Englischer Name:β-Nicotinamid-Mononukleotid
Englische Synonyme:BETA-NMN;BETA-NICOTINAMIDEMONONUCLEOTID;BETA-NICOTINAMIDERIBOSEMONOPHOSPHAT;3-(Aminocarbonyl)-1-(5-O-phosphonato-beta-D-ribofChemicalbookuranosyl)pyridinium;B-NICOTINAMIDEMONONUCLEOTID;NMN;NICOTINAMID-1-IUM-1-BETA-D-RIBOFURANOSID5′PHOSPHAT;NICOTINAMIDERIBOTID
CAS:1094-61-7
Molekularformel:C11H15N2O8P
Molecular weight:334.22
EINECS:214-136-5
Melting point:166 °C(dec.)
Aussehen: White to yellowish, crystalline powder, no obvious odor.
Usage:In mammals, β- Nicotinamidmononukleotids werden durch Nicotinamid (Nam) unter der Katalyse von Nampt (einer Protease in vivo) erzeugt, und dann werden Nicotinamidmononukleotide durch Nicotinamidmononukleotid-Adenosintransferase erzeugt, um NAD+. Nicotinamidmononukleotid ist eine direkte Möglichkeit, zu ergänzen NAD+. Nicotinamidmononukleotide können die Reparaturfähigkeit von DNA-Schäden in Zellen erheblich verbessern. Chemicalbook hat endlich den Effekt der Umkehrung der Alterung erreicht. Nicotinamidmononukleotide werden in „Nicotinamidadenindinukleotid (NAD)“ umgewandelt, Substanzen, die für den Energiestoffwechsel im Körper unerlässlich sind. In Experimenten mit Mäusen wurde bestätigt, dass Nicotinamidmononukleotid ein Gen namens Acetylase im Körper aktivieren kann, um so eine Rolle bei der Lebensverlängerung und der Behandlung von Diabetes zu spielen. NAD ist eine Substanz, die vom menschlichen Körper produziert werden kann. Untersuchungen haben bestätigt, dass der NAD-Gehalt im Körper mit zunehmendem Alter abnimmt.
beta nicotinamide
cas 1094 61 7
β nicotinamide mononucleotide
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