Epitalon
A synthetic tetrapeptide derived from epithalamin and studied in telomerase, telomere, circadian, immune, cell-division, and cellular-aging models.
A multi-pathway system for studying cellular aging, senescent-cell signaling, mitochondrial function, and neuronal resilience.

This grouping spans four aging-research pathways: telomerase and circadian signaling with Epitalon, senescent-cell models with FOXO4-DRI, mitochondrial and metabolic homeostasis with MOTS-C, and neuronal oxidative-stress and gene-regulation models with Pinealon.
Epitalon · FOXO4-DRI · MOTS-C · Pinealon
The complete component notes below are adapted from the client-supplied protocol worksheet and framed for laboratory research.
A synthetic tetrapeptide derived from epithalamin and studied in telomerase, telomere, circadian, immune, cell-division, and cellular-aging models.
A synthetic peptide studied as a senolytic model through disruption of FOXO4-p53 interaction and selective apoptosis signaling in senescent cells.
A mitochondrial-derived peptide studied in AMPK activation, metabolic homeostasis, glucose and lipid metabolism, insulin signaling, gene expression, and cellular resilience.
A synthetic tripeptide studied in neuronal protection, oxidative stress, cell-death signaling, gene regulation, cognitive resilience, and cellular-aging models.
This reference explains why the compounds are grouped and identifies the biological pathways represented by the stack. It does not prescribe concentration, sequence, frequency, compatibility, preparation, or administration.
Qualified researchers are responsible for independent literature review, experimental design, controls, handling procedures, documentation review, and compliance with all applicable requirements.
4-compound research set · $204.00
VIEW STACK & ADD TO CART →All information on this page describes laboratory research pathways only. Products are not intended for human or veterinary use and are not offered to diagnose, treat, cure, or prevent any disease.