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Epitalon

also known as epithalon, AEDG

preclinical longevity endocrinenervous mass-verified
OOOOOOOOONNNNHHHHHHHH
27 heavy atoms · 48 bonds · drag to pan, scroll to zoom C14O9N4

Skeletal structure drawn from the computed atomic coordinates in PubChem CID 219042. Carbons are implicit vertices; hydrogens on carbon are suppressed, as in any structural formula. Nothing here is estimated — every atom sits where PubChem placed it.

Research reference only. The observations below are recorded in the cited literature. Nothing here is advice or a recommendation, and no dosing information is published on this site.

Sequence

AEDG

Ala-Glu-Asp-Gly

1. Ala — Alanine · hydrophobic · hydropathy 1.8 · charge 0A12. Glu — Glutamic acid · negative · hydropathy -3.5 · charge −1E3. Asp — Aspartic acid · negative · hydropathy -3.5 · charge −1D4. Gly — Glycine · glycine · hydropathy -0.4 · charge 0G4

Computed backbone mass 390.35 Da agrees with PubChem's reported 390.35 Da (Δ 0.00 Da). Two independent sources agree on the primary structure.

Molecular data

Chemical fields come from the PubChem compound record; computed values are derived from the sequence shown above.
molecular formulaC14H22N4O9
molecular weight390.35 Da (PubChem)
computed backbone mass390.35 Da
length4 residues
net charge (pH 7.4)-2
mean hydropathy-1.4
half-lifenot characterised
delivery routenot characterised
PubChem CID219042
PDBnot characterised
UniProt parentnot characterised

Mechanism

Tetrapeptide from the Khavinson series, studied in relation to telomerase activity and pineal function in animal models.

Reported targets: not established

Experimental structure

No experimental structure of this peptide is deposited in the PDB. Nothing is rendered here — a predicted fold would not be a structure, and this site does not draw one.

Reported effects

Each row is an outcome described in the literature indexed for this peptide. Reported in the cited work — not a claim, not a recommendation.

Reported observations and the corpus they are drawn from.
reported outcomewhere it appears
telomerase activity in cell modelsOverview of Epitalon-Highly Bioactive Pineal Tetrapeptide with Promising Pro… International journal of molecular sciences 2025
circadian/melatonin effects in modelsFrom Cellular Aging to Tissue Protection: Epitalon in Regenerative and Longe… Preprints.org 2026

Literature (8)

Overview of Epitalon-Highly Bioactive Pineal Tetrapeptide with Promising Properties — International journal of molecular sciences 2025

Epitalon, also known as Epithalon or Epithalone, is a tetrapeptide, Ala-Glu-Asp-Gly (AEDG), which was synthesized based on the amino acids composition of Epithalamin, a bovine pineal gland extract, prior to its discovery in pineal gland polypeptide complex solution. During the last 25 years, this compound has been extensively studied using in vitro, in vivo, and in silico methods. The results of these studies indicate significant geroprotective and neuroendocrine effects of Epitalone, resulting from its antioxidant, neuro-protective, and antimutagenic effects, originating from both specific and nonspecific mechanisms. Although it has been demonstrated that Epitalon exerts, among other effects, a direct influence on melatonin synthesis, alters the mRNA levels of interleukin-2, modulates the mitogenic activity of murine thymocytes, and enhances the activity of various enzymes, including AC…

open access ↗ · PMID 40141333 · DOI 10.3390/ijms26062691

From Cellular Aging to Tissue Protection: Epitalon in Regenerative and Longevity Medicine — Preprints.org 2026

abstract not reproduced — this record is not open-access, so it is linked rather than copied.

publisher record ↗ · DOI 10.20944/preprints202607.2123.v1

The Antioxidant Tetrapeptide Epitalon Enhances Delayed Wound Healing in an in Vitro Model of Diabetic Retinopathy — Stem cell reviews and reports 2025

Diabetic retinopathy (DR) is the most common complication of diabetes mellitus and a leading cause of vision loss. Short peptides, such as di-, tri-, and tetrapeptides, have various beneficial activities, including antioxidant, antimicrobial, and anti-inflammatory effects. This study aims to test the hypothesis that the antioxidant effect of the synthetic tetrapeptide AEDG (Ala-Glu-Asp-Gly, Epitalon) improves the delayed healing process associated with hyperglycemia in DR, using a high glucose (HG)-injured human retinal pigment epithelial cell line (ARPE-19). We found that HG exposure delayed wound healing in ARPE-19 cells and increased intracellular levels of reactive oxygen species (ROS), while decreasing antioxidant gene expression. HG also induced epithelial-mesenchymal transition (EMT) and upregulated fibrosis-related genes, suggesting that HG-induced EMT contributes to subretinal f…

open access ↗ · PMID 40493162 · DOI 10.1007/s12015-025-10911-x

Correction: Epitalon increases telomere length in human cell lines through telomerase upregulation or ALT activity — Biogerontology 2025

abstract not reproduced — this record is not open-access, so it is linked rather than copied.

open access ↗ · PMID 41240216 · DOI 10.1007/s10522-025-10326-8

Epitalon increases telomere length in human cell lines through telomerase upregulation or ALT activity — Biogerontology 2025

Epitalon, a naturally occurring tetrapeptide, is known for its anti-aging effects on mammalian cells. This happens through the induction of telomerase enzyme activity, resulting in the extension of telomere length. A strong link exists between telomere length and aging-related diseases. Therefore, telomeres are considered to be one of the biomarkers of aging, and increasing or maintaining telomere length may contribute to healthy aging and longevity. Epitalon has been the subject of several anti-aging studies however, quantitative data on the biomolecular pathway leading to telomere length increase, hTERT mRNA expression, telomerase enzyme activity, and ALT activation have not been extensively studied in different cell types. In this article, the breast cancer cell lines 21NT, BT474, and normal epithelial and fibroblast cells were treated with epitalon then DNA, RNA, and proteins were ex…

open access ↗ · PMID 40908429 · DOI 10.1007/s10522-025-10315-x

The Influence of Short Peptides on Cell Senescence and Neuronal Differentiation — Current issues in molecular biology 2025

It has been previously shown that some short peptides are involved in various cellular processes, such as transcription modulation and regulation of differentiation mechanisms. In particular, the effect of peptides on the neuronal differentiation of human periodontal ligament stem cells has been demonstrated. The goal of this study was to assess the effect of KED, EDR, and AEDG short peptides in stimulating the transdifferentiation of fetal MSCs into induced neuronal cells and prevention of their senescence. We applied a novel in vitro technique for neuronal cell generation, which combines the use of microRNAs, transcription factors, and small molecules to transdifferentiate fetal mesenchymal stem cells into induced cortical neurons. It was shown that the application of AEDG and KED short peptides at the end of the transdifferentiation process decreases the expression of the cell cycle m…

open access ↗ · PMID 41020860 · DOI 10.3390/cimb47090739

Epitalon increases telomere length in human cell lines through telomerase upregulation or ALT activity — Research Square 2025

abstract not reproduced — this record is not open-access, so it is linked rather than copied.

publisher record ↗ · DOI 10.21203/rs.3.rs-7066545/v1

Epitalon-activated telomerase enhance bovine oocyte maturation rate and post-thawed embryo development — Life sciences 2025

abstract not reproduced — this record is not open-access, so it is linked rather than copied.

publisher record ↗ · PMID 39788414 · DOI 10.1016/j.lfs.2025.123381

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