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$ 1,000
Type: Tetrapeptide
Composition: Ala-Glu-Asp-Gly
Length: 4 amino acids
Epithalon: Compound Overview
What is Epithalon?
Epithalon (also known as Epitalon or Epithalamin) is a synthetic tetrapeptide (Ala-Glu-Asp-Gly) derived from the naturally occurring pineal gland peptide epithalamin, which has been studied for its potential anti-aging properties. Research suggests Epithalon may influence telomerase activity, cellular regeneration, and circadian rhythm regulation, making it a subject of interest in longevity and gerontology research.
Mechanism of Action
Epithalon appears to stimulate the activity of telomerase, the enzyme responsible for maintaining and extending telomeres—the protective caps at the ends of chromosomes that naturally shorten with age. By promoting telomere maintenance, Epithalon may enhance cellular longevity and reduce senescence. It has also been found to interact with melatonin production in the pineal gland, contributing to circadian regulation and endocrine balance in aging models.
Safety Profile
Epithalon has demonstrated a strong safety profile in animal studies and limited human trials conducted in Russia and Eastern Europe. No significant toxicity or carcinogenicity has been observed. Side effects in research have been minimal, primarily limited to minor injection site reactions or mild headaches. Nonetheless, it remains an experimental compound and is not approved for human or clinical use in the United States.
Key Studies
Russian studies conducted by Professor Vladimir Khavinson and others observed increased lifespan and reduced incidence of age-related diseases in rodent and primate models.
Additional research showed improvements in melatonin secretion, immune system activity, and antioxidant status in aging subjects.
Some clinical data suggest potential applications in reducing oxidative stress and enhancing reproductive and endocrine function in older populations.
Conclusion
Epithalon is a compelling peptide for researchers exploring cellular aging, telomerase regulation, and circadian biology. Its potential to enhance telomere stability and influence endocrine function places it at the forefront of longevity science. As always, Epithalon is intended strictly for laboratory research purposes only and is not for human use or consumption.
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