Corticosterone丨CAS 50-22-6

Corticosterone丨CAS 50-22-6
Product Introduction:
Catalog No.: SS069688
CAS No.: 50-22-6
Assay(HPLC): 98%min
Product Name: Corticosterone
Molecular Formula: C21H30O4
Molecular Weight: 346.46
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Technical Parameters
Description

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Specifications

 

Appearance White or off-white crystalline powder
Assay (HPLC) 98% min
Melting Point 170 – 185 °C
Specific Rotation 215 – 225°
Loss on Drying 0.5% max
Related Substances – Any Impurity 1.0% max
Related Substances – Total Impurities 2.0% max

 

 

 

Applications


Corticosterone is a naturally occurring glucocorticoid hormone widely used in pharmaceutical research, biomedical studies, and analytical applications. It is extensively applied in endocrinology and neuroscience research to investigate stress response mechanisms, hypothalamic–pituitary–adrenal axis regulation, and hormone-mediated physiological processes. In preclinical studies, corticosterone is used to model chronic and acute stress conditions, enabling researchers to study behavioral changes, immune modulation, metabolic regulation, and neuroendocrine signaling. It is also employed as a reference standard in analytical chemistry for hormone quantification, method validation, and quality control using techniques such as HPLC, LC–MS, and immunoassays. In drug discovery and toxicology, corticosterone supports the evaluation of glucocorticoid receptor activity, steroid metabolism, and endocrine-disrupting effects of new compounds.

 

Benefits
Corticosterone offers significant benefits due to its well-characterized biological activity and relevance in physiological research. Its established role as a key stress hormone makes it highly valuable for studying glucocorticoid signaling pathways and their impact on inflammation, immune response, and energy metabolism. Corticosterone enables reproducible experimental models, allowing consistent investigation of stress-related disorders, neurodegenerative processes, and metabolic dysfunctions. Its chemical stability and availability in defined purity grades support accurate dosing and reliable analytical results. As a widely recognized reference compound, corticosterone facilitates cross-study comparability and regulatory-aligned research, enhancing data consistency in pharmacological and biochemical investigations.

 

Conclusion
Corticosterone is an essential research compound in endocrinology, neuroscience, and pharmaceutical sciences. Its broad applicability in stress modeling, receptor studies, and analytical validation underscores its importance in understanding hormone-regulated biological systems. By enabling precise investigation of glucocorticoid function and stress-related mechanisms, corticosterone continues to play a critical role in advanced biomedical and pharmaceutical research.

 

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