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Factory price Beta -Nicotinamide Adenine Dinucleotide disodium salt nadh
Product Description
1. Introduction of Beta-Nicotinamide Adenine Dinucleotide disodium salt:
One of the biologically active forms of nicotinic acid. Serves as a coenzyme of hydrogenases and dehydrogenases. NAD usually acts as a hydrogen acceptor, forming NADH which then serves as a hydrogen donor in the respiratory chain. Present in living cells primarily in the reduced form (NADPH) and is involved in synthetic reactions. Occurs in 2 forms, α-NAD and β-NAD, distinguished by
the configuration of the ribosyl nicotinamide linkage. Only the β-anomer is bioactive.
One of the biologically active forms of nicotinic acid. Serves as a coenzyme of hydrogenases and dehydrogenases. NAD usually acts as a hydrogen acceptor, forming NADH which then serves as a hydrogen donor in the respiratory chain. Present in living cells primarily in the reduced form (NADPH) and is involved in synthetic reactions. Occurs in 2 forms, α-NAD and β-NAD, distinguished by
the configuration of the ribosyl nicotinamide linkage. Only the β-anomer is bioactive.
Product name | Nicotinamide adenine dinucleotide | Appearance | White Powder |
Other name | NADH | Test Method | HPLC |
Specification | 98% | Mesh | 100% pass 80 mesh |
Stability | Stable. Incompatible with strong oxidizing agents | Shelf Life | 2 years |
Function &Applicaton Beta-Nicotinamide Adenine Dinucleotide disodium salt nadh
Coenzyme NADH involves in energy metabolism and transportation of nucleic acid, proteinsand carbohydrates.
Oxidoreductase binding of NAD
The main role of NADH in metabolism is the transfer of electrons from one molecule to another.
Role in redox metabolism
The redox reactions catalyzed by oxidoreductases are vital in all parts of metabolism, but one particularly important area where
these reactions occur is in the release of energy from nutrients.
Non-redox roles
The coenzyme NADH is also consumed in ADP-ribose transfer reactions.
Oxidoreductase binding of NAD
The main role of NADH in metabolism is the transfer of electrons from one molecule to another.
Role in redox metabolism
The redox reactions catalyzed by oxidoreductases are vital in all parts of metabolism, but one particularly important area where
these reactions occur is in the release of energy from nutrients.
Non-redox roles
The coenzyme NADH is also consumed in ADP-ribose transfer reactions.
Related product name: | CAS NO. |
1094-61-7 | |
1341-23-7 | |
53-84-9 | |
Beta-Nicotinamide Adenine Dinucleotide disodium salt(NADH) | 606-68-8 |
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