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  • NADH, disodium salt raw Powder CAS 606-68-8

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    Product Overview:

    Nicotinamide adenine dinucleotide (reduced coenzyme I) is a coenzyme that transmits protons (or more accurately hydrogen ions), which appear in many metabolic reactions of the cell.NADH or more accurately NADH+H+ is its reduced form. It can be reduced to carry up to two protons (written NADH+H+).

    NADH, disodium salt raw Powder CAS 606-68-8 Attributes

    NADH, disodium salt raw Powder CAS 606-68-8

    CAS:606-68-8

    MF:C21H30N7NaO14P2

    NADH disodium salt

    MW:689.44

    EINECS:210-123-3

    Specification​: 99% min NADH, disodium salt

    Sample:NADH, disodium salt Powder

    Packaging:1kg/bag, 25kg/drum

    Brand: Henrikang

    Appearance:White

    Storage: Cool Dry Place

    Shelf Life: 2 Years

    Test Method: HPLC

    NADH, disodium salt raw Powder CAS 606-68-8 Details

    NADH, disodium salt Usage and Synthesis.

    beta-Nicotinamide adenine dinucleotide disodium salt is an important biomolecule with a wide range of applications in organisms. beta-Nicotinamide adenine dinucleotide disodium salt's main roles in organisms include:

    1) Participating in redox reactions during cellular metabolism as a coenzyme;

    2) Promoting cellular energy production and utilization;

    3) increasing the risk of acute gout attacks due to increased ATP consumption and NADH production that cannot keep up with energy expenditure, leading to increased uric acid production.

    In addition, beta-nicotinamide adenine dinucleotide disodium salt is also used in the treatment of renal failure and other diseases, but the use of drugs need to be careful, because patients with renal failure itself is not good renal function, the drug may have an effect on uric acid metabolism.

    NADH disodium salt powder

    Uses of NADH, disodium salt.

    Disodium beta-nicotinamide adenine dinucleotide is a biologically active form of nicotinic acid. Used as a coenzyme for hydrogenases and dehydrogenases.NAD usually acts as a hydrogen acceptor, forming NADH, which then acts as a hydrogen donor in the respiratory chain.

    Exists primarily in the reduced form (NADPH) in living cells and is involved in synthetic reactions. 2 forms occur, α-NAD and β-NAD, which are characterized by the conformation of the ribosyl nicotinamide bond. Only the β-isohead is biologically active.

    The β-nicotinamide adenine dinucleotide (NAD+), as well as the reduced β-nicotinamide adenine dinucleotide (NADH), comprise a coenzyme redox pair (NAD+:NADH) included in a wide range of enzyme-catalyzed redox reactions; there is also its redox function in ADP-ribosylation (ADP-ribosyltransferase, polymerization (ADP-ribose polymerase) reaction) is an ADP-ribose donor unit; and a precursor of periodic ADP-ribose (ADP-ribosyl cyclase).

    NADH disodium salt

    Preparation of NADH, disodium salt.

    Product Method of NADH, disodium salt.

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