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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) Unlocking Your Cellular Vitality: Understanding the Role of Mitochondria in Energy and Aging
Date:
September 09, 2026 05:22 PM
Introduction: Understanding Cellular Aging and Energy DeclineHave you ever wondered why you could bounce back from an all-nighter or an intense workout in your twenties, but in your forties or fifties, the same physical effort leaves you feeling drained for days?Most people think aging is something that happens strictly on the outside - fine lines around the eyes, stiff joints, or gray hairs. In reality, aging begins at a microscopic scale inside your cells, the microscopic building blocks that make up every tissue, muscle, and organ in your body. Every single day, your body relies on roughly 30 trillion cells working in unison. When your cells are young and resilient, they operate like a well-oiled machine: they repair minor damage instantly, clear away waste, and produce abundant energy. But over time, two fundamental biological shifts take place:
The Role of Mitochondria and ATP ProductionTo understand where your daily energy comes from, you have to look inside your cells at tiny structures called mitochondria.Often called the "powerhouses" of the cell, mitochondria function like miniature power stations. A single cell can house hundreds or even thousands of them, especially energy-hungry cells like those in your heart, brain, and skeletal muscles. The Body’s Energy Currency: What is ATP?Your body cannot directly use a sandwich or a cup of coffee to power muscle contractions or brain signals. Instead, your mitochondria take the nutrients from your food and combine them with the oxygen you breathe to manufacture a chemical molecule called adenosine triphosphate (ATP).Think of ATP as your body’s universal energy currency:
Why Cellular Energy Production Declines with AgeWhen you are young, your mitochondria are abundant, pristine, and remarkably efficient. However, the very process of creating energy comes with an unavoidable side effect: oxidative stress.Much like an engine produces exhaust fumes while burning fuel, mitochondria produce reactive byproducts known as free radicals (reactive oxygen species). Over decades, these "exhaust fumes" slowly damage the inner machinery of the mitochondria:
How Cellular Senescence Accelerates the Aging ProcessIf mitochondrial decline is a problem of power shortage, cellular senescence is a problem of biological clutter and pollution.In a healthy body, normal cells follow a strict lifecycle: they divide, perform their jobs, and when they incur significant damage or reach the end of their useful lifespan, they undergo a tidy self-destruction process called apoptosis (programmed cell death). Your immune system then clears away the debris, making room for fresh, vibrant cells. Cellular senescence happens when this cleanup process fails. The "Zombie Cell" PhenomenonWhen a cell experiences extreme stress - such as shortened telomeres (the protective caps on chromosomes), severe DNA breaks, or severe mitochondrial dysfunction - it reaches a biological crossroads. To prevent the damaged cell from dividing uncontrollably (which could lead to tumors), the body puts the brakes on.The cell enters a permanent state of dormancy:
Why Zombie Cells Are So Damaging: The Bad Apple EffectHaving a few retired cells hanging around might not sound catastrophic, but senescent cells do not sit quietly. Instead, they secrete a toxic chemical cocktail known as the Senescence-Associated Secretory Phenotype (SASP).This cocktail is packed with pro-inflammatory cytokines, chemokines, and tissue-degrading enzymes. Picture one spoiled apple sitting in a fruit basket: the ethylene gas it emits quickly causes the healthy apples surrounding it to rot. In the same way, the toxic secretions from zombie cells:
The Vicious Cycle of Cellular AgingMitochondrial decay and cellular senescence are not isolated events; they feed directly into one another:
What This Means for Everyday HealthThe good news from modern longevity science is that cellular decline is not entirely out of our hands. While aging is natural, the rate at which our cellular engines degrade can be influenced by daily habits:
Summary: Aging is fundamentally a microscopic process occurring inside the body's trillions of cells, which naturally become less resilient over time. Central to this decline are the mitochondria, the tiny structures that function as the cell's "power plants" to produce adenosine triphosphate (ATP), the universal chemical currency for everyday energy. While young mitochondria are abundant and pristine, decades of producing ATP generate oxidative stress through byproducts called free radicals, which eventually wear down and damage mitochondrial DNA and machinery. This damage results in fewer, less efficient power generators, lowering total cellular energy output, which individuals experience as real-world physical fatigue and mental fog. Aging is further accelerated by cellular senescence, a condition where damaged cells stop dividing but, instead of naturally self-destructing like healthy ones, linger behind as dormant "zombie cells." These senescent cells secrete a pro-inflammatory chemical mixture known as the Senescence-Associated Secretory Phenotype (SASP), which functions like a "bad apple" by poisoning healthy neighboring cells and tissues, creating a state of chronic biological pollution termed "inflammaging." Mitochondrial decay and senescence feed into one another in a vicious cycle that directly drives overall aging. However, longevity science highlights that healthy lifestyle habits, including regular exercise and periods of fasting, can support continued vitality by encouraging the development of new mitochondria and the clearing of this toxic cellular clutter.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6649) The 5,000 mg Potassium Target: Why You Don't Need a Low-Sodium Diet
Date:
June 19, 2026 12:22 PM
Here is exactly how it manages your water balance and keeps cardiovascular pressure in check. 1. Restoring Cellular Water BalanceTo understand fluid balance, you have to look at where water lives in the body. Sodium dominates the fluid outside your cells (extracellular), while potassium is the absolute ruler of the fluid inside your cells (intracellular).They control fluid movement via a cellular mechanism called the sodium-potassium pump. This microscopic pump works continuously to push sodium out of your cells and pull potassium in.
2. Lowering Blood Pressure: The Dual MechanismWhen your sodium-to-potassium ratio gets skewed in favor of sodium, your blood pressure inevitably creeps up. Potassium actively forces blood pressure down through two primary physiological pathways:Kidneys and Sodium ClearanceYour kidneys are responsible for filtering your blood and managing fluid volume. High sodium levels signal the body to hold onto water, which increases overall blood volume. Think of it like turning up the water pressure in a garden hose - more fluid equals higher pressure on the arterial walls.Potassium acts as a natural diuretic. When you consume enough of it, the kidneys are signaled to excrete EXCESS sodium through your urine. As sodium leaves the building, it takes that EXCESS water volume with it, dropping the pressure inside your cardiovascular system. Vascular Relaxation (Vasodilation)Beyond just managing fluid volume, potassium has a direct, relaxing effect on the physical structure of your blood vessels. High sodium and low potassium can cause blood vessel walls to become stiff and constricted.Potassium relaxes the smooth muscle cells lining your arteries. This widening of the blood vessels - known as vasodilation - instantly reduces resistance to blood flow, allowing your heart to pump more efficiently with less strain. The Ratio Advantage: Clinical research consistently shows that focusing on the ratio of sodium to potassium is often more impactful for blood pressure management than simply cutting out salt entirely. For optimal cardiovascular and metabolic function, aiming for a 2:1 intake of potassium to sodium is an ideal target. Vascular Health Beyond Low-Salt: How Potassium Relaxes Arteries and Keeps Muscles FullFor decades, the standard advice for managing fluid retention and high blood pressure has been a blanket directive: cut the salt. But treating sodium like a dietary villain ignores a fundamental biological truth - sodium is an essential electrolyte required for nerve transmission, muscle function, and blood volume regulation.Aggressively slashing salt is a blunt instrument that often creates new physiological imbalances. The real key to vascular health and crisp fluid dynamics isn't absolute sodium deprivation; it is maintaining a high potassium intake - up to 5,000 mg daily - to allow your body to balance salt levels naturally. The Hidden Risks of Aggressive Salt RestrictionWhen you drastically cut sodium, your body doesn't just quietly lower your blood pressure. It views the sudden drop in a critical electrolyte as a survival emergency and activates the Renin-Angiotensin-Aldosterone System (RAAS).
Why 5,000 mg of Potassium is the Real SolutionInstead of forcing your body into a low-sodium starvation state, a more effective approach is to supply it with the optimal amount of its natural physiological counterweight: potassium. Aiming for a robust target of 4,700 to 5,000 mg of potassium daily changes how your system processes salt.
The Cooperative Electrolyte RelationshipSodium and potassium should never be viewed as enemies; they are partners that require a specific ratio to optimize human physiology.
Aggressive dietary salt restriction often backfires because sodium is an essential electrolyte required for nerve transmission and fluid regulation; cutting it too drastically triggers a survival response that constricts blood vessels and hoards water. Fluid balance is ultimately determined by the relationship between sodium outside the cells and potassium inside them, a delicate equilibrium managed by the cellular sodium-potassium pump. When this ratio is skewed by a lack of dietary potassium, cells lose their optimal hydration, causing extracellular fluid retention and the soft, bloated look of subcutaneous water weight. Rather than starving the body of salt, driving daily potassium intake up to 5,000 mg fixes this modern imbalance and naturally eases blood pressure through a dual mechanism. This high intake acts as a natural diuretic, signaling the kidneys to flush out EXCESS sodium along with the EXCESS blood volume that strains arterial walls. Simultaneously, potassium promotes vasodilation by relaxing the smooth muscle lining of the blood vessels, reducing vascular resistance and allowing the heart to pump efficiently while keeping muscles full, hydrated, and performing at their peak.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6642) Is NAD+ the "Missing Link" in Modern Longevity Science?
Date:
April 11, 2026 12:24 PM
How NMN Boosts NAD+ LevelsNMN is essentially a "building block" for NAD+. The process by which the body converts NMN into NAD+ is relatively direct, making it an efficient supplement for raising levels.
Why Boost NAD+? The Biological BenefitsNAD+ is a "coenzyme" found in every single living cell. It is required for over 500 different enzymatic reactions. Here are the primary reasons why maintaining high NAD+ levels is critical for health:1. Cellular Energy Production (ATP)NAD+ plays a starring role in the mitochondria, the powerhouses of the cell. It acts as an electron carrier in the process of turning nutrients from food into ATP (Adenosine Triphosphate), which is the primary energy currency of the body. Without enough NAD+, cellular energy production falters, leading to fatigue and decreased metabolic function.2. DNA Repair and StabilityOur DNA is constantly under attack from UV radiation, pollutants, and metabolic byproducts. To fix this, the body uses enzymes called PARPs (Poly ADP-Ribose Polymerases). These enzymes are strictly "NAD+-dependent," meaning they cannot function without consuming NAD+. By boosting NAD+, you provide the fuel necessary for cells to repair genetic damage effectively.3. Activation of Sirtuins (The "Longevity Genes")Sirtuins are a family of proteins responsible for cellular health, aging, and DNA protection. They are often called "guardians of the genome."
4. Metabolic Health and Insulin SensitivityResearch indicates that increasing NAD+ through NMN can improve glucose metabolism and insulin sensitivity. This is particularly relevant for maintaining a healthy weight and reducing the risk of age-related metabolic disorders.5. Circadian Rhythm RegulationNAD+ levels fluctuate throughout the day and help regulate the body’s internal clock (the circadian rhythm). Maintaining healthy levels helps ensure that your cells know when to be active and when to undergo repair, which can improve sleep quality and daytime alertness.Note: While NMN is widely studied in animal models with promising results regarding lifespan and healthspan, human clinical trials are ongoing to fully confirm long-term efficacy and optimal dosage. Always consult a healthcare professional before starting new supplements. Furthermore:While the basics of NMN and NAD+ focus on energy and aging, there is a much deeper layer to this "master molecule" that involves cellular theft, "zombie" cells, and the critical importance of a process called methylation.Here are the vital pieces of the NAD+ puzzle that aren't usually mentioned: 1. The "NAD+ Thieves": CD38 and InflammationBoosting NAD+ with NMN is only half the battle; the other half is stopping the "thieves" that steal it.
2. The Methylation Connection (Why you need TMG)This is perhaps the most important practical detail for anyone taking NMN.
3. The "Double-Edged Sword" of CancerNAD+ is essential for all living cells, including cancer cells.
4. Regulatory Status (The 2026 Update)The legal status of NMN has been a rollercoaster. In late 2022, the FDA initially ruled that NMN could not be marketed as a supplement because it was being investigated as a drug. However, as of late 2025, the FDA issued updated guidance essentially reinstating NMN’s status as a legal dietary ingredient, clearing the way for its continued sale in the U.S.5. Natural Boosters and "Sirtuin Activators"Supplementing NMN is just one way to boost the system. You can also:
Are you planning to focus your blog post on the anti-aging benefits for a general audience, or would you like to lean more into the technical "biohacking" side of science?
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6636) Why Do Sugar and Vitamin C Compete for the Same "Doorway" in Your Body?
Date:
April 10, 2026 02:40 PM
1. Why Sugar Suppresses the Immune SystemThe primary mechanism of sugar-induced immune suppression involves phagocytosis—the process by which white blood cells (specifically neutrophils and macrophages) engulf and "eat" harmful bacteria and viruses.
2. Consumption Levels and DurationBased on classic studies (notably the Sanchez et al. study from 1973), the "tipping point" for immune suppression is surprisingly low:
3. Why Sugar Reduces Vitamin C AbsorptionSugar (glucose) and Vitamin C (ascorbic acid) are chemically very similar. In fact, most animals can synthesize Vitamin C directly from glucose. Because of this "molecular mimicry," they use the same "doorways" to enter your cells: the GLUT-1 receptors.
4. How Vitamin C Supports the Immune SystemVitamin C is not just a general "booster"; it plays several highly specific roles in the immune response:
How much vitamin c should one consume if a cold comes on to effectively boost immune function ?When a cold starts to settle in, your immune cells (especially those hungry white blood cells we talked about) begin to burn through Vitamin C at an accelerated rate. To "effectively" boost function during this window, you shift from a maintenance dose to what is often called a loading or therapeutic dose.1. The "Rescue" Dose (Symptom Onset)Research (including a significant meta-analysis by Cochrane) suggests that while daily Vitamin C doesn't always prevent a cold, taking a high dose the moment you feel a scratchy throat can shorten the duration.
2. The Golden Rule: Divided DosesYour body has a "speed limit" for Vitamin C absorption. If you take 2,000 mg in one giant pill, your gut will likely rebel, and most of it will end up in the toilet.
3. Finding Your "Bowel Tolerance"In functional medicine, people often use the "Bowel Tolerance" method during illness. Because your body uses more Vitamin C when you're sick, your gut can actually handle higher doses than usual without issues.
