Epithalon 40MG
$69.00
π§ͺ Epithalon Peptide (40mg Vial)
Research Purity: β₯99% | For Laboratory Use Only
β‘ Product Overview
Epithalon (Epithalone) is a synthetic tetrapeptide modeled after Epithalamin, a peptide complex originally isolated from the pineal gland.
It is extensively studied in aging, cellular longevity, and circadian biology research due to its interaction with telomerase activity, melatonin signaling, and epigenetic regulation.
Epithalon is primarily researched for its role in cellular lifespan extension, DNA stability, and restoration of age-associated biological rhythms.
π Key Benefits (Research-Based)
𧬠Telomerase Activation β Studied for supporting telomere length maintenance and chromosomal stability.
β³ Cellular Longevity Signaling β Investigated for influencing genes associated with aging and cell cycle regulation.
π Circadian Rhythm Support β Linked to normalization of melatonin production and sleepβwake cycle signaling.
π§ Neuroendocrine Research Potential β Explored for effects on pineal gland function and hormonal regulation.
π‘οΈ DNA Protection & Repair β Studied for reducing genomic instability and oxidative damage in aging models.
π Common Research Stacks (Synergistic Pairings)
Epithalon is frequently studied alongside peptides and compounds that target complementary longevity, mitochondrial, and regenerative pathways:
π§ͺ Epithalon + SS-31
β Investigated for combined telomere support and mitochondrial protection in aging and cellular stress models.
𧬠Epithalon + MOTS-c
β Explored for synergistic effects on metabolic signaling, mitochondrial function, and lifespan-associated pathways.
π Epithalon + DSIP
β Studied in circadian and sleep-regulation research models focusing on neuroendocrine balance.
π‘οΈ Epithalon + GHK-Cu
β Examined for longevity research combining epigenetic regulation with tissue repair and cellular regeneration signaling.
βοΈ Epithalon + 5-Amino-1MQ
β Investigated for combined effects on cellular aging pathways, NADβΊ metabolism, and metabolic efficiency.
π All stacking references are intended strictly for controlled laboratory research to evaluate complementary biochemical and cellular pathways.
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