Promotional price valid on web orders only. Your contract pricing may differ. Interested in signing up for a dedicated account number?
Learn More

Medchemexpress LLC Phosphoenolpyruvic acid cyclohexylammonium salt | 10526-80-4 | 98.0% | 267.22 | 500 MG
SDP

Catalog No. 5000452868
Encompass_Preferred

Phosphoenolpyruvic acid (Phosphoenolpyruvate) cyclohexylammonium salt is a glycolysis metabolite with a high-energy phosphate group. It is involved in glycolysis and gluconeogenesis, and used as an energy source to produce ATP under energy-limited conditions. This compound also exhibits cytoprotective and anti-oxidative properties. It is for research use only.

  • Glycolysis metabolite with a high-energy phosphate group
  • Involved in glycolysis and gluconeogenesis
  • Used as an energy source to produce ATP under energy-limited conditions
  • Exhibits cytoprotective and anti-oxidative properties
  • Significantly reduces the decrease in cell viability induced by hydrogen peroxide
  • Reduces H2O2-stimulated increase in intracellular reactive oxygen species
  • Demonstrates scavenging potential against hydroxyl radicals
  • Attenuates cell injury induced by 2-Deoxy-D-glucose

Catalog No. 50-004-52868 Supplier Medchemexpress LLC Supplier No. HYW011704500MG
May include imposed supplier surcharges.
Add to Cart
Add to Cart

Phosphoenolpyruvic acid (Phosphoenolpyruvate) cyclohexylammonium salt is a glycolysis metabolite with a high-energy phosphate group. It is involved in glycolysis and gluconeogenesis, and used as an energy source to produce ATP under energy-limited conditions. This compound also exhibits cytoprotective and anti-oxidative properties. It is for research use only.

  • Glycolysis metabolite with a high-energy phosphate group
  • Involved in glycolysis and gluconeogenesis
  • Used as an energy source to produce ATP under energy-limited conditions
  • Exhibits cytoprotective and anti-oxidative properties
  • Significantly reduces the decrease in cell viability induced by hydrogen peroxide
  • Reduces H2O2-stimulated increase in intracellular reactive oxygen species
  • Demonstrates scavenging potential against hydroxyl radicals
  • Attenuates cell injury induced by 2-Deoxy-D-glucose

Product Title
Select an issue

By clicking Submit, you acknowledge that you may be contacted by Fisher Scientific in regards to the feedback you have provided in this form. We will not share your information for any other purposes. All contact information provided shall also be maintained in accordance with our Privacy Policy.