Nicotinamide Adenine Dinucleotide — essential redox coenzyme (NAD⁺/NADH cycling) 500mg research quantity for sirtuin, PARP, and CD38 pathway studies Research-grade · CAS 53-84-9 For in vitro metabolic research only
For laboratory research use only. Not for human or veterinary consumption. SKU NJ500a.
What makes NAD+ unusual as a research compound is its dual nature. In redox reactions — glycolysis, the citric acid cycle, oxidative phosphorylation — it functions as a recyclable coenzyme, accepting and donating electrons as NAD+ and NADH. But sirtuins, PARPs, and CD38 actually consume it. They break NAD+ apart to do their work, depleting the cellular pool. This creates a resource competition at the molecular level that sits at the center of aging and metabolic research.
Sirtuins (SIRT1-7) are NAD+-dependent deacylases that regulate gene expression, DNA repair, and stress responses. PARPs consume NAD+ to build poly(ADP-ribose) chains during DNA damage repair. CD38 uses NAD+ for calcium signaling through cADPR synthesis. All three enzyme families draw from the same NAD+ pool, and published research shows that pool shrinks substantially with age across multiple tissue types (Covarrubias et al., Nature Reviews Molecular Cell Biology, 2021).
The implications are significant: when PARP activates during DNA damage, it can drain enough NAD+ to starve sirtuin-mediated regulatory functions. Wang et al. examined this dynamic specifically in the context of base excision repair after ischemic stress (Stroke, 2008; PubMed 18635843).
| Molecular Formula | C21H27N7O14P2 |
| Molecular Weight | 663.43 g/mol |
| CAS Number | 53-84-9 |
| PubChem CID | 5893 |
| Structure | Two nucleotides joined via phosphate groups — one with adenine base, one with nicotinamide |
| Form | Lyophilized powder |
| Appearance | White to off-white powder |
| Solubility | Freely soluble in water |
| Available Sizes | 500mg and 1000mg per vial |
Mills et al. published one of the landmark studies in NAD+ precursor research — a 12-month NMN administration study in normal-aging mice that tracked body weight, energy metabolism, and a range of metabolic parameters over time (Cell Metabolism, 2016; PubMed 28068222). Zhang et al. examined the downstream consequences for mitochondrial and stem cell function (Cell, 2016). Imai et al. reviewed the broader NAD+ metabolism landscape comprehensively (Nat Rev Mol Cell Biol, 2024).
Every Heritage Labs compound is manufactured to research-grade standards and shipped in protective packaging.
For laboratory research use only. Not for human or veterinary use. Not a drug, food, or cosmetic.