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Specifications
| Appearance: | Almost white to off-white solid |
| Identification: | IR |
| Solubility in Methanol: | Standard |
| Water: | 7% max |
| Cholic Acid: | 0.5% max |
| Glycodeoxycholic Acid: | 0.2% max |
| Deoxycholic Acid: | 0.1% max |
| Other Concerning the Material: | 0.5% max |
| Total Impurities: | 2% max |
| Purity: | 98% min |
Applications
Glycocholic acid (CAS 475-31-0) is a bile acid derivative widely used in pharmaceutical, biochemical, and clinical research. It plays a key role in the study of lipid metabolism, bile acid pathways, and liver function. In pharmaceuticals, it is used as an intermediate in the synthesis of bile acid-based drugs, including hepatoprotective agents and solubilizing agents for poorly soluble drugs. Glycocholic acid is also applied in the formulation of drug delivery systems, where its amphiphilic structure enhances the solubility and absorption of hydrophobic compounds. Additionally, it serves as a standard or reagent in biochemical assays and analytical studies related to bile acid composition and metabolism.
Benefits
The benefits of glycocholic acid stem from its amphiphilic nature, biocompatibility, and biological relevance. Its conjugation with glycine enhances water solubility, making it useful for drug formulation and delivery. Its structural similarity to endogenous bile acids allows it to interact effectively with biological membranes and transporters, improving drug absorption and bioavailability. In research, its physiological relevance facilitates accurate modeling of bile acid metabolism and liver function studies. The compound's stability and chemical versatility also make it suitable for derivatization and incorporation into synthetic and pharmaceutical applications.
Conclusion
Glycocholic acid is a versatile bile acid derivative with important applications in pharmaceuticals, biochemical research, and drug delivery. Its amphiphilic structure, solubility, and biological compatibility make it valuable for enhancing drug absorption, studying metabolic pathways, and synthesizing bioactive compounds. By supporting both research and therapeutic development, glycocholic acid remains an essential tool in medicinal chemistry and biomedical sciences.

