NAD+ (Nicotinamide Adenine Dinucleotide) is a naturally occurring coenzyme found in all living cells and plays a critical role in cellular energy production and metabolic processes. In research environments, NAD+ is widely studied for its involvement in redox reactions, mitochondrial function, and cellular signaling pathways.
At Sana, NAD+ is developed under strict quality standards to ensure purity, stability, and batch-to-batch consistency, making it suitable for advanced laboratory research and biochemical studies.
Molecular Formula:ย C21H27N7O14P2
Molecular Weight:ย 663.43 g/mol
PubChem CID:ย 925
CAS Number:ย 53-84-9
NADโบ functions as a redox-active cofactor capable of accepting and donating electrons in enzymatic reactions. In experimental systems, NADโบ availability is commonly treated as a measurable variable associated with metabolic flux, enzyme activity assays, and intracellular signaling readouts. NADโบ is also evaluated as a substrate for enzymes involved in post-translational modification processes, including ADP-ribosylation.
In laboratory research, NADโบ is used as a reference compound or experimental variable in:
All applications are limited to controlled in vitro or animal-model research environments.
Across the referenced literature, NADโบ is discussed in relation to multiple pathway-annotated datasets. These discussions are framed as reported measurements, observed associations, or differential expression trends rather than direct functional outcomes. Frequently referenced pathway contexts include:
Animal and cell-based studies describe associations between NADโบ availability and measured mitochondrial parameters, including oxidative phosphorylation markers and redox state indicators. These findings are reported as dataset-level observations derived from preclinical models.
Transcriptomic analyses in aging-related models report differential expression patterns among nuclear and mitochondrial gene sets in experimental conditions involving altered NADโบ levels. Interpretation is limited to reported expression profiles rather than direct claims of functional restoration.
In mouse models of neurodegenerative disease, published studies report associations between NADโบ exposure and measured neuronal survival markers, oxidative stress indicators, and mitochondrial readouts. These observations are presented as preclinical correlations within disease-model systems.
Several studies reference NADโบ-linked datasets involving NAMPT, cytokine measurements, and inflammatory signaling components. Reported outcomes are based on gene-expression profiles, enzyme activity measurements, or pathway-level annotations.
Collectively, the literature positions NADโบ as a biochemical variable used to explore metabolism-, aging-, and stress-related mechanisms in non-clinical research systems.
This product is supplied as a research-grade compound intended for laboratory use. Analytical characterization may include chromatographic purity assessment and mass-based identity confirmation. Lot-specific specifications should be verified using the accompanying certificate of analysis when provided.
โNAD+ Science 101 – What Is NAD+ & Why Itโs Important,โ Elysium Health. [Online]. Available:ย https://www.elysiumhealth.com/en-us/knowledge/science-101/everything-you-need-to-know-about-nicotinamide-adenine-dinucleotide-nad. [Accessed: 25-Jul-2019].
โNicotinamide Riboside: Benefits, Side Effects and Dosage,โ Healthline. [Online]. Available:ย https://www.healthline.com/nutrition/nicotinamide-riboside. [Accessed: 25-Jul-2019].
T. Matthews, L. Yang, S. Browne, M. Baik, and M. F. Beal, โCoenzyme Q10 administration increases brain mitochondrial concentrations and exerts neuroprotective effects,โ Proc. Natl. Acad. Sci. U. S. A., vol. 95, no. 15, pp. 8892โ8897, Jul. 1998. [PMC]
โWhat You Need to Know About Resveratrol Supplements,โ WebMD. [Online]. Available:ย https://www.webmd.com/heart-disease/resveratrol-supplements. [Accessed: 25-Jul-2019].
Sun, R. J. Youle, and T. Finkel, โThe Mitochondrial Basis of Aging,โ Mol. Cell, vol. 61, no. 5, pp. 654โ666, Mar. 2016. [PMC]
Stipp, โBeyond Resveratrol: The Anti-Aging NAD Fad,โ Scientific American Blog Network. [Online]. Available:ย https://blogs.scientificamerican.com/guest-blog/beyond-resveratrol-the-anti-aging-nad-fad/. [Accessed: 08-Jul-2019].
P. Gomes et al., โDeclining NAD+ Induces a Pseudohypoxic State Disrupting Nuclear-Mitochondrial Communication during Aging,โ Cell, vol. 155, no. 7, pp. 1624โ1638, Dec. 2013. [PMC]
Imai and L. Guarente, โNAD+ and sirtuins in aging and disease,โ Trends Cell Biol., vol. 24, no. 8, pp. 464โ471, Aug. 2014. [PubMed]
R. Mendelsohn and J. W. Larrick, โPartial reversal of skeletal muscle aging by restoration of normal NAD+ levels,โ Rejuvenation Res., vol. 17, no. 1, pp. 62โ69, Feb. 2014. [PubMed]
Kang, E. Chung, G. Diffee, and L. L. Ji, โExercise training attenuates aging-associated mitochondrial dysfunction in rat skeletal muscle: role of PGC-1ฮฑ,โ Exp. Gerontol., vol. 48, no. 11, pp. 1343โ1350, Nov. 2013. [PubMed]
Ringholm et al., โEffect of lifelong resveratrol supplementation and exercise training on skeletal muscle oxidative capacity in aging mice; impact of PGC-1ฮฑ,โ Exp. Gerontol., vol. 48, no. 11, pp. 1311โ1318, Nov. 2013. [PubMed]
Lloret and M. F. Beal, โPGC-1ฮฑ, Sirtuins and PARPs in Huntingtonโs Disease and Other Neurodegenerative Conditions: NAD+ to Rule Them All,โ Neurochem. Res., May 2019. [PubMed]
Shan et al., โProtective effects of ฮฒ- nicotinamide adenine dinucleotide against motor deficits and dopaminergic neuronal damage in a mouse model of Parkinsonโs disease,โ Prog. Neuropsychopharmacol. Biol. Psychiatry, vol. 94, p. 109670, Jun. 2019. [PubMed]
C. Maddison and F. Giorgini, โThe kynurenine pathway and neurodegenerative disease,โ Semin. Cell Dev. Biol., vol. 40, pp. 134โ141, Apr. 2015. [PubMed]
Garten, S. Schuster, M. Penke, T. Gorski, T. de Giorgis, and W. Kiess, โPhysiological and pathophysiological roles of NAMPT and NAD metabolism,โ Nat. Rev. Endocrinol., vol. 11, no. 9, pp. 535โ546, Sep. 2015. [PubMed]
Yamaguchi and J. Yoshino, โAdipose Tissue NAD+ Biology in Obesity and Insulin Resistance: From Mechanism to Therapy,โ BioEssays News Rev. Mol. Cell. Dev. Biol., vol. 39, no. 5, May 2017. [PMC]
E. Humiston, โNicotinamide Adenine Dinucleotide,โ p. 68. [FDA]
The products offered on this website are furnished for in-vitro studies only. In-vitro studies (Latin: in glass) are performed outside of the body.ย These products are not medicines or drugs and have not been approved by the FDA to prevent, treat or cure any medical condition, ailment or disease.ย Bodily introduction of any kind into humans or animals is strictly forbidden by law.
For Laboratory Research Only. Not for human use, medical use, diagnostic use, or veterinary use.
Store in a cool, dry location
Avoid exposure to heat, light, and moisture
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Handle according to laboratory safety guidelines
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