management for tendon injuries - friends or foes? The mechanistic role of curcumin on matrix metalloproteinases in Therapeutic effects of turmeric or curcumin extract on pain and Curcumin inhibits chondrocyte apoptosis and inflammation in ... - PMC Analysis of the mechanism of curcumin against osteoarthritis using Synergistic enhancement of tendon-to-bone healing via anti ... - PMC A Multicenter, Randomized, Double-Blind, Placebo-Controlled Trial Safety and efficacy of curcumin versus diclofenac in knee osteoarthritis A randomized, pilot study to assess the efficacy and safety ... - PubMed Effectiveness of curcuminoids in the treatment of knee osteoarthritis THE EFFECTS OF TRADITIONAL STRENGTHENING EXERCISES Putting Some Muscle into Osteoarthritis | Annals of Internal Medicine Do Nonsteroidal Anti-Inflammatory Drugs Have a Deleterious Effect Calebin A, a Compound of Turmeric, Down-Regulates Inflammation The Effect of Non-Steroidal Anti-Inflammatory Drugs on Tendon-to Chiropractor in Toronto, ON, Canada :: Head and Neck Pain Investigation of the association of long-term NSAID use with ... - PMC Curcumin Improves Functional Recovery of Ruptured Tendon by Chemically modified curcumin (CMC2.24) alleviates osteoarthritis Curcumin improves age-related and surgically induced osteoarthritis (PDF) Curcumin Improves Functional Recovery of Ruptured Tendon Investigation of the effects of umbilical cord-derived mesenchymal Effect of curcumin-loaded polycaprolactone scaffold on Achilles Controlled release of curcumin from curcumin-loaded nanomicelles Efficacy and safety of combination of curcuminoid complex ... - PMC The efficacy of Curcuma Longa L. extract as an adjuvant therapy in
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6653) The Ultimate Guide to Cellular Longevity: NAD+, Methylation, and Senolytics
Date:
September 10, 2026 10:57 AM
Introduction: Understanding Cellular Aging and Energy DeclineBiological 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 ProductionEvery 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 ProcessWhen 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 PathwayThe Biochemistry of NAD+ Depletion Over TimeNicotinamide 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.
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+ LevelsThe 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 MechanismsReplenishing 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 RegulatorClearing Senescent "Zombie" Cells from TissuesThe 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 AutophagyThe 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 FatsDespite 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.
The Importance of Methylation in Healthy AgingVitamin B-Complex and Choline as Essential Methyl DonorsMethylation 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 HealthEvery 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 FocusBeyond 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 ProtocolSynergizing NR, Quercetin, and Methylated B-VitaminsLongevity 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 FunctionLongevity 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 MarkersA 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.
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 MatrixCellular 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.
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.
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(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6650) Is there anything else DLPA can do be sides Pain management and Mood?
Date:
May 22, 2026 04:29 PM
Is there anything else DLPA can do be sides Pain management and Mood? Yes, beyond pain management and general mood elevation, DLPA has several other physiological effects. Because the body can convert the L-phenylalanine half of DLPA into tyrosine, it acts as a precursor for several other critical biological processes. Here is what else DLPA can do: 1. Appetite Regulation and SatietyL-phenylalanine is a potent stimulator of cholecystokinin (CCK), an intestinal peptide hormone. When released, CCK signals the brain that you are full and physically slows down gastric emptying. Because of this mechanism, DLPA is sometimes used off-label to help manage cravings and suppress appetite, making it easier to adhere to caloric deficits.2. Thyroid Hormone SynthesisThe catecholamine pathway (dopamine, adrenaline) isn't the only system that relies on this amino acid. Once L-phenylalanine converts to tyrosine, that tyrosine is sent to the thyroid gland, where it binds with iodine to create thyroxine (T4) and triiodothyronine (T3). Adequate levels of these precursors are essential for maintaining a healthy metabolic rate and regulating cellular energy.3. Melanin Production (Skin Pigmentation)Tyrosine is also the foundational building block for melanin, the pigment responsible for the color of your skin, hair, and eyes. Because it feeds the melanin synthesis pathway, L-phenylalanine has been studied and utilized in dermatological treatments—often in conjunction with UVA light therapy—to help repigment the skin in conditions like vitiligo.4. Attention and Executive FunctionWhile the previous response mentioned that the dopamine and norepinephrine boost helps combat the fatigue associated with chronic pain, those specific neurotransmitters are also the primary drivers of focus, alertness, and working memory. DLPA is frequently used in nootropic stacks to enhance cognitive performance and has been explored as a supportive supplement for attention-deficit conditions.5. Addiction Recovery SupportIn amino acid therapy protocols designed for substance withdrawal (particularly alcohol and opiates), DLPA is often a cornerstone supplement. Prolonged substance abuse artificially floods the brain with dopamine and eventually depletes the brain's natural stores. DLPA provides the raw materials necessary to rebuild those depleted catecholamine levels, which can help reduce withdrawal-related depression and physical cravings.When diving deeper into the physiological applications of DLPA, there are several advanced, highly specific mechanisms that make it particularly interesting, especially regarding athletic performance, metabolic pathways, and cellular recovery. Here are a few of the more complex, nuanced roles of DLPA in the body: 6. Combating Central Nervous System (CNS) FatigueDuring heavy resistance training, the localized muscle tissue isn't the only thing that fatigues; the central nervous system also takes a massive hit. High-intensity lifting—particularly movements that demand high neurological output or pushing close to muscular failure—rapidly depletes dopamine levels in the brain. As dopamine drops, CNS fatigue sets in, diminishing neural drive and the ability to recruit high-threshold motor units.By supplementing with L-phenylalanine, the brain has a steady supply of precursor material to maintain dopamine synthesis. This helps delay the onset of CNS fatigue, allowing for sustained mental drive, higher intensity, and better neurological output throughout a grueling session. 7. Pain Management Without Blunting HypertrophyA major issue with traditional over-the-counter pain relievers (like NSAIDs such as ibuprofen) is that they work by inhibiting prostaglandins and blunting the acute inflammatory response. While this stops pain, it also directly interferes with the mTOR signaling pathway and satellite cell activation, effectively blunting muscle protein synthesis and hypertrophy.Because the D-phenylalanine in DLPA does not interfere with inflammation or COX enzymes—working entirely by shielding circulating endorphins—it provides musculoskeletal comfort without compromising the cellular signaling required for muscle repair and growth. It allows the body's natural inflammatory repair mechanisms to run their course uninterrupted. 8. The Methylation Cycle BottleneckThe effectiveness of the L-phenylalanine half of DLPA is intricately tied to systemic health, specifically the body's methylation cycle. The conversion of phenylalanine to dopamine is relatively straightforward, but the final biochemical step—converting norepinephrine into epinephrine (adrenaline)—requires a methyl donor.The enzyme responsible for this final step (PNMT) relies entirely on S-adenosylmethionine (SAMe) to donate a methyl group. If the methylation cycle is sluggish or deficient in necessary cofactors (like methylated B-vitamins), the catecholamine cascade bottlenecks at norepinephrine. Therefore, DLPA's ability to fully support the adrenal axis is directly dependent on the efficiency of the body's methylation pathways. 9. Prolonging the "Lifter's High"Heavy physical exertion naturally triggers a massive release of endogenous opioids to help the body tolerate the physical stress of training. This is commonly referred to as a "runner's high" or "lifter's high." Because D-phenylalanine acts as an enkephalinase inhibitor, taking DLPA prior to or immediately following intense physical activity can significantly extend the half-life of these exercise-induced endorphins, enhancing post-training recovery and general well-being.Would you like to explore how to position this mTOR-safe, CNS-supporting angle into a specific educational breakdown for a retail or blog audience? Summary: Beyond its foundational role in chronic pain relief, DLPA serves as a versatile precursor that supports several advanced metabolic, cognitive, and physical functions. Because the L-phenylalanine half converts into tyrosine, it provides the essential raw materials required for thyroid hormone synthesis (T3 and T4), melanin skin pigmentation production, and the release of cholecystokinin (CCK), a gut peptide that signals satiety and regulates appetite. Furthermore, by elevating dopamine and norepinephrine, DLPA enhances executive function, working memory, and focus, making it a valuable asset in nootropic protocols and a supportive tool for rebuilding depleted neurotransmitter stores during substance recovery. In the context of high-intensity athletic performance, DLPA offers unique physiological advantages for training and recovery. It directly combats central nervous system (CNS) fatigue by replenishing the dopamine depleted during heavy resistance training, thereby maintaining neural drive without interrupting muscle protein synthesis. Unlike traditional NSAIDs, which blunt the acute inflammatory response and stall the mTOR pathway, DLPA provides musculoskeletal comfort solely by shielding endogenous opioids (endorphins and enkephalins) from enzymatic breakdown. This allows the natural muscle-repair mechanisms to run their course uninterrupted while simultaneously prolonging the post-exercise "lifter's high." However, its full efficacy remains dependent on a healthy methylation cycle, as the final conversion of norepinephrine to adrenaline requires adequate methyl donors like SAMe.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6640) "The Butyrate Paradox" Does Butyrate Trigger Apoptosis in Just Colon Cancer or All Cancers Throughout The Body?
Date:
November 20, 2025 12:16 PM
In the context of the colon, the paradox states that butyrate is a promoter of life for healthy colon cells but an inducer of death (apoptosis) for colon cancer cells. Regarding its effects on all cancers throughout the body, studies show that butyrate's pro-apoptotic (death-inducing) properties are not limited to colon cancer, but the paradox itself is largely defined by the unique metabolic environment of the colon. ?? Understanding the Butyrate Paradox in the ColonThe paradox is explained by a fundamental difference in how normal colonocytes and cancerous colonocytes get their energy, a phenomenon known as the Warburg Effect.
