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CAS 2646-71-1 Nadph Tetrasodium Salt crystalline C21H31N7NaO17P3
  • CAS 2646-71-1 Nadph Tetrasodium Salt crystalline C21H31N7NaO17P3
  • CAS 2646-71-1 Nadph Tetrasodium Salt crystalline C21H31N7NaO17P3

CAS 2646-71-1 Nadph Tetrasodium Salt crystalline C21H31N7NaO17P3

Place of Origin China
Brand Name FIRSKY
Model Number 2646-71-1
Document Product Brochure PDF
Product Details
Product Name:
NADPH, Tetrasodium Salt
CAS NO:
2646-71-1
Molecular Formula:
C21H31N7NaO17P3
Molecular Weight:
769.42
Color:
White
Form:
Cream
Highlight: 

2646-71-1 Nadph Tetrasodium Salt

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Nadph Tetrasodium Salt C21H31N7NaO17P3

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cas 2646 71 1

Payment & Shipping Terms
Minimum Order Quantity
1KG
Packaging Details
1kg, 5kg, 15kg, 20kg, 25kg can be packed in different specifications. Packaging can be customized according to customer requirements. Aluminium foil bag and carton.
Delivery Time
7-15days
Payment Terms
T/T, Western Union, MoneyGram
Supply Ability
2000T
Product Description

NADPH, Tetrasodium Salt CAS 2646-71-1

Product Name: NADPH, Tetrasodium Salt
Synonyms: BETA-TRIPHOSPHOPYRIDINE NUCLEOTIDE TETRASODIUM SALT,REDUCED FORM;BETA-TRIPHOSPHOPYRIDINE NUCLEOTIDE, SODIUM, REDUCED FORM;BETA-NADPH;Dihydronicotinamide Adenine Dinucleotide Pphosphate Tetrasodium Salt;dihydronicotinamide-adenine dinucleotide phosphate tetrasodium;TRIPHOSPYRIDINE NUCLEOTIDE, REDUCED FORM TETRASODIUM SALT;TRIPHOSPHOPYRIDINE NUCLEOTIDE, REDUCED FORM, TETRASODIUM;TRIPHOSPHOPYRIDINE NUCLEOTIDE, REDUCED FORM TETRASODIUM SALT
CAS: 2646-71-1
MF: C21H31N7NaO17P3
MW: 769.42
EINECS: 220-163-3
Melting point >250°C (dec.)
storage temp. Keep in dark place,Inert atmosphere,Store in freezer, under -20°C
solubility 10 mM NaOH: soluble50mg/mL, clear
form Powder
color White to Off-white
form  crystalline
color  white

 

Description


NADPH Tetrasodium Salt, CAS 2646-71-1: Powering Cellular Energy and Redox Reactions

Embark on a journey to explore the vital role of NADPH Tetrasodium Salt, CAS 2646-71-1, a crucial coenzyme in the realm of biochemistry and cellular energy.

 

  • Cellular Energy Currency: NADPH (Nicotinamide Adenine Dinucleotide Phosphate) is often referred to as the "energy currency" of cells. It plays a pivotal role in various metabolic processes, particularly in powering anabolic reactions and biosynthesis.
  • Redox Reactions: NADPH is an essential coenzyme in redox reactions, acting as a reducing agent. It participates in maintaining the cellular redox balance, protecting cells from oxidative damage, and supporting antioxidant systems.
  • Biological Significance: NADPH Tetrasodium Salt is not only a key player in energy metabolism but also crucial for the biosynthesis of fatty acids, cholesterol, and nucleotides. It is essential for the growth and proliferation of cells.
  • Biotechnological Applications: Researchers and biotechnologists utilize NADPH Tetrasodium Salt in various applications, including bioremediation, pharmaceutical manufacturing, and the production of biofuels.
  • Elevate Your Understanding: Recognizing the significance of NADPH Tetrasodium Salt, CAS 2646-71-1, underscores its importance in the fields of biochemistry, cellular biology, and biotechnology.

Whether you're a biochemist deciphering the intricacies of cellular metabolism, a researcher working on biotechnological innovations, or someone interested in the molecular mechanisms of life, unveiling the potential of NADPH offers profound insights into its pivotal role in sustaining cellular energy and redox balance.

Your journey to discover the significance of this coenzyme, from its role in powering cellular processes to its applications in biotechnology, begins here. Delve into its diverse uses to gain a deeper understanding of its vital place in advancing scientific knowledge and technological progress. Unleash the full potential of your knowledge and curiosity.

 

Application


NADPH, Tetrasodium Salt, with CAS number 2646-71-1, refers to nicotinamide adenine dinucleotide phosphate (NADPH) in its tetrasodium salt form. NADPH is a coenzyme that plays a crucial role in various biological processes. Here are some potential uses and applications of NADPH, Tetrasodium Salt:

  1. Enzymatic Reactions: NADPH is involved in numerous enzymatic reactions, particularly in redox reactions. It serves as a reducing agent, providing electrons for these reactions. Many enzymes require NADPH as a cofactor to carry out important biochemical processes, such as biosynthesis, detoxification, and cellular energy metabolism.

  2. Biosynthesis: NADPH is essential for the synthesis of various molecules in living organisms. It is particularly crucial in anabolic pathways, where it provides the reducing power required for the production of lipids, nucleotides, and other important biomolecules.

  3. Antioxidant Defense: NADPH plays a significant role in antioxidant defense mechanisms. It is a cofactor for enzymes like glutathione reductase, which regenerates reduced glutathione (GSH) and helps protect cells from oxidative damage. NADPH is also involved in the maintenance and recycling of other antioxidant molecules in the body.

  4. Drug Metabolism: NADPH-dependent enzymes, such as cytochrome P450 reductase, are involved in the metabolism of drugs and xenobiotics in the liver. NADPH provides the necessary reducing equivalents for these enzymes, facilitating the detoxification and elimination of foreign substances from the body.

  5. Research and Experimental Studies: NADPH, Tetrasodium Salt, is commonly used in research and experimental studies. It may be used as a reagent or cofactor in enzymatic assays, cell culture studies, and biochemical experiments to investigate various metabolic pathways, redox reactions, and cellular processes.

It's important to note that the specific usage and application of NADPH, Tetrasodium Salt, can vary depending on the research or experimental context. The handling and utilization of this compound should be conducted following appropriate safety procedures and in compliance with regulations.

If you have a specific interest or need for NADPH, Tetrasodium Salt, it is advisable to consult with professionals in the respective field, such as biochemists, researchers, or industry experts, for guidance on its appropriate usage and any specific considerations.

 


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