Methyl Acetobromo-alpha-D-glucuronate丨CAS 21085-72-3

Methyl Acetobromo-alpha-D-glucuronate丨CAS 21085-72-3
Product Introduction:
Catalog No.: SS118679
CAS No.: 21085-72-3
Purity(HPLC): 98%min
Product Name: Methyl acetobromo-alpha-D-glucuronate
Certificate: ISO9001
Molecular Formula: C13H17BrO9
Molecular Weight: 397.17
Synonym(s): Bromomethyltriacetyl glucuronate
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Technical Parameters
Description

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Specifications

 

Appearance Off white to white powder
Purity (HPLC) 98% min
HNMR (CDCl3) Conforms to structure
Water 0.5% max

 

 

 

Applications

 

Methyl acetobromo-alpha-D-glucuronate is primarily used as an intermediate in carbohydrate chemistry and glycoside synthesis. It serves as a key building block for the preparation of glucuronide derivatives, which are important in drug metabolism studies, prodrug development, and biochemical research. The compound is also employed in the synthesis of oligosaccharides, glycoconjugates, and other functionalized sugar derivatives for pharmaceutical and biotechnological applications. Its reactive bromide functionality allows for efficient glycosylation reactions, making it valuable in complex carbohydrate assembly and organic synthesis.

 

Benefits

 

The benefits of Methyl acetobromo-alpha-D-glucuronate include its high reactivity in glycosylation reactions, enabling selective and efficient formation of glycosidic bonds. Its acetyl protection improves stability and solubility in organic solvents, facilitating controlled synthetic steps. The compound allows chemists to construct glucuronide conjugates with high yield and reproducibility, which is crucial for drug development, enzyme studies, and biochemical research. Additionally, its versatility in modifying carbohydrate structures enhances the scope of medicinal chemistry and glycoscience applications.

 

Conclusion

 

Methyl acetobromo-alpha-D-glucuronate is a valuable intermediate in carbohydrate and glycoside chemistry, supporting the synthesis of glucuronides, oligosaccharides, and glycoconjugates. Its reactivity, stability, and versatility make it an essential tool for pharmaceutical, biochemical, and research applications. By enabling precise and efficient glycosylation, it continues to advance studies in drug development, metabolism, and carbohydrate-based chemical synthesis.

 

 

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