Mechanism of the Paradox
?? Apoptosis in Cancers Outside the ColonButyrate's ability to trigger apoptosis is not exclusive to the colon, as its core mechanism—Histone Deacetylase (HDAC) inhibition - is a potent anti-cancer strategy relevant to many tumor types.Evidence for Anti-Cancer Effects Beyond the ColonButyrate, or its sodium salt (sodium butyrate), has been shown in various in vitro (cell culture) and animal studies to inhibit proliferation and induce apoptosis in several non-colonic cancer cell lines, including:
Key Distinction: Local vs. Systemic ConcentrationThe challenge for non-colon cancers is delivery and concentration.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6629) Borage Seed Oil: A Rich Source of GLA with Diverse Health Benefits
Date:
July 16, 2025 11:08 AM
Borage Seed Oil: A Rich Source of GLA with Diverse Health BenefitsBorage seed oil comes from the Borago officinalis plant. It is a nutritional powerhouse because of its high concentration of gamma-linolenic acid (GLA). This omega-6 fatty acid provides many health benefits. These include reducing inflammation, improving skin health, and potentially easing symptoms of hormonal imbalances and arthritis.The Power of GLA: An Anti-Inflammatory AgentThe cornerstone of borage seed oil's efficacy lies in its GLA content. Within the body, GLA is converted into dihomo-gamma-linolenic acid (DGLA), a precursor to anti-inflammatory compounds, most notably prostaglandin E1 (PGE1). This is significant because many chronic diseases are rooted in inflammation. By bolstering the body's production of these anti-inflammatory molecules, borage seed oil can help to counteract inflammatory processes.Soothing Skin AilmentsOne of the most well-documented benefits of borage seed oil is its positive impact on skin health. It is particularly noted for its potential to alleviate symptoms of inflammatory skin conditions such as:
Relief for Rheumatoid ArthritisResearch suggests the anti-inflammatory GLA in borage seed oil can reduce joint tenderness, swelling, and morning stiffness associated with rheumatoid arthritis. Some studies suggest it may even reduce the need for conventional anti-inflammatory medications.Hormonal Harmony and PMS ReliefFor those who experience premenstrual syndrome (PMS), borage seed oil may offer a natural way to manage symptoms. It is thought that fluctuations in hormone levels can influence the body's fatty acid metabolism. The GLA in borage seed oil can help to produce PGE1, which may in turn help to alleviate common PMS complaints such as breast tenderness, mood swings, and bloating.Important Considerations and Potential Side EffectsWhile generally considered safe for most people, it is crucial to choose borage seed oil products that are certified "pyrrolizidine alkaloid (PA) free." PAs are naturally occurring toxins in the borage plant that can be harmful to the liver. Reputable manufacturers will remove these compounds during processing.Potential side effects of borage seed oil are typically mild and may include digestive issues such as bloating, gas, or indigestion. As with any supplement, it is advisable to consult with a healthcare professional before starting to take borage seed oil, especially for those who are pregnant, breastfeeding, or taking other medications, particularly blood thinners or anti-seizure drugs. In conclusion, Borage seed oil, rich in GLA, is a valuable natural supplement with many potential health benefits. Its ability to modulate cellular inflammation makes it a compelling option for supporting skin, managing arthritis, and easing hormonal discomfort. Here are even more concise versions:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6621) The History of Stevia: From Ancient Sweet Leaf to Global Sweetener
Date:
May 31, 2024 11:05 AM
The History of Stevia: From Ancient Sweet Leaf to Global SweetenerStevia, a natural sweetener that has become globally popular in recent years, boasts a rich history spanning centuries. This article delves into the origins and historical significance of stevia, shedding light on its traditional use by indigenous peoples and its evolution into a mainstream alternative to sugar.
The Origins of SteviaStevia, scientifically known as Stevia rebaudiana, originates from South America. This small, green plant is part of the Asteraceae family, which also includes daisies and sunflowers. The leaves of the stevia plant contain sweet compounds known as steviol glycosides, which are responsible for its sweetness.
Traditional Use by the Guaraní PeopleThe historical journey of stevia begins with the Guaraní people of Paraguay and Brazil, who have used the plant for over 1,500 years. The Guaraní referred to stevia as "ka'a he'ê," which translates to "sweet herb." They traditionally used stevia leaves to sweeten beverages like yerba maté, a popular herbal tea, and to enhance the flavor of various traditional dishes. Stevia wasn't just a sweetener for the Guaraní; it also held medicinal importance. The leaves were used to treat a variety of conditions, including burns, stomach issues, and as a general tonic. This dual use of stevia as both a sweetener and a medicinal plant highlights its invaluable role in indigenous culture.
Stevia's Journey to the Modern WorldRediscovery by European ExplorersThe modern history of stevia began in the 16th century when European explorers first arrived in South America. Spanish botanist and physician Pedro Jaime Esteve (1500–1556) is often credited with the early European studies on stevia, although the plant was not widely documented until later. Interest in stevia grew in the early 20th century when it was scientifically studied by Paraguayan chemist Ovidio Rebaudi. Rebaudi analyzed the sweet properties of stevia leaves and confirmed that they were much sweeter than sugar, which caught the attention of the scientific community.
Introduction to Asia and BeyondIn the 1970s, stevia began gaining traction in Japan as the country sought alternatives to artificial sweeteners. Japanese researchers developed methods for extracting and refining steviol glycosides from stevia leaves, making it possible to use stevia as a commercial sweetener. The success of stevia in Japan set the stage for its global acceptance.
Stevia in the Modern Health MovementHealth Benefits and AdvantagesStevia's rise in popularity can be attributed to its myriad of health benefits. Unlike sugar, stevia is calorie-free, making it an attractive option for those managing their weight. Additionally, stevia has a negligible effect on blood glucose levels, which is beneficial for individuals with diabetes or those monitoring their carbohydrate intake. Moreover, steviol glycosides are stable at high temperatures, making stevia a versatile sweetener suitable for cooking and baking. This thermal stability, combined with its natural origin, has positioned stevia as a preferred option for health-conscious consumers.
Regulatory Approval and Global AdoptionThe journey of stevia to becoming a global sweetener has involved rigorous scientific scrutiny and regulatory approval. In 2008, the United States Food and Drug Administration (FDA) granted stevia the status of "Generally Recognized As Safe" (GRAS), which paved the way for its use in a wide range of food and beverage products. Following the FDA's approval, other countries, including those in the European Union, Canada, and Australia, also approved the use of stevia in food and beverages. Today, stevia is found in everything from soft drinks to baked goods, reflecting its widespread acceptance and global reach.
Challenges and Future prospectsOvercoming ObstaclesDespite its many advantages, the path to widespread adoption of stevia has not been without challenges. One of the initial hurdles was the aftertaste associated with some of the early stevia extracts. However, advances in extraction and formulation techniques have significantly improved the taste profile of stevia, making it more palatable for consumers. Another challenge has been ensuring the sustainable cultivation of stevia. As demand grows, it is essential to implement agricultural practices that support environmental sustainability and fair labor conditions for farmers.
Research and InnovationThe future of stevia holds exciting possibilities as ongoing research continues to explore new applications and improvements. Scientists are currently investigating the potential of stevia extracts in providing health benefits beyond sweetness, such as their antioxidant properties and possible roles in managing certain health conditions. Innovations in biotechnology are also paving the way for the development of new stevia varieties with enhanced sweetness and improved agronomic traits. These advancements could further solidify stevia's position as a key player in the global sweetener market.
In SummaryThe history of stevia is a fascinating journey from the rainforests of South America to the shelves of supermarkets around the world. From its traditional use by the Guaraní people to its rediscovery by European explorers and subsequent global adoption, stevia has proven to be a remarkable sweetener with enduring significance. As the modern world continues to prioritize health and wellness, stevia's natural sweetness offers a much-needed alternative to sugar, promising a future where we can enjoy the sweetness of life without compromising our health.
Are You Ready to Make a Sweet Change?If you've been searching for a healthier way to satisfy your sweet tooth, the journey of stevia offers a compelling reason to make the switch. With its rich history rooted in traditional use by the Guaraní people, and its scientifically-backed benefits recognized globally, stevia stands out as a truly remarkable sweetener. Free from calories and gentle on blood glucose levels, it's an excellent choice for both weight management and diabetes care. Plus, its versatility in cooking and baking means you won't have to compromise on your favorite recipes. Join the growing number of health-conscious consumers who are choosing stevia for a naturally sweet life. Explore its various forms—from whole leaves to refined steviol glycosides—and incorporate this natural sweetener into your diet today. Embrace the future of sweetening and enjoy the benefits of stevia for yourself and your loved ones.
Frequently Asked Questions (FAQ) About SteviaWhat is stevia?Stevia is a natural sweetener derived from the leaves of the Stevia rebaudiana plant, which is native to South America. It has been used for centuries by the Guaraní people and is known for being much sweeter than sugar while containing zero calories.
How is stevia used as a sweetener?Stevia can be used in various forms, including whole leaves, powdered extracts, and liquid concentrates. It is commonly used to sweeten beverages, baked goods, and other foods. Thanks to its stability at high temperatures, stevia can also be used in cooking and baking.
Is stevia safe to consume?Yes, stevia is considered safe for consumption. The United States Food and Drug Administration (FDA) has granted stevia the status of "Generally Recognized As Safe" (GRAS). It has also been approved for use in many other countries, including those in the European Union, Canada, and Australia.
Can stevia help with weight management?Stevia can be an effective tool for weight management because it contains no calories. Replacing sugar with stevia in your diet can help reduce overall calorie intake, which may contribute to weight loss or maintenance.
Is stevia suitable for people with diabetes?Stevia is suitable for people with diabetes as it has a negligible effect on blood glucose levels. This makes it a preferable alternative to sugar for those needing to monitor their carbohydrate intake. However, it is always best to consult with a healthcare provider before making any significant changes to your diet.
Does stevia have any side effects?Stevia is generally well-tolerated and considered safe for most people. However, some individuals may experience mild side effects, such as digestive discomfort, when consuming large amounts. It is advisable to use stevia in moderation.
What does stevia taste like?Stevia is known to be much sweeter than sugar, and its taste can vary depending on the form used and the specific product. Early versions of stevia extracts were noted for having a slight aftertaste, though modern formulations have significantly improved the taste profile.
How is stevia cultivated?Stevia is typically grown in subtropical and tropical climates. Sustainable cultivation practices are essential as the demand for stevia increases. These practices include using environmentally friendly agricultural methods and ensuring fair labor conditions for farmers.
Are there any environmental benefits to using stevia?Stevia has the potential to be more sustainable than traditional sugar crops. It requires less land and water to produce the same level of sweetness, which can reduce the environmental impact associated with sugar cultivation.
Can stevia be used in baking?Yes, stevia can be used in baking due to its high-temperature stability. However, because it is much sweeter than sugar, recipes may need to be adjusted to account for its intensity. Many commercially available stevia sweeteners come with specific usage guidelines for cooking and baking.
Are there different types of stevia products?Yes, stevia products come in various forms, including whole leaves, powdered extracts, and liquid concentrates. Some products are blended with other sweeteners or filler ingredients to better mimic the taste and texture of sugar.
How does stevia compare to artificial sweeteners?Stevia is a natural sweetener, which sets it apart from many artificial sweeteners. It is derived from a plant and does not undergo extensive chemical processing. Many consumers prefer stevia because it is perceived as a more natural and healthier option.
What research is being done on stevia?Ongoing research on stevia explores its potential health benefits beyond sweetness, such as its antioxidant properties and possible roles in managing certain health conditions. Innovations in biotechnology are also working to develop new stevia varieties with enhanced sweetness and other desirable traits.
Where can I buy stevia?Stevia products are widely available at VitaNet LLC. Stevia can be found in the baking aisle or the section dedicated to natural and alternative sweeteners. By understanding the benefits and uses of stevia, you can make an informed decision about incorporating this natural sweetener into your diet. With its rich history, proven health benefits, and versatility, stevia offers a compelling alternative to traditional sugar.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6607) Did you know that glutathione is not only great for liver health, but it also promotes beautiful, radiant skin?
