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Triple agonist (revision 8)

Old revision·22:48, 14 Dec 2024·CagriCass

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Triple agonist
Usual receptorsGIP, GLP-1 and glucagon
Leading exampleRetatrutide
Design constraintA fixed three-way potency ratio
Topic infobox · conventions

A triple agonist is a single engineered peptide that activates three receptors of the glucagon-secretin family — conventionally the receptors for GIP, GLP-1 and glucagon. Retatrutide is the most advanced example and is investigational.[1]

The design extends the logic of the dual agonists by one receptor, and multiplies the constraints accordingly: the sequence must retain activity at three targets in a ratio fixed by chemistry, and that ratio must remain appropriate across the whole dose range.[1]

Adding glucagon-receptor agonism introduces an effect that opposes the others glycaemically, in exchange for increased energy expenditure and reduced hepatic fat. The balance is the central difficulty. See Glucagon.[2]

Why three receptors

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Each added receptor is intended to contribute a mechanism the others do not. GLP-1 agonism supplies appetite suppression and glucose-dependent insulin secretion; GIP agonism appears to improve tolerability and contributes adipose-tissue effects; glucagon agonism raises energy expenditure and mobilises hepatic fat.[1]

Because the receptors share a common architecture and their ligands a common precursor family, a peptide can be engineered to engage all three — see Proglucagon — but the sequence space in which all three activities coexist at usable ratios is narrow.[2]

Reported potency ratios are assay-dependent and are not comparable between publications, a caution that applies with more force here because three numbers are being compared rather than two.[1]

References

  1. ^ a b c d Coskun T, Urva S, Roell WC, et al. "LY3437943, a novel triple glucagon, GIP, and GLP-1 receptor agonist." Cell Metabolism 34(9):1234–1247 (2022). PMID 35985340.
  2. ^ a b Jastreboff AM, Kaplan LM, Frías JP, et al. "Triple-hormone-receptor agonist retatrutide for obesity — a phase 2 trial." New England Journal of Medicine 389(6):514–526 (2023). PMID 37366315.