?? Important Reality Checks
Sugar intake directly hinders immune function by slowing down phagocytosis, the process where white blood cells destroy pathogens, with just 75 to 100 grams of sugar reducing this activity by up to 50% for approximately five hours. This occurs because glucose and Vitamin C share a nearly identical molecular structure and compete for the same GLUT-1 receptors to enter cells; when blood sugar is high, glucose "crowds out" Vitamin C, preventing immune cells from utilizing the nutrient for essential tasks like antioxidant protection and interferon production. To effectively bolster the immune response at the onset of a cold, it is recommended to take a therapeutic loading dose of Vitamin C - roughly 4,000 to 8,000 mg in divided 500 mg increments throughout the first day - while strictly limiting sugar intake to ensure the Vitamin C can successfully navigate these cellular doorways.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6635) Is Your Histamine Bucket Overflowing? How DAO and HNMT Can Help
Date:
February 25, 2026 04:09 PM
Diamine Oxidase (DAO) is a fascinating little enzyme that acts as your body’s primary "cleanup crew" for histamine found in food. While pea sprouts are the most famous plant source, they aren't the only ones. Other Plant Sources of DAOThe highest concentrations of DAO are found in the Fabaceae (legume) family, particularly when they are in the germination (sprouting) phase. Beyond green peas, researchers have identified DAO activity in:
What Does DAO Actually Do?Think of DAO as a metabolic "bouncer." Its main job is to break down histamine and other biogenic amines (like putrescine and cadaverine) before they can enter your bloodstream from your digestive tract.The MechanismIn the body, DAO is primarily produced in the intestinal mucosa. When you eat histamine-rich foods (like aged cheese, wine, or sauerkraut), DAO performs a chemical reaction called oxidative deamination.R-CH2-NH2 + H2O + O2 –>DAO R-CHO + NH3 + H2O2 In simple terms:
Comparison of DAO Sources
Does DAO enter the blood stream or does it stay in the gut?That is a great question that gets to the heart of how our bodies manage "histamine overload." The short answer is: DAO primarily stays in the gut and the space between cells (extracellular space), but it is not the only enzyme on the job.Here is the breakdown of how DAO works versus its "partner" enzyme that handles the blood. 1. DAO: The "Gatekeeper"Diamine Oxidase is a secretory protein. It is produced by the cells lining your small intestine (enterocytes) and is secreted into the intestinal tract.
2. HNMT: The "Internal Cleanup"Since DAO isn't great at cleaning up histamine that's already "in the system," your body uses a second enzyme called Histamine N-methyltransferase (HNMT).
DAO vs. HNMT: A Quick Comparison
The "Histamine Bucket" RealityWhen people talk about Histamine Intolerance, it's usually because their "Histamine Bucket" is overflowing.If your DAO levels are low, the "security guard" is asleep, and too much food-based histamine enters the blood. This puts an enormous burden on HNMT to clean it up. If HNMT can't keep up, that's when you feel the symptoms (headaches, heart palpitations, or skin flushing) because the histamine is circulating freely in your blood. Diamine Oxidase (DAO) serves as the body’s primary extracellular "gatekeeper," concentrated in the intestinal mucosa to neutralize histamine from food and drink before it can enter the bloodstream. While primarily associated with pea sprouts, DAO is also found in other germinated legumes like grass peas, chickpeas, and lentils, particularly when sprouted in darkness to maximize enzyme activity. Because DAO functions mainly in the gut lumen and the spaces between cells, it acts as a barrier against external histamine; once histamine successfully crosses into the blood or is released by the body's own immune cells, a secondary internal enzyme called Histamine N-methyltransferase (HNMT) takes over the cleanup process within the liver, brain, and kidneys.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6632) The Benefits of Vitamin C for Skin Health
Date:
May 24, 2024 04:34 PM
The Benefits of Vitamin C for Skin HealthVitamin C, also known as ascorbic acid, plays an essential role in maintaining overall skin health. This potent nutrient offers numerous benefits, making it a staple ingredient in many skincare products. Below, we explore some of the key advantages of incorporating Vitamin C into your skincare routine.
Promotes Collagen ProductionCollagen is a structural protein that maintains the skin's firmness and elasticity. As we age, collagen production declines, leading to signs of aging such as wrinkles and fine lines. Vitamin C is a crucial co-factor in the synthesis of collagen, helping to keep the skin plump and youthful. Regular application of Vitamin C can stimulate collagen production, making the skin look smoother and more resilient.
Accelerates Wound HealingVitamin C's role in collagen production also extends to wound healing. This nutrient supports the repair of damaged skin by promoting new tissue growth. Whether dealing with minor cuts, abrasions, or post-surgical wounds, applying Vitamin C can expedite the healing process and reduce the risk of scarring.
Antioxidant ProtectionEnvironmental factors like pollution and UV radiation generate free radicals, molecules that damage skin cells and accelerate aging. Vitamin C is a powerful antioxidant that neutralizes free radicals, protecting the skin from oxidative stress. By incorporating Vitamin C into your skincare routine, you can shield your skin from environmental damage and maintain a healthier complexion.
Boosts Immune FunctionA robust immune system is vital for overall skin health. Vitamin C bolsters the immune system, making it an essential component of both internal and external treatments. A well-functioning immune system can better fend off skin infections and inflammatory conditions, contributing to clearer, more radiant skin.
Reduces HyperpigmentationHyperpigmentation occurs when certain areas of the skin produce EXCESS melanin, resulting in dark spots or patches. Vitamin C can inhibit melanin production, helping to lighten hyperpigmented areas. Over time, consistent use of Vitamin C can promote a more even skin tone, reducing the appearance of age spots, sun spots, and melasma.
Enhances Skin RadianceOne of the most sought-after benefits of Vitamin C is its ability to enhance skin radiance. By improving skin texture and tone, Vitamin C can give your complexion a noticeable glow. Regular use of Vitamin C serums or creams can help achieve a brighter, more luminous look.
Prevents SaggingLoss of skin elasticity leads to sagging, which is a common sign of aging. By promoting collagen synthesis and offering antioxidant protection, Vitamin C can help maintain the skin's structural integrity. This results in tighter, firmer skin, reducing the likelihood of sagging.
Combats Environmental DamageExposure to environmental pollutants can wreak havoc on your skin, causing premature aging and damage. Vitamin C acts as a protective barrier, reducing the detrimental effects of pollutants. Adding Vitamin C to your skincare regimen helps combat environmental damage, ensuring your skin remains healthy and vibrant.
Supports HydrationMaintaining adequate moisture levels is crucial for healthy skin. Vitamin C can support skin hydration by enhancing the skin barrier function and reducing water loss. This ensures that your skin stays supple and well-moisturized, reducing the risk of dryness and irritation.
Skin Repair and Protection Against Oxidative StressVitamin C not only protects against oxidative stress but also aids in repairing the skin. By promoting cell regeneration and improving skin texture, Vitamin C helps to rejuvenate and restore damaged skin.
Are You Ready to Experience What Vitamin C Can Do?Ready to experience the transformative benefits of Vitamin C for your skin? Don't wait any longer. Invest in a high-quality Vitamin C serum or cream today and take the first step toward healthier, more radiant skin. Visit our store now to explore our range of Vitamin C products tailored to meet your skincare needs. Enhance your skin's vitality and glow with the power of Vitamin C – your skin will thank you!
Food Sources of Vitamin CIncorporating Vitamin C into your diet is a great way to boost your skin health from within. Here are some excellent food sources of this essential nutrient:
Including these foods in your diet can help ensure you receive adequate Vitamin C, supporting both your overall health and your skin's vitality.
Convenience of Taking Vitamin C: Supplements vs. Food SourcesWhile both food sources and supplements offer ways to meet your daily Vitamin C needs, supplements provide unmatched convenience. Incorporating Vitamin C-rich foods such as oranges, strawberries, and bell peppers into your diet requires careful meal planning and preparation and adds calories to your diet. In contrast, Vitamin C supplements offer a quick and efficient alternative, allowing you to ensure adequate intake regardless of your dietary habits. This convenience makes supplements particularly appealing for busy individuals or those with specific dietary restrictions, enabling them to maintain optimal Vitamin C levels effortlessly.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6602) The Role of Vitamin D in Immune Health
Date:
May 24, 2024 03:28 PM
The Role of Vitamin D in Immune HealthVitamin D plays a crucial role in maintaining a robust immune system, acting as a vital nutrient that supports overall health. Unlike other vitamins, vitamin D functions as a hormone, interacting with various bodily systems to help modulate the immune response. This essential vitamin aids in the activation of T cells, which are critical for identifying and combating pathogens.
Sources of Vitamin DTo ensure adequate levels of vitamin D, it is important to consider both dietary sources and sunlight exposure. Foods rich in vitamin D include fatty fish like salmon and mackerel, fortified dairy products, and egg yolks. Additionally, sensible sun exposure enables the body to synthesize vitamin D naturally. However, factors such as geographic location, skin pigmentation, and the use of sunscreen can influence the amount of vitamin D produced by the skin. Make sure to supplement Vitamin D in a D-3 form for optimal absorption in your vitamin regimen.
Optimal Levels and SupplementationMaintaining optimal levels of vitamin D is important for immune health. Blood tests can determine vitamin D levels, with health professionals often recommending supplementation to address deficiencies. The right amount of vitamin D supplements varies depending on individual needs. Follow healthcare providers' guidelines to prevent potential toxicity from EXCESSive intake.
Vitamin D and Immune ResponseResearch has shown that adequate levels of vitamin D are associated with a reduced risk of infections and improved immune function. Vitamin D enhances the pathogen-fighting effects of monocytes and macrophages—white blood cells that are important parts of immune defense—and decreases inflammation. This helps the body to fend off illnesses more effectively and recover quicker.
Public Health ConsiderationsPublic health organizations emphasize the importance of maintaining sufficient vitamin D levels for overall health. It is recommended to regularly monitor high-risk groups such as older adults, individuals with limited sun exposure, and those with specific medical conditions. Understanding the significance of vitamin D can improve health and boost the immune system. It is advised to get blood work twice a year to monitory vitamin D levels and supplement accordingly. In summary, vitamin D is indispensable for a well-functioning immune system. Ensuring adequate intake through diet, sunlight, and supplementation as needed can provide beneficial effects on health and enhance the body's ability to combat illness.
Take Action to Boost Your Immune HealthUnderstanding vitamin D's crucial role in supporting a healthy immune system, it's crucial to take proactive steps to ensure sufficient intake. Include vitamin D-rich foods like fatty fish, fortified dairy, and egg yolks in your diet. Consider D-3 supplements and aim for safe sun exposure to boost vitamin D levels. Don't hesitate to seek advice from healthcare providers regarding supplementation, especially if you fall into a higher-risk category for deficiency. Regular blood tests can help you monitor your vitamin D levels and adjust your intake accordingly. By Stay informed, take action, boost your immune health, lower infection risks, and improve overall well-being. Act now to incorporate these practices into your daily routine and fortify your body's natural defenses.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6601) The Importance of Collagen for Your Health: Why You Should Care
Date:
November 06, 2023 04:50 PM
The Importance of Collagen for Your Health: Why You Should Care
Have you ever heard about collagen? It might have been a buzzword in the beauty industry, but it's important to know that collagen is much more than just skin-deep. Collagen is actually a protein that plays a crucial role in providing structure, strength, and support to different parts of our bodies such as skin, bones, tendons, and ligaments. Lets explore the importance of collagen for your health, its different types and functions, the effects of collagen loss on the body, factors that affect collagen production, and how to boost collagen levels naturally.
Collagen production declines naturally with aging, leading to visible signs of aging like wrinkles, sagging skin, and brittle nails. However, several lifestyle factors also contribute to collagen loss like smoking, consuming sugary foods, and EXCESSive sun exposure. Medical conditions like scleroderma and Ehlers-Danlos syndrome also lead to reduced collagen production.
Collagen loss can have various detrimental effects on the body. One of the most visible effects is on the skin where collagen loss leads to wrinkles, fine lines, sagging, and dryness. Collagen loss also affects joints, resulting in pain and stiffness. Since collagen is crucial to maintaining bone structure, a decrease in collagen levels weakens the bones and muscles, causing osteoporosis. Collagen is important for the digestive tract lining, so when the body lacks sufficient collagen, people could experience digestive issues. Lifestyle Habits Leading to Collagen Loss: Several lifestyle habits exacerbate the natural decline in collagen production, thereby speeding up the aging process and negatively affecting overall health. First among these is smoking. The chemicals present in cigarettes damage collagen and elastin, causing premature skin aging with characteristic wrinkles and sagging. Not only does smoking impact the skin, but it also affects collagen-rich organs and tissues, leading to various health problems. Next is the consumption of EXCESSive sugar and refined carbohydrates. A high-sugar diet interferes with collagen's ability to repair itself, leading to inflammation and collagen cross-linking that results in skin aging and joint discomfort. Refined carbohydrates spike blood sugar levels, encouraging the same damaging process. Last but not least, ultraviolet (UV) light exposure, particularly from the sun, can also lead to significant collagen loss. UV light increases collagen breakdown by activating enzymes called matrix metalloproteinases that degrade collagen and elastin. This exposure results in photoaging of the skin, characterized by deep wrinkles, leathery texture, and pigmentation changes. Therefore, it's crucial to protect your skin from the sun by wearing SPF every day, even on cloudy days.
Fortunately, several natural ways can help boost collagen levels in your body. Maintaining a balanced diet rich in vitamins and minerals such as vitamin C, zinc, copper, and iron is key to boosting collagen levels. Vitamin C is vital in the production of collagen, which makes it an essential nutrient for the body. EXCESSive sun exposure and smoking lead to the accumulation of free radicals that damage collagen, so avoiding these is key. In addition, the topical use of skincare products like sunscreen and moisturizers protects and nourishes collagen and helps maintain healthy skin. Exercise such as weight training and yoga can help stimulate collagen synthesis, ensuring youthful-looking skin, healthy joints, and strong bones. Common types of collagen!