Date:
December 07, 2023 12:12 PM
Did you know that glutathione is not only great for liver health, but it also promotes beautiful, radiant skin?Glutathione (GSH), often considered as an amino acid but actually a tripeptide, is an antioxidant primarily synthesized in the liver. Composed of cysteine, glutamic acid, and glycine, it plays a crucial role in the synthesis and repair of DNA and protein, as well as the synthesis of prostaglandins. With its involvement in various functions like amino acid transport, toxin and carcinogen metabolism, immune system function, prevention of oxidative cell damage, and activation of enzymes, it is undoubtedly the most important tripeptide in the body. While the benefits of supplementing with glutathione are numerous, two particularly compelling reasons are its positive impact on liver health and beautiful skin, which are the key focus of this article. However, before diving into the specifics of liver health and skin benefits, it's important to review the data on glutathione depletion and absorption. GSH depletion can occur due to various oxidative stressors such as radiation, v.infections, enviro toxins, household chemicals, heavy metals, surgery, inflammation, burns, septic shock, and dietary deficiencies of GSH precursors and enzyme cofactors. Additionally, research suggests that GSH levels tend to decline with age. The bioavailability of glutathione as a dietary supplement has encountered challenges in the past. Studies in the 1990s suggested that oral GSH might be inactivated by peptidases in the gut, as the levels of glutathione in the body did not seem to correlate with dietary intake, despite its presence in fruits, vegetables, and meats. Moreover, previous studies showed no significant increase in blood GSH levels when subjects were given high doses of 1,000-3,000 mg. As a result, alternative strategies like supplementation with NAC were used to boost GSH levels. In 2014, something interesting happened that changed the way we look at the bioavailability of GSH. A groundbreaking study published in the Journal of Agricultural and Food Chemistry shed new light on the old research. This study showed that GSH, when taken in its intact form as OPITAC, a yeast-derived glutathione by Kohjin/Mitsubishi, can actually be rapidly transported across intestinal epithelial cells. Once inside, it gets rapidly converted into oxidized glutathione (GSSG) and accumulates in red blood cells and the liver, with only a small presence in plasma. So, although the GSH was indeed absorbed, it didn't show up in blood plasma because it transformed into GSSG and stored in the red blood cells and the liver. The bottom line is, supplementing with GSH is an effective way to boost GSH levels in the body. This finding was further confirmed in another study that described how OPITAC, as a yeast-derived glutathione by Kohjin/Mitsubishi, is directly absorbed in its electrochemically reduced form in the intestine, then transported in the blood in bound forms, and eventually deposited into the liver in its reduced form. But here's where it gets even more significant. A six-month randomized, double-blinded, placebo-controlled trial involving 54 adults was conducted to investigate the effects of oral GSH supplementation (250 or 1,000 mg/day, as OPITAC glutathione, Kohjin/Mitsubishi) on GSH levels in various parts of the body, including blood, erythrocytes, plasma, lymphocytes, and exfoliated buccal mucosal cells. The results were astounding. After one, three, and six months, GSH levels in blood increased significantly compared to baseline in both dosage groups. At the six-month mark, GSH levels skyrocketed 30-35 percent in erythrocytes, plasma, and lymphocytes, and a mind-boggling 260 percent in buccal cells in the 1,000 mg group (P < 0.05). Even in the low-dose group, GSH levels in blood and erythrocytes increased by 17 and 29 percent, respectively (P < 0.05). This research clearly demonstrates that supplementation with GSH is not only effective for increasing GSH levels in the body but also for maintaining them. So, to sum it all up, the evidence speaks volumes - supplementing with GSH can have a profound impact on your body's GSH levels, and trust me, that's definitely a good thing! Liver HealthWhen it comes to our well-being, the liver is a true superhero. Let's dive into some fascinating details about this essential organ. Did you know that the liver is not only the largest reservoir of GSH (glutathione) but also a major site of GSH manufacture in the body? Pretty impressive, right? Special cells in the liver work tirelessly to synthesize GSH, which plays a crucial role in detoxification. Speaking of detoxification, the liver is a champion in this field. Its cells have sophisticated mechanisms to break down toxic substances, be it internal or external compounds. During the detoxification process, the liver attaches or conjugates the toxins to water-soluble substances. This attachment makes the toxic molecules more water-soluble, less harmful, and easier to eliminate via urine or bile. In fact, glutathione conjugation produces water-soluble mercaptates that are excreted via the kidneys, effectively detoxifying acetaminophen and nicotine. Isn't it amazing how this process helps our bodies get rid of harmful substances? But that's not all. Adequate levels of glutathione are crucial for the elimination of fat-soluble compounds, particularly heavy metals like mercury and lead. What's more, GSH serves as a cofactor for various peroxidase enzymes, aiding in the detoxification of peroxides generated from oxygen radical attacks on biological molecules. It also assists transhydrogenase enzymes in reducing oxidized centers on DNA, proteins, and other biomolecules. Talk about a multitasker! The practical significance of this liver superhero was demonstrated in a study involving workers exposed to lead. A group of five workers received GSH at 200 mg/day for 30 days, while five others served as the control group. The results were striking. The group receiving GSH showed a significant increase in ALA dehydratase activity (which is inhibited by lead) compared to the control group (p < 0.05). This indicates that GSH could be a valuable solution for treating patients with lead poisoning. So, let's take a moment to appreciate the remarkable liver and its incredible role in maintaining our health and well-being! Alcohol IntoxicationAlcohol consumption is widely recognized for its capability to induce hepatic steatosis, also known as fatty liver disease, and disrupt biomembranes due to hepatic lipid peroxidation. This can lead to various lifestyle-related diseases and even hepatic cirrhosis by diminishing hepatic physiological function. Nevertheless, animal studies have shown that hepatic damage caused by alcohol intoxication can be mitigated by glutathione (GSH), a powerful antioxidant found in cells. To further investigate the impact of GSH supplementation on the effects of alcohol intake, a human crossover comparative study was conducted. The study involved twenty healthy men and women who were grouped into three categories: placebo, 100 mg GSH (as OPITAC glutathione, Kohjin/Mitsubishi), and 30 mg curcumin. The study evaluated laboratory parameters, including breath alcohol concentration at different time intervals (20, 60, 120, and 180 minutes post-alcohol consumption) as measured by an alcohol checker. Additionally, subjective feelings were assessed through a questionnaire. During the study, all participants consumed whiskey in a quantity equal to their body weight multiplied by 1.25 mL, and were instructed to drink the entire sample within 10 minutes. The results revealed that the breath alcohol concentration in the group supplemented with GSH significantly decreased compared to the placebo and curcumin groups at 20 (p<0.01), 60 (p<0.01), 120 (p<0.05), and 180 (p<0.08) minutes post-consumption. Furthermore, the GSH group reported lower levels of "sleepiness," "headache," and "upset stomach" in the subjective feeling questionnaire. Importantly, the concentration of aspartate aminotransferase (AST), an indicator of alcohol-induced organ damage, was significantly lower in the GSH group after two months compared to the placebo group. The oral intake of GSH has demonstrated its effectiveness in reducing alcohol consumption-related stress and improving long-term hepatic function. These findings highlight the potential benefits of GSH supplementation in alleviating the detrimental effects of alcohol intoxication on the liver. Nonalcoholic fatty liver diseaseNonalcoholic fatty liver disease (NAFLD) is a condition characterized by the build-up of fat in the liver of individuals who consume little or no alcohol. Unfortunately, NAFLD is quite common, affecting nearly one-third of all American adults. Interestingly, it often presents without readily apparent signs or symptoms, sometimes resulting in complications, and can lead to liver inflammation and scarring as the fat accumulates. Additionally, NAFLD is typically associated with conditions such as insulin resistance, central obesity, reduced glucose tolerance, type-2 diabetes, and elevated triglyceride levels. Recognizing the substantial role glutathione (GSH) plays in phase 2 liver detoxification, a pilot trial was conducted to examine the therapeutic effects of GSH supplementation in patients with NAFLD. The trial included 29 individuals, and the patients were provided with daily oral supplementation of GSH at a dose of 300 mg (in the form of OPITAC glutathione, from Kohjin/Mitsubishi). The patients' clinical parameters were assessed before and after the GSH supplementation, and liver fat and fibrosis were quantified as well. The primary goal of the study was to determine any changes in alanine aminotransferase (ALT) levels. The results indicated a significant decrease in ALT levels following the GSH supplementation. Furthermore, triglycerides, non-esterified fatty acids, and ferritin levels also showed a reduction. This pilot study provides promising evidence for the potential therapeutic effects of oral glutathione administration, even at practical doses, in patients diagnosed with NAFLD. However, further investigation through large-scale clinical trials is necessary to validate its efficacy. In summary, NAFLD is a prevalent condition with potential serious consequences, but studies like the aforementioned pilot trial shed light on potential treatment options such as GSH supplementation. The findings demonstrate the need for continued research in order to provide more conclusive evidence and expand our understanding of NAFLD management. Beautiful SkinBy activating melanocytes in the skin, there is a notable increase in melanin formation, resulting in various blemishes such as freckles, pigmentation, and UV-induced skin spots, commonly known as age spots or liver spots. This is especially prominent after prolonged sun exposure and tanning. Age spots appear when melanin becomes concentrated or "clumped" in areas that have had years of frequent sun exposure. Luckily, there are materials like glutathione that can prevent or improve such pigmentation-related skin conditions. Another aspect to consider is skin pigmentation, wrinkles, and pores. In a study conducted with eight women in their 30s or early 40s, each supplemented with 100 mg/day of GSH (as OPITAC glutathione, Kohjin/Mitsubishi) for two months, their skin conditions were evaluated using the Robo Skin Analyzer. Several parameters were analyzed, including skin brightness, the amount and area of skin pigmentation, number of pores, and number of wrinkles under the eyes. It was observed that all subjects' skin brightness improved when measured on the second day of the study. Additionally, over the course of the two months, both the amount and area of skin pigmentation decreased, leading to an improvement in blemishes and pigmentation. Not only did glutathione exhibit a whitening effect, but it also reduced the number of wrinkles under the eyes and minimized pores. Furthermore, a randomized, double-blind, two-arm, placebo-controlled study was conducted with 60 otherwise healthy medical students. The purpose was to investigate whether supplementing with 500 mg of glutathione daily for four weeks would affect the skin melanin index compared to a placebo. Melanin indices were measured at six different sites on the body. The results demonstrated that melanin indices consistently decreased at all six sites in subjects who received glutathione after four weeks. The reductions were statistically significant compared to those who received the placebo at two sites: the right side of the face and the sun-exposed left forearm (p = 0.021 and 0.036, respectively). This improvement was likewise reflected in the reduction of UV spots. Importantly, both glutathione and placebo were well-tolerated. In conclusion, oral administration of glutathione leads to a lightening of skin color in the tested subjects. Skin LighteningSkin lightening is a process that is of interest to many individuals who seek to achieve a more even and radiant complexion. In recent studies, the use of a lozenge containing GSH 500 mg was explored as a means of skin lightening through an open-label, single-arm trial. The focus of this trial was to evaluate the buccal mucosa as a route for GSH administration and its potential in relation