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Research Peptide
NAD+ for research.
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Third-party tested
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99%+ purity
HPLC verified
663Da
MOL. WEIGHT
Nicotinamide adenine dinucleotide
1000+
PUBLICATIONS
NAD+ metabolism research
500+
ENZYMES
Require NAD+ as cofactor
1906
DISCOVERED
By Harden & Young
Redox
FUNCTION
Central electron carrier in metabolism
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on orders over $150
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Research
This listing supplies nicotinamide adenine dinucleotide (NAD+) as a 500 mg lyophilized vial intended strictly for in-vitro and preclinical laboratory research. NAD+ is a pyridine dinucleotide built from an adenine-containing nucleotide joined to a nicotinamide-containing nucleotide through a pyrophosphate bridge. In its oxidized (NAD+) and reduced (NADH) forms it functions as a hydride-accepting redox cofactor, and it is a defining reagent for studying electron-transfer chemistry at the bench. The material is offered as a research chemical for characterization work, assay development, and mechanistic investigation only.
NAD+ has been examined extensively in cell-free biochemistry and cultured-cell systems as the electron carrier that couples catabolic dehydrogenase reactions to downstream metabolism. In these research settings it is a standard substrate for enzymes such as lactate dehydrogenase, alcohol dehydrogenase, and the glyceraldehyde-3-phosphate dehydrogenase step of glycolysis, where the NAD+/NADH ratio is used as a readout of cellular redox state.
Beyond its classical redox role, NAD+ has been studied preclinically as a consumed co-substrate rather than a recycled cofactor. Investigators have used it to probe the activity of sirtuin deacylases and poly(ADP-ribose) polymerases (PARPs), both of which cleave NAD+ and release nicotinamide during their catalytic cycles. It also serves as a precursor for signaling molecules including cyclic ADP-ribose. This body of work remains preliminary and ongoing, and the content here describes laboratory observations only; it is not medical advice and implies no health outcome.
Each batch is characterized to confirm identity and purity before release. Reversed-phase HPLC with UV detection is the primary purity method; NAD+ shows a characteristic absorbance maximum near 259 nm arising from its adenine and nicotinamide chromophores, and the free-acid dinucleotide is resolved from related species such as NADH, nicotinamide, and ADP-ribose degradation products. Purity is typically reported as area-percent against these known impurities.
Identity is confirmed by mass spectrometry, with the expected monoisotopic mass consistent with the C21H27N7O14P2 composition (nominal molecular weight ~663.4 g/mol for the free acid). Complementary techniques used in characterization can include UV-Vis spectroscopy to verify the 259 nm profile, Karl Fischer or loss-on-drying for residual moisture in the lyophilized cake, and appearance/reconstitution checks. Reviewing the batch-specific Certificate of Analysis (COA) is recommended so that reported HPLC purity, mass-spec identity confirmation, and moisture data can be matched to the lot in hand before it is entered into an experimental record.
NAD+ is hygroscopic and its aqueous solutions are sensitive to heat, alkaline pH, and repeated freeze-thaw. Standard laboratory practice is to keep the sealed lyophilized vial cold and desiccated, equilibrate it to room temperature before opening to limit moisture uptake, and reconstitute in cold buffer near neutral or slightly acidic pH immediately prior to an experiment. Prepared stock solutions are commonly aliquoted to minimize freeze-thaw cycles. Handle only with appropriate PPE under general chemical-safety procedures. This material is not for human or animal use.
For research use only. NAD+ supplied here is intended solely for in-vitro and preclinical laboratory investigation. It is not a drug, dietary supplement, or medical product, and no statement on this page describes a therapeutic use or health outcome.
It is supplied as 500 mg of lyophilized (freeze-dried) nicotinamide adenine dinucleotide in the oxidized NAD+ free-acid form, sealed in a single research vial. The dry cake is intended to be reconstituted by the researcher in an appropriate buffer immediately before use in in-vitro work.
Each lot is assessed by reversed-phase HPLC with UV detection for area-percent purity and by mass spectrometry for identity confirmation against the expected C21H27N7O14P2 mass. Supporting checks such as UV-Vis (absorbance near 259 nm) and residual-moisture testing may also be reported. The lot-specific COA documents the actual values.
In laboratory and preclinical research it is studied as a redox cofactor for dehydrogenase enzymes, as an indicator of cellular redox state through the NAD+/NADH ratio, and as a consumed co-substrate for sirtuin and PARP enzymes. These are mechanistic and in-vitro investigations; this material makes no medical or health claims.
Keep the sealed vial cold and desiccated, and allow it to warm to room temperature before opening to reduce condensation, since NAD+ is hygroscopic. Reconstitute in cold, near-neutral buffer just before an experiment, and aliquot stocks to avoid repeated freeze-thaw. Follow the generic storage table on this page for specific temperature guidance.
NAD+ is the oxidized, hydride-accepting form, whereas NADH is the reduced form that donates electrons; the two are interconverted in redox assays and are resolved from one another by HPLC. Precursors such as nicotinamide or nicotinamide mononucleotide are separate compounds studied for NAD+ biosynthesis and are not interchangeable with the NAD+ dinucleotide supplied here.
This product is sold strictly for in-vitro research and laboratory use only. It is not intended for human or animal consumption, diagnostic purposes, or therapeutic application.
By purchasing this product, you confirm that you are a qualified researcher operating within an appropriate laboratory environment and will use this compound in accordance with all applicable local, state, and federal regulations.
Amino Science Labs assumes no liability for misuse of this product outside of its intended research application.
No. This is a research chemical for strictly in-vitro and preclinical laboratory use. It is not a supplement, drug, or medical product, is not formulated or tested for administration, and must not be used in or on humans or animals.