Collagen is an essential protein that is vital for overall health and well-being. It provides support and structure to different body parts, ensuring their optimum functionality. The decline in collagen production is an inevitable part of aging, but several natural ways can help boost its levels. Maintaining a balanced diet, avoiding habits that damage collagen, and practicing regular exercise can help maintain healthy collagen levels. It's crucial to remember that relying solely on supplements may not necessarily boost collagen levels, so it's best to consult your healthcare provider before taking them. So, go ahead and adopt healthy habits to maintain healthy levels of this crucial protein. Your body will thank you for it!
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6588) Magnesium Glycinate: An In-Depth Guide
Date:
November 04, 2023 10:53 AM
Magnesium Glycinate: An In-Depth GuideMagnesium is an essential mineral for the body, playing a crucial role in the regulation of blood pressure and numerous other bodily functions. The shortcoming of this nutrient can be addressed through the consumption of magnesium glycinate, a supplement also known as magnesium diglycinate and magnesium bisglycinate. Key Roles of Magnesium
This article delves into the details of magnesium glycinate, looking at its benefits, potential side effects, the recommended dosage, and more. Benefits of Magnesium GlycinateThe human body needs a significant amount of magnesium for optimal function. Although the best way to obtain nutrients is in their natural form, supplements like magnesium glycinate are available to enhance magnesium intake in individuals with low levels. Benefits of this supplement include:
Precautionary Measures
Conditions that may Benefit from Magnesium Glycinate
Sources of Magnesium Glycinate Nutritional sources rich in magnesium include legumes, nuts, seeds, whole grains, spinach, fortified breakfast cereals, yogurt, milk, and other dairy products. Recommended Dosage The amount of magnesium glycinate to be taken can vary. It is advised to consult a doctor before starting a magnesium glycinate regimen. Potential Side Effects Magnesium glycinate, like other dietary supplements, can cause side effects such as nausea, abdominal cramps, and diarrhea when taken in large or frequent doses. However, a study from 2013 indicated that magnesium glycinate is less likely to induce diarrhea compared to other magnesium supplements. Extreme doses could lead to magnesium toxicity, resulting in more severe side effects. Easy Ways to Consume More Magnesium One effective method of increasing magnesium intake is by incorporating dietary supplements into your daily regime. For instance, Solaray Magnesium Glycinate is a popular supplement that is widely recognized for its efficacy. It is an easily digestible form of magnesium that is gentle on the stomach and less likely to induce diarrhea. Solaray's supplement provides an accessible option for those looking to supplement their diet with magnesium, especially for individuals who might struggle to meet their nutritional requirements through diet alone. Conclusion Magnesium glycinate can be a beneficial supplement for individuals with magnesium deficiency. However, caution must be exercised in its consumption, with potential side effects and individual health conditions taken into account. As always, it is best to seek medical advice before starting a new supplement regimen.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6587) Why Your Sodium to Potassium Ratio Is Important
Date:
August 04, 2023 02:09 PM
The typical Western diet is largely comprised of processed foods, which are notoriously high in processed table salt. This results in an imbalance in the sodium to potassium ratio, a significant health concern. Sodium is necessary for a variety of bodily functions; however, too much can be detrimental, leading to hypertension and other cardiovascular diseases. Simultaneously, potassium is often neglected, despite its crucial role in muscle function, nerve signaling, and balancing fluids. The general dietary advice suggests a potassium to sodium intake ratio of 3:1. However, the reality in diets, particularly those in America, often sees this ratio inverted. The EXCESSive sodium consumption is linked to a myriad of health complications, including high blood pressure and heart disease. Conversely, potassium, a mineral that aids in nerve function and muscle control, is consumed in insufficient quantities. This is a troubling trend that underscores the importance of dietary change towards natural, unprocessed foods. The importance of potassium is often overshadowed by the emphasis on limiting sodium for reducing chronic disease risk factors. Potassium plays an essential role in maintaining healthy blood pressure levels by counteracting the effects of sodium. Furthermore, the mineral is crucial for other functions like heart and muscle cell functioning, nerve transmission, and maintaining fluid balance. A study published in the New England Journal of Medicine discovered that individuals with the lowest risk for heart complications or death from any cause were those consuming between four to six grams of sodium per day. This is a fascinating discovery, as this intake is significantly higher than the U.S. daily recommended limits. It suggests a need for a reconsideration of current sodium intake guidelines. Another consideration to balance the sodium-potassium ratio is the type of salt consumed. Unprocessed, natural salts like sea salt and Himalayan salt contain higher potassium levels compared to standard table salt. These natural salts provide a variety of minerals and trace elements that contribute to our overall health and wellness. It's crucial to note that switching to natural salt should be part of a broader shift towards a diet rich in fresh, unprocessed foods. Why You Should Focus on Increasing Potassium While it's beneficial to monitor and moderate sodium intake, it's equally important to shift our focus towards increasing potassium consumption. Potassium-rich foods, such as leafy green vegetables, bananas, potatoes, and beans, not only contribute to a well-rounded and nutritious diet but also help in maintaining an optimal sodium-potassium balance in the body. A high potassium intake can counteract the effects of sodium, aiding in blood pressure regulation and reducing the risk of cardiovascular diseases. Moreover, an elevated potassium level supports various bodily functions, including nerve transmission, muscle contraction, and fluid balance. Thus, prioritizing potassium intake forms a cornerstone for an overall healthier dietary approach. It is recommended that individuals consume 5 grams of potassium daily and potassium to salt ratio should be 2 to 1. To boost potassium intake, one can take a potassium supplement or add the following foods to their diet or both: Watermelon, Orange juice, Boiled red potatoes, Avocado, Bananas, Cantaloupe, Oranges, Coconut water, Tomatoes, Yogurt, Winter squash, and Wild-caught salmon. Why Low-Salt Advice Can Be Harmful Contrary to popular belief, adhering to low-salt advice can sometimes pose risks to certain individuals. While it is true that EXCESSive sodium intake can lead to high blood pressure and heart problems, sodium still plays a vital role in our bodies. It assists in nerve conduction, muscle contraction, and maintaining the body's fluid balance. In fact, low sodium levels in the body, a condition known as hyponatremia, can lead to symptoms such as headache, nausea, fatigue, and in severe cases, coma or even death. Moreover, a low-salt diet may lead to increased levels of cholesterol and triglycerides, hormonal imbalances and insulin resistance. This can potentially elevate the risk of developing cardiovascular disease. Low-salt diets can also exacerbate the risk of certain health conditions. For instance, individuals with conditions like Addison's disease or certain kidney disorders, where the body struggles to maintain a balance of electrolytes, might find a low-salt diet harmful. Therefore, it is crucial to balance the intake of sodium, considering both the potential risks associated with too much, or too little, sodium. The key is to consume sodium from natural and unprocessed sources, such as Himalayan salt, fruits, vegetables, grains, and lean meats, which also provide a host of other nutrients necessary for overall health. As with most things in nutrition, moderation and balance seem to hold the answer rather than extreme restriction. The RDA - recommended daily allowance of sodium is 3.5 grams. It is advised to consume 3.5 grams of natural salt each day by way of foods or combination of foods plus Himalayan salt to reach that goal. The Impact of EXCESSive Salt Intake on Certain Health Conditions While moderate salt intake is vital for normal physiological functions, its EXCESSive consumption can have detrimental effects, particularly for individuals with certain health conditions. For instance, endocrine disorders, high aldosterone levels, Cushing's syndrome, and elevated cortisol levels can all heighten the body's sensitivity to sodium, making it even more essential to monitor and limit salt intake. Endocrine disorders, which involve imbalances in the body's hormone production, can often lead to increased sodium retention, exacerbating issues of water retention and swelling. Similarly, high aldosterone levels, a hormone that regulates sodium and potassium balance, can cause the body to retain EXCESSive sodium, leading to high blood pressure and potential damage to the cardiovascular system. Cushing's syndrome, a condition characterized by EXCESSive cortisol production, can lead to a host of symptoms, including high blood pressure and rapid weight gain, both of which can be intensified by high sodium intake. The EXCESSive cortisol found in Cushing's syndrome promotes sodium retention, further elevating the risk for hypertension. Similarly, elevated cortisol levels, even outside of Cushing's syndrome, can lead to heightened sodium retention, contributing to high blood pressure, fluid retention, and an imbalance of electrolytes. Therefore, individuals with these conditions should be particularly mindful of their sodium intake. In these scenarios, reducing salt consumption can help mitigate the associated health risks and symptoms. Switching to a diet rich in whole, unprocessed foods, and taking conscious steps to limit the use of added table salt can play a crucial role in managing these health conditions. As always, it is essential to seek personalized advice from a healthcare professional, as individual needs may vary. In summary, while salt is often villainized in the health community, its consumption, especially from natural sources, is vital for maintaining bodily functions like nerve conduction, muscle contraction, and fluid balance. However, EXCESSive or inadequate sodium intake can have adverse health effects, such as hypertension, imbalances in cholesterol and triglycerides, and even hyponatremia in severe cases. Certain health conditions, including endocrine disorders, high aldosterone levels, Cushing's syndrome, and elevated cortisol levels, can also exacerbate these risks, making it crucial for individuals with these conditions to carefully monitor their salt intake. On the other hand, increasing potassium intake can help maintain an optimal sodium-potassium balance, reducing blood pressure and lowering the risk of cardiovascular diseases. In a nutshell, moderation and balance are key in sodium consumption, but the emphasis should be on consuming more potassium-rich foods to ensure your potassium intake is higher than sodium levels which will ensure a healthier dietary approach.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6582) Understanding Benfotiamine: The Fat-Soluble, Bioavailable and Physiologically Active Form of Thiamine
Date:
July 27, 2023 12:12 PM
What if there existed a form of thiamine that was more bioavailable and physiologically active than the conventional form we all know about? Well, that form does exist, and it is called Benfotiamine. Benfotiamine has been gaining popularity lately, especially among people dealing with diabetes and other metabolic disorders. But what exactly is Benfotiamine, and what makes it different? Lets explore Benfotiamine, its bioavailability, and its physiological effects. Thiamine, also known as Vitamin B1, is a nutrient that plays a crucial role in energy production, nerve function, and metabolism. It is a water-soluble vitamin, which means it dissolves in water and is not stored by the body. However, conventional forms of thiamine have a limited ability to cross cell membranes and are easily excreted out of the body, rendering it ineffective for some individuals. This is where Benfotiamine comes in; it is a modified form of Vitamin B1 that is fat-soluble, highly bioavailable, and because cells are wrapped in lipid fat this form of B1 is capable of crossing cell membranes with ease. Since our cell membranes are composed of lipids, fat-soluble nutrients can easily penetrate the cell barrier and get into living cells where the vitamin is needed. Upon entering the bloodstream, benfotiamine is converted to thiamin pyrophosphate (TPP), the biologically active co-enzyme of thiamin, which is responsible for energy metabolism. By raising the blood levels of TPP, benfotiamine has been shown to support glucose metabolism, reduce oxidative stress and inflammation, and protect against the damage caused by high levels of advanced glycation end products (AGEs). In addition to its bioavailability, benfotiamine has been shown to have several physiological effect on the body. One of the key enzymes that benfotiamine influences is transketolase, which is involved in the pentose phosphate pathway, a metabolic pathway that generates NADPH, a vital molecule that protects cells against oxidative stress. By stimulating transketolase, benfotiamine supports the diversion of EXCESS glucose to the pentose phosphate pathway, thereby reducing the production of reactive oxygen species and increasing the production of NADPH. Another significant benefit of benfotiamine is that it helps protect the nervous system. Chronic high blood glucose levels are known to cause oxidative stress and to damage the peripheral and central nervous systems. However, benfotiamine has been shown to help lower oxidative stress markers and reduce the risk of nerve damage. This can in turn help reduce pain, numbness, and tingling sensations associated with nerve damage, making it a promising adjunct therapy for people with diabetic neuropathy. In Summary: benfotiamine is a modified and bioavailable form of thiamine that offers unique benefits compared to conventional forms of Vitamin B1. Its fat-solubility enables it to cross cell membranes, raise levels of thiamin pyrophosphate, stimulate the transketolase enzyme, and support proper glucose metabolism. Its notable effects on the nervous system make it an attractive therapeutic agent for people with diabetic neuropathy. If you're seeking an alternative and highly effective form of thiamine, benfotiamine is definitely worth considering. Give it a try today!
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6580) How to Know if You Need Long-Lasting Deodorant Protection
Date:
October 29, 2022 09:40 AM
NOW® Solutions long-lasting deodorant is scientifically formulated, combining the odor-fighting properties of zinc oxide with the floral notes of rose and ylang ylang. It offers amazing protection that you can count on to feel fresh throughout the day. But how do you know if you need long-lasting odor protection? Here are a few telltale signs: Body odor that persists even after bathing Intense body odor that causes people to take notice (and not in a good way) EXCESSive sweating that leads to chafing and discomfort If any of these sound familiar, then NOW® Solutions long-lasting deodorant is right for you. Keep reading to learn more about this product and how it can help you feel your best. What is NOW® Solutions Long-Lasting Deodorant? NOW® Solutions long-lasting deodorant is an all-natural, aluminum-free deodorant that uses zinc oxide—a naturally occurring mineral with astringent, antiseptic, and absorbent properties—to help control body odor. Zinc oxide has been used for centuries for its ability to soothe and protect the skin, making it an ideal choice for those with sensitive skin. Combined with the floral notes of rose and ylang ylang, NOW® Solutions long-lasting deodorant offers a refreshing scent that will leave you feeling refreshed and confident all day long. And because it's aluminum-free, you can rest assured knowing that NOW® Solutions long-lasting deodorant is safe for your skin. How Does NOW® SolutionsLong-Lasting Deodorant Work? The science behind NOW® Solutions long-lasting deodorant is simple but effective. When applied to the skin, zinc oxide creates a barrier that helps to absorb wetness and inhibits the growth of bacteria—the main cause of body odor. At the same time, the natural oils in rose and ylang ylang work to mask any existing body odor while also providing a pleasant scent. Together, these ingredients offer complete protection against body odor—all day long! Body odor is never fun—for you or those around you. If you're looking for a natural solution that will keep you feeling fresh all day long, look no further than NOW® Solutions long-lasting deodorant. Formulated with zinc oxide and essential oils, NOW® Solutions long - lasting deodorant provides complete protection against body odor without the use of harsh chemicals or aluminum. So why wait? Give NOW® Solutions long - lasting deodorant a try today!