to skin lightening. It is worth noting that substances absorbed through the buccal route have the advantage of entering directly into the systemic circulation, effectively bypassing the gastrointestinal tract. The trial involved thirty Filipino females with Fitzpatrick skin types IV or V who received a daily glutathione-containing lozenge for eight weeks. The results from this trial demonstrated a significant decrease in melanin indices from baseline to endpoint. What is fascinating is that this visible change became evident in as little as two weeks. It is important to highlight that during this trial, there were no recorded serious adverse events, and the laboratory examination findings remained normal. Based on these findings, the researchers concluded that the lozenge containing glutathione was deemed safe and effective in lightening the skin of Filipino women. In addition to the aforementioned buccal route administration, another interesting approach that emerged from the studies is the topical application of GSH. A double-blind randomized clinical trial35 conducted in Yogyakarta, Indonesia, involved 74 healthy Indonesian women, with an average age of 33.3 ± 5.9 years, to explore the potential benefits of topical GSH. The trial subjects received supervised applications of facial wash twice a day, along with day cream containing sunscreen and night cream. The subjects were divided into three groups based on the active ingredients of the tested products, which included GSH (as OPITAC glutathione, Kohjin/Mitsubishi) at concentrations of 0.1 percent and 0.5 percent, and a control group without GSH. Throughout the trial, the effects of the tested products on skin color and pigmentation were measured using colorimetry with Chromameter Minolta for L. Compared to the baseline measurements, there were significant increases in lightness (L) detected as early as week 2 for the group using GSH at 0.1 percent concentration. Interestingly, this increase was significantly higher compared to the group using GSH at the higher concentration of 0.5 percent, as well as the group without GSH. It is important to note that hyperpigmented lesions also showed improvement, particularly in the group using GSH at 0.5 percent concentration, which displayed superiority compared to the other groups at week 8. In conclusion, the skin care products containing GSH at 0.1 percent and 0.5 percent concentrations were found to be effective in lightening facial skin. The findings from these studies shed light on the potential benefits of GSH in achieving skin lightening, either through buccal administration or topical application. It is worth noting that these studies focused on specific populations and more research is necessary to explore its effectiveness and safety across different skin types and ethnicities. In summary, the administration of
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6592) How Melatonin Can Support a Healthy Sleep Cycle and More
Date:
May 11, 2022 12:19 PM
Did you know that melatonin is a powerful free radical scavenger? This means that it helps protect the body from damage caused by harmful molecules called radicals. Melatonin is also naturally produced in the pineal gland and is present in high amounts in the GI tract. We will discuss some of the ways that melatonin supports health and wellness. Melatonin and the body Melatonin is a hormone that is produced by the pineal gland in the brain. It is responsible for regulating the body's internal clock, or circadian rhythm. The production of melatonin increases at night, and decreases during the day. This hormone is also available in supplement form, and is often used to treat jet lag or insomnia. When taken as a supplement, melatonin works by resetting the body's internal clock, making it easier to fall asleep and stay asleep. Additionally, melatonin may also help to reduce anxiety and improve mood. As a result, this hormone plays an important role in regulating the body's sleep-wake cycle. How does melatonin support a healthy sleep cycle? Melatonin is a hormone that help regulate the sleep cycle. The production of melatonin is stimulated by darkness and inhibited by light. As a result, melatonin levels typically start to rise in the evening as the sun sets, and they remain high throughout the night. In the morning, light exposure causes melatonin levels to drop, helping to wake us up and start the day. Melatonin supplements can be used to help people who have difficulty sleeping and staying asleep. This hormone helps to reset the body's natural sleep cycle, making it easier to fall asleep and stay asleep. As a result, melatonin can be an effective way to support a healthy sleep cycle. What are some of the other benefits of melatonin? It can help to boost the immune system, protect against cancer, and reduce inflammation. Research suggests that melatonin may also have neuroprotective effects and could be beneficial for people with Alzheimer's disease or Parkinson's disease. Tips for getting a good night's sleep Most people need about seven to eight hours of sleep a day. However, many people find it difficult to get enough rest. There are a number of things you can do to improve your sleep habits. First, create a regular sleep schedule and stick to it as much as possible. Go to bed and wake up at the same time each day, even on weekends. Second, create a relaxing bedtime routine. This might include taking a warm shower, reading a book, or writing in a journal. Third, create a comfortable sleep environment by making sure your bedroom is dark, quiet, and cool. Fourth, avoid caffeine and alcohol before bed. Caffeine can make it difficult to fall asleep and stay asleep, while alcohol can disrupt your sleep cycle. Finally, try not to use electronic devices in bed. The blue light emitted by screens can interfere with your body's natural sleep rhythm and take melatonin. By following these tips, you can improve your chances of getting a good night's sleep. Scientific research Research on melatonin began in the 1950s, and since then, numerous studies have been conducted on its potential health benefits. Some of the most promising research has found that melatonin may help to prevent cancer. In one study, melatonin supplements were found to reduce the risk of breast cancer recurrence by half. Other research has shown that melatonin may help to protect against colon cancer, prostate cancer, and ovarian cancer. Additionally, melatonin has been shown to boost the effectiveness of chemotherapy drugs and radiation therapy. While more research is needed to confirm the exact role of melatonin in cancer prevention, the available evidence suggests that it could play a significant role in protecting against this disease. Therefore, it may be worth considering supplementing with melatonin if you are at high risk for cancer or are undergoing treatment for this disease. References:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6407) Curcumin: The Superfood That Fights Inflammation
Date:
April 30, 2022 09:39 AM
What is inflammation and what causes it? Inflammation is a natural process that helps the body heal. It occurs when the immune system responds to an injury or infection. The symptoms of inflammation include redness, swelling, and pain. While inflammation is a necessary part of the healing process, chronic inflammation can lead to serious health problems. Chronic inflammation is often caused by lifestyle factors, such as smoking, obesity, and stress. dietary factors can also contribute to chronic inflammation, including a diet high in sugar. Sugar causes the body to release inflammatory chemicals that can damage tissues and lead to disease. Therefore, reducing sugar intake can help to reduce the risk of chronic inflammation. What are the symptoms of inflammation? Inflammation is a natural process in the body that helps to protect us from injury and illness. It occurs when the immune system detects harmful stimuli, such as pathogens or damaged tissue, and triggers a series of reactions which boost the production of white blood cells. However, if inflammation becomes excessive or chronic, it can cause a range of physical symptoms, including redness and swelling at the site of inflammation, increased pain sensitivity, headache, fatigue and fever. Other common symptoms include irritation in the eyes and mouth, digestive issues like diarrhea and nausea, rashes or skin lesions, changes in appetite and mood swings. If you are experiencing any of these symptoms on a regular basis, it is important to take anti-inflammatory supplements to help control inflammation. One such supplement is curcumin. How can curcumin help to reduce inflammation in the body? Curcumin is a compound that can be found in turmeric, a bright yellow spice commonly used in cooking. This powerful phytochemical has been shown to have potent anti-inflammatory properties, and can help to reduce inflammation throughout the body. One of the main ways that curcumin achieves this effect is by blocking an enzyme known as cyclooxygenase, or COX. This enzyme is responsible for producing pro-inflammatory compounds called prostaglandins that are often associated with pain and swelling. By preventing their production, curcumin can help to control acute and chronic inflammation in the body, thereby reducing the risk of conditions such as arthritis, heart disease, and cancer. In addition to blocking COX activity, curcumin helps to reduce oxidative stress by inducing production of antioxidants like superoxide dismutase. Overall, these mechanisms make curcumin an excellent natural treatment for chronic inflammation and a host of related health problems. How to add curcumin to your diet? Adding curcumin to your diet is a great way to reap the many health benefits of this powerful natural compound. There are several different ways that you can incorporate more curcumin into your daily routine, from simply adding it to your favorite recipes to taking a supplement. For example, you can start off by incorporating turmeric into your cooking, as turmeric is one of the richest sources of curcumin in nature. Additionally, there are many curcumin supplements available on the market that can be easily incorporated into your daily routine. Ultimately, by making these simple changes in your diet, you can enjoy all the great benefits of curcumin for overall health and well-being. The benefits of taking curcumin regularly Curcumin is a compound found in the spice turmeric. It has powerful anti-inflammatory and antioxidant effects, and it has been used for centuries in traditional Chinese and Indian medicine. Recently, curcumin has begun to gain recognition in the Western world as well. A growing body of research suggests that curcumin may have a wide range of health benefits, including the ability to improve cognitive function, reduce inflammation, and even ward off cancer. Curcumin is generally well tolerated, but it can interact with certain medications. However, for many people, taking curcumin regularly can be a safe and effective way to improve overall health. To fight inflammation, reduce sugar consumption and take curcumin To help reduce inflammation in the body, it is important to reduce your sugar intake and take curcumin supplements. These steps are vital because chronic inflammation has been linked to a wide range of health conditions, such as heart disease, diabetes, and even cancer. Additionally, sugar consumption can also worsen inflammation by triggering the release of inflammatory chemicals like cytokines and free radicals. One of the best ways to fight against inflammation is to take curcumin supplements on a regular basis. Curcumin is a natural anti-inflammatory agent found in turmeric, a spice that is commonly used in Indian cooking. Research has shown that curcumin can be just as effective as anti-inflammatory drugs in reducing levels of tumor necrosis factor alpha (TNF-alpha), a potent inflammatory chemical released by cells. Furthermore, studies have also shown that taking curcumin regularly may benefit overall health and prevent certain age-related diseases like Alzheimer's. Overall, reducing your sugar intake and taking curcumin supplements are two effective ways to fight inflammation and improve overall health. By following these simple steps, you can help protect yourself from the many negative effects of chronic inflammation.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6401) Curcumin and Grapeseed
Date:
September 01, 2020 11:03 AM
