Telomerase Activator
Active Substance: Epitalon (Ala-Glu-Asp-Gly)
Manufacturer: Peptide Hubs
Unit: 2 mL Vial (25 mg/vial)
Form: Lyophilized Powder
USA Domestic: 2-7 Days Delivery
International: 5-20 Days Delivery
Epitalon (also known as Epithalon) is a groundbreaking synthetic tetrapeptide presented as a 25 mg lyophilized powder. This simple yet powerful sequence (Ala-Glu-Asp-Gly) replicates the active site of the pineal gland peptide epithalamin, which regulates melatonin production and influences the aging process at the genetic level. For bodybuilders, athletes, and longevity researchers, Epitalon represents one of the most fascinating compounds in peptide science, offering a research pathway into epigenetic regulation, cellular rejuvenation, and the optimization of biological rhythms. By investigating its potential to activate telomerase and restore circadian function, Epitalon serves as a premier tool for studies focused on enhancing recovery, extending cellular healthspan, and mitigating the effects of physiological stress and aging.
Each sterile 2 mL vial contains 25 mg of synthetic Epitalon with the precise amino acid sequence: L-Alanyl-L-Glutamyl-L-Asparagyl-L-Glycine (Ala-Glu-Asp-Gly). This tetrapeptide is identical to the biologically active fragment of the larger pineal gland peptide. The product is supplied as a pure, white lyophilized powder without fillers or preservatives, requiring reconstitution with bacteriostatic water before use in research protocols. Its small size contributes to its stability and potential bioavailability.
While not a direct anabolic, Epitalon's research implications for athletes are profound and systemic. Its investigational benefits are centered on foundational cellular health and optimal physiological function: potential support for cellular repair and longevity through telomerase activation, which may enhance tissue resilience and recovery capacity; restoration of youthful melatonin production and circadian rhythms, leading to deeper, more restorative sleep critical for GH release and recovery; modulation of antioxidant systems and stress resistance at a cellular level; and potential neuroendocrine normalization, supporting overall hormonal balance. For athletes subjecting their bodies to extreme stress, Epitalon offers a research model for enhancing the body's intrinsic repair and maintenance systems, potentially extending peak performance years.
Epitalon is a research peptide with a significant body of preclinical and clinical data from Russian longevity studies. Its primary researched actions include telomerase activation (the enzyme that maintains telomere length), epigenetic regulation of gene expression related to aging, and normalization of pineal gland function and melatonin synthesis. According to studies referenced by the National Institutes of Health (NIH), epithalamin (the natural gland extract) and its synthetic analog Epitalon have demonstrated lifespan-extending and healthspan-improving effects in model organisms.
Epitalon operates through several sophisticated mechanisms. Its most renowned action is the upregulation of telomerase activity in cells possessing the enzyme (like stem cells and immune cells). Telomerase adds protective DNA caps (telomeres) to chromosome ends, which shorten with each cell division and are a hallmark of cellular aging. By promoting telomere maintenance, Epitalon is researched for its potential to delay cellular senescence. Additionally, it stimulates the pineal gland to produce melatonin in a youthful pattern, restoring circadian rhythms. It also appears to influence the expression of aging-related genes through epigenetic mechanisms, effectively "reprogramming" cells toward a more youthful functional state.
Research protocols for Epitalon are typically cyclical and use relatively low milligram or microgram doses due to its potent signaling nature. A common investigative protocol involves administering 5-10 mg via subcutaneous injection once daily for 10-20 consecutive days. This cycle is often repeated once or twice per year, mimicking the "course" approach used in many longevity studies. Some research explores intranasal administration for direct CNS delivery. Given its long-term epigenetic effects, daily dosing over a short period is believed to initiate a lasting biological response.
Research dosing for female subjects generally follows the same protocol: 5-10 mg daily for a 10-20 day cycle. There is no evidence to suggest gender-specific adjustments for its fundamental mechanisms of telomerase and pineal gland regulation. As with all peptides, research should be designed with careful observation, though its safety profile in studies is excellent.
The exact pharmacokinetic profile of this tetrapeptide is not fully detailed, but its small size suggests a relatively short plasma half-life. However, like many bioregulatory peptides, its intended effects are not based on constant plasma levels but on triggering epigenetic and gene expression changes that persist long after administration. The cyclical dosing protocol aligns with this concept—initiating a cascade of cellular reprogramming during the course, with effects that may unfold over subsequent weeks and months.
