Product Name: |
β-Nicotinamide Mononucleotide |
Synonyms: |
BETA-NMN;BETA-NICOTINAMIDEMONONUCLEOTIDE;BETA-NICOTINAMIDERIBOSEMONOPHOSPHATE;3-(aminocarbonyl)-1-(5-O-phosphonato-beta-D-ribofChemicalbookuranosyl)pyridinium;B-NICOTINAMIDEMONONUCLEOTIDE;NMN;NICOTINAMIDE-1-IUM-1-BETA-D-RIBOFURANOSIDE5'-PHOSPHATE;NICOTINAMIDERIBOTIDE |
CAS: |
1094-61-7 |
MF: |
C11H15N2O8P |
MW: |
334.22 |
EINECS: |
214-136-5 |
β-Nicotinamide Mononucleotide |
Melting Point |
166 °C(dec.) |
Solubility |
Soluble in DMSO (with slight heating), methanol (slightly), and water (slightly). |
Form |
Solid |
Color |
White to yellow |
Storage temp. |
-20°C |
Usage
Uses |
In mammals, β-nicotinamide mononucleotide (NMN) is synthesized from nicotinamide (Nam) under the catalysis of Nampt (an intracellular protease). Subsequently, nicotinamide mononucleotide is converted into NAD⁺ through the catalysis of nicotinamide mononucleotide adenylyltransferase. NMN serves as the most direct method to supplement NAD⁺. By significantly enhancing the cellular capacity to repair DNA damage, NMN ultimately achieves anti-aging effects. NMN is converted into nicotinamide adenine dinucleotide (NAD), an essential compound for energy metabolism within the body. Mouse studies have demonstrated that NMN can activate a gene called sirtuin, thereby extending lifespan and exhibiting therapeutic effects against conditions such as diabetes. NAD is naturally produced in the human body, but research confirms that its levels decline with age. |
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