Smoking, Chemical exposure, pesticides, nutrient deficiencies, to much sun exposure, and over the counter drugs and prescriptions can cause cancer. In the news, there are forever chemical roundup found in our water supply, it is no wonder we are laden with cancer as a society. Fortunately, a healthy cancer preventing diet along with natural plant compounds can be far more effective and cost a lot less than conventional care alone. Two top suggested natural medicines available right now are curcumin and grape seed extract. These two herbs are an amazing pair, curcumin is a fat soluble herb to fight oxidation on the fatty oil side in the body and grape seed extract is water soluble, making it a great antioxidant to fight oxidative stress on the water side of a cell. Cells in the body are made up of oil(fats) and water. The impact of both together on your health is virtually miraculous. Curcumin neutralizes unstable free radicals that take electrons from nearby molecules, and stop them from creating a cascade of damaged cells. It also reduces inflammation reduces inflammation markers in the body to prevent prevent tissue degradation. Curcumin has been shown to stop the changes that happen from free radical damage causing normal cells to become cancerous, and tumorous formations, and can even stop cancer from metastasizing or migrating to other parts of the body. Published studies anticancer activity have found that it can suppress breast, prostate, liver, skin, colon and lung cancer cells. Curcumin Must Be Absorbed To Be Useful One of the challenges or using curcumin for cancer prevention and treatment is that not all curcumin extracts are easily absorbable into the body. Blending curcumin in Turmeric essential oil enhances absorption and provides the additional benefits of ar-turmerone, a compound in the oil. Curcumin Makes Chemo More Effective There is big potential for curcumin when used with conventional treatment. BCM-95 curcumin, through research, has shown to sensitize human colon cancer cells to chemotherapy treatment where it would otherwise be resistant to this form of treatment. In some cases tumor recurrence rates can be as high as 60% but when treated with curcumin while under conventional treatment, curcumin boosted the effectiveness of the chemo drug 5-fluorouracil against cancer stem cells. Curcumin has great potential in conjunction with conventional cancer treatment and recovery. It has been found that as chemo treatment progresses, cancer cells become resistant to the chemo treatment and the dosage has to be increased as the treatment continues increasing the toxic side effects. Fortunately, curcumin taken in conjunction with conventional cancer treatment can improve the effectiveness of chemo and so the dosage can be lowered reducing the toxic side effects for individuals. This is good news! Curcumin Protects The Body During Cancer Treatment In a clinical study with curcumin, it showed to alleviate side effects of one of the most common treatments of prostate cancer known as external beam radiotherapy (EBRT) where the doctor uses radiation to destroy tumorous cancel cells. This sort of therapy has many side effects making it a difficult therapy for most men. I often causes sexual dysfunction, digestive problems, urinary tract pain and loss of control. The higher the radiation dosage the more effective the treatment is but this causes significant discomfort, that is why most doctors lean towards lower dosages which makes the treatment less effective. The clinical study administered 3000mg of BCM-95 curcumin that is 1000mg x 3 per day or a placebo one week before therapy started and during the treatment length. Each capsule of curcumin contained curcuminoids, curcumin, demethoxycurcumin, bisdemethoxycurcumin, and essential oil of turmeric, this is a full spectrum curcumin supplement. At the end of the treatment which lasted 20 weeks the most dramatic difference between the two groups in the study was urinary symptoms. The curcumin group said a 50% decrease in symptoms or side effects of the radiation. Also, researchers noted that the curcumin did not reduce the efficacy of the EBRT.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6362) Hintonia Latiflora Combined With Key Nutrients for Blood Sugar Control
Date:
August 31, 2020 12:36 PM
Type 2 diabetes is increasing at an alarming rate. With certain life style changes, exercise, along with Sucontral D, one can reduce blood sugar. Hintonia latiflora combined with key nutrients for blood sugar control can:
The CDC reports that 84 million Americans have pre diabetes which is higher than normal blood sugar levels but not yet considered type 2 diabetes. It is said there is an additional 30 million type 2 diabetes and roughly 24% do not know they have high blood sugar levels. Hintonia has been clinically studied in Europe for decades, 60 years to be exact, clinically studied to help bot pre- and type 2 diabetes. By the end of these studies, participants in the studies experienced an average of 10.4% improvement in their A1C, and 23.3% improvement in their fasting glucose levels and 24.9% on their postprandial glucose levels. This is quite significant indeed. In conclusion, the clinical studies proved Hintonia improved blood glucose levels. out of 114 patients 45 were able to reduce their medication and 10 were able to eliminate their medication all together.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6361) Study shows that vitamin D can help lower your risk of Type 2diabetes
Date:
May 21, 2019 04:43 PM
Many people are frightened by the prospect of type 2 diabetes given all the risks that it comes with which include regular finger pricks for tests, and a host of complications for diseases like kidney and liver damage, and a higher risk of having stroke or heart disease. Preventing type 2 diabetes is then essential and recent studies have shown that vitamin D can help in that regard. The researchers already knew that vitamin D can help with insulin sensitivity and pancrease beta cells function so they wanted to find out the link between vitamin D and blood glucose levels. 680 women between the ages of 35 and 74 were experimented upon and they were given vitamin D supplementation and exposure to sunlight. They found a negative association between vitamin D and blood glucose level meaning that vitamin D, especially being exposed to sunlight, reduced the levels of glucose in the blood. They also found that vitamin D deficiency was associated with a high level of glucose in the blood. This present study was found to correlate with other studies between vitamin D presence in the body and glucose levels. Key Takeaways:
"Specifically, those who had high levels of vitamin D enjoyed a 55 percent lower chance of developing type 2 diabetes, a 51 percent lower change of metabolic syndrome, and a 33 percent lower risk of developing cardiovascular disease." Read more: https://www.naturalnews.com/2019-04-11-vitamin-d-lowers-your-risk-of-type-2-diabetes.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6337) For the men: Multivitamins can keep heart disease at bay
Date:
May 09, 2019 09:51 AM
When one gets insufficient nutrients from the diet, taking multivitamins can be a healthy way to improve this. A recent study has shown that men who take multivitamins a lot are less prone to diseases related to the heart such as stroke and even death related to cardiovascular diseases. But how can cardiovascular diseases be prevented using multivitamins? There are few studies in this direction although a lot of studies have been done on the health benefits of multivitamins. That is why a team of researchers in the US embarked on a study of the incidence of multivitamin usage on major cardiovascular diseases like stroke, heart attack, and cardiovascular death. The study was a long term prospective study. The study was conducted between 1982 and 1995 using 18,530 healthy men that were aged from 40 years and above who the researchers followed. The participants reported their lifestyle habits and as well as their intake of certain foods. Throughout the follow up study, there were only 1,697 reported cases of cardiovascular diseases. This made the researchers to conclude that taking multivitamins means a reduced risk to cardiovascular diseases. It is then appropriate for one to choose the right kind of supplements to improve the diet. Key Takeaways:
"In conducting the study, the research team followed 18,530 healthy men aged 40 years old or over from 1982 to 1995. The participants were initially enrolled from the Physicians’ Health Study I cohort" Read more: https://www.naturalnews.com/2019-04-16-multivitamins-keep-heart-disease-at-bay.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6289) Omega-3s found to benefit children diagnosed with behavioraldisorders
Date:
April 26, 2019 03:15 PM
It is common knowledge that omega-3s can promote heart health, but now studies are showing that they can also help children who are suffering from behavioral disorders. A study was published within the Journal of Dietary Supplements that showed kids aged six to twelve showed great improvement in regards to their overall health status and quality of life when they were given doses of omega-3s on a regular basis. The study evaluated exactly 942 children, so the findings are quite consistent. Key Takeaways:
"To evaluate the effectiveness of omega-3 fatty acid supplementation, the researchers used the Kidscreen-10 and the Strengths and Difficulties Questionnaires (SDQ). The SDQ examines 25 positive and negative attributes, which are divided among five scales: emotional symptoms, conduct problems, hyperactivity or inattention, peer relationship problems, and prosocial behavior." Read more: https://www.naturalnews.com/2019-03-17-omega-3-benefits-children-with-behavioral-disorders.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6196) Compounds in pomegranate juice found to trigger cancer cell death
Date:
February 09, 2019 10:05 AM
Cancer can be slowed down or perhaps even prevented with a proper diet containing anti-oxidants and anti-inflammatory agents. Now research has shown that pomegranate juice is a strong anti-cancer agent. It contains strong chemical compounds that heal, like ellagic acid and luteolin which combine to prevent the growth of cancer cells, in particular in regards to prostate cancer. Pomegranate juice is beneficial in other ways too because it is rich in vitamins, antioxidants, helps aid digestion, supports and promotes heart health. Key Takeaways:
"According to research, pomegranate juice and pomegranate extract contain powerful healing chemical compounds such as luteolin and ellagic acid that effectively work together to help prevent cancer cell growth, particularly prostate cancer cells." Read more: https://www.healthnutnews.com/compounds-in-pomegranate-juice-found-to-trigger-cancer-cell-death/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6014) Camu camu fruits are rich in an anthocyanin that stops tumors fromgrowing
Date:
January 16, 2019 08:50 AM
Chrysanthemin is a naturally occurring, odorless, but colorful pigment, normally found in blueberries, acai berries and camu camu fruits. Recently, the pigment made scientific news, which was published in the African Journal of Traditional, Complementary, and Alternative Medicine. Chinese researchers used an array of sophisticated tests to observe how chrysanthemin interacted with and affected prostate cancer cells. The testing and observation revealed that chysanthemin not only inhibited cell growth, but also actively induced cancer cell death. Besides this new and stunning research spotlighting chrysanthemin's potential as a cancer fighter, the substance has other purported health benefits. Data suggests the pigment may be a useful adjunct in the treatment if diabetes and cardiovascular disease. It may also aid cognitive function, skeletal issues and liver function. Study also suggests chrysanthemin can fight inflammation and High fat in the blood. Key Takeaways:
"A study published in the African Journal of Traditional, Complementary and Alternative Medicines revealed that chrysanthemin can stop the development of cancerous tumors." Read more: https://www.naturalnews.com/2019-01-08-camu-camu-fruits-are-rich-in-an-anthocyanin-that-stop-tumor-progression.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5966) 12 Benefits and Uses of Argan Oil
Date:
December 12, 2018 09:09 AM
Argan oil is getting a lot of attention in recent years. It is something that is used by a lot of people all over the world. With that being said, there are plenty of countries who do not use it religiously. Some of the benefits of this oil include the moisturizing of your skin and the ability to slow down the aging process for some people. The use of oil is a practice that goes back for many years. Key Takeaways:
"One test-tube study applied polyphenolic compounds from argan oil to prostate cancer cells. The extract inhibited cancer cell growth by 50% compared to the control group (14)." Read more: https://www.healthline.com/nutrition/argan-oil
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5893) Pumpkin Seeds: The Antioxidant Seeds that Combat Diabetes, HeartDisease & Cancer Cells
Date:
December 11, 2018 11:22 AM
Pumpkins don't get the attention of other vegetables. Even during their season, it's the pies made from the meat of the pumpkin that get most of the table time. However, pumpkin seeds should not be relegated to the trash. Like sunflower, and other seeds, they make good snacking. And they have a lot of health benefits for users. For example, they're full of antioxidants, like many veggies, which makes them useful for warding off many unwanted conditions. They're good for hearts and for leveling blood sugar. Study has shown that the seeds benefit the heart in an array of ways. Nitric oxide is enhanced, while blood pressure and cholesterol are lowered. The seeds are protein-packed and fiber-rich, which means that sugar is absorbed more slowly. The seeds are also rich in tryptophan and magnesium, known to promote optimal sleep. Study has also shown that sperm count was enhanced and abnormalities were improved when rodent subjects were given pumpkin seeds. Certain seed properties may have anti-cancer effects as well, even the ability to help with overactive bladder syndrome. Key Takeaways:
