NAD+ (1000mg)
By TidesVI
$300.00 USD — In Stock
- Category: NAD+ & Antioxidants
- Purity: 99.5%
- Format: Vial
- SKU: YPB.224
Description
Product Overview: NAD+ (Nicotinamide Adenine Dinucleotide) is a naturally occurring coenzyme found in all living cells that is fundamental to numerous biological processes. Chemically, it is a dinucleotide composed of two nucleotides connected via their phosphate groups, with one containing an adenine base and the other a nicotinamide base. NAD+ is heavily investigated for its role in redox reactions, cellular energy metabolism, and as a key regulator in enzymatic functions involved in various intracellular pathways. Research Profile: Research into NAD+ focuses on its critical importance in cellular and molecular biology, particularly its involvement in energy production and signaling pathways. - Cellular Metabolism: NAD+ is studied for its role as a coenzyme in glycolysis, the citric acid cycle, and oxidative phosphorylation, facilitating electron transfer in mitochondrial energy production. - Sirtuin Activation: Investigations explore NAD+ as a substrate for sirtuin enzymes, which are implicated in cellular stress responses, chromatin remodeling, and longevity-related pathways. - DNA Repair Mechanisms: Laboratory models study NAD+ for its involvement in poly-ADP ribose polymerase (PARP) activation, a process critical for DNA damage repair. - Signal Transduction: NAD+ is evaluated for its role in second-messenger systems, such as cyclic ADP-ribose, which influences calcium signaling and intracellular communication. - Oxidative Stress: Research investigates the relationship between NAD+ and oxidative stress management, particularly its impact on redox balance and cellular resilience. Key Research Applications: NAD+ is studied extensively in research models to advance understanding of its molecular and cellular functions. - Energy Metabolism Studies: Investigations utilize NAD+ to explore mitochondrial function and bioenergetics in cellular systems. - Aging Research: NAD+ is studied for its role in sirtuin-mediated pathways and its potential impact on cellular aging processes in research models. - Neurobiology: Research focuses on NAD+ involvement in neuronal metabolism and its influence on synaptic signaling mechanisms. - Genomic Stability: Laboratory evaluations assess NAD+ in DNA repair studies, particularly its role in maintaining genomic integrity under stress conditions. Specifications: Peptide Content: 1000 mg per vial Appearance: Lyophilized powder Storage & Handling: Store in a cool, dry environment protected from light and moisture. Reconstitution and handling should be performed using standard laboratory procedures and appropriate laboratory controls.
Research Summary
A coenzyme studied for its role in energy production, DNA repair, and age related changes in metabolism.