PeptideHormone

Analog comparison

Put a native hormone next to the analogs engineered from it — or compare any molecules in the catalog. The same receptor, a different half-life: see how protease resistance and acylation stretch a peptide’s duration from minutes to days while the underlying mechanism stays the same.

Lineages — a native hormone and the analogs engineered from it
2 of 4 selected
TypeEndogenousResearch
EvidenceEstablishedPreclinical
FamilyRepair & regenerativeRepair & regenerative
ClassActin-binding peptide (43 aa)Synthetic thymosin β4 fragment / analog
ReceptorNo classical receptor; sequesters monomeric (G-)actinSame actin-related biology as thymosin β4 (not receptor-mediated)
Molecular weight~4,963.4 Da
Half-life
Based onNative hormoneThymosin β4

Half-life bars are on a logarithmic scale across the molecules shown, so a minutes-long native peptide and a once-weekly analog stay legible together. Reference values for the native or representative form — educational only, not medical or dosing advice.

How to read a lineage

Most engineered peptides are not new mechanisms — they are durability solutions. An analog usually binds the same receptor as its native hormone; what changes is how long it survives in circulation. Native GLP-1 is cleared by DPP-4 in a minute or two, while its acylated analogs bind albumin and persist for days.

Reading left to right along a lineage, watch three columns: receptor (often identical — the mechanism is conserved), molecular weight (analogs are deliberately larger, carrying fatty-acid chains), and half-life (the payoff — the engineering target).

Want the dosing consequences of those half-lives? Each molecule links straight into the half-life & dosing calculator.

Reference-grade approximations for the native or representative form of each molecule. Engineered formulations (depots, extended-release) differ substantially. Educational only — not medical advice, dosing guidance, or a recommendation to use any substance.

Analog comparison tool · Peptide Hormone