"However, there are many benefits of pumpkin seeds that make them a worthy addition to your diet, both during the holidays and all year round." Read more: https://draxe.com/pumpkin-seeds/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5892) Gotu Kola is one of the most useful plant remedies found inAyurvedic medicine
Date:
December 08, 2018 11:16 AM
Plant remedies around world are getting more and more attention. People are realizing that there is a very high use case for these things and it is being accepted around the world. Gotu Kola is a planet remedy that is common due to its usefulness for various different things that are found in people. At the end of the day, not all plant remedies will work for everyone. However, if you find one that does work for you, it can work wonders. Key Takeaways:
"Psychoactive substances target the brain and nervous system, resulting to an altered mental state. This psychoactive property is the reason why Gotu Kola is traditionally used for enhancing memory, longevity and cognition. In addition to these, Gotu Kola has also been used to treat skin conditions, including leprosy, lupus, varicose ulcers, eczema, psoriasis." Read more: https://www.naturalnews.com/2018-11-22-gotu-kola-in-ayurvedic-medicine.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5887) 5 Ginger Benefits for Men That You Should Know About
Date:
November 29, 2018 12:32 PM
Did you know that ginger is really beneficial for a man's health? The nutrients found in ginger helps combat erectile dysfunction and also infertility. The ginger extract helps ward off cancer cell's growth in the prostate. Ginger also contains properties that are used for treating colon cancer, a disease that affects more men than women. Ginger's nutrients also help to prevent heart disease. Finally, magnesium and manganese have been shown to stabilize blood sugar levels, which is especially helpful for diabetics. Key Takeaways:
"These properties are useful in the treatment of colon cancer. In the light of these findings, scientists are working on making a drug that contains gingerol and helps serve as an anti-cancer drug." Read more: http://heraldoffashion.com/5-ginger-benefits-for-men-that-you-should-know-about/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5865) Curcumin Targets Cancer Cells
Date:
October 29, 2018 01:51 PM
Curcumin is something that has received a lot of fan fare in recent months. While many people have never heard of it, there are scientists who have come out and said that it has some massive health benefits. Like many other compounds that are within foods, it is able to deliver things that some may not think is possible. It targets cancer cells and there are people who have reported that they think that it works for them. Key Takeaways:
"Recent studies highlight turmeric’s superiority by demonstrating its potential to target some of the deadliest forms of cancer while not harming any healthy cells, as published in the Proceedings of the National Academy of Sciences." Read more: https://www.worldhealth.net/news/curcumin-targets-cancer-cells/
CBD cane reduce inflammation and assist in fighting things that go wrong with the body. CBD can reduce stress and anxiety.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5805) Riboflavin Foods: Top 15 Vitamin B2 Foods & Their Benefits
Date:
October 22, 2018 09:52 AM
When it comes to being healthy and in top physical shape, the new information and vast amount of insight that has become available thanks to the internet has made people more conscious about their health and their prosperity. In doing so, they are often looking for foods with increased nutritional benefits, including foods that have hard to find vitamins such as those with Vitamin B2 and other similar ones that help them maintain a good and positive health. Key Takeaways:
"Fortunately, getting enough riboflavin in your diet is easy and can be as simple as making a few strategic swaps in your meals." Read more: https://draxe.com/riboflavin-foods/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5799) 5 undeniable ways to protect your prostate
Date:
April 12, 2018 05:17 PM
Men are not as proactive as women in taking care of their health. One common problem men face is prostate problems, but 5 simple self care steps may help prevent problems before they arise. For the health of your prostate, consider the following lifestyle changes. Reducing stress, eliminating foods such as red meat, alcohol and processed foods from your diet, while adding foods rich in antioxidants. If you can't do this through diet consider using a targeted supplement for prostate health. And last, but never least, add exercise to your daily routine. Key Takeaways:
"Easier said than done, but not making it any less important, stress is a key element that promotes and exacerbates prostate related issues. This stress can originate from many different areas, but most often stems from unhealthy relationships, job settings, and financial challenges." Read more: https://www.naturalnews.com/2018-04-10-5-undeniable-ways-to-protect-your-prostate.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5577) Antioxidant power: Blueberry extract found to improve health outcomes for women receiving radiation for cervical cancer, reducing the damaging effects of the therapy
Date:
January 06, 2018 03:59 PM
Blueberries have long been known to be a superfood with their high amounts of anti-oxidants and anti-inflammatories, but they are now being show to have a positive effect on radiation treatment. There have been positive studies showing resveratrol, a compound in blueberries, works well with promoting radiation and treatment in prostate cancer cells and it is doing the same with cervical cancer cells. This research is highly promising and also shows the wonderful way that nature works well with modern medicine to promote our body's natural defenses. Key Takeaways:
"The extract of blueberry, which is a known superfood, can be beneficial to cervical cancer patients that undergo radiation therapy, according to a study." Read more: https://www.naturalnews.com/2018-01-04-blueberry-extract-found-to-improve-health-outcomes-for-women-receiving-radiation-for-cervical-cancer.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5482) Vitamin K: Your New Superhero For a Healthy Living
Date:
November 15, 2017 07:59 AM
Vitamin K is the latest of the vitamins being better understood in the body. The latest research indicates it's good for a variety of health concerns and even in age prevention. Vitamin K supports dental health, strong bones which are correlated with smooth skin, and even heart health. Although relatively new to mainstream media, vitamin K plays a vital role in the body. It is found in animal products, in high quantities in dairy and also in fermented and cultured food. Keep eating healthy to keep up your vitamin K. Key Takeaways:
"K2 is vital for calcium regulation in the body, building strong bones and breaking down unwanted calcification." Read more: http://www.longevitylive.com/health-living/vitamin-k-your-new-superhero-for-a-healthy-living/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5397) Annatto: Is This Natural Food Dye Safe?
Date:
October 06, 2017 10:14 AM
Annato is something that has been used for a very long time. It has a very distinct peppery taste. It gives dishes the extra kick they need to be something very worthwhile. Food coloring has gotten a very bad reputation over the years because of the effects it can create, but Annato does not have any added chemicals in it. It is safe to add to food and just gives it a better look and taste. Key Takeaways:
"A case study published in the Annals of Allergy reported on a patient who suffered from symptoms like hives, swelling and low blood pressure just 20 minutes after eating a type of cereal that contained annatto dye." Read more: https://draxe.com/annatto/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5313) Look At What Happens To Your Body After Eating At Least One Nut A Day!!
Date:
September 16, 2017 12:14 PM
Eating just one nut a day is very good for you. You can notice changes in your body after eating only one nut a day. A walnut is a very rich food and only a few people eat it regularly. There are so many health benefits that nuts offer. There are vitamins and minerals and antioxidants that are found in nuts. They can help to prevent cancer as well. They help to prevent breast and prostate cancer in particular. https://www.youtube.com/watch?v=WqtDMZ3FO04&rel=0Key Takeaways:
"Undoubtedly, ingredients enough to transform this food into an ingredient that we must add to our meals."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5252) Cancer-fighting super foods
Date:
August 30, 2017 12:14 PM
A diet high in phytonutrients, which are contained in vegetables is recommended to all persons to fight off cancer causing cells. In fact, it is recommended that people eat five to nine full servings of fresh fruits and vegetables daily. The article says that it recommends six of these fresh foods in particular. What is interesting is that it only mentions five. The ones listed are broccoli, berries, tomatoes, walnuts, and garlic. The list of cancers mentioned that are fought off by these particular fresh foods is an astounding number. Key Takeaways:
"Broccoli helps fight breast, liver, lung, prostate, skin, stomach, and bladder cancers." Read more: http://www.thedailystar.net/health/health-tips/cancer-fighting-super-foods-1454506
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5197) Health Benefits of Stinging Nettle (Urtica Dioica) | Natural Cures
Date:
August 28, 2017 12:14 PM
Stinging nettle has a lot of good health benefits that people can gain by eating it. This plant is famous for its ability to help people with their respiratory problems, like asthma. It prevents men from getting prostate cancer and it also helps your kidneys. It detoxifies the kidneys and will help people avoid kidney stones. It is also great for your hair as well. Many parts of the body will benefit from this amazing food. https://www.youtube.com/watch?v=bbGSgP2d7Ac&rel=0Key Takeaways:
"Because it's a powerful diuretic, it helps to detoxify the kidneys."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5190) Almost half of cannabidiol users stop using over-the-counter medicines, survey says
Date:
August 09, 2017 09:14 AM
This article deals with a study about a substance in marijuana and hemp called CBD. It states that half of the people that used this substance were able to stop taking traditional medicine. It also compares the CBD that comes from the hemp plant to the CBD taken from marijuana. It states the CBD taken from hemp is less expensive but less effective. This article is pro CBD and makes good points in favor of the substance. Key Takeaways:
"Users said that the pros of using CBD products were medical relief of their conditions without having the “high” effects caused by THC." Read more: http://gearsofbiz.com/almost-half-of-cannabidiol-users-stop-using-over-the-counter-medicines-survey-says/621
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5100) The Best Natural Treatments And Medicinal Plants For Liver Detoxification
Date:
August 06, 2017 09:14 AM
There are some great natural treatments and medicinal plants for liver detoxification. The liver is a very vital organ and it detoxifies your entire body. It synthesizes proteins and removes blood waste and it is responsible for the metabolism as well as the immune system. It also is responsible for processing all sorts of toxic substances. The good news is that the liver is actually the only organ that has the ability to regenerate and can function even when it is affected in a proportion of 80 to 90 percent. Key Takeaways:
"The good news is that the liver is the only organ that has the ability to regenerate and can function even when it is affected in a proportion of 80-90%." Read more: https://www.healththoroughfare.com/medicine/best-natural-treatments-medicinal-plants-liver-detoxification/1142
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5093) Prostate cancer breakthrough: Combination of three plant-based nutrients found to MELT AWAY prostate cancer cells
Date:
July 03, 2017 12:14 PM
A study by the University of Texas, Austin, has found that there is potential for treatment of prostate cancer using compounds found in common foods. ursolic acid, commonly found in apple peel, curcumin, found in the spice tumeric, and resveratrol, found in red grapes. These three compounds were tested together as a new combination approach to creating treatments. Working together, these compounds caused shrinkage of tumor cells and changed the way the cancerous cells metabolized nutrients that allow them to grow out of control. Key Takeaways:
"A fascinating new study published in Precision Oncology has found that a combination of three plant-based nutrients “melts away” prostate cancer cells." Read more: http://www.naturalnews.com/2017-06-30-prostate-cancer-breakthrough-combination-of-three-plant-based-nutrients-found-to-melt-away-prostate-cancer-cells.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4919) Hematuria: What Causes Blood in Urine?