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6547) Is your body in need of long-lasting odor protection?
Date:
October 29, 2022 09:39 AM
Underarm and foot odor can be a real problem, especially in the summer months when we are more active and tend to sweat more. NO Solutions long-lasting deodorant is a great option for anyone looking for a natural, long-lasting solution to this problem. Formulated with zinc oxide and essential oils, it provides effective, all-day protection against body odor. What Causes Underarm and Foot Odor? Underarm and foot odor are caused by the bacteria that live on our skin. When we sweat, the bacteria break down the sweat into acids, which can cause an unpleasant odor. Antiperspirants work by blocking the pores and preventing sweat from being secreted onto the surface of the skin. However, many antiperspirants contain aluminum, which has been linked to health concerns such as breast cancer and Alzheimer's disease. NO Solutions long-lasting deodorant is a great aluminum-free alternative for those looking for effective, natural underarm and foot protection. The zinc oxide works to absorb EXCESS moisture while the essential oils kill bacteria and help to neutralize odors. This unique formula provides long-lasting protection against underarm and foot odor without any of the health concerns associated with aluminum-based antiperspirants. If you are looking for a natural, long-lasting solution to underarm or foot odor, NOW Solutions long-lasting deodorant is a great option. Formulated with zinc oxide and essential oils, it provides effective protection against body odor without any of the health concerns associated with aluminum-based antiperspirants. Give it a try today!
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6546) How to Detox Your Skin with Charcoal Gel Cleanser
Date:
September 28, 2022 11:30 AM
There are a lot of products on the market that claim to help detox your skin, but not all of them are created equal. That's why we're breaking down why NOW® Solutions Charcoal Detox Gel Cleanser is our top pick for detoxing your skin. This deep cleansing formula is infused with activated charcoal, which helps absorb EXCESS oil, dirt, and impurities to refine the appearance of pores. In addition, superfruits acai and goji berry help to rejuvenate skin and replenish its youthful glow with antioxidants. Together they help improve and refine skin texture, brighten skin clarity, and minimize pore appearance over time, leaving you with skin that looks and feels hydrated and completely refreshed. Why Activated Charcoal? Activated charcoal is a natural way to detoxify your skin by binding to impurities and drawing them out from your pores. It's an effective way to cleanse your skin without stripping it of its natural oils or causing irritation. The result is clean, clear, and refreshed skin. Acai and Goji Berry Acai and goji berry are super fruits that are packed with antioxidants. Antioxidants are important for neutralizing free radicals, which can damage skin cells and lead to premature aging. In addition, antioxidants help to protect against environmental stressors like pollution and UV rays. Together, these superfruits help improve skin texture, brighten skin clarity, and minimize pore appearance over time. How to Use For best results, use NOW® Solutions Charcoal Detox Gel Cleanser as part of your daily skincare routine. Gently massage a small amount onto dampened face and neck using circular motions. Rinse thoroughly with warm water and pat dry. Follow up with a toner and moisturizer. Use morning and evening for best results. In Summary: If you're looking for a natural way to detoxify your skin, look no further than NOW® Solutions Charcoal Detox Gel Cleanser! This deep cleansing formula is infused with activated charcoal, which helps absorb EXCESS oil, dirt, and impurities to refine the appearance of pores. In addition, superfruits acai and goji berry help to rejuvenate skin and replenish its youthful glow with antioxidants. Together they help improve and refine skin texture, brighten skin clarity, and minimize pore appearance over time, leaving you withskin that looks and feels hydratedand completely refreshed. So what are you waiting for? Give it a try today!
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6469) Vitamins C and D: The Immune System Supplements You Need
Date:
August 02, 2022 05:39 PM
It's that time of year again. The leaves are changing color, the days are getting shorter, and people are starting to get sick. If you're looking for a way to boost your immune system, you may want to consider taking vitamins C and D. These two essential nutrients have been shown to be beneficial for immune health, and can help keep you healthy during the cold and flu season. Lets discuss the benefits of Vitamins C and D for immunity, as well as how to get them into your diet. What are Vitamins C and D, and what do they do for the immune system? vitamins C and D are essential nutrients that play a vital role in supporting the immune system. Vitamin C is a powerful antioxidant that helps to protect cells from damage, while vitamin D helps to regulate the body's response to infection. Both vitamins are found in a variety of foods, including citrus fruits, leafy greens, eggs, and fatty fish. In addition, both vitamins can also be taken as supplements. While both vitamins are important for immune system health, vitamin C is particularly critical during times of heightened stress or illness, as it helps to boost the body's production of white blood cells. Vitamin D, on the other hand, is essential for maintaining a healthy balance of inflammation in the body. Without adequate levels of vitamin D, the body may become EXCESSively reactive to foreign invaders, leading to chronic inflammation and a higher risk of infection. Together, vitamins C and D play an important role in keeping the immune system functioning properly. Are there any side effects associated with taking too much of these vitamins? Although you can get vitamins C and D through your diet, sometimes it's not enough to boost your immune system. The only way to ensure you're getting enough of these essential vitamins is to supplement your diet with pills or injections. Vitamin C is found in citrus fruits, tomatoes, potatoes, and leafy green vegetables. However, your body can't store vitamin C, so you need to consume it on a daily basis. Vitamin D is found in fatty fish, egg yolks, and fortified milk. However, most people don't get enough vitamin D from their diet and need to supplement it with pills or injections. Supplementing your diet with vitamins C and D is the only way to ensure you're getting enough of these essential nutrients to boost your immune system. How can you make sure that you're getting the most out of your vitamins C and D supplements for immune health? When it comes to vitamins C and D, there are a few things you can do to make sure you're getting the most out of them. First, vitamin C should be taken in divided doses throughout the day. This ensures that your body has a constant supply of the vitamin and can make use of it more efficiently. Second, vitamin D can be taken once per day. Finally, remember to take your vitamins with food. This ensures that your body gets the full benefits of the nutrients and doesn't waste any of them. By following these simple tips, you can help ensure that you're getting the most out of your vitamins C and D. What are some other ways to boost your immune system during the cold and flu season? While there are many products on the market that claim to boost your immune system, there is no magic pill that can protect you from colds and flu. However, there are a few simple steps you can take to reduce your chances of getting sick. First, make sure you're getting enough sleep. Sleep helps your body to repair and regenerate cells, which is essential for maintaining a strong immune system. Second, eat a healthy diet. Eating plenty of fruits and vegetables will give your body the nutrients it needs to fight off infection. Finally, try to reduce stress. Stress can weaken your immune system, so it's important to find ways to relax and de-stress. Taking these simple steps will help you stay healthy during cold and flu season. It's important to get enough vitamins C and D to boost your immune system. You can do this by supplementing your diet with pills, eating a healthy diet, and getting enough sleep. By following these simple tips, you can help ensure that you're getting the most out of your vitamins C and D supplements and keep your immune system functioning properly during cold and flu season.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6423) IGF-1: How to Improve Muscle Gain
Date:
July 20, 2022 03:38 PM
If you're looking to improve muscle gain, IGF-1 is a hormone you'll want to know about. This hormone is responsible for increasing muscle mass and strength, and has been shown to be incredibly effective in doing so. We'll discuss what IGF-1 is, how it works, and the best ways to increase its levels in your body for improved muscle growth. IGF-1 is from Deer Antler Velvet. What is IGF-1 and what does it do? IGF-1, or insulin-like growth factor 1, is a hormone that plays an important role in the growth and development of the human body. While it is most commonly associated with childhood growth, IGF-1 continues to be produced throughout adulthood and is involved in a variety of physiological processes. In addition to promoting cell proliferation and differentiation, IGF-1 has been shown to stimulate collagen production, increase bone density, improve muscle growth, and improve glucose tolerance. Despite its many beneficial effects, EXCESSive levels of IGF-1 can lead to a number of health problems, including cancer. For this reason, it is important to maintain healthy levels of IGF-1 throughout life. How does IGF-1 work? IGF-1, or insulin-like growth factor 1, is a hormone that plays an important role in childhood growth and development. In the body, IGF-1 is produced in response to growth hormone (GH) stimulation. Once released, it travels through the bloodstream and binds to IGF-1 receptors on cells, provoking a range of different cellular effects. These include cell proliferation, differentiation, and survival. In addition, IGF-1 has been shown to promote angiogenesis (the formation of new blood vessels) and to inhibit apoptosis (programmed cell death). Together, these effects make IGF-1 an important regulator of tissue growth and repair. Consequently, serum levels of IGF-1 are closely monitored in children with GH deficiencies, as well as in those who are at risk for cancer or other diseases involving abnormal cell growth. IGF-1 an important regulator of tissue growth and repair, lifting weights tears down muscle fibers and the body can rebuild faster. IGF-1 is a protein that plays an important role in the growth and repair of tissues throughout the body. It is particularly well-known for its ability to help the body rebuild muscle tissue after exercise. When we lift weights, we cause tiny tears in our muscle fibers. In response, the body releases IGF-1 to help repair the damage. This results in an increase in muscle size and strength. Additionally, IGF-1 has been shown to promote healing after injuries and to protect against cell damage caused by stress and inflammation. Therefore, it is not surprising that IGF-1 is often referred to as the "body's repairman." While more research is needed to fully understand the role of IGF-1 in health and disease, there is no doubt that this protein plays a vital role in maintaining our bodies' peak performance. The benefits of increased IGF-1 levels? However, IGF-1 levels decline with age, which may contribute to the age-related decline in muscle mass and strength. Therefore, maintaining high levels of IGF-1 throughout life may be important for preserving muscle mass and function. How to increase your IGF-1 levels for improved muscle growth? As we already know, levels of IGF-1 decline with age, which may explain why older adults tend to have less muscle mass than young people. However, there are several ways to increase IGF-1 levels and improve muscle growth. One of the most effective methods is to take deer antler velvet, which is the highest natural source of IGF-1. Deer antler velvet can be taken in pill form or made into a liposomal supplement, which helps the body absorb the IGF-1 more effectively. Additionally, regular exercise and proper nutrition are important for supporting muscle growth and keeping IGF-1 levels high. Fortunately, Now Foods makes a liposomal IGF-1 supplement. Low levels of IGF-1 have been linked to a variety of health problems, including muscle wasting, osteoporosis, and heart disease. Fortunately, Now Foods makes a liposomal IGF-1 supplement that can help to raise IGF-1 levels and improve overall health. Liposomal delivery is the most efficient way to increase blood levels of IGF-1, and the fact that this supplement is also affordably priced makes it an attractive option for many people. If you are looking for a way to improve your health, consider giving Now Foods liposomal IGF-1 a try.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6417) 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) High Fiber Diet May Reduce Risk of Dementia
Date:
April 29, 2022 03:54 PM
A high fiber diet may reduce the risk of developing dementia, according to a study published in the journal Neurology. The study found that people who ate the most fiber were 30% less likely to develop dementia than those who ate the least fiber. This is an important discovery, as dementia is becoming increasingly common around the world. There are currently about 47 million people living with dementia, and this number is expected to grow to 135 million by 2050. What is dementia and what are the symptoms? Dementia is a general term for a decline in mental ability due to disease or injury. symptoms can vary greatly from person to person, but may include problems with memory, mood, and thinking. People with dementia may have difficulty remembering recent events or familiar faces, and they may become confused about time and place. They may also have trouble completing familiar tasks, such as cooking a meal or getting dressed. As the disease progresses, people with dementia may lose the ability to communicate or take care of themselves. Dementia is not a normal part of aging, and it can affect people of all ages. There is no one test that can diagnose dementia, and doctors often use a combination of medical tests, brain scans, and neurological exams to make a diagnosis. There is no cure for dementia, but there are treatments that can help people manage the symptoms and improve their quality of life. What causes dementia? Dementia is a complex neurological disorder with no known underlying cause. While some theories suggest that environmental factors such as exposure to certain toxins or injuries may play a role, the exact mechanisms underlying dementia remain uncertain. Some researchers have proposed that dementia may be related to problems in the functioning of certain proteins in the brain, while others have suggested that chronic inflammation may also be involved. However, there is still much work to be done in terms of understanding the biological mechanisms underlying this debilitating and often devastating illness. Ultimately, identifying the precise causes of dementia will help inform more targeted and effective treatments for this disease, allowing those affected by it to live fuller and healthier lives. How can a high fiber diet reduce the risk of developing dementia? A diet rich in fiber has been linked with a reduced risk of developing dementia. Fiber is a type of carbohydrate that the body cannot digest, and it is found in plant-based foods such as fruits, vegetables, and whole grains. Foods high in fiber are known to promote gut health, and some studies have suggested that gut inflammation may play a role in the development of dementia. In addition, fiber-rich foods tend to be high in antioxidants and other nutrients that have been linked with brain health. For these reasons, increasing your intake of fiber-rich foods may help to reduce your risk of developing dementia. What are some good sources of fiber? There are many good sources of fiber, including both plant-based and animal-based foods. Psyllium husk, which is made from the soluble fibers found in the seeds of a Mediterranean shrub called Plantago ovata, is a popular option due to its high concentration of dietary fiber and other nutrients. Inulin, meanwhile, is a type of carbohydrate that is naturally found in many fruits, vegetables, and legumes. Both psyllium husk and inulin are excellent sources of nutrition that can help promote good digestive health and overall well-being. Other common sources of dietary fiber include whole grains like oats and barley, as well as beans, lentils, nuts, and seeds. Whether you are looking for plant-based or animal-based sources of fiber, there are plenty of options out there to suit your needs. How much fiber should you eat each day? There is no single answer to the question of how much fiber you should eat each day. The amount of fiber that your body needs will depend on a number of factors, including your age, sex, and overall health status. In general, most health experts recommend consuming between 25 and 35 grams of fiber per day. This can typically be achieved by eating a balanced diet that includes a variety of fiber-rich foods, including fruits, vegetables, nuts, seeds, whole grains, and legumes. Furthermore, it is important to remember that fiber needs can vary depending on your symptoms or underlying condition. So if you are experiencing any gastrointestinal issues or other health concerns, it is best to consult with your doctor to determine the right amount of dietary fiber for your body. Are there any risks associated with eating a high fiber diet? While fiber is an essential part of a healthy diet, it is important to be aware of the potential risks associated with eating too much fiber. Fiber is a type of carbohydrate that the body cannot digest, and it is typically found in plant-based foods such as fruits, vegetables, and whole grains. When fiber is not broken down by the body, it can bind to other nutrients and substances in the digestive tract and cause them to be eliminated from the body before they are absorbed. This can lead to nutrient deficiencies and other health problems. In addition, consuming large amounts of fiber can also cause bloating and gas. How can you prevent dementia from developing? There is no one definitive cause of dementia, but there are a number of risk factors that have been identified as contributing to its development. These can include things like a genetic predisposition, lifestyle factors like drinking and smoking, and certain health conditions. Because these risk factors can vary widely from person to person, there is no one strategy that will prevent dementia in everyone. However, there are some general measures that anyone can take to lower their risk of developing dementia. These might include maintaining healthy eating habits, staying physically active, and avoiding EXCESSive exposure to environmental toxins. Additionally, early diagnosis and treatment for any existing health conditions can also play an important role in reducing the likelihood of dementia. By taking these proactive steps, it is possible to greatly reduce your risk of developing this debilitating condition. Vitamins and Dementia Some studies have suggested that certain vitamins may help to prevent dementia. Vitamin B6, B12, and folic acid are involved in the metabolism of homocysteine, a substance that has been linked to an increased risk of Alzheimer's disease. Vitamin E is an antioxidant that helps to protect cells from damage, and it has been suggested that this may help to slow the progression of dementia. Fruits and vegetables can help the body combat dementia Recent studies have suggested that diet may also play a role in the development of dementia. In particular, fruits and vegetables appear to offer some protection against the disease. The antioxidants found in these foods help to fight inflammation and damage to cells, both of which are thought to contribute to the development of dementia. In addition, fruits and vegetables are a good source of vitamins and minerals, which are essential for brain health. Thus, incorporating more fruits and vegetables into your diet may help to reduce your risk of developing dementia.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6400) Can the Liver Be Repaired Once It Is Damaged?
