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Product Line: Food Industry

beta-NAD

CAS 53-84-9

Molecular structure of beta-NAD

CAS · 53-84-9

01

Product Overview

beta-NAD is a high-purity nutrient-additives supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance White or off-white powder
Purity (HPLC) 99.0% min
Assay (cal. on dry basis) 98.0% min
Sodium Content 1% max
Water 10% max
pH Value 2.0 ~ 4.0
Organic Solvents 1% max
Pb 0.1 ppm max
Hg 0.1 ppm max
Cd 0.2 ppm max
As 0.1 ppm max
Total microbial count 500 CFU/g max
Coliform 0.92 MPN/g max
Mold and yeast 50 CFU/g max
Staphylococcus aureus 0/25 g max
Salmonella 0/25 g max
Endotoxin 0.2 EU/mg max
03

Applications

Beta-NAD, or β-nicotinamide adenine dinucleotide, is a crucial coenzyme widely used in biochemical research, pharmaceutical studies, and cellular metabolism investigations. It plays a key role in redox reactions, serving as an electron carrier in metabolic pathways such as glycolysis, the citric acid cycle, and oxidative phosphorylation. In research and biotechnology, beta-NAD is applied in enzymatic assays to monitor dehydrogenase activity, evaluate metabolic flux, and study energy metabolism in cells and tissues. It is also used in drug discovery to investigate enzyme inhibitors, sirtuin activity, and NAD+-dependent signaling pathways. Additionally, beta-NAD serves as a standard or substrate in high-throughput screening, biochemical assay kits, and laboratory studies involving coenzyme-mediated reactions, making it an essential tool for understanding cellular physiology and molecular mechanisms.

04

Benefits

The benefits of beta-NAD arise from its central role in energy metabolism, enzymatic activity, and biochemical research. It enables precise monitoring of redox states and enzyme-catalyzed reactions, facilitating quantitative and reproducible experimental outcomes. Its stability in solution and compatibility with diverse buffer systems allow reliable use in both in vitro and cell-based assays. Beta-NAD supports the study of crucial biological processes, including DNA repair, aging-related pathways, and oxidative stress responses, providing insights into cellular health and disease mechanisms. Additionally, its high purity and well-characterized properties ensure consistency in experimental results, making it indispensable in biochemical, pharmaceutical, and molecular biology research.

05

Conclusion

Beta-NAD is a vital coenzyme with extensive applications in biochemical assays, metabolic studies, and pharmaceutical research. Its central role in redox reactions, enzyme activity, and cellular signaling makes it an essential compound for understanding energy metabolism and molecular biology. By enabling accurate enzymatic measurements, metabolic monitoring, and advanced research into NAD+-dependent processes, beta-NAD continues to play a critical role in modern life sciences and biomedical studies.

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