Date:
July 02, 2017 09:14 AM
Hematuria is the term for having blood present in your urine. it can be caused by urinary tract infections, kidney stones, and more. Often, it is not serious, but it can be a sign of a serious problem. You should see a doctor but there are things you can do to treat the root problem. It can also be caused by a variety of things. Any person can have to deal with this issue in their lifetime regardless of age or gender. Key Takeaways:
"Blood in the urine can originate at any point along the urinary tract from the kidneys to the urethra" Read more: https://draxe.com/hematuria/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4914) Compounds in Turmeric, Red grapes, Apple Peels, & Berries May Help in Treating Prostate Cancer
Date:
June 28, 2017 07:14 PM
Scientists have some lab-tested evidence showing that certain natural foods, especially eaten together, have an effect in stopping the growth of cancer cells in the prostrate and elsewhere in the body. More specifically, turmeric, red grapes, and apple peel contain compounds that, when taken together, can starve cancer tumors in the prostrate. These ingredients were tested successfully in mice and may apply to the human body as well. Researchers encourage a greater intake of turmeric, red grapes, apples, and berries, which are already healthy foods for the body. Read more: Compounds in Turmeric, Red grapes, Apple Peels, & Berries May Help in Treating Prostate Cancer
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4903) Why You Need Choline And How To Get It
Date:
June 12, 2017 12:14 PM
choline, a vital, vitamin-like nutrient, is overestimated in its importance. involved in the metabolic process, the transport of lipids, and synthesis of neurotransmitters, just to name a few. both low levels and high levels of choline have negative health risks. a recent study found that choline is also vital to bone health in humans. low levels of choline have been linked to low bone density.Choline deficiency was found to be common in middle aged men and older women. The body can synthesize some choline on its own, but most of your choline comes from your diet, so make sure you eat choline risk foods and get your daily dose of bone building nutrients! Key Takeaways:
"They discovered that the average choline intake was significantly lower than the daily recommended intake — 255 mg/d for women and 259 mg/d for men aged 46–49 years, and for older adults 71-74 years, the intake was 265 mg/d for women and 258 mg/d for men." Read more: https://www.informationng.com/2017/06/need-choline-get.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4819) Starving prostate cancer with what you eat: Apple peels, red grapes, turmeric
Date:
June 11, 2017 07:14 AM
According to recent research conducted on nutrition at the University of Texas, various natural compounds may help prevent the development of prostate cancer. These compounds are plant-based chemicals commonly found in foods such as tumeric, apple peels, rosemary, tumeric, and certain berries. Certain combinations of these chemicals can block cancer cells from obtaining nutrients they require to survive. The study effectively slowed tumor growth in mice without detrimental health effects. This research is especially promising for those with an increased risk of cancer due to obesity or a chronic inflammation. Read more: Starving prostate cancer with what you eat: Apple peels, red grapes, turmeric
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4808) 7 disease-fighting foods to incorporate into your eating habits
Date:
June 01, 2017 12:14 PM
Garlic and onions are one of the main vegetables that can fight diseases. Together they lower the risk of prostate cancer while beans offer the healthy benefit of vegetables while keeping the heart healthy. Ginger is a cheap and simple antidote that can cure diarrhea, the Chinese have been using Ginger to cure diarrhea for over 2000 years. Mint has many uses like it can be used to cure asthma anxiety and can make the face pimple free when used as a mask. Key Takeaways:
"Disease prevention can be as simple as being more mindful of the food you eat." Read more: http://www.naturalnews.com/2017-05-25-7-disease-fighting-foods-eating-habits.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4748) Expert calls for government to stop lying about cannabis
Date:
May 21, 2017 11:44 AM
Good grammar is extremely important. The rules are not just stuffy constructs from the past. They are a way to help you to sound educated and professional which can get you ahead in life. This is especially true if you write professionally. These writings can make or break your job prospects. Having a reviewer go over what you wrote can help because they can catch the mistakes you might otherwise miss. It could save you hassle and embarrassment. Key Takeaways:
"The drug war has been an abysmal failure at an awful cost to the taxpayer and even greater cost to human life. And as a physician I would say — to human health."" Read more: http://www.stuff.co.nz/national/health/92674696/expert-calls-for-government-to-stop-lying-about-cannabis
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4660) Pros and Cons to Know About the Atkins Diet
Date:
May 10, 2017 10:44 AM
The Atkins diet has been around for a number of years. Many people love it because it helps you lose weight quickly and it helps prevent many crippling diseases. It also can be quite easy to follow since it doesn't require calorie counting or measuring. You simply need to follow some guidelines as to what you can eat and then the weight comes off. It also has several things going against it. It can cause discomfort because it can make you very tired, making it harder to exercise. It can also cause some stomach issues. Bad breath can also be a side effect. It doesn't allow for a wide variety of foods. Therefore, you have to weigh the pros and the cons before attempting this diet. Read more: Pros and Cons to Know About the Atkins Diet
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4580) Prostate inflammation (prostatitis): Causes, symptoms, and treatment
Date:
May 03, 2017 07:59 AM
Prostatitis, also know as prostate inflammation is a prostate condition in men brought on by an infection . The infection can be caused by a number of things, including: sex with someone with an STD, anal sex and from use of a catheter. There are three types of infections: acute, bacterial and non-bacterial. Symptoms generally involve pain in scrotal region and can be diagnosed through blood tests and the like. There are a number of homeopathic options to treating prostatitis. The general course is to stay well hydrated and ingest plenty of fiber. Read more: Prostate inflammation (prostatitis): Causes, symptoms, and treatment
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4523) Heavy intake of antibiotics linked to deadly bowel cancer
Date:
April 16, 2017 06:44 PM
Antibiotics are one of the best inventions that this planet has ever seen. Preventing millions of deaths from common bacterial infections is hard to argue with. However, recent research has shown that the continued use, and generally the overuse, of antibiotics can have some dire consequences. Among them is stomach cancer, an especially difficult form of cancer to treat. So while the pros of antibiotics far outweigh the cons, one needs to be careful not to overdue their useage. Read more: Heavy intake of antibiotics linked to deadly bowel cancer
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4418) Health benefits of mushrooms: 10 interesting health benefits of mushrooms nobody told you about
Date:
April 16, 2017 01:44 AM
If you don't eat mushrooms, you may be missing on the many health benefits they provide. Mushrooms contain copious amounts of vitamins, minerals, antioxidants, and protein. They can help prevent prostate and breast cancer, maintain bone health, gives the immune system a boost, gets rid of anemia, fights free radicals, lowers cholesterol, lowers blood pressure, strengthens hair and teeth, and lowers blood pressure. Read this article for further details into this wondrous plant and then go eat some mushrooms! Key Takeaways:
"Mushrooms are fungi that do not contain chlorophyll and extract nutrients from decaying animal and plant matter." Read more: https://in.news.yahoo.com/health-benefits-mushrooms-10-interesting-104312300.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4412) Easy Healthy Recipes || How to Make Avocado Smoothie
Date:
March 28, 2017 11:44 AM
Avocado used to be seen as a fattening food that should only be eaten rarely. That perception has changed as it becomes clear that avocado is rich in healthy fat, vitamin E and carotenoids. Avocado is also rich in antioxidant and anti-inflammatory properties. It should definitely be included in your diet and there are many ways to do this. Watch this video for a recipe for a delicious avocado smoothie. It's simple to make and its ingredients are inexpensive. https://www.youtube.com/watch?v=0bjx_enRmRk&rel=0Key Takeaways:
"You should learn how to make an avocado smoothie because it can be a great morning meal to eat."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4309) Drop Toxic Sanitizers! They Cause Skin to Absorb 10X MORE of the Hormone Disrupting BPA. Instead, DIY the most Effective Hand Sanitizer
Date:
March 22, 2017 04:44 AM
Hand sanitizers are often used by individuals who want to protect their health, but studies are beginning to show links between triclosan (the most common active ingredient in hand sanitizers) and serious health conditions. Triclosan is known to disrupt endocrine, which can lead to negative effects for your body, including some cancers. Researchers note that triclosan has an accumulative effect and that children are more vulnerable to the potential negative side effects. Instead of buying potentially toxic hand sanitizers, consider making homemade sanitizer out of aloe vera and antimicrobial essential oils such as tea tree and eucalyptus. Key Takeaways:
"While triclosan has yet to be classified as a confirmed human carcinogen, scientists have suggested potential links to hormone-related cancers such as breast cancer, ovarian cancer, and prostate cancer." Read more: http://www.healthnutnews.com/drop-toxic-sanitizers-cause-skin-absorb-10x-hormone-disrupting-bpa-instead-diy-effective-hand-sanitizer/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4255) LOOK HOW IT IS EXPELLED TO THE LAST STONE OF THE KIDNEY WITH A HALF CUP OF THIS DRINK!!