Extensive research, particularly from Russian clinical studies, indicates an exceptional safety profile for Epitalon. No significant adverse effects have been reported at research doses. Due to its endogenous signaling nature and lack of hormonal activity, it is not associated with dependency, organ toxicity, or major systemic disruption. Some subjects in long-term studies have reported very vivid dreams during the administration period, likely related to its pineal gland modulation. Its outstanding tolerance supports its use in long-term aging and healthspan research designs.
There are no known specific contraindications. However, given its research into telomerase activation—an enzyme also active in most cancer cells—extreme theoretical caution is advised in research designs involving subjects with active or recent malignancies. Standard research precautions for peptides apply. Epitalon is for laboratory research use only and is not a drug for the treatment or prevention of aging or disease.
The risk of acute toxicity is considered very low. The peptide works through receptor-mediated signaling and epigenetic modulation, processes that have natural saturation points. Extremely high doses are unlikely to be more effective and would be wasteful. Responsible research adheres to established protocols (5-10 mg daily) that have demonstrated biological activity in prior studies.
Epitalon is often researched as part of a comprehensive "healthspan" or longevity stack, combined with other peptides that support different aspects of cellular and systemic health. Potential research combinations include:
These stacks represent advanced, holistic frameworks for longevity and performance sustainability research.
The product is supplied as one sterile glass vial containing 25 mg of Epitalon as a white lyophilized powder. The vial is sealed with a rubber stopper and aluminum crimp to ensure sterility. Packaging is discreet and secure.
For maximum long-term stability, store the lyophilized powder at or below -20°C (-4°F). For short-term use (a few weeks), refrigeration at 2-8°C (36-46°F) is acceptable. After reconstitution with bacteriostatic water, the solution must be refrigerated and used within 7-10 days, in accordance with sterile research practices and peptide stability guidelines.
The development and study of Epitalon are largely attributed to the work of Professor Vladimir Khavinson and the St. Petersburg Institute of Bioregulation and Gerontology. Decades of research, including numerous Russian clinical trials, have explored its effects on lifespan, healthspan, and various age-related conditions. Researchers are encouraged to review this extensive, though sometimes less accessible, body of literature to understand the depth of evidence and the specific protocols used in prior studies.
Epitalon is a synthetic tetrapeptide (Ala-Glu-Asp-Gly) that replicates the active site of a pineal gland hormone. "Telomerase activation" refers to its researched ability to increase the activity of the enzyme telomerase. Telomerase rebuilds the protective DNA caps (telomeres) at the ends of chromosomes, which naturally shorten as cells divide and age. By potentially maintaining telomere length, Epitalon is studied for its role in delaying cellular senescence (aging) and promoting cellular health, making it a premier subject in longevity and anti-aging research.
Yes, Peptide Hubs is a legit and reputable supplier of high-purity research peptides. Their Epitalon 25 mg vial provides researchers with a precisely synthesized, accurately dosed product essential for studies on telomerase, circadian biology, and aging. Their commitment to quality manufacturing ensures researchers receive a reliable compound for this advanced area of peptide science.
For athletic research, Epitalon's benefits are indirect but foundational. It is studied for its potential to enhance cellular repair mechanisms and resilience, which could translate to faster recovery from training stress and reduced systemic inflammation. By potentially restoring youthful sleep patterns via pineal gland support, it may improve the quality of restorative sleep, crucial for growth hormone release and psychological recovery. Its role in promoting overall cellular health aligns with the goal of extending an athlete's prime years and improving their ability to withstand intense training loads.
The most common research protocol, derived from longevity studies, involves a short, intensive course. Typically, 5-10 mg is administered via subcutaneous injection once daily for 10 to 20 consecutive days. This cycle is often repeated once or twice per year, rather than used continuously. The idea is that this course provides a powerful epigenetic signal that induces lasting changes in gene expression and cellular function, making continuous administration unnecessary.
Research to date has shown an excellent safety profile with no significant side effects reported at standard doses. The theoretical cancer risk stems from telomerase activation, as cancer cells often use telomerase to become immortal. However, Epitalon appears to upregulate telomerase in normal, healthy cells (like stem cells) to a physiological level, not to the extreme levels seen in cancer. Furthermore, some studies suggest it may actually have anti-tumor properties by normalizing gene expression. Nevertheless, responsible research excludes subjects with active cancer histories.
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