53-57-6

NADPH Chemical Structure
53-57-6

Chemical Structure

NADPH

  • CAS No.: 53-57-6
  • Formula:C21H30N7O17P3
  • Molecular Weight:745.42

InChIKey: ACFIXJIJDZMPPO-NNYOXOHSSA-N

SMILES: O=P(O)(O)O[C@H]1[C@H](N2C3=NC=NC(N)=C3N=C2)O[C@@H]([C@H]1O)COP(OP(OC[C@H]4O[C@@H](N5C=C(CC=C5)C(N)=O)[C@@H]([C@@H]4O)O)(O)=O)(O)=O

Biological Activity: NADPH is a coenzyme of glutathione reductase (GR), thioredoxin reductase (TrxR) and NADPH oxidase (NOX), and participates in redox reactions as a hydrogen donor. NADPH has the characteristic of selectively participating in the regulation of cellular redox homeostasis. NADPH exerts antioxidant activity and resists reactive oxygen species (ROS) damage by providing reducing equivalents for the regeneration of glutathione (GSH) and thioredoxin (Trx); at the same time, it acts as a substrate of NOX to generate superoxide anions, mediating oxidative stress and immune response. NADPH participates in maintaining the intracellular reducing environment, biosynthesis and regulating gene expression (such as the Nrf2 pathway), and is mainly used in the study of oxidative stress-related diseases (such as cardiovascular diseases, neurodegenerative diseases, cancer) and immune regulation mechanisms[1][2].

Cat. No. Product Name Purity Description Pricing
HY-113324
NADPH 99.75% NADPH is a coenzyme of glutathione reductase (GR), thioredoxin reductase (TrxR) and NADPH oxidase (NOX), and participates in redox reactions as a hydrogen donor. NADPH has the characteristic of selectively participating in the regulation of cellular redox homeostasis. NADPH exerts antioxidant activity and resists reactive oxygen species (ROS) damage by providing reducing equivalents for the regeneration of glutathione (GSH) and thioredoxin (Trx); at the same time, it acts as a substrate of NOX to generate superoxide anions, mediating oxidative stress and immune response. NADPH participates in maintaining the intracellular reducing environment, biosynthesis and regulating gene expression (such as the Nrf2 pathway), and is mainly used in the study of oxidative stress-related diseases (such as cardiovascular diseases, neurodegenerative diseases, cancer) and immune regulation mechanisms.
Pricing 
Expand Hide
loading...
/
  • /
loading...
Size Price
Stock Quantity Availability Operate
/
In-stock
(Estimated to ship on )
(Estimated to ship TODAY)
Estimated to ship on
(Estimated to ship TODAY)

Amount:

USD 0.00

This product is a controlled substance and not for sale in your territory.

This product is not for sale in your territory.

Pricing 
Expand Hide
References