Date:
April 29, 2022 11:33 AM
https://vitamins.vitanetonline.com/wp-content/uploads/liver-2934612_1920.png What is the liver and what does it do? The liver is a large, multi-functional organ that plays a vital role in the body. Its primary function is to filter the blood and remove toxins, but it also helps to regulate metabolism, store nutrients, and produce bile. The liver is divided into two main lobes, the right lobe and the left lobe. The right lobe is slightly larger than the left lobe and includes the quadrate lobe and caudate lobe. The left lobe contains the left lateral section and the medial section. The hepatic veins drain blood from the liver and pass it through the inferior vena cava to be returned to the heart. The hepatic arteries supply oxygenated blood to the liver tissue, while the portal vein carries nutrient-rich blood from the digestive organs. The bile ducts transport bile produced by the liver cells to the gallbladder, where it is stored until needed for digestion. The liver is a hardworking organ that performs many crucial functions in the body. By keeping it healthy, we can help to ensure that our entire body remains healthy and functioning properly. What can damage the liver and how does that damage occur? The liver is a vital organ that performs many important functions, such as filtering toxins from the blood and producing bile to help digest fats. However, the liver can be damaged by a number of different agents, including viruses, alcohol, and certain medications. Viruses such as hepatitis C and hepatitis B can cause inflammation of the liver, which can lead to scarring and eventually to liver failure. Alcohol abuse is also a major cause of liver damage, as it can lead to fatty deposits, inflammation, and scarring. In addition, certain drugs (such as acetaminophen) can cause toxic damage to the liver cells. If the liver is not functioning properly, it can result in a build-up of toxins in the blood, which can lead to serious health problems. Can the liver be repaired once it is damaged, and if so, how is that done? The liver is a amazing organ. It is responsible for so many important functions in the body, from filtering toxins to producing bile to breaking down fats. When it is damaged, it can often repair itself. This is because the liver has a high regenerative capacity. hepatocytes, which are the main type of liver cell, can divide and grow back quickly when necessary. In fact, as long as about 25% of the liver remains healthy, it can regenerate itself completely over the course of a few weeks. There are a number of ways to damage the liver, such as through alcohol abuse or viral infections, but fortunately there are also ways to help it repair itself. Eating a healthy diet, getting enough exercise, and avoiding toxins, take liver supporting supplements like milk thistle and NAC can all support liver health and regeneration. How can people prevent their livers from being damaged in the first place? The liver is a vital organ that plays an important role in metabolism. However, the liver can also be easily damaged by alcohol, drugs, prescriptions, and environmental toxins, which are in the foods we eat. To help prevent liver damage, it is important to avoid EXCESS alcohol consumption or avoid it all together, take medication as directed and if you are on medications that cause liver damage to discuss alternatives that do not harm the liver, and eat a healthy diet along with taking liver supporting supplements. Additionally, it is important to get regular exercise, as this helps to keep the liver healthy and functioning properly. By taking these steps, people can help to prevent liver damage and keep their organs healthy. Are there any lifestyle changes or supplements that can help improve liver function even if it has been damaged already? Liver damage is a serious concern for many people, as it can lead to a number of health problems. While there is no guaranteed way to reverse liver damage, there are some lifestyle changes and supplements that may help improve liver function. One potential change is to limit alcohol consumption, as alcohol is known to be damaging to the liver, mixing alchol and drugs can enhance the progress of liver damage. Additionally, eating a healthy diet and exercising regularly can help improve overall liver function. There are also a number of herbal supplements that are thought to be beneficial for the liver, such as milk thistle and dandelion root. However, it is important to speak with a healthcare provider before starting any new supplement, as some may interact with other medications. What are the possible consequences of not repairing a damaged liver? Liver damage can have serious consequences if left untreated. Depending on the cause, there may be a variety of negative effects that result from an injured liver. For example, if the damage is due to EXCESSive alcohol consumption, then scarring and inflammation of the liver tissue can interfere with its ability to filter toxins out of the blood. This can lead to a host of potentially dangerous health problems, including nausea, chronic fatigue, jaundice, and cirrhosis. You must address the cause before change for the good can happen. In addition, unresolved inflammation can increase one's risk of developing more serious conditions such as cancer or heart disease. To prevent these possible consequences, it is important to seek medical attention as soon as possible after suffering from liver damage. This will allow doctors to properly diagnose the issue and develop an appropriate treatment plan. Addressing the cause is always preferable over simply treating symptoms alone. Ultimately, taking action now can help you protect your health in the future. How can people find out if their livers need repair and where they should go for help if that is the case? When it comes to liver health, there are a number of ways to find out if your liver needs some repairs. One method is to get tested for elevated liver enzymes, which are indicative of problems with the organ. You can also watch out for certain symptoms, such as fatigue, bloating or skin discoloration. If you notice any of these markers, you may want to consult with your doctor or a specialist in liver disease, who can help determine the best course of action. Depending on the underlying cause of your liver problem, treatment options may include changes to your diet and exercise habits, medications or even surgery in extreme cases. Whatever route you choose, it is essential that you address any issues with your liver as soon as possible in order to protect your overall wellbeing. Generally, symptoms only show when liver function has dropped significantly. Liver damage can often go undetected until it has reached a advanced stage. This is because the liver has an incredible capacity for regeneration and can continue to function even when up to 75% of it has been damaged. As a result, symptoms of liver disease often only become apparent when the organ has been severely compromised. By that point, the damage may be irreversible and serious complications may have developed. Therefore, it is important to be aware of the early signs of liver damage so that treatment can be started as soon as possible. These include fatigue, weight loss, abdominal pain, and yellowing of the skin and eyes. Fortunately, Supplements like Milk thistle and NAC may help the body assist the liver in its repair. The liver is a hardworking organ that is constantly exposed to toxins. As a result, it is susceptible to damage. Fortunately, supplements like milk thistle and NAC may help the body assist the liver in its repair. Milk thistle contains silymarin, a compound that helps to protect the liver from damage. NAC is an amino acid that helps to remove toxins from the liver. NAC also helps to replenish glutathione, a substance that plays a key role in liver detoxification. Together, these supplements can help to keep the liver healthy and functioning properly. Whether you are looking for preventative measures to protect the liver or have an existing issue, it can never hurt to take either milk thistle, NAC, or both to support healthy liver function.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6396) What are the best clove substitutes?
Date:
May 09, 2019 04:31 PM
Cloves are a spice that can be added to soups, stews and other dishes to add flavor. However, if a recipe calls for cloves and you do not have any on hand there are other substitutes that you can use. Allspice is an easy substitute because both spices come from the same family. Cardamom is another substitute but does not taste quite as sweet. Use cardamom in conjunction with cinnamon as a substitute for clove, but use less than the cardamom than cloves. Key Takeaways:
"Allspice can be used to treat bloating, cramping, diarrhea, excessive flatulence, nausea, and vomiting." Read more: https://www.naturalnews.com/2019-04-02-what-are-the-best-clove-substitutes.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6294) How Does Excess Sugar Affect The Brain?
Date:
May 03, 2019 04:21 PM
Excess sugar intake is unambiguously harmful to the body and the brain. In addition to widely understood risks like diabetes and obesity, elevated blood sugar can produce anxiety and interfere with emotions and mood. Eating too much sugar can also impact your brain’s reward-response system in ways that make you hungrier and more prone to overeating. High blood sugar can also constrict blood vessels, contributing to impaired cognitive functioning. Eating more fresh fruit as a substitute for added sugar and DRINKING more water can help reduce sugar levels in the brain. Key Takeaways:
"Excess sugar intake does damages our bodies in more ways than one." Read more: https://www.longevitylive.com/anti-aging-beauty/excess-sugar-brain/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6256) What is liver cirrhosis? (and is alcohol always the cause of it?)
Date:
May 02, 2019 11:59 AM
Cirrhosis is the advanced scarring of liver tissue. When the liver is injured, it will try repair itself, but this can lead to scarring (a.k.a. fibrosis). Advanced levels of scarring is cirrhosis. Excess drinking is a common cause of liver cirrhosis, but it isn't the only cause. A condition known as Nonalcoholic Fatty Liver Disease (NAFLD), actually the most common cause of liver disease in the U.S., can also lead to the disease. People who are overweight are at risk for NAFLD, so maintaining healthy weight is one way to prevent cirrhosis. Avoiding excess alcohol consumption is another. Finally, eating plenty of green leafy vegetables can protect the liver from damage. Key Takeaways:
"Each time that the liver is injured — whether by disease, excessive alcohol consumption, or fat cells that become toxins — it will try to repair itself." Read more: https://www.naturalnews.com/2019-03-26-what-is-liver-cirrhosis-and-is-alcohol-always-the-cause-of-it.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6235) Milk thistle combats liver disease and offers blood sugar control
Date:
April 29, 2019 02:43 PM
As holistic medicines and natural remedies continue to be looked for, especially as more data and evidence shows the immense benefits that many of these can have for an individual, one natural cure that has been looked into is that of milk thistle. Specifically so, milk thistle has been found to be significantly beneficial when it comes to helping with the problems of liver disease, and can be beneficial for those who want to have better control of blood sugar levels. Key Takeaways:
"By the way, you should know that metabolic syndrome – associated with excess consumption of sugars and fats, obesity and a sedentary lifestyle – is a leading cause of NAFLD." Read more: https://www.naturalhealth365.com/milk-thistle-liver-disease-2786.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6210) What Does Obesity Mean for Your Health, Heart, Thyroid, Diabetes
Date:
April 23, 2019 01:50 PM
Many people who are concerned in general terms about obesity still have gaps in their knowledge regarding several specific health consequences, according to the Cleveland Clinic Heart Health Survey. The survey indicated that, while most people understand that obesity is bad for cardiac health, they may not appreciate the role of triglycerides or different types of cholesterol. Likewise, relatively few respondents have made major dietary changes to try to lose weight, and my people appear not to understand that even relatively modest weight loss can have significant health benefits. Key Takeaways:
"Carrying excess weight worsens glucose tolerance and also increases the risk of developing certain cancers." Read more: https://www.endocrineweb.com/news/obesity/61589-what-does-obesity-mean-your-health-heart-thyroid-diabetes
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6155) Why do I have so much gas?
