Epithalon (10mg)

$35.00

* The information on this page is a summary and is not intended to cover all available information about this medication. It does not cover all possible uses, directions, precautions, drug interactions or adverse effects and is not a substitute for the expertise and judgement of your healthcare professional.

Key Specifications

Category Parameter Specification / Details
Identification & Nomenclature Primary Compound Name Epithalon (Pineal Gland Bioregulator)
CAS Registry Number 307297-39-8
Sequence / IUPAC Ala-Glu-Asp-Gly
Chemical & Physical Properties Molecular Formula C14H22N4O9
Molar Mass / Weight 390.35 g/mol
Physical Appearance White lyophilized (freeze-dried) solid/powder
Solubility Profile Highly soluble in Bacteriostatic Water and sterile water.
Product Specifications Tested Purity ≥98% via HPLC
Active Ingredient (Total) 10mg per vial
Dry / Powder Formulations Lyophilized powder
Handling & Logistics Storage Guidelines Lyophilized: Store at -20°C for long-term stability. Protect from light.Reconstituted: Must be refrigerated at 2°C to 8°C.
Estimated Shelf Life 24 months from manufacture date (lyophilized).
Terms of Application For laboratory research purposes only. Not for human or veterinary use. Investigated for the induction of telomerase activity, telomere elongation, and modulation of circadian melatonin synthesis in in-vitro and cellular aging models.

Foundational Scientific Overview

Epithalon (10mg) is a paramount subject within the field of genomic senescence, telomerase activation, and pineal gland chronobiology. Synthesized as a highly specific tetrapeptide (Ala-Glu-Asp-Gly), it serves researchers examining the elongation of telomeres, the mitigation of chromosomal degradation, and the normalization of melatonin synthesis in-vitro.

At 4 Amino Labs, we provide this highly purified bio-regulator to ensure experimental reproducibility in sensitive aging and genomic instability assays.

Scientific Literature Reference: The profound capability of this synthetic tetrapeptide to upregulate telomerase activity, overcoming the Hayflick limit in somatic cell lines, is heavily documented in gerontological literature. See: Khavinson, V. K., et al. (2003). “Epithalon peptide ind

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