Sodium Oxamate丨CAS 565-73-1

Sodium Oxamate丨CAS 565-73-1
Product Introduction:
Catalog No.: SS114131
CAS No.: 565-73-1
Assay (titration): 98 to 102%
Product Name: Sodium oxamate
Molecular Formula: C2H2NNaO3
Molecular Weight: 111.03
Synonym(s): Aminooxoacetic acid sodium salt; Oxamic acid sodium salt
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Technical Parameters
Description

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Specifications

 

Appearance White to off-white solid
Assay (titration) 98-102%

 

 

 

Applications

 

Sodium oxamate (CAS 565-73-1) is an inorganic salt widely used in biochemical research, pharmaceutical development, and chemical synthesis. Its primary application is as a metabolic inhibitor, particularly targeting the enzyme lactate dehydrogenase (LDH) in cellular studies. This makes it valuable in research on cancer metabolism, glycolysis, and other metabolic pathways. Sodium oxamate is also employed as an intermediate in organic synthesis and as a reagent in chemical reactions where the oxamate moiety can participate in condensation, cyclization, or complexation processes. Additionally, it finds use in analytical chemistry for studying enzyme kinetics and metabolic regulation.

 

Benefits

 

The benefits of sodium oxamate stem from its specificity, stability, and versatility in research and chemical applications. Its ability to inhibit LDH provides researchers with a controlled method to study metabolic flux and cellular energy pathways, aiding in the development of potential therapeutic strategies. In chemical synthesis, its reactivity allows the efficient construction of oxamate-containing derivatives, supporting pharmaceutical and fine chemical production. Its water solubility, chemical stability, and compatibility with standard laboratory conditions further enhance its utility in both experimental and industrial contexts, making it a reliable reagent for diverse applications.

 

Conclusion

 

In conclusion, sodium oxamate is a multifunctional compound valuable for metabolic studies, pharmaceutical research, and chemical synthesis. Its enzyme inhibition properties, chemical versatility, and stability make it an important tool for scientific investigation and industrial processes. By enabling controlled biochemical studies and efficient chemical transformations, sodium oxamate plays a significant role in modern research and chemical development.

 

 

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