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Key NAD⁺ Precursor: Derived from nicotinamide and ribose 5-phosphate, NMN serves as an important intermediate in NAD⁺ biosynthesis, supporting cellular energy metabolism.
Biologically Relevant Molecule: Naturally occurring as a metabolite in organisms such as Escherichia coli and mice, indicating strong biological relevance.
Stable Zwitterionic Structure: Exists in a zwitterionic form, contributing to its chemical stability and compatibility in biological systems.
Versatile Research Applications: Widely used in biochemical and life science research due to its role in metabolic pathways and cellular function studies.
Product Description of β-Nicotinamide Mononucleotide CAS#1094-61-7
β-Nicotinamide Mononucleotide (NMN) is formed through the condensation of nicotinamide and ribose 5-phosphate, where the nitrogen atom of nicotinamide is connected to the β C-1 position of the ribose. It exists in a zwitterionic form and represents a type of nicotinamide mononucleotide. NMN functions as a metabolite in both Escherichia coli and mice, and can act as the conjugate base of NMN(+) as well as the conjugate acid of NMN(-).
Product Applications of β-Nicotinamide Mononucleotide CAS#1094-61-7
β-Nicotinamide Mononucleotide (NMN, CAS No. 1094-61-7) is widely applied across the health supplement, pharmaceutical, food, cosmetic, and scientific research sectors. It can serve as an anti-aging ingredient, a substrate for pharmaceutical studies, a functional additive in food products, an active component in skincare formulations, and a reagent for experimental research.
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