Date:
April 22, 2019 04:26 PM
Gas and bloating can have a variety of causes. Constipation allows fecal matter to ferment and feed bacteria in the colon, for example. Cruciferous vegetables can also cause excess gas because they contain indigestible raffinose. Carbonated beverages, artificial sweeteners and chewing gum are some additional common causes. People with lactose intolerance can get bloated if they consume dairy products, as can people who consume too much fiber or are too sedentary. In some cases, excess gas can be a sign of an underlying condition like celiac disease or pancreatic insufficiency. Key Takeaways:
"While gas is usually just a normal part of gut function, it can, rarely, be the sign of an illness. Celiac disease, an autoimmune disorder triggered by gluten, can lead to gas and bloating. Excessive gas can also be the result of pancreatic insufficiency, a disease in which the pancreas doesn’t produce enough of the enzymes needed to digest food." Read more: https://www.today.com/health/why-do-i-have-so-much-gas-t150006
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6151) 9 Reasons You’re Not Losing Weight on Keto
Date:
April 22, 2019 04:13 PM
The keto diet can be a very effective way for individuals to shed excess pounds, but if it is not practiced correctly, the results will remain limited. In order to optimize the diet’s effectiveness, dieters who find their progress stalling should attempt to reduce the amount of carbohydrates and proteins they are eating, assess whether their overall food intake might be either too low or too high, focus on triggering ketosis, get regular sleep and exercise. If these strategies fail, it might be time to adjust inflated expectations or consider the possibility of a medical condition that is inhibiting weight loss. Key Takeaways:
"To calculate net carbs, simply subtract the total grams of fiber from the total grams of carbs in your foods. High-fiber keto foods like certain veggies are great choices to help keep carb consumption low while squeezing in plenty of vitamins and minerals to support better health." Read more: https://draxe.com/reasons-not-losing-weight-on-keto/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6147) How does poor gut health affect vitamin C and E in metabolicsyndrome? - Medical News Bulletin
Date:
April 16, 2019 10:53 AM
Metabolic syndrome involves a combination of at least three out of five conditions — hypertension, abdominal obesity, low “good cholesterol,” and excessively high fasting blood glucose and serum triglyceride scores. Metabolic syndrome is a major public health concern, given that more than a third of American adults have it. Recent studies suggest that eating too much saturated fat can imbalance the bacteria in the gut. This results over time in oxidative stress and inflammation that can deplete the body’s stockpiles of vitamins C and E, and also make it harder to absorb more vitamin C from food to replace what has been used up. Vitamins C and E play an important role in protecting against oxidative stress. Key Takeaways:
"Around 35% of the American adult population has metabolic syndrome, with a higher prevalence in older age groups." Read more: https://www.medicalnewsbulletin.com/poor-gut-health-vitamin-c-e-metabolic-syndrome/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6133) 3 Nutrients that reduce excessive amounts of the stress hormonecortisol
Date:
February 28, 2019 08:47 AM
In the appropriate quantities, the stress hormone known as cortisol is actually beneficial to our bodies. It's when these levels rise to an abnormal level that they can become detrimental to our bodies. Fortunately, there are many natural nutrients that can aid in the reduction of cortisol levels in order to get them down to a more efficient level. Foods that are high in omega-3 fatty acids, for instance, are great sources of health benefits including cortisol regulation. Key Takeaways:
"Too much cortisol in the body, which can be attributed to stress, lack of sleep, infections, or white light exposure, can become a problem since it depletes the adrenals that also produce other hormones." Read more: https://www.naturalnews.com/2019-01-13-3-nutrients-that-reduce-excessive-stress-hormone-cortisol.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=6059) Omega-3 supplementation lessens symptoms of depression in peoplewith chronic heart failure
Date:
January 11, 2019 08:19 AM
A study based in America called "Journal of the American College of Cardiology" has recently released information that points to how omega-3 fatty acids have the ability to improve health outlooks for those suffering from chronic cardiovascular failure known as congestive heart failure. Regular consumption of omega-3 fatty acids have not only shown to positively contribute to remedying cardiovascular issues, but it has also shown to reduce stress, depression, and other psychological issues that many patients face. Key Takeaways:
"Omega-3 fatty acids, which are essential for overall health, are now associated with improved symptoms of depression in patients with chronic heart failure." Read more: https://www.naturalnews.com/2019-01-02-omega-3-supplementation-lessens-symptoms-of-depression-in-people-with-chronic-heart-failure.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5955) Nutritional benefits that prove moringa really is a "miracle tree"
Date:
January 09, 2019 09:15 AM
Known as the miracle tree, the moringa plant has many health benefits derived from its pods, leaves, and seeds. Moringa is grown in northern India and is commonly used by natives in cooking. The seeds of the moringa are rich in both antioxidants and anti-inflammatories, making it very beneficial for those with ulcerative colitis and other GI conditions. Moringa seeds have also been shown to decrease blood sugar levels, making it the perfect superfood for diabetics or those at-risk. Furthermore, moringa seeds can help decrease one’s risk of developing breast, colon, and liver cancers by suppressing the spread of cancer cells. Key Takeaways:
"Moringa is a good source of healthy monounsaturated fats that lower bad cholesterol and consequently reduce the risk of heart disease. Previous studies have also shown that moringa seeds protect heart cells from damage induced by oxidative stress and excessive inflammation." Read more: https://www.naturalnews.com/2019-01-03-nutritional-benefits-that-prove-moringa-really-is-a-miracle-tree.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5943) What's The Difference Between Niacin And Niacinamide
Date:
December 19, 2018 08:31 AM
When it comes to Vitamin B3, not all forms of Niacin are created equally. Aside from the risk of allergens and impurities, there are also separate forms with critical distinctions. The pure form is made solely of nicotinic acid which causes the flushing effect when it is taken by humans. The flushing effect is a redness that starts in the face and expands outwards through the rest of the body. It can make the skin feel warm, dry, and itchy for half an hour. The flushing effect is associated with vascular dilation that helps open up the tiny capillaries and blood vessels to clean out all the toxic junk they may have accumulated. Nicotinic Acid Lowers Cholesterol Nicotinic acid is also associated with increasing HDL levels in the body to prevent heart disease and plaques from accumulating on the interior walls of arteries. Nicotinic acid is also known to lower the LDL and VLDL bad cholesterols that clog up arteries and lead to heart attacks and strokes. Other Benefits of Vitamin B3 Vitamin B3 plays a critical role in building enzymes that help us carry out over 200 physical functions in the body. It is not produced naturally but is absorbed from foods such as yeast, green vegetables, milk, eggs, legumes, and fish. Aside from cardiovascular health, it plays a critical role in nervous health and sex hormone production. How Does Niacinamide Differ? Niacinamide is a water-soluble form of Niacin that is used to treat deficiencies or for therapies when patients need to take higher doses regularly to treat pellegra and the deficiencies that lead to it. When an EXCESS of Niacin is built up in the body, your body may store it in this form. The chief distinction between this water-soluable hybrid and nicotinic acid is the effect on cholesterol and vascular dilation. Although flushing can be reduced by taking nicotinic acid daily and building up a tolerance to the effects, it is harder on the liver and more burdensome on the body to metabolize it in the high doses used for therapy of many illnesses: ADHD, Schizophrenia, nervous problems, migraines, and arthritis, among others. It is the preferred choice for maintaining a consistent and steady level of Vitamin B3 in the body and loaded into many beauty and skin products for women. What Other Forms Can I Take? You can take any form of the vitamin on a daily basis or supplement it with nicotinic acid when you need some additional flushing effect. You will notice that Niacinamide causes some symptoms of drying and itching that are similar to flushing when you take it in high doses. The no-flush formulation is called inositol hexanicotinate and made up from Vitamins B3 and Inositol Vitamin B8. The inositol acts as an additional buffer that makes inositol hexanicotinate easy to digest and take 1600 mg without side-effects: nausea, itching, flushing, dizziness, gout, liver damage, diabetes. Although multi-vitamin formulas and even fortified foods like breakfast shakes and cereals suggest that you are getting a full dose of B3 in each serving, this is very unlikely. The better choice is to take specifically formulated capsules rather than multivitamins if you are using it for therapeutic reasons.
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5911) Why you need sodium, and how much is necessary?
Date:
September 05, 2018 08:52 AM
Even though sodium is required for basic survival, over half of Americans consume too much of it, largely because it is so heavily used in processed foods. Too much sodium can cause a number of symptoms, including swelling from water retention, excessive thirst, brain fog, and hypertension. On the other hand, too little sodium (hyponatremia) is also dangerous to your health, especially To cardiac function. To keep your sodium within healthy limits, it’s important to really know what’s in your food, and avoid processed foods as much as possible. Key Takeaways:
"It is no secret that most of us consume way more sodium than our bodies need." Read more: https://www.naturalnews.com/2018-08-13-why-you-need-sodium-and-how-much-is-necessary-too-much-or-too-little-causes-health-issues.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5746) Liver damage is a growing epidemic
Date:
August 30, 2018 09:53 AM
The damage that is being done to young people's livers is rising at an exponential rate. The amount of alcohol that these people drink is insane and their livers are starting to take some serious damage. It is sad because people learn about the negative effects of alcohol but they still decide to abuse it. The lasting effects that occur on their bodies are really bad and they are things that many people struggle with for many years. Key Takeaways:
"According to researchers, the rise in cirrhosis mortality is entirely driven by excess alcohol consumption by young adults." Read more: https://www.healthnutnews.com/liver-damage-is-a-growing-epidemic/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5733) DHA supports liver health in people who eat a poor diet
Date:
August 29, 2018 09:53 AM
Recent research by Natural Health 365 indicates that docosahexaenoic acid (DHA) may help mitigate the impact of a bad diet or excessive weight on your liver. This omega-3 fatty acid appears to help combat nonalcoholic steatohepatitis, a condition in which fat builds up in the liver and damages it over time. Since nonalcoholic steatohepatitis is a major precursor to cirrhosis and to the need for a transplant, this is a remarkably important benefit for the substantial population of obese adults and children. Key Takeaways:
"An article on Natural Health 365 states that the omega-3 fatty acid can help mitigate the worst effects of liver damage, up to and including full-fledged liver disease." Read more: https://www.naturalnews.com/2018-08-27-dha-supports-liver-health-in-people-who-eat-a-poor-diet.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5730) How sleep habits affect weight goals: Survey reveals the ideal sleep schedule for shedding pounds
Date:
August 04, 2018 09:53 AM
A study of 1000 Brits found that people who get less than seven hours of sleep in an average night have noticeably more erratic eating patterns than their better-rested compatriots. People who got less than seven hours of sleep were more likely to break their diets, snack between meals and drink more alcohol. By contrast, people with consistently good sleep patterns found it easier to lose weight by dieting and had more regular, routine eating schedules. Scientists generally recommend going to bed around 10 PM to maximize your restorative REM sleep. Key Takeaways:
"Millions of adults are missing out on sleep, which leads to unhealthy lifestyle habits – such as excessive eating – in turn leading to a plethora of adverse health effects." Read more: https://www.naturalnews.com/2018-08-02-how-sleep-habits-affect-weight-goals.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5690) Echinacea Uses + Homemade Echinacea Extract
Date:
July 26, 2018 01:53 AM
Perennial-derived echinacea has been used for centuries in combating and preventing compromised immune systems through utilizing its extracted essential oil. Echinacea can be grown and harvested in your own home, where you can extract the oil and use it in various recipes such as echinacea teas. The consumption of echinacea has several health benefits, but most surround how it is so nurturing to our immune systems. Even consuming echinacea when you spot the first symptoms of a cold can help decrease the duration of the illness, as well as how excessive the symptoms are. Key Takeaways:
"Whether you’ve heard of echinacea or not, it’s an herbal flower remedy that can do wonders for the immune system, brain and skin." Read more: https://draxe.com/echinacea-uses/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5676) 7 Signs You Have Pounds Of Waste In Your Colon
Date:
July 11, 2018 05:54 PM
A human's body is remarkable at ridding the digestive tract of toxins and wastes. But what happens when a digestive system is not working quite right and not clearing the waste as it is supposed to do? Here are 7 signs that your body has pounds of waste in it. If you're especially tired, have foul breath despite frequent brushing, overweight, suffer from allergies, can't sleep, can't concentrate and suffer from acne then you might be harboring too much waste. Key Takeaways:
"When the colon becomes inundated with excess waste and toxins, it allows harmful compounds to make their way through the gut wall and into your bloodstream." Read more: https://www.thealternativedaily.com/7-signs-you-have-pounds-of-waste-in-your-colon/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5664) Vitamin K: The anti-aging supplement you probably havenâ??t heard about
Date:
June 20, 2018 04:44 PM
The yen to look younger than our actual years can be seen in the veritable arsenal of age-fighting cosmetics on the retail market. But, the search doesn't end there. The quest extends to supplements and other organic elements. One factor that can be a potent ally in the fight to stay younger looking may be easily overlooked. That element is vitamin K. It's probable that vitamin K gets overlooked because most people think of vitamin K as the blood-clotting factor, which it is, one type. The fact is there is a second type of the vitamin that works to prevent excessive buildup of calcium in the epidermis. This prevents wrinkles and boosts skin elasticity. Japanese women were the subject of a study wherein this was conclusively shown. The Japanese population studied consumed a lot of traditional fermented soy beans. Fermented foods are the primary source of the calcium-constraining vitamin, just as leafy greens are the usual food sources of the blood-clotting variant of the vitamin. Key Takeaways:
"But epidemiological evidence suggests that diet has more influence on how we look than we realize" Read more: https://www.naturalnews.com/2018-06-13-vitamin-k-the-anti-aging-supplement-you-probably-havent-heard-about.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5635) 5 Trending Adaptogenic Herbs To Reduce Anxiety And Depression
Date:
May 30, 2018 09:16 AM
Adoptogenic herbs are herbs that help the body to achieve balance. There non-specific nature is actually their strength, as the herb works to alleviate stress, by boosting what's lacking and reining in what's excessive, from nose to toes, across the body. And since it's all about stress, the herb makes no distinction between physical or emotional stresses. Studies have shown that various psychological conditions, such as anxiety, chronic stress, acute stress and depression are impacted in a positive way by adoptogenic herbs, such as Astragalus, Holy basil, and Asian Ginger. Key Takeaways:
"Everyone in the health world wants a piece of the adaptogenic action, and it’s not without reason." Read more: https://www.thealternativedaily.com/5-trending-adaptogenic-herbs-to-reduce-anxiety-and-depression/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5617) How to Treat Fatty Liver Disease Naturally at Home
Date:
May 28, 2018 01:16 PM
Liver disease can be a serious problem among the general population and contrary to popular belief, it is not necessarily confined to those that drink EXCESSive amounts of alcohol. There is an increasing body of evidence to suggest those who are obese are at a elevated risk of having NALFD, or non-alcoholic fatty liver disease. If you are concerned about contracting this disease you can take black seed oil, turmeric, ginger, milk thistle, and even dandelion root. https://www.youtube.com/watch?v=fmzIxvi-Eg4&rel=0
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5613) What's the Best Sleep Position for Your Health?
