AOD-9604 peptide 5 mg – Research Overview
AOD-9604 peptide is a synthetic research-grade peptide analog derived from the C-terminal fragment of human growth hormone (HGH 176–191). Researchers began studying AOD-9604 in the late 1990s as a tool for experimental metabolic research, particularly in models focused on energy balance and lipid-related signaling pathways. Therefore, AOD-9604 has gained long-term relevance within basic metabolic and physiological research environments.
Scientists use AOD-9604 peptide to investigate cellular signaling mechanisms related to adipocyte activity and metabolic regulation. In this context, laboratory models allow researchers to analyze how peptide-mediated signals influence lipid-associated pathways and energy utilization processes. At the same time, studies examine how these signaling events interact with broader metabolic networks under controlled experimental conditions.
Unlike full-length growth hormone or broad endocrine regulators, AOD-9604 peptide provides a fragment-specific research model. As a result, researchers can focus on metabolism-related signaling behavior without introducing systemic growth hormone effects into experimental systems.
AOD-9604 peptide in metabolic research
In preclinical research environments, scientists frequently reference AOD-9604 peptide in experimental models examining lipid signaling and metabolic adaptation. Additionally, these models support investigation of how biological systems regulate energy distribution and substrate preference at the cellular level.
Researchers also study AOD-9604 peptide in laboratory settings focused on adipocyte signaling and tissue-specific metabolic pathways. Through these studies, research teams analyze how peptide-based signaling contributes to regulatory balance and metabolic responsiveness during changing energy demands.
Moreover, AOD-9604 peptide often appears in experimental research related to complex metabolic systems, where multiple signaling pathways interact simultaneously. These studies help researchers explore how metabolic regulation adapts to sustained or variable physiological challenges.
AOD-9604 peptide in energy regulation and signaling studies
Due to its origin from the HGH 176–191 region, AOD-9604 peptide is commonly included in experimental models focused on energy metabolism and signaling specificity. Consequently, researchers use these models to study how peptide fragments influence metabolic coordination without broad endocrine activation.
In comparative research environments, scientists may evaluate AOD-9604 peptide alongside other metabolism-related research compounds. This approach supports deeper analysis of differences between fragment-based signaling models and full-length hormonal pathways.
Public scientific databases, including PubChem, provide biochemical and molecular reference data for AOD-9604 peptide. Accordingly, researchers rely on these standardized resources when designing experimental protocols and validating laboratory research data.
Research handling and laboratory use
Laboratories handle AOD-9604 peptide exclusively in controlled research environments. Additionally, proper storage conditions and standardized handling procedures help maintain peptide stability and molecular integrity. In turn, consistent laboratory protocols support reliable and reproducible experimental outcomes.
Therefore, all research involving AOD-9604 peptide remains limited to in vitro and preclinical laboratory research models. Accordingly, these activities do not include clinical, therapeutic, metabolic, or diagnostic use.
Important Notice
This product is intended exclusively for laboratory and scientific research purposes.
Not intended for human or veterinary use.
Not intended for diagnostic, therapeutic, or clinical applications.
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Compound
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AOD-9604
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Chemical name
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Anti-Obesity Drug 9604 (human growth hormone fragment 176–191)
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Quantity
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5mg
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Form
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Lyophilized peptide powder
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Grade
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Research-grade
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Purity
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High-purity research grade
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Packaging
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Glass vial with sterile closure
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Storage conditions
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Store lyophilized at 2–8 °C. Keep desiccated and protected from light.
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Molecular formula
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C₇₈H₁₂₁N₂₃O₂₂
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Molecular weight
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≈ 1815.1 g/mol
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CAS Number
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221231-10-3
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