The C-Terminal Lipolytic Fragment of Growth Hormone
AOD-9604 is a 16-amino-acid synthetic peptide derived from the C-terminal region of human growth hormone (fragment 177-191, with an N-terminal tyrosine substitution). The fragment retains the lipolytic domain of the parent hormone and does not bind the growth hormone receptor — a separation that lets laboratory researchers study lipolysis apart from GH-receptor signalling (IGF-1 elevation, hyperglycemia). The fragment’s metabolic activity was characterised in research originating at Monash University in the early 2000s (Metabolism, 2001 — PMID 11146367).
Proposed Mechanism: Adipocyte Lipolysis via the cAMP/PKA/HSL Cascade
In the proposed model, AOD-9604 acts at beta-3 adrenergic receptors on white-adipocyte membranes, raising intracellular cAMP, activating protein kinase A, and phosphorylating hormone-sensitive lipase (HSL) — the cascade that hydrolyses stored triglycerides into free fatty acids and glycerol. The receptor pharmacology remains incompletely characterised in the published literature, and the beta-3 hypothesis is not firmly established; in-vitro adipocyte studies reporting HSL activation and cAMP elevation are the primary mechanistic evidence (see the Science & Research tab). What distinguishes the fragment mechanistically is where it acts: peripherally, at adipose tissue, rather than centrally at appetite-regulatory pathways — the opposite end of the mechanism spectrum from the incretin-agonist class.
Clinical Development: The Monash Program and the Phase 2b Failure
The clinical development program that grew out of the Monash research enrolled more than 900 participants with obesity across Phase 2 studies between 2000 and 2007, with body-composition change measured by DEXA as a primary outcome. The program ended with the 2007 Phase 2b trial (approximately 400 participants over 24 weeks), which failed its primary endpoint: AOD-9604 did not demonstrate statistical superiority over placebo, in part because placebo arms receiving diet and lifestyle counselling also changed substantially. The sponsor discontinued development. That failure is the central fact of AOD-9604’s clinical literature, and it is disclosed here directly — laboratory research on this fragment starts from it.
Research Applications
Published interest in AOD-9604 centres on the questions the trial failure left open: beta-3-adrenergic signalling in adipose tissue, lipolysis mechanisms independent of appetite pathways, and the pharmacology of GH fragments that dissociate lipolytic activity from growth-promoting activity. Researchers comparing peripheral and central mechanisms may evaluate AOD-9604 alongside GHRH-class comparators such as CJC-1295 or ipamorelin (GH-axis reference compounds with mechanistically distinct activity).
Regulatory Framing
Supplied by Artemis Labs strictly for in-vitro and pre-clinical laboratory research. For research use only — not for human consumption, therapeutic use, or veterinary use. These statements have not been evaluated by the FDA.




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