Date:
May 21, 2018 01:16 PM
Sleeping on your left side is considered the most advantageous sleeping position due to the fact that it allows toxins and EXCESS fluids to be removed from your body more easily. Other positions such as sleeping on your right side and sleeping on your back can also be beneficial but to a lesser extent. Sleeping either on your stomach or in a fetal position would rate as the least advantageous sleeping positions for several reasons including the strain each of those positions puts on your back. https://www.youtube.com/watch?v=blrAwlhoRrU&rel=0
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5599) Hibiscus extracts can be used to provide natural food coloring WITH health benefits
Date:
March 28, 2018 09:17 AM
While the hibiscus is known as a very ornamental bloom, gracing many gardens, it has an economic role to play as well, serving as a product of high significance in both the food and cosmetic industries. This dual nature of the plant arises from the fact that the hibiscus is both highly nutritious and also the source of a safe coloring agent that can be used even in foods. The periodical, 'Food Science and Human WellnessWellness', explored the viability of hibiscus-generated food coloring for cupcakes and found the resulting product to be both cost-effective and 'clean, ' with the added benefit of adding necessary flavonoids into the human diet. These anthocyanins, aside from the nourishment they provide, appear to be linked with the easing of numerous health complaints, including, hypertension, inflammatory conditions, coughing and excess weight. Key Takeaways:
"Extracts from hibiscus calyces could be used as a natural food coloring, which can provide health benefits at the same time, according to a study published in the journal Food Science and Human Wellness." Read more: https://www.naturalnews.com/2018-03-26-hibiscus-extracts-can-be-used-to-provide-natural-food-coloring-with-health-benefits.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5565) A flavonoid found in guava and Osage orange has antioxidant properties that can reduce inflammation and improve “neurological deficits”
Date:
January 23, 2018 07:59 AM
There was a study conducted at the Harbin Medical University in China that found that Morin, a flavanoid in guava and osage oranges could lessen inflamation and increase neurological deficits. It also has anti inflamation properties. In labratory mice this flavanoid seemed to reduce inflamation and restored the ability to walk, talk ( which is strange for a labratory mouse.), decreased mental function issues, and decreased loss of balance, and a weakness in the arms and legs. Essentially the study found that the flavanoid morin helped to counter act certain types of strokes, to increase motor functions to the patient. Key Takeaways:
"A person who smokes, drinks excessive amounts of alcohol, uses cocaine or methamphetamines, is overweight, or has diabetes is at risk of developing cerebral ischemia." Read more: https://www.naturalnews.com/2018-01-21-a-flavonoid-found-in-guava-and-osage-orange-antioxidant-properties.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5501) Fluoride exposure in utero linked to lower IQ in kids, study says
Date:
January 02, 2018 11:59 AM
High amounts of fluoride can be harmful to the development in children, especially in the prenatal stage of development. Most people get fluoride from their public water. Fluoride is added to water to aid in dental health. Studies have been done in Mexico that links high levels of fluoride intake affect the babies' development. China has also reported a similar study in the past that had similar outcomes. Constant excessive intake of fluoride also can cause yellowing of teeth and skeletal fluorosis. Key Takeaways:
"The study found a drop in scores on intelligence tests for every 0.5 milligram-per-liter increase in fluoride exposure beyond 0.8 milligrams per liter found in urine." Read more: http://www.cnn.com/2017/09/19/health/fluoride-iq-neurotoxin-study/index.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5474) Experts warn there is a new variant to metabolic problems: Type 3c diabetes is being misdiagnosed, which is why many aren't responding to treatment
Date:
November 25, 2017 07:59 AM
Type 3c diabetes is frequently being misdiagnosed as type 2 diabetes. This serious misdiagnosis is causing many patient to fall critically ill. As the doctor's treatment plan for type 2 diabetes isn't the right treatment path for type 3c diabetes. Type 3c diabetes is also called pancreatogenic diabetes. The inflammation and excessive tissue growth of the pancreas contribute to the onset of this serious condition. The wrong diagnosis can cause adverse medical conditions, both short and long term, for the patient involved. It is of vital importance that the medical profession inform themselves about this condition to avoid serious health risks from misdiagnosis to their patients. Key Takeaways:
"Our research shows that the majority of people with type 3c diabetes are being misdiagnosed with type 2 diabetes, putting both their short and long term health at risk" Read more: https://www.naturalnews.com/2017-11-21-experts-warn-there-is-a-new-variant-to-metabolic-problems-type-3c-diabetes-is-being-misdiagnosed-which-is-why-many-arent-responding-to-treatment.html
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5415) Want Better Vision Improve Eyesight Naturally With This Amazing Home Remedy
Date:
October 15, 2017 12:14 PM
Home remedies can help with many things. Many are gravitating back to natural cures for things now that we know more about the harsh chemicals in medications. The remedy mentioned here is good for eyesight. As many of us age our sight can become bad. Many even become legally blind. There are many causes of this. This simple remedy could help and is at least worth a shot since it is at least not going to hurt. https://www.youtube.com/watch?v=vXl6yuYlM6s&rel=0Key Takeaways:
"Lots of people continue to think that eyesight issues only appear with old age, and, many times, they ignore the necessary precautions to maintain healthy vision."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5340) This Drink Helps You Get Rid of Bloating & Belly Fat Naturally
Date:
October 07, 2017 12:14 PM
Bloating can be painful or just very uncomfortable. Your clothes don't fit correctly when it's going on either. This can actually be embarrassing because of a button being left undone or something. This drink can help make it better. It can also help with EXCESS belly fat which is a very hard kind of fat to burn off. It might be good to add this yto your diet since belly fat doesn't melt off even when you work out sometimes. https://www.youtube.com/watch?v=Tcz2FGPpymY&rel=0Key Takeaways:
"This combination can compliment a healthy diet to help you reach your goal."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5317) 4 Natural Ways To Remove Age Spots - How To Remove Aging Signs And Dark Spots
Date:
October 04, 2017 12:14 PM
There are 4 natural ways to remove aging signs from your skin. You can also get rid of dark spots that are on your skin. Our face and hands are affected the most. Our eating habits as well as our skin care routines are both very important things. They are important because they prevent and reduce aging spots on our skin. Age spots are a common sign of aging and they could appear around 40 years. https://www.youtube.com/watch?v=c5gF-zAHRds&rel=0Key Takeaways:
"Spending a couple of hours outside is important for our bodies to generate vitamin D. However, spending too much time, especially during the summer, damages the top layers of our skin and accelerates the degenerative process."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5309) Cleanse Your Liver and Burn Fat Overnight With This Amazing Detox Drink
Date:
September 22, 2017 12:14 PM
You can cleanse your liver and burn fat overnight with one amazing detox drink. Our liver does so many things that are essential to our bodies like purifying your blood. But, our eating habits can cause the liver to perform at a lower capacity. Thankfully, there is one drink that will naturally detox your liver. There are many ingredients that go into the drink like two apples and ginger. You will need water as well and kale. https://www.youtube.com/watch?v=cNAE86aCZT4&rel=0Key Takeaways:
"Our liver performs several functions that are fundamental to our bodies... So it's increasingly important to adopt a detoxification plan that aids your body in eliminating all of the residue that alter its main functions."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5272) This "Golden Honey" Mixture is The Strongest Known Natural Antibiotic
Date:
September 05, 2017 12:14 PM
There is a golden honey mixture that is the strongest known natural antibiotic. Honey is very rich in antioxidants as well as essential vitamins. It has regenerative properties and it fights against the negative effects of free radicals. It strengthens the tissue and increases the number of antibodies. It helps to reduce mucus in the airways as well. Turmeric is a great antibiotic as well. It is a natural painkiller. It balances inflammation in our tissue. Key Takeaways:
"Anti-inflammatory medication is used in order to eliminate excessive inflammation in the body, caused by our immune system as it defends itself from harmful pathogens." Read more: https://www.youtube.com/watch?v=ol_kw9FNceI
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5224) You Might Be Buying the Wrong Cinnamon
Date:
September 02, 2017 09:14 AM
While cinnamon has been linked to many body benefits, such as regulating blood sugar and lowering cardiovascular risk, it does nonetheless have coumarin, a compound that taken in excess amounts could lead to liver damage. For those that wish to continue to reap the benefits of cinnamon usage, without accruing the liver risks, it’s important to understand that there are two varieties of cinnamon. Cassia cinnamon, which has a stronger taste, is the variant most usually found in supermarkets, as well as the variant with the highest amount of coumarin. Meanwhile, Ceylon cinnamon, a native of Sri Lanka, which is also more costly than the Cassia cinnamon, has thinner layers than its more universally used counterpart and also up to 18 times less of the liver-damaging compound. Therefore, despite the cost, Ceylon may be the cinnamon health-seekers should look for. Key Takeaways:
"Many studies have overlooked the bifurcated nature of the spice, investigating both Ceylon and cassia cinnamon as one mutual substance." Read more: https://www.thedailymeal.com/healthy-eating/you-might-be-buying-wrong-cinnamon
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5207) Doctor's Orders: Reduce Your Sugar Intake to Lower Triglycerides
Date:
August 30, 2017 11:14 AM
Even the least health conscious consumer has been inundated with enough data to understand the red flag that is excess fat and cholesterol in the diet. Many of us are unaware of the nature of triglycerides, however, which are another important red flag. Triglycerides are fat within the body that arise from calorie consumption, but not directly from fat. When we consume more calories than we need, the body transforms these calories into fat, specifically triglycerides. Therefore decreasing actual fat consumption is not necessarily the most proactive way to reduce an unhealthy excess of triglycerides. Healthy triglyceride levels in human blood should average at less than 150 mg per deciliter. With higher levels comes a greater risk of clots and strokes. To mitigate the risk of these problems its a good idea to lower sugar and refined carbohydrate intake, as both of these categories are highly caloric, leading ultimately to a risk of high triglyceride production in the body. The American Heart Association recommends no more than 25-37 grams of sugar, or 6-9 tsps per day, for normal adults. Read more: Doctor's Orders: Reduce Your Sugar Intake to Lower Triglycerides
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5196) Insulin and disease
Date:
August 21, 2017 09:14 AM
Many health problems, and especially cancer and heart disease are caused by an imbalance of insulin, due to poor diet. We eat far too much sugar and too many carbohydrates. This leads to insulin resistance, which, in turn, leads to heart disease, high triglycerides, high cholesterol, osteoporosis, and diabetes. It also raises blood pressure because when we are insulin resistant our bodies cannot store magnesium, which is needed to relax the walls of the blood vessels. Dr. Michael Cutler has written a book, "The Insulin Factor" which explains how to get your insulin back in balance, through diet. This will help us to live longer, healthier lives. Key Takeaways:
"Centenarian studies show no health consistency at all except that all the centenarians have relatively low insulin (sugar) for their age and they all have low triglycerides for their age." Read more: https://personalliberty.com/insulin-and-disease/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5155) Andropause: Treating Male Hormone Imbalance Naturally (Male Menopause)
Date:
July 28, 2017 12:14 PM
Women's menopause symptoms have been studied for years with several remedies available to treat symptoms. Make menopause, or andropause, is not a widely researched condition and sufferers have limited options. Symptoms like irritability, loss of sexual appetite and EXCESSive sweating can begin at age 40 and those suffering should seek medical help. Hydration, consumption if healthy fats and even natural as well as medical supplements are available to treat male menopause, a condition caused by lowering testosterone. https://www.youtube.com/watch?v=qI0Xf-dKVL8&rel=0Key Takeaways:
"Men also have trouble maintaining the delicate hormonal balance, when they begin to approach middle age."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5049) Inflammation can disrupt body's functions
Date:
July 27, 2017 04:14 PM
Inflammation can disrupt body functions, as stated in an article by Review Journal. An interview conducted with Dr. U. Inge Ferguson, a physician who specializes in internal and obesity medicine, describes a multitude of issues ongoing inflammation can create for the body. For instance, excess weight gain and hormonal imbalances coupled with inflammation can promote other diseases to develop. The article describes what the inflammatory process is in the body, why we should be concerned about ongoing inflammation, the correlation between inflammation and obesity, and the steps to take to prevent or reduce ongoing inflammation in the body. Key Takeaways:
"Inflammation happens early on as normal healing. Over time inflammation that continues is harmful, getting in the way of normal body functions." Read more: https://www.reviewjournal.com/life/health/inflammation-can-disrupt-bodys-functions/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5046) Is Inflammation Bad For You Or Good For You?
