NADP sodium salt NEW
Price | Get Latest Price | |
Package | 10g | 100g |
Min. Order: | 1g |
Supply Ability: | 1000g |
Update Time: | 2024-12-20 |
Product Details
Product Name: NADP sodium salt | CAS No.: 1184-16-3 |
EC-No.: 214-664-6 | Min. Order: 1g |
Purity: 99% | Supply Ability: 1000g |
Release date: 2024/12/20 |
NADP sodium salt, also known as sodium NADP or sodium salt of nicotinamide adenine dinucleotide phosphate, is a form of NADP (nicotinamide adenine dinucleotide phosphate) that is typically used in biochemical and pharmaceutical research.
Key Characteristics and Uses:
Chemical Composition:
NADP: Nicotinamide adenine dinucleotide phosphate is a coenzyme involved in various biological redox reactions. It is similar to NADH but has an additional phosphate group.
Sodium Salt: The sodium salt form is used to improve solubility in aqueous solutions, making it easier to work with in laboratory settings.
Biological Role:
Redox Reactions: NADP plays a crucial role in cellular metabolism, particularly in anabolic reactions like fatty acid and nucleotide synthesis. It acts as an electron carrier in these processes.
Antioxidant Defense: NADP is involved in the reduction of oxidized glutathione to its reduced form, helping to protect cells from oxidative stress.
Applications:
Biochemical Research: Used in studies of enzyme activity, cellular metabolism, and redox reactions. NADP is often involved in assays and experiments related to enzyme kinetics and metabolic pathways.
Pharmaceutical Development: It can be used in the development and testing of drugs that affect metabolic processes or oxidative stress responses.
Form and Stability:
Solubility: The sodium salt form enhances solubility in water, which is advantageous for laboratory applications.
Stability: Generally stable under normal laboratory conditions, but like many biochemical reagents, it should be stored properly to maintain its activity.
In summary, NADP sodium salt is a valuable tool in biochemical research and pharmaceutical development, primarily due to its role in redox reactions and cellular metabolism.
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