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NAD+ Research & Scientific Studies

Explore the latest peer-reviewed research and scientific studies

About NAD+

NAD? (Nicotinamide Adenine Dinucleotide) is a coenzyme widely studied for its role in cellular redox reactions and energy metabolism. Supplied as a lyophilized powder for laboratory research investigating mitochondrial function, cellular energetics, DNA-repair-associated pathways, and enzyme systems related to metabolic regulation. Each batch is verified for purity using HPLC; refer to the Certificate of Analysis for assay details. Supplied as: Lyophilized powder Purity: >95 Storage: Store desiccated at ?20�C for long-term. Short-term room temperature exposure (around 1 month) during shipping/handling is generally acceptable if kept sealed, dry, and protected from heat/light. Designation: FOR RESEARCH USE ONLY. Not intended for human or animal consumption.

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Latest Research

Featured Study

The Effect of Anion Inhalation in a Mouse Model of Cigarette Smoke-Induced Chronic Obstructive Pulmonary Disease.

Li Y et al.COPD2026

Recent research on NAD+: The Effect of Anion Inhalation in a Mouse Model of Cigarette Smoke-Induced Chronic Obstructive Pulmonary Disease.

Read Full Study on PubMed
Featured Study

NAD(+) precursor supplementation reverses CD36-mediated lipid accumulation and ferroptosis to restore antitumor function of NK cells in DLBCL.

Shi L et al.Pharm Sci Adv2026

Recent research on NAD+: NAD(+) precursor supplementation reverses CD36-mediated lipid accumulation and ferroptosis to restore antitumor function of NK cells in DLBCL.

Read Full Study on PubMed

Additional Studies

A review of the sirtuins family: pivotal regulators and emerging therapeutic targets in renal fibrosis.

Deng Q et al.Ren Fail2026

Recent research on NAD+: A review of the sirtuins family: pivotal regulators and emerging therapeutic targets in renal fibrosis.

Read on PubMed

A senescent metabolism-modulating hierarchical scaffold restores NAD(+) homeostasis and redox balance for aged bone repair.

Jiang J et al.Bioact Mater2026

Recent research on NAD+: A senescent metabolism-modulating hierarchical scaffold restores NAD(+) homeostasis and redox balance for aged bone repair.

Read on PubMed

Biosynthesis of ent-acu-dioxomorpholine A and its conversion to prenyl-rearranged and rare ketooxadiazepane products in heterologous host.

Tao Q et al.Synth Syst Biotechnol2026

Recent research on NAD+: Biosynthesis of ent-acu-dioxomorpholine A and its conversion to prenyl-rearranged and rare ketooxadiazepane products in heterologous host.

Read on PubMed

Extending Cofactor-Tethered Nanomachines to Complex Multienzyme Redox Cascades in Continuous Flow.

Dsouza Z et al.ChemSusChem2026

Recent research on NAD+: Extending Cofactor-Tethered Nanomachines to Complex Multienzyme Redox Cascades in Continuous Flow.

Read on PubMed

Downregulation of FLT1 delays vascular aging by suppressing MAPK signaling pathway activation in vascular smooth muscle cells​.

Fu L et al.Cytotechnology2026

Recent research on NAD+: Downregulation of FLT1 delays vascular aging by suppressing MAPK signaling pathway activation in vascular smooth muscle cells​.

Read on PubMed

Molecular mechanism of CtBP1-S/BARS-driven membrane fission and its cellular control by metabolic ligands.

De Tito S et al.Sci Adv2026

Recent research on NAD+: Molecular mechanism of CtBP1-S/BARS-driven membrane fission and its cellular control by metabolic ligands.

Read on PubMed

Related Research

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Research Disclaimer

The research articles and studies referenced on this page are for informational purposes only. All products are sold for research use only and are not intended for human or animal consumption. The information provided does not constitute medical advice, diagnosis, or treatment. Always consult with qualified healthcare professionals before making any decisions related to health or medical treatment.