Date:
July 27, 2017 12:14 PM
Systemic inflammation can be a mixed bag. On the one hand, inflammation can help you during a period of injury. On the other inflammation can indicate that you are high risk for a variety of illnesses including heart disease. A test for C-reactive protein can be valuable in determining inflammation in your system, but one must be cautious as it cannot tell you what is causing said inflammation. To deal with excessive systemic inflammation, a healthy program of diet and exercise can be very helpful Key Takeaways:
"Chronic, low-level inflammation seems to play a role in a host of diseases, including type 2 diabetes, heart disease, Alzheimer's, cancer and even depression. And even though the science on inflammation and disease is far from settled, tests and treatments are being promoted that claim to reduce that risk." Read more: http://www.npr.org/sections/health-shots/2017/07/21/538377221/is-inflammation-bad-for-you-or-good-for-you
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5044) 30 surprising food swaps that will immediately improve the health of every organ in your body
Date:
July 27, 2017 09:14 AM
All of us have favorite foods, dishes, go-to condiments, that appear invariably on our plate. Whether it’s the easy-to-make no-fuss nature of the choice, the it’s ‘what my store carries appeal,’ or it just boils down to how our taste buds feel about it, we can get in nutrition rut. Fortunately, it’s not that hard to start swapping items we use daily for other easy-to-use items that taste good, even often having a similar taste and texture to those items we already use. The plus is that the swapped in items are better for us. Better, because they’re higher, in things that matter, like protein, amino acids, fiber, vitamins and minerals, besides being lower in things we should want to avoid, like empty calories, trans fat, excess carbs, and more. By swapping some things daily, such as trying cinnamon, or organic honey, over sugar, substituting plain, organic coffee for that latte, a veggie wrap, for that bread and meat sandwich, could have big overall benefits in reduced pounds, renewed energy and a better overall nutritional profile, making for a healthier you. Key Takeaways:
"Coffee often gets a bad rap when in fact, quality coffee consumed in moderation can have some great benefits." Read more: https://www.healthnutnews.com/30-surprising-food-swaps-that-will-immediately-improve-the-health-of-every-organ-in-your-body/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5043) Top 7 Foods That Fight High Blood Pressure Naturally
Date:
July 23, 2017 05:14 AM
High blood pressure can be dangerous. Hypertension is when it gets really high and that's a real concern for many. This gives examples of foods which can help fight it, though, so there's hope. High blood pressure can be caused by stress. Many people have it for this reason. It would e easy enough to add these foods to your diet even if you can't do much about your stressers. All you have to do is find recipes you like which contain the ingredients, but watch your salt intake since that is counterproductive. https://www.youtube.com/watch?v=6yBxbacWL0s&rel=0Key Takeaways:
"For millions of people, blood pressure can reach dangerously high levels."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=5019) Home remedies for Gastric - Acidity | Health Tips 2017
Date:
July 16, 2017 12:14 PM
There are some home remedies for gastric acidity. Stomach gas is due to a bad mixture of many different things. One of the remedies is to get a glass of water and mix it with a couple other things. Currum seeds and some black salt will help out a lot. It relieves gas instantly. Turmeric powder and salt is another good mixture. You want to make sure to have the right amount in the mixture. https://www.youtube.com/watch?v=k7MirqZHvK0&rel=0Key Takeaways:
"Ginger tea is the best remedy for uncomfortable gas pain."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4983) Dr. Mercola: How and why too much protein triggers aging and cancer
Date:
July 06, 2017 12:14 PM
Dr. Ron Rosedale's theory several years ago that too much protein can be a bad thing is gradually becoming accepted through further research. He theorizes you should eat foods that help you burn fat and not sugar. Proteins burn sugar but diets high in fat do not and can actually be very healthy for people with diabetes and heart problems. Too much protein prevents removal of damaging cells that can lead to aging and cancer. The best diet is moderate protein, low carb and high in fat. Key Takeaways:
"In a nutshell, this hypothesis completely ignores the “calories in, calories out” dogma, and instead focuses on foods that support hormones and growth factors that make your body burn fat rather than sugar." Read more: https://www.healthnutnews.com/how-and-why-too-much-protein-triggers-aging-and-cancer/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4935) Cinnamon highly beneficial in managing metabolic syndrome says research
Date:
June 25, 2017 07:14 AM
Research has said that cinnamon is highly beneficial in managing metabolic syndrome. Cinnamon is an ingredient that is very common in Indian dishes. Metabolic syndrome is a group of medical conditions that include high blood pressure and excess body fat around the waist. This increases the risk of heart disease, stroke and diabetes in people. People were put on a cinnamon trial and they ended up losing weight and became healthier people. Spices and herbs can have a great impact on health. Read more: Cinnamon highly beneficial in managing metabolic syndrome says research
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4881) These foods may help keep the brain young
Date:
June 22, 2017 07:14 PM
Blueberries, leafy greens, and healthy fats from fish and nuts are some of the foods that may be beneficial to brain health, experts say. Exercise that speeds up your heart rate and breathing keeps your heart and blood better cardiovascular fitness to a sharper brain is providing new clues about this heart-mind connection. Any mentally stimulating activity should help to build up your brain. Good nutrition can help your mind as well as your body.You probably know that regular exercise offers a wealth of benefits for your body, like staving off excess weight and chronic illnesses like heart disease and diabetes. Read more: These foods may help keep the brain young
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4863) The Toenail Fungus On My Feet Destroyed My Life Until I Found How To Destroy Them!!
Date:
June 16, 2017 05:14 AM
Toenail fungus can be a problematic issue, caused by poor hygiene, EXCESSive moisture from sweating, and going bare footed in public baths and pools. It's important to keep your feet dry, but moisturized enough that cracks don't develop in the skin.This is especially important during the summer months. One remedy for those affected by foot fungus is to soak the feel in a mixture of apple cider vinegar and water. 1 cup of vinegar and two cups of water for about 15 to 20 minutes. Dry the feet thoroughly, and repeat, but add 5 table spoons of baking soda to the mix, soak the feet again for 15 to 20 minutes.Doing this regularly will help destroy the fungus and improve foot health. https://www.youtube.com/watch?v=cpFXG8nQYEk&rel=0Key Takeaways:
"Nail fungus is a recurring problem, when people do not have the necessary hygiene, or when they attend public baths, or swimming pools."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4840) Sugar and Your Brain
Date:
May 25, 2017 07:14 AM
Sugar is found in 75 to 80 percent of our sustenance sources, and once it's changed over to glucose, it's the essential fuel hotspot for the whole body, including the cerebrum. Be that as it may, as vital as sugar is to the cerebrum, expending excessively can harm the mind. A characteristic reward is something that makes joy in the mind, which guarantees that the conduct is rehashed. The USDA expresses that you ought to devour close to 40 grams, or 10 teaspoons, of sugar every day. Read more: Sugar and Your Brain
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4688) The Brain-Damaging Food That Almost Everyone Eats
Date:
May 11, 2017 06:44 PM
Sugar does not need to be our primary source of energy, fat can be used as fuel and is burned efficiently without all the risks that sugar can cause. Sugar activates similar sensations in your brain that are common to drug use, eventually causing an addiction. Sugar has been shown to age the brain, fructose, found in fruits and juices, can cause diabetes, weight gain and liver damage. It's best to avoid sugar and excessive fruits,neat more omega-3 fats and unrefined foods to stay healthy. Read more: The Brain-Damaging Food That Almost Everyone Eats
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4592) Probiotic Microorganisms: A Closer Look
Date:
May 07, 2017 09:14 AM
Authors Julio Villena and Haruki Kitazawa write about probiotic microorganisms and their potential benefits to one's personal health. They write about how having the knowledge of probiotics has increased the practicality and functionality of foods such as yogurts and greatly increase their health benefits. Said health benefits are discussed at great length throughout the article with a focus on the benefits added to the immune system and the evidence to support the claims made by the authors. Key Takeaways:
"Livestock Immunology Unit, International Education and Research Center for Food Agricultural Immunology (CFAI), Graduate School of Agricultural Science, Tohoku University, Sendai 980-0845, Japan" Read more: http://www.mdpi.com/2076-2607/5/2/17
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4555) 5 Body Odors You Should Never Ignore
Date:
April 29, 2017 08:44 AM
A website for women's health has a piece about body odors. The piece contends that certain odors are indications of illnesses. For example, a fruity breath might mean diabetes, while bad breath might be a sign of sleep apnea. Feet that smell bad might indicate athlete's foot. Smelly poop could be a sign of intolerance to lactose, while smelly urine could signal an infection. The feature is illustrated with several photos or graphics. There are several embedded links in the story. Key Takeaways:
"Lactose intolerance is fairly common: In fact, an estimated 65 percent of people have trouble digesting dairy, according to the National Institutes of Health." Read more: http://www.womenshealthmag.com/health/body-odors-signal-health-problems?internal_recirc=outbrain_af
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4501) HERE’S WHAT HAPPENS IF YOU PUT GARLIC IN YOUR EAR!
Date:
April 20, 2017 11:44 AM
Garlic is considered "old medicine" and natural healing effects. Garlic can remove earaches and headaches quickly, by using a clean clove of garlic right into the ear canal. Also, putting a garlic clove in your ear can help with headaches, especially if left in overnight. Garlic can also lower your body temperature, which is ideal for children with fever by slicing garlic and adding with apple cider vinegar. Apply topically on legs and ears of child. Garlic juice can be added with other ingredients and be used as a natural cough medicine. https://www.youtube.com/watch?v=7rm54aA7UTw&rel=0Key Takeaways:
"If you are having ear pain, or an EXCESS amount of wax put some garlic in your ears."
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4442) Keeping magnesium levels high reduces risk of fractures, study suggests
Date:
April 18, 2017 11:44 AM
Most people are aware that Calcium and vitamin D should be taken by people who have a high risk for bone fractures. However, one key ingredient that most people are not aware of is magnesium. People who are at a high risk of bone fractures should definitely have this mineral in all of their supplements and eat foods that are high in this mineral as well. Citric acid should not be overlooked either, as that helps you body absorb and process magnesium. Key Takeaways:
"High levels of magnesium in the blood reduce the risk of fractures by 44 per cent, according to a new study published in the European Journal of Epidemiology." Read more: http://www.ctvnews.ca/health/keeping-magnesium-levels-high-reduces-risk-of-fractures-study-suggests-1.3368755
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4428) Take This Vitamin to Repel Mosquitoes All Summer Long
Date:
April 17, 2017 11:44 AM
Summer is a time when mosquitos are at their worst. Many people can deal with mosquitos by using repellent, but others are worried about the DEET and dislike smelling like the spray. For the latter, Vitamin B1 could be a solution. Vitamin B1 can change the way a person smells to mosquitos and makes the person unappealing to bite. However, the Vitamin B1 does not change a person's smell to other humans. The research is not definitive, but Vitamin B1 causes no adverse effects so it could be worth a try if you want to avoid repellent this summer. Key Takeaways:
"But, if you’re like me at all and you not only want to stop smelling like the burnt remains of a chemical plant after using repellent, but also are scared of the adverse effects of DEET in sprays and are more prone to getting bit (seriously though, mosquitoes seemed to love me and only me at parties), then taking Vitamin B1 could be your saving grace." Read more: http://www.healthnutnews.com/take-vitamin-repel-mosquitoes-summer-long-2/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4422) How to Manage Cholesterol Naturally
Date:
April 04, 2017 10:44 AM
For starters, not all cholesterol is bad. Cholesterol is needed for body functions to occur. That being said there are many natural reasons cholesterol could be noted as dangerously high. Are you undergoing more stress than normal? Any recent surgery or infections? Any major dietary changes? All of these need to be considered before starting medication. An increase of fiber may do the trick as excess cholesterol is released in fecal matter. Anti-inflammatory foods such as food containing omega 3 and omega 6 also help as cholesterol rises when the body is inflamed. Finally, increase fruit and vegetable intake. Read more: How to Manage Cholesterol Naturally
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4348) I Lost 20 Pounds In 1 Month Just By Following The Candida Diet
Date:
March 25, 2017 06:44 AM
There is a new diet that has people talking, and it may be what you've been looking to find to finally get rid of those excess pounds. One user shares her story of this incredible new diet, known as the Candida diet, and how she lost 20 pounds in just one month's time using the diet. What you learn might inspire you and will certainly have you learning more about this one of a kind diet. Read more: I Lost 20 Pounds In 1 Month Just By Following The Candida Diet
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4283) How much fibre should you eat daily to lose weight?
Date:
March 21, 2017 08:44 AM
Fiber is a necessary component of a healthy diet, and can aid in weight loss. Because fiber helps the body slowly and steadily absorb fats and carbohydrates, people who eat fiber-rich foods tend to feel fuller longer, thereby reducing the number of calories consumed. Additionally, because nutrients are released in a steady manner, they do not suffer "sugar spikes" which induce hunger and, counterproductively, more eating. Individuals should consume about 14g of fiber for every 1,000 calories in their diet, or about 25g-40g per day. While eating adequate fiber not only helps control weight and good digestive tract health, consuming excess fiber can be detrimental. Eating more than 40g of fiber a day may result in gassiness, bloating, and diarrhea or constipation. Key Takeaways:
"An average individual should not consume more than 40gms of fibre on a daily basis." Read more: http://www.thehealthsite.com/fitness/how-much-fibre-should-you-eat-daily-to-lose-weight-b0317/
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4246) Yeast brew trouble for inflammatory bowel disorders
Date:
March 19, 2017 06:44 PM
Yeast living in the intestines may worsen symptoms of Crohn's disease, reports a new study. If the fungus is stopped from causing problems in the intestines, patients could also feel relief from inflammatory bowel disorders. Anti-inflammatory medications are often used to treat IBDs, but it turns out that many patients with IBDs have an immune response to yeast. A study on mice found that high levels of yeast caused them to produce excess uric acid, and that their bowel disease could then be treated with medication to reduce the uric acid. The researchers are confident these results could be used on humans as well. Read more: Yeast brew trouble for inflammatory bowel disorders
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4226) 9 Warning Signs Your Body Is Retaining Too Much Fluid
Date:
March 16, 2017 03:44 PM
If you notice that your body is swelling at times, without a reasonable cause, it can simply be EXCESS fluid due to a change in lifestyle or condition. However, when you're retaining EXCESS fluids and holding more water weight than usual, it can make you feel insecure and pudgy, very unlike how you want to feel each day. It's important if you have a history of kidney disease, diabetes or other cardiovascular conditions you work with your physician to discuss the proper diet and medication regimen to prevent fluid retention which can often be very uncomfortable too. Key Takeaways:
""If you're eating a high sugar diet, which will even include natural sources, such as fresh fruit, you might be holding on to EXCESS fluids."" Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4180) How Inflammation Spreads Through the Brain
Date:
March 15, 2017 03:59 PM
After a traumatic brain injury, inflammation travels through the brain by releasing inflammatory cells from sacks in the brain's immune cells called microparticles. The inflammation, which causes damage, can be found in sections of the brain far from the injury. Microparticles are easily spread due to their small size, there is hope that a drug created to target microparticles can be used to prevent EXCESSive permanent brain injury after trauma. Key Takeaways:
"After a traumatic brain injury, inflammation can spread throughout the brain and cause long-lasting damage. Now, in a new study done in mice, researchers have identified a way that this inflammation can spread." Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4166) Benefits of Coconut Oil Are Undeniable
Date:
March 15, 2017 01:59 PM
Coconut oil is now being viewed as a superfood. It's high in healthy saturated fat. Populations that have consumed coconut oil for generations have a low risk of vascular disease, stroke and heart disease as well as increase good cholesterol.Substances found in coconut oil have been proven to fight infections. It can also be used to clean or even repel insects. Key Takeaways:
"Nutritionally speaking, the fatty acids in coconut oil lend several health benefits, including improved brain function, stimulating your body’s metabolism, generating energy and helping you shed EXCESS body fat, as has been shown among people from populations that regularly consume high amounts of coconut oil." Reference:
(https://vitanetonline.com:443/forums/Index.cfm?CFApp=1&Message_ID=4164) How much sun is good for our health?
Date:
March 12, 2017 12:14 PM
With cases of vitamin D deficiency on the rise, many are asking how much sun they should be getting in order to keep their levels up naturally. According to researchers, ten to twenty minutes is enough in the spring or summer, but nearly two hours is needed daily in the winter to meet our bodies’ needs. Then there is the question of the risk of skin cancers. Scientists have been trying to find an easy way to avoid these problems while allowing people to get the vitamin D they need. Unfortunately, this is a tricky problem. Key Takeaways:
"Although ultraviolet (UV) solar radiation contributes to the development of sun erythema, cancer and aging of the skin, it also reduces blood pressure." Reference: https://www.sciencedaily.com/releases/2017/03/170308083938.htm
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