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Ephitalon 10mg

$49.99

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Epithalon

(Synthetic Tetrapeptide – Telomerase Activation & Cellular Longevity Research)

Epithalon, also known as Epithalone or Epitalon, is a synthetic tetrapeptide with the amino acid sequence Ala-Glu-Asp-Gly (AEDG). It was developed as a structural analog of the natural peptide Epithalamin, a regulatory peptide isolated from the pineal gland.

Epithalon has been investigated in experimental models for its potential influence on cellular aging pathways, telomerase activity, and circadian regulatory mechanisms. Early research originating from peptide bioregulation studies explored its role in modulating gene expression associated with longevity and cellular homeostasis.

Scientific interest in Epithalon primarily centers on its reported ability to influence telomere dynamics, support pineal gland signaling, and regulate physiological rhythms related to aging processes.


Mechanism of Action

(Based on Preclinical and Experimental Research)

Telomerase activation:
Research models suggest Epithalon may stimulate the expression of Telomerase, an enzyme responsible for maintaining telomere length at the ends of chromosomes.

Telomere stabilization:
By influencing telomerase pathways, Epithalon has been investigated for its potential role in preserving Telomere integrity during cellular replication cycles.

Pineal gland regulation:
Derived from peptides associated with the pineal gland, Epithalon has been studied for its effects on neuroendocrine signaling and circadian regulation involving Melatonin.

Gene expression modulation:
Experimental studies suggest the peptide may influence gene regulatory mechanisms involved in metabolic control, oxidative stress response, and cellular repair processes.

Antioxidant pathway influence:
Some research indicates potential modulation of antioxidant defense systems, contributing to cellular protection in oxidative stress models.


Potential Research Applications

(Based on Preclinical and Investigational Studies)

Investigation of telomerase activation pathways

Study of cellular aging and longevity mechanisms

Research into circadian rhythm and pineal gland signaling

Experimental models of oxidative stress and cellular repair

Genetic regulation studies related to cellular homeostasis


For Research Use Only. Not for Human Consumption.

This compound is not approved by the FDA or any regulatory authority and is intended solely for laboratory research purposes.

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