The premium synthetic research peptide highlighted here is known as Epitalon (Epithalamin-derived tetrapeptide), extensively studied for its role in cellular aging, telomerase activity, and circadian rhythm regulation. This peptide has become a focal point in advanced laboratory research due to its potential influence on telomere length dynamics, gene expression, and systemic biological aging processes, making it a key compound in longevity-focused experimental models. In controlled laboratory environments, Epitalon is widely investigated for its interaction with telomerase activation pathways and telomere length regulation models. Researchers utilize this peptide to explore how cellular lifespan may be influenced by peptide-driven signaling, particularly in studies focused on aging-related decline, genomic stability, and cellular replication limits. These mechanisms are critical in understanding how biological systems maintain long-term function and structural integrity.
Epitalon 10MG
Lyophilized Powder, ≥99% Purity
$59.95
Quantity & Discount
Epitalon 10mg is a tetrapeptide research compound studied for its role in cellular aging, telomerase activity, and circadian rhythm regulation. In laboratory settings, Epitalon is widely explored in research focused on longevity pathways, gene expression, and biological timing systems.
Additional information
| Size | 10MG |
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Epitalon is also studied for its potential role in pineal gland signaling and circadian rhythm regulation. Laboratory models examine how this peptide may influence melatonin-related pathways, sleep-wake cycles, and neuroendocrine balance. These insights are particularly relevant in research focused on biological timing systems and their connection to aging and systemic recovery processes. Supplied in a premium lyophilized (freeze-dried) powder form, the 10mg format ensures optimal biochemical stability, precise measurement, and consistent reconstitution under proper laboratory conditions. This format is highly suitable for long-term experimental protocols and dose-response studies. Accurate peptide calculations during reconstitution help maintain consistent molarity across batches, ensuring reproducibility in in-vitro research models. What distinguishes Epitalon in modern research is its association with telomere biology and long-term cellular maintenance. Researchers investigate how this peptide interacts with genetic regulation pathways, oxidative stress response systems, and circadian signaling networks. This integrated approach provides deeper insights into how multiple biological systems contribute to aging and longevity within controlled experimental environments. To preserve peptide integrity, strict cold-chain storage is recommended. Once reconstituted with bacteriostatic water, vials should be stored between 2°C and 8°C. Proper storage conditions ensure stability and maintain biological activity throughout multi-phase research studies, supporting consistent and reliable data collection. The longevity-focused properties of Epitalon continue to attract significant attention within the scientific community. It remains a valuable addition to peptide libraries focused on anti-aging research, circadian biology, and advanced cellular signaling studies. Researchers frequently incorporate Epitalon into broader experimental frameworks to better understand the mechanisms behind biological aging and lifespan regulation.
Store between 2°C and 8°C. Protect from light. Reconstitute only the amount needed.
Epitalon (10mg) is supplied strictly for laboratory research use only. It is not intended for human or animal consumption, medical treatment, or diagnostic purposes. All handling and use must comply with applicable laboratory regulations and research standards.
For laboratory research use only. Not for human or veterinary consumption.

