Description
AOD-9604 Research Peptide – Synthetic Peptide Analog
AOD-9604 Research Peptide is a synthetic peptide analog derived from the C-terminal region of human growth hormone (GH). It is a structurally defined research compound that can be characterized using appropriate analytical techniques and investigated in controlled laboratory environments.
AOD-9604 is distinct from intact human growth hormone and should not be described as equivalent to endogenous GH. PubChem identifies AOD-9604 as a synthetic analog of the lipolytic domain of human growth hormone and lists its specific molecular structure and sequence.
At LV Longevity Peptides, AOD-9604 should be positioned as a research material for qualified laboratory applications, including peptide characterization, analytical profiling, stability investigations, and controlled experimental studies.
The exact product specifications—including purity, quantity, chemical form, and batch information—should always be verified against the applicable LV Certificate of Analysis (COA).
What Is AOD-9604 Research Peptide?
AOD-9604 is a synthetic peptide analog associated with the 176–191 region of human growth hormone.
The compound is structurally distinct from full-length human growth hormone. PubChem lists AOD-9604 under several names, including AOD9604 and AOD 9604, and identifies it with CAS 221231-10-3.
Its defined molecular structure makes it suitable for research involving peptide identification, structure-property relationships, analytical testing, and other controlled laboratory investigations.
AOD-9604 Chemical Information
According to the current PubChem record, AOD-9604 has the following reference characteristics:
| Specification | Reference Information |
|---|---|
| Product Name | AOD-9604 |
| Alternative Names | AOD9604 / AOD 9604 |
| Classification | Synthetic peptide analog |
| Molecular Formula | C₇₈H₁₂₃N₂₃O₂₃S₂ |
| Molecular Weight | 1,815.1 g/mol |
| Sequence | YLRIVQCRSVEGSCGF |
| CAS Number | 221231-10-3 |
| PubChem CID | 71300630 |
Chemical Information:
- Molecular Formula: C78H123N23O23S2
- Molecular Weight: 1815.08 g/mol
- Sequence: Tyr-Leu-Arg-Ile-Val-Gln-Cys-Arg-Ser-Val-Glu-Gly-Ser-Cys-Gly-Phe>
- Molecular Structure

AOD-9604 Sequence
Amino-acid sequence
YLRIVQCRSVEGSCGF
Expanded:
Tyr-Leu-Arg-Ile-Val-Gln-Cys-Arg-Ser-Val-Glu-Gly-Ser-Cys-Gly-Phe
PubChem records the corresponding structure with a disulfide connection between the cysteine residues.
This sequence information is particularly useful for researchers performing mass-spectrometric identification or other analytical characterization.
Research Applications
Peptide Characterization
AOD-9604 can be investigated as a defined synthetic peptide analog using appropriate analytical methods.
Analytical Profiling
Research laboratories can characterize molecular identity, chromatographic behavior, molecular mass, and other relevant analytical properties.
Stability Research
AOD-9604 can be evaluated under controlled experimental conditions to investigate degradation and stability characteristics.
Structure-Function Research
The compound can support research into relationships between peptide structure and experimentally observed molecular behavior.
Comparative Peptide Research
AOD-9604 can be evaluated alongside related peptide materials or growth-hormone-derived fragments in appropriately designed laboratory experiments.
These applications keep the product page centered on non-clinical research, rather than making unsupported medical or body-composition claims.
AOD-9604 vs. HGH 176-191
This is a useful section for SEO because researchers may search for both terms.
AOD-9604 should not automatically be treated as identical to an unmodified HGH 176-191 fragment.
AOD-9604 is a defined synthetic analog with its own molecular structure and sequence. PubChem identifies it separately as AOD-9604, with its own CAS number and molecular record.
Recommended copy
AOD-9604 and HGH 176-191 are related research materials but should not be treated as interchangeable compounds. Researchers should verify the exact sequence, chemical form, and analytical identity of each material before experimental use.






