NAD+
Product Details
NAD+ — Research Compound
NAD+ (Nicotinamide Adenine Dinucleotide) is a coenzyme naturally present in living cells and widely studied for its role in cellular energy production, mitochondrial function, metabolic regulation, and redox signaling pathways. In laboratory settings, NAD+ is commonly researched for its involvement in biochemical reactions associated with cellular metabolism and energy transfer.
NAD+ functions as an essential cofactor in oxidation-reduction (redox) reactions and plays a central role in metabolic processes related to ATP production, mitochondrial activity, and enzymatic signaling pathways. Scientific literature has examined NAD+ in connection with cellular homeostasis, sirtuin activity, DNA repair mechanisms, and age-related metabolic research.
Published studies have explored how NAD+ levels influence mitochondrial function, cellular stress responses, and metabolic signaling pathways in experimental models. Additional research has investigated the role of NAD+ in pathways involving energy metabolism, oxidative stress regulation, and cellular communication mechanisms.
This compound is supplied for qualified laboratory research and analytical purposes only.
Product Details
Product Name: NAD+
Alternative Name: Nicotinamide Adenine Dinucleotide
Form: Research compound
Grade: Research use only
Application: Laboratory research and analytical testing only
Storage: Store in a cool, dry place under proper laboratory storage conditions.
Research Areas
This compound may be used in research related to:
- Cellular energy production and ATP pathway studies
- Mitochondrial function and metabolic signaling research
- NAD+ and redox reaction investigation
- Sirtuin pathway and enzymatic signaling studies
- Cellular stress response analysis
- DNA repair and metabolic homeostasis research
- Oxidative stress and mitochondrial communication studies
Research References
- Verdin E. “NAD+ in aging, metabolism, and neurodegeneration.” Science. 2015.
- Yoshino J, Baur JA, Imai SI. “NAD+ Intermediates: The Biology and Therapeutic Potential of NMN and NR.” Cell Metabolism. 2018.
- Covarrubias AJ, Perrone R, Grozio A, Verdin E. “NAD+ metabolism and its roles in cellular processes during ageing.” Nature Reviews Molecular Cell Biology. 2021.
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