Epithalon 10mg

$70

Description

Epitalon – 10 MG Research Peptide

Epitalon (Epithalon) is a synthetic tetrapeptide studied in laboratory research for its potential involvement in cellular aging pathways, telomerase activity, and circadian rhythm regulation. This peptide has been examined in experimental models investigating mechanisms related to cellular longevity, pineal signaling pathways, and the biological processes associated with aging and tissue maintenance.

Key Features:
Synthetic tetrapeptide used in longevity and cellular aging research
Lyophilized formulation for stability and accurate experimental dosing
QC verified for sequence integrity and batch purity

Product Details:
Contents: 10 MG Epitalon research peptide
Appearance: White to off-white lyophilized powder
Peptide Type: Synthetic tetrapeptide (Ala-Glu-Asp-Gly)
Storage: Store at −20 °C; protect from moisture and light
Intended Use: For laboratory research use only

Note: Not for human or veterinary use. For in-vitro research only.

In stock

Epitalon (Epithalon) is a synthetic tetrapeptide composed of the amino acid sequence Ala-Glu-Asp-Gly and has been widely studied in laboratory research exploring mechanisms related to cellular aging, gene expression regulation, and circadian rhythm signaling. Originally developed in research focused on pineal gland peptides, Epitalon has been investigated for its potential interaction with biological pathways involved in cellular longevity and the regulation of telomerase activity. In experimental models, the peptide is often used to examine how specific signaling molecules may influence cellular lifespan and the stability of genetic structures associated with aging.

In controlled laboratory settings, Epitalon is frequently examined in studies evaluating telomere dynamics and telomerase-associated cellular processes. Telomeres are protective structures located at the ends of chromosomes that gradually shorten during cellular replication. Research models involving Epitalon often focus on understanding how peptide signaling may interact with regulatory pathways that influence telomerase expression and chromosomal maintenance. Investigators also study how these mechanisms relate to cellular stress responses, gene regulation, and broader biological processes associated with tissue renewal and aging.

Epitalon is also utilized in experimental research examining neuroendocrine signaling and circadian rhythm regulation, particularly in connection with pineal gland function and melatonin-related pathways. Laboratory studies may investigate how peptide signaling affects biological timing systems, cellular repair processes, and physiological responses to oxidative stress. Because of its potential interactions with multiple regulatory pathways—including gene expression, cellular repair, and circadian signaling—Epitalon continues to be a compound of interest in research exploring longevity biology and the molecular mechanisms associated with aging.

Research use only. Not for human or veterinary use.

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