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Nadh Bulk Beta-Nicotinamide Adenine Dinucleotide Reduced Nadh CAS 606-68-8

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Nadh Bulk Beta-Nicotinamide Adenine Dinucleotide Reduced Nadh CAS 606-68-8

Nadh Bulk Beta-Nicotinamide Adenine Dinucleotide Reduced Nadh CAS 606-68-8
Nadh Bulk Beta-Nicotinamide Adenine Dinucleotide Reduced Nadh CAS 606-68-8

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Product Details:
Place of Origin: China
Brand Name: germax
Certification: GMP
Model Number: Beta-Nicotinamide Adenine Dinucleotide Reduced
Payment & Shipping Terms:
Minimum Order Quantity: 100 grams
Price: Negotiable
Packaging Details: 1kg/bag or 25kgs/drum
Delivery Time: within 24 hours after get the payment
Payment Terms: T/T, Western Union, MoneyGram
Supply Ability: 500kgs/week
Detailed Product Description
Name: Beta-Nicotinamide Adenine Dinucleotide Reduced Purity: 99.5%
Color: Yellow To Orange Powder MOQ: 100g
Delivery Time: Within 24 Hours After Get The Payment Package: 1kg/bag Or 25kgs/drum
Storage: Keep In A Cool And Dry Place
High Light:

Beta-Nicotinamide Adenine Dinucleotide Reduced


606-68-8 Purity 99% Research Chemical Powder


Laboratory Powder

Nadh Bulk Beta-Nicotinamide Adenine Dinucleotide Reduced Nadh CAS 606-68-8


Product name NADH
CAS No. 606-68-8
Other Names beta-Nicotinamide adenine dinucleotide disodium salt,β-NADH
Molecular Formula C21H26N7Na2O14P2
Molecular weight 709.4
EINECS NO. 210-123-3
Grade Standard Medicine Grade
COA Avaliable
Item Specifications
Appearance Yellow powder.
Purity 90%, 95%, 98%, 99%
Melting point 140-142ºC
Boiling point 608ºC
Solubility H2O: 50 mg/mL, clear to nearly clear, yellow
Stability Stable. Incompatible with strong oxidizing agents.
Storage condition -20ºC
Shelf life 3 years


Product Introduction

Nicotinamide adenine dinucleotide, abbreviated NADh+, is a coenzyme found in all living cells. The compound is a dinucleotide, since it consists of two nucleotides joined through their phosphate groups. One nucleotide contains an adenine base and the other nicotinamide.
In metabolism, NAD+ is involved in redox reactions, carrying electrons from one reaction to another. The coenzyme is, therefore, found in two forms in cells: NAD+ is an oxidizing agent - it accepts electrons from other molecules and becomes reduced. This reaction forms NADH, (Nicotinamide adenine dinucleotide) which can then be used as a reducing agent to donate electrons. These electron transfer reactions are the main function of NAD+. However, it is also used in other cellular processes, the most notable one being a substrate of enzymes that add or remove chemical groups from proteins, in posttranslational modifications. Because of the importance of these functions, the enzymes involved in NAD+ metabolism are targets for drug discovery.
In organisms, NAD+ can be synthesized from simple building-blocks (de novo) from the amino acids tryptophan or aspartic acid. In an alternative fashion, more complex components of the coenzymes are taken up from food as the vitamin called niacin. Similar compounds are released by reactions that break down the structure of NAD+. These preformed components then pass through a salvage pathway that recycles them back into the active form. Some NAD+ is also converted into nicotinamide adenine dinucleotide phosphate (NADP+); the chemistry of this related coenzyme is similar to that of NAD+, but it has different roles in metabolism.


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