Lifespan extension in animal studies Rodent studies (most extensive data): Mice lifespan increased 20-42% with Epithalon Rats showed 12-25% lifespan extension Both maximum lifespan and median lifespan increased Healthspan (healthy years) improved even more Similar to effects seen with caloric restriction but without dietary limitation Study examples: Mechanisms of lifespan extension: Telomere preservation preventing cellular senescence Reduced oxidative damage to tissues Improved immune function preventing infections Better hormone regulation (pineal, reproductive) Reduced age-related diseases (cancer, cardiovascular) Human lifespan effects (theoretical): No completed human lifespan studies (require decades) If similar extension: 20% of 80-year lifespan = 16 additional years More realistically: Healthspan improvement more achievable than lifespan Quality of life in later years potentially enhanced Similar goals as other longevity interventions Limitations of animal data: Rodents humans (metabolism, telomere biology differ) Controlled lab conditions vs real-world human life Optimal dosing in humans unknown Long-term safety in humans not established Need rigorous human trials for validation Compare to other longevity approaches like growth hormone peptides at SeekPeptides

Oral Dosage (Capsules) While less bioavailable than injections, oral BPC-157 is often used for gut healing and systemic recovery: Typical Range: 5001,000 mcg per day (divided doses) Use Case for Bodybuilders: Ideal during post-cycle recovery , especially if GI health was compromised from oral steroid use or NSAIDs
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The peptide glycyl--histidyl--lysine is an endogenous antioxidant in living organisms, possibly by diminishing hydroxyl and peroxyl radicals
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