Place of Origin | China |
Brand Name | Firsky |
Model Number | FS-24292-60-2 |
Document | Product Brochure PDF |
Product Name: | NADP, Disodium Salt |
Synonyms: | NADP,NA2;TPN,2NA;TPN DISODIUM SALT;NADP,DISODIUM SALT;TPN,NA2;COENZYME II;β-Nicotinamide Adenine Dinucleotide Phosphate Disodium Salt;EINECS 246-129-8;β-NADP-Na2;MFCD00065390;β-NADH phosphate;disodium salt;NADHP;Triphosphopyridine nucleotide,disodium salt |
CAS NO: | 24292-60-2 |
EINECS: | 246-129-8 |
Molecular Formula: | C21H26N7Na2O17P3 |
Molecular Weight: | 787.37 |
Melting Point: | 175-178 °C |
Appearance: | Yellow powder |
Storage: | -20°C |
Solubility: | Water Solubility >50 g/L |
NADP, disodium salt, CAS 24292-60-2, is a key coenzyme involved in the biosynthesis of ATP and other biomolecules. It serves as a cofactor in various dehydrogenase reactions and plays a vital role in energy metabolism, biosynthesis, and antioxidant defense. Below is a detailed product description of this extraordinary molecule:
NADP, disodium salt, is a colorless to yellow solid powder with a molecular formula of C21H28N7Na2O16P3 and a molecular weight of 679.437. Soluble in water and polar organic solvents, has good stability under ambient conditions.
NADP acts as a cofactor in dehydrogenase reactions involved in energy metabolism and biosynthesis. It plays a vital role in the electron transport chain, which is essential for the production of ATP. NADP also serves as a substrate for various oxidoreductases involved in biosynthetic reactions, such as glutamate dehydrogenase and alcohol dehydrogenase.
In addition to its role in biosynthetic reactions, NADP is involved in the reduction of oxidized glutathione (GSSG) to reduced glutathione (GSH), an important antioxidant molecule in cells. GSH plays a crucial role in scavenging reactive oxygen species (ROS) generated during cellular metabolism and protecting cells from oxidative damage.
We use advanced manufacturing technology to specialize in the production of high purity NADP disodium salt CAS 24292-60-2. Our products have good solubility and bioavailability and are suitable for use in a variety of pharmaceutical, cosmetic and nutraceutical formulations.
NADP, disodium salt (nicotinamide adenine dinucleotide phosphate disodium salt), CAS 24292-60-2, has important applications in various fields. Let’s explore some of the key applications of NADP (disodium salt):
1. Enzymatic reactions: NADP, disodium salt is widely used as a cofactor in enzymatic reactions, especially those involving oxidation and reduction reactions. As an electron carrier, it participates in metabolic pathways such as the pentose phosphate pathway, fatty acid synthesis, and nucleotide biosynthesis. NADP (disodium salt) promotes the transfer of electrons and hydrogen ions and plays a vital role in cellular energy metabolism and biosynthesis processes.
2. Oxidative stress and antioxidant defense: NADP, disodium salt participates in the antioxidant defense mechanism within cells. It acts as a cofactor for enzymes such as NADPH oxidase and NADPH quinone oxidoreductase, helping to neutralize reactive oxygen species (ROS) and maintain cellular redox balance. NADP (disodium salt) supports cellular antioxidant systems, contributes to overall cell health and protects against oxidative stress.
3. Biotechnology and Enzyme Engineering: NADP, disodium salt is used in various biotechnology applications and enzyme engineering. It is used in the production and optimization of enzymes involved in redox reactions, as it provides the necessary cofactors for their activity. NADP (disodium salt) is used in processes such as the synthesis of fine chemicals, pharmaceutical intermediates and biofuels.
4. Diagnostic Assays: NADP (disodium salt) is used in diagnostic assays and biochemical tests to measure enzyme activity and metabolic processes. It is used to study enzyme kinetics, determine the activity of specific enzymes, and evaluate metabolic pathways. NADP (disodium salt-based assay) is a valuable tool in clinical and research laboratories for disease diagnosis, drug discovery, and studying cellular metabolism.
5. Biomedical research: NADP, disodium salt is used in biomedical research. It is used to study cellular metabolism, energy production, and redox signaling pathways. Researchers use NADP (disodium salt) to study the effects of NADP-dependent enzymes, understand metabolic disorders, and explore potential therapeutic targets.
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