AOD-9604 Dosage Chart
Common reconstitution scenarios for a 5mg vial. Use the AOD-9604 calculator above to generate exact values for your setup.
| Vial Size | BAC Water | Concentration | 250mcg = | 500mcg = |
|---|---|---|---|---|
| 5mg | 1ml | 50.0 mcg/unit | 5.0 units | 10.0 units |
| 5mg | 2ml | 25.0 mcg/unit | 10.0 units | 20.0 units |
| 5mg | 3ml | 16.7 mcg/unit | 15.0 units | 30.0 units |
Mechanism of Action
AOD-9604 mimics the lipolytic domain of human growth hormone by stimulating lipolysis (the enzymatic breakdown of stored triglycerides in adipocytes) and inhibiting lipogenesis (the de novo conversion of non-fatty food substrates into body fat), without activating the classical GH receptor or the IGF-1 axis. This 'No-IGF-1 advantage' is mechanistically critical: full-length hGH stimulates IGF-1 production, which drives insulin resistance, cell proliferation, and fluid retention. AOD-9604, lacking the receptor-binding domain of hGH (residues 1–176), does not trigger IGF-1 release and does not alter blood glucose or insulin sensitivity—making it a cleaner metabolic research tool. Its lipolytic activity is believed to be mediated through beta-3 adrenergic receptor signaling on adipocytes and a putative hGH fragment receptor pathway.
How to Reconstitute AOD-9604
- 1
Allow the lyophilized AOD-9604 vial to equilibrate to room temperature for 15–20 minutes. AOD-9604 is an extremely fragile peptide—its disulfide bridge and tyrosine-stabilized N-terminus are both susceptible to mechanical and thermal denaturation.
- 2
Disinfect the rubber stopper with a sterile 70% isopropyl alcohol swab and allow to air dry completely before needle insertion.
- 3
Use the AOD-9604 calculator above to determine the precise BAC water volume. A standard research preparation is a 5mg vial + 2ml BAC water = 250mcg per 10 units (25mcg/unit). Confirm your target concentration before drawing.
- 4
Insert the needle at an angle and inject BAC water very slowly down the inner glass wall of the vial. Never aim the stream directly at the lyophilized cake and never use fast injection—vacuum-pressure 'jetting' is a primary cause of disulfide bond disruption and aggregation in this peptide.
- 5
Gently swirl or roll the vial between your fingers until fully dissolved. Do not shake, vortex, or invert rapidly. AOD-9604 is among the most agitation-sensitive research peptides; even brief vigorous mixing can render the preparation non-viable.
Storage & Safety for AOD-9604
- Pre-reconstitution (lyophilized)
- Store lyophilized powder at −20°C for up to 24 months, or at 2–8°C for up to 6 months. AOD-9604 is more thermally labile than larger peptides—avoid prolonged room-temperature storage of the lyophilized form.
- Post-reconstitution
- Refrigerate reconstituted solution at 2–8°C (36°F–46°F). For peak potency, use within 7–14 days. The disulfide bridge and tyrosine residue undergo accelerated degradation in solution compared to the lyophilized state—shorter use windows preserve research-grade activity.
- Light sensitivity
- Protect from UV radiation at all stages. The disulfide bond (Cys182–Cys189) is susceptible to photolytic cleavage, and the tyrosine residue can undergo photo-oxidation. Store in amber vials or foil-wrapped containers.
- Shelf life
- 7–14 days post-reconstitution for peak potency at 2–8°C; maximum 28 days if potency decline is acceptable for the research context. Do not freeze reconstituted solution—ice crystal formation disrupts the disulfide bridge conformation.
Current Research Focus
Active research is examining AOD-9604 dosage parameters in adipocyte lipolysis models, its comparison with full-length hGH in metabolic syndrome and diet-induced obesity protocols, and its effect on the fasted-state lipolytic rate in rodent models—where administration timing relative to the fed/fasted cycle significantly affects lipolytic output. Administration in a fasted state is consistently associated with greater lipolytic activity in animal studies, a finding that informs protocol design for metabolic research. Additional lines of investigation include its potential applications in osteoarthritis cartilage repair, supported by early clinical data from Phase II trials.
Disclaimer
Strict Disclaimer: For laboratory research use only. Not for human consumption. This calculator is a mathematical tool for metabolic research accuracy. This information is intended solely for licensed researchers and does not constitute medical advice.