NAD+

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NAD+

NAD+

Regular price £79.99
Sale price £79.99 Regular price
Unit price
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NAD⁺ 1000mg — Research Peptide

NAD⁺ (Nicotinamide Adenine Dinucleotide, oxidized form) is a coenzyme naturally present in living cells and is supplied for laboratory research purposes. Within scientific literature, this compound has been referenced in studies examining cellular metabolism and associated biochemical processes under controlled experimental conditions.

Provided as a lyophilised material, NAD⁺ is utilised within laboratory environments where precise preparation and controlled handling are required for research workflows.


Research Areas of Interest

Scientific literature referencing NAD⁺ includes investigation into areas such as:

• Experimental examination of cellular metabolic processes within laboratory models
• Investigation of mitochondrial-associated biochemical pathways studied under controlled conditions
• Evaluation of cellular response mechanisms examined in redox and signalling research environments
• Study of cellular signalling pathways explored within metabolic and neurological research contexts

These areas reflect ongoing scientific exploration and position NAD⁺ as a subject of continued laboratory research interest.


Technical Information

Product Name: NAD⁺ 1000mg
Chemical Name: Nicotinamide Adenine Dinucleotide (oxidized form)
Synonyms: β-Nicotinamide adenine dinucleotide; DPN; Coenzyme I
Molecular Formula: C₂₁H₂₇N₇O₁₄P₂
Molecular Weight: 663.43 g/mol
CAS Number: 53-84-9
PubChem CID: 5893
Classification: Pyridine nucleotide coenzyme (oxidized form)
Form: Lyophilised powder


Storage Guidelines

Lyophilised material should be stored at −20 °C or below for extended preservation.

Following reconstitution, solutions should be refrigerated at 2–8 °C and handled according to standard laboratory protocols.


Solubility

NAD⁺ is typically soluble in sterile laboratory water and commonly used aqueous buffers depending on laboratory preparation requirements.


References

Bogan, K. L., & Brenner, C. (2008). Studies examining NAD⁺ precursor compounds within metabolic research contexts. Annual Review of Nutrition, 28, 115–130.

Verdin, E. (2015). Investigation of NAD⁺ activity within metabolic and neurological research models. Science, 350(6265), 1208–1213.

Canto, C., & Auwerx, J. (2012). Research examining NAD⁺ as a cellular signalling molecule within metabolic regulation studies. Cold Spring Harbor Symposia on Quantitative Biology, 76, 291–298.


Research Use Notice

This product is supplied strictly for laboratory research purposes only. It is not intended for human or veterinary consumption, therapeutic application, or diagnostic use. Products supplied are not medicines, food products, or cosmetic ingredients.

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