Date:
March 22, 2017 04:44 AM
Anyone who has ever had a kidney stone knows how incredibly painful the experience can be. A kidney stone is solid waste that can form in the kidneys. Most of the time they move through the body and are secreted out with no problems. However, sometimes they get can get too large to pass and get stuck causing a great deal of pain and trauma to the body. Watch this video for a recipe for a simple drink that can cleanse the kidneys and help prevent kidney stones. https://www.youtube.com/watch?v=zj_ngkHlW8o&rel=0Key Takeaways:
"The renal calculus has claimed many victims, which is why we make this a known article according to survey kidney calculus more lives than prostate cancer and breast cancer."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4254) Walnuts can help improve sperm quality —Scientists
Date:
March 20, 2017 04:44 AM
Researchers have discovered the benefits of walnuts in the area of reproduction and a number of other health issues. In their study there was a noticeable correlation between the type and quality of fat in relation to sperm health. The fats in walnuts corroborate a previous study that walnuts improve reproductive health. A higher ratio of Omega 3 to Omega 6 is an indicator in a study of fertile and infertile men. More researchers is needed as to benefits of Omega 3. The study has shown walnuts improve health in the following: prostrate cancer, breast cancer, cognitive function and type 2 diabetes. According to the British Journal of Nutrition walnuts are also good for sustained mental reasoning. Information from Natural Health, March 16, 2017 by Sade Oguntola. Key Takeaways:
"A western-style diet has been blamed for lowering sperm function, especially motility, vitality and morphology in both humans and animals." Read more: http://tribuneonlineng.com/walnuts-can-help-improve-sperm-quality-scientists/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4227) 10 Amazing Benefits That Make Green Tea The Healthiest Drink In The World
Date:
March 18, 2017 03:44 PM
Green tea is a popular drink nowadays and lots of information is known about it. It is served in many restaurants and is also available at many stores. This explains 10 reasons why it's very good for you. It will definitely make you want to drink it more often if you don't already. Key Takeaways:
"Drinking green tea helps decrease blood sugar levels, which in turn reduces the amount of insulin needed by the body." Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4209) Medical cannabis - The healing pros and cons
Date:
March 18, 2017 01:44 PM
Medical cannabis is becoming more widely accepted across the world as studies continue to show the phenomenal results patients have obtained with its use. There is no question that medical marijuana has an array of positive benefits associated with its use that you should know. But, are there disadvantages of using medical marijuana? Nothing is perfect, so it is only expected that some disadvantages exist. Learn more about both the pros and the cons of medical cannabis without delay. Key Takeaways:
"The use of medical cannabis is currently legal in 28 states, and proponents say the herb is changing lives by granting relief to people suffering from such problems as chronic cancer pain, multiple sclerosis, epilepsy, anxiety and sleep disorders." Read more: http://www.naturalnews.com/2017-03-15-medical-cannabis-the-healing-pros-and-cons.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4207) Are walnuts the key to fighting prostate cancer? Researchers think so
Date:
March 18, 2017 04:44 AM
Prostate cancer is diagnosed in over a hundred thousand men each year. Researchers are seeking answers to questions about the role of diet in promoting and preventing this disease. A recent study looked at the impact of walnuts fed to mice. Some studies have suggested walnut consumption shrunk tumors in mice. Researchers have since wondered whether a specific component of walnuts was responsible for this result. Further study suggests a synergetic effect is responsible rather than a single component. These trials present intriguing new paths for research in human subjects. Key Takeaways:
"It’s becoming increasingly clear in nutrition that it’s never going to be just one thing; it’s always a combination." Read more: http://www.naturalnews.com/2017-03-14-are-walnuts-the-key-to-fighting-prostate-cancer-researchers-think-so.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4197) Cannabidiol (CBD) Inhibits Cancer Growth According to Medical Researchers, Announces Phillip Fry
Date:
March 12, 2017 04:59 AM
More and more, the non-psychoactive marijuana extract called Cannabidiol or CBD is becoming an alternative treatment. Research has existed that pointed to CBD's uses for treating nausea in chemotherapy patients, fighting neurodegenerative diseases and seizures in patients, but the most recent findings could indicate that CBD is more useful than ever imagined. Recent studies have concluded that CBD, which is an extract that doesn't have the psychoactive aspects marijuana is known for, shows significant signs of fighting cancers cells for a number of different types of cancer. The scientific community is publishing a record number of research, much of it pointing to the marijuana extract, CBD, having unknown but possibly lifesaving potential. Key Takeaways:
"Chemical components of Cannabis, called cannabinoids, activate specific receptors throughout the body to produce pharmaacologic effects" Read more: http://www.digitaljournal.com/pr/3259779
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4111) List Of 16 Best Vitamins To Increase Metabolism
Date:
March 10, 2017 12:59 PM
Increasing your metabolism can help you lose weight. There are different ways to do this. One of those is by taking in certain vitamins. This gives a list of 16 which should be considered. There are different ways to get these vitamins into your system so you will have to research which foods contain them if you don't want to just go with supplements. Key Takeaways:
"The term “metabolism” shows the chemical reactions that occur in the body each day, and the energy that is burned carries out these reactions." Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4098) Does depression boost the risk of cancer death?
Date:
February 08, 2017 10:59 AM
Depression is a serious condition affecting millions of people around the world. While treatment options for depression is available, for many the condition is one they'll battle for the rest of their lives. Now, some researchers say that depression increases the odds that you'll die from cancer. Don't miss this important information. Key Takeaways:
"Medical records of more than 160,000 adults in England and Wales showed that those describing themselves as psychologically distressed were more likely to succumb to cancer, especially of the colon, prostate and pancreas." Reference: https://www.yahoo.com/news/does-depression-boost-risk-cancer-death-100013257.html?ref=gs
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3908) Health Benefits Of Corn Silk | Health Tips Education
Date:
February 08, 2017 10:19 AM
There are many good uses for corn silk, it is a must have in any diet. Corn silk is used for bladder infections, inflammation of the urinary system, inflammation of the prostate, kidney stones, and bedwetting. It is also used to treat congestive heart failure, diabetes, high blood pressure, fatigue, and high cholesterol levels. https://www.youtube.com/watch?v=eCOObBMXsM4Key Takeaways:
"Corn silk is a common term to describe the shiny, thread-like, silky style on corn ears; the tuft or tassel of silky fibers growing at the tip of an ear of corn."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3907) 6 surprising ways Christmas is actually good for your health
Date:
January 03, 2017 08:59 AM
It’s the Holiday season and with that comes family, friends, gifts, and more. This article provides six ways Christmas is good for your health. Are you a fan of cheese? This article is for you. Do you like board games? This article is for you. Check out the article for the rest of the benefits of the Christmas season Key Takeaways:
"Just like turkey, it seems to be only at Christmas that you really tuck into Brussels sprouts – we’re not sure why, because we’re totally into our sprouts when we do eat them." Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3734) Men's Prostate Health – Best Vitamins, Supplements & Tips?
Date:
December 23, 2016 07:59 AM
prostate cancer is the second leading cancer in all men and the number of yearly deaths is staggering. Although genetics can play a role in increasing your chance of cancer, keeping your prostate healthier could be as simple as a few lifestyle and diet changes. The prostate is responsible for maintaining many functions in your body and with a few key changes you could help keep it functioning properly. Key Takeaways:
"Many men have some general idea about their prostate health but not nearly enough knowledge to be able to take the proper steps to ensure they continue living a healthy life." Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3689) 4 Main Health Benefits Of Grapefruit
Date:
December 18, 2016 08:11 PM
Grapefruits are fruits loved by many. Most people prefer eating this fruit mainly because they're rich in vitamin C. Besides that, grateful also has a number of health benefits that you should probably know about. This fruit is found in 3 different pulps; white, red or pink pulps. But nevertheless, they still offer similar benefits. I'm going to show you some of the most unexpected health benefits of grapefruits that you probably need to be aware of. Benefits of GrapefruitBoosts metabolismGrapefruit is a good remedy for those who want to shed some weight. A high metabolism is good because it will help you burn down excessive fat in your body even when you're resting. Eating grapefruit before meal can tremendously help you lose some weight. This is because grapefruits have a high amount of enzymes and less sodium which helps to burn excessive fat easily. Reduces the risk of having kidney stonesAccording to reports, grapefruits reduce the risk of having kidney stones. Naringenin is a natural compound that regulates protein a called PKD2 which is responsible for the prevention of kidney cysts. The antioxidant effects will also prevent the kidneys from swelling which is mainly caused by fluid retention. Strengthen the immune systemTypically, any fruit that is rich in vitamin C will support and strengthen the immune system. This vitamin also works in conjunction with other micronutrients in order to provide the body with good nourishment. Having high levels of the vitamin will help reduce cold symptoms. This will make it easier to control allergies since vitamin C reduces histamine levels. Protects against cancerGrapefruits have also been linked to reducing the chances of getting certain cancers. Recent studies have discovered that the fruit can help repair/restore damaged DNA found in prostate cancer cells. The natural compound called naringenin stimulates repair of DNA in the cancer cells and will prevent your body from cancer. Grapefruits have been linked to reducing the risk of cancer like breast cancer, cancer of the stomach, colon, esophagus as well as bladder.
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(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3669) Collusion: DEA bans plant medicines, then Big Pharma patents them for profits
Date:
December 17, 2016 02:59 PM
For all of our history we as a people have been using plant remedies and medicines for our greater good. Recently we've seen the sea step in and begin to ban a lot of what were for centuries considered the best natural medicines. Pharma then comes in and somehow gets a patent for them. Key Takeaways:
"Big Pharma companies mass-produce and sell synthetic THC formulations, such as Marinol" Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3664) Enzyme that digests vitamin A also may regulate testosterone levels
Date:
December 15, 2016 10:59 AM
Want to help regulate testosterone in the body? Well a new enzyme was just discovered that helps break down enzymes in the body that regulate and make the most out testosterone. This could be important for testosterone replacement therapy. It is a good breakthrough, it can help those in need. Key Takeaways:
"The scientists also found evidence that androgen receptor signaling was disrupted in the mice without the Bco1 gene." Reference: https://www.sciencedaily.com/releases/2016/12/161207124055.htm
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3650) High-dose vitamin C reduces inflammation in cancer patients, study shows
Date:
December 07, 2016 04:59 PM
It is was the first time this type of treatment was tested and studied specifically for its effects on inflammation in cancer patients. The results found indicate great promise for the use of high-dose intravenous vitamin C treatments to help reduce inflammation in cancer patients, which is one of the major factors of cancer and its progression. A range of cancers has been proven to benefit from vitamin C treatments, including cancers of the prostate, breast, skin, bladder, lung, pancreas, thyroid, and B-cell lymphoma. Key Takeaways:
"High levels of inflammation seem to indicate a higher risk of cancer as well as a less hopeful prognosis for healing and recovery." Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3592) Matcha, kiwi will give your skin a glow
Date:
November 24, 2016 06:59 AM
There are many natural foods out there that help slow the aging process. Most people know about the antioxidant and vitamin power contained within blueberries and spinach, but there are so many other foods that can help keep our bodies in tip-top shape. Included on the list are kiwis, oranges, and a green tea powder called matcha. By missing up our diets and trying new foods, it is possible to get rid of the monotony of eating the same foods all the time and keep our diet fresh. Key Takeaways:
"Sipping on some natural blueberry juice or adding half a cup of the fruit to your yogurt or cereal is a great way to stay healthy and look stunning." Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=3498) The Health Benefits of Grape Seed Extract
Date:
November 14, 2016 10:20 PM
Grape seed extract is most commonly a waste product produced by the grape juice and winery industry. This is because grape seed extract doesn't go into finished drinks. Grape seed contains a wide variety of health-enhancing ingredients like protein, carbohydrates and lipids (healthy fats). Immune systemA study done on healthy volunteers found that grape seed considerably increased the levels of antioxidants in the blood. So, another one of the benefits of grape seed is it helps boosts the immune system to fight against harmful compounds which may reduce the risk of chronic diseases including breast, stomach, colon, prostate and lung cancer.
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Do you suffer from inflammation? If so, you're not alone. Inflammation is a common problem that can cause pain and discomfort in the body. Fortunately, there is a natural remedy that can help: curcumin. Curcumin is a compound found in turmeric that has powerful anti-inflammatory properties. We will discuss the benefits of curcumin and how to add it to your diet.








What is thyroid glands
Importance of selenium
Calcium
Benefits of liquid calcium
Introduction:
Royal jelly is a gelatin-held substance, which is normally emitted from the cephalic organs of the working drones for the expansion of the ruler honeybee. The hugeness of this white substance for ruler honeybee could be comprehended with a truth that without it, the monarch bumblebee and other working drones will not prosper.
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Healthful supplements
Benefits of sulfur
What are the benefits of MSM
Laxatives
Rarely do people bank on herbs for treatment. Chemically manufacture medicines have taken over. However, what makes Boswellia herb very important? This herb has been used for a very long time. It is extracted from the Boswellia serrate tree. This herb is popular among other pharmacological medicines because of its medicinal values of reducing the effect of inflammation and inflammation related diseases.
History of beet



