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Name: N-(2-Amino-2-oxoethyl)-2-propenamide
CAS NO: 2479-62-1
Purity: 97% min
MF: C5H8N2O2
MW: 128.13
BP: 430.6¡À37.0 ¡ãC
Density: 1.134¡À0.06 g/cm3
Name: N-(2-Amino-2-oxoethyl)-2-propenamide
CAS NO: 2479-62-1
Purity: 97% min
MF: C5H8N2O2
MW: 128.13
BP: 430.6¡À37.0 ¡ãC
Density: 1.134¡À0.06 g/cm3
MP: 129 ?C
Appearance: white powder
Package: 25g, 100g, 500g, bulk package
Application: 365betÓéÀÖ intermediate
Other name:
N-(2-amino-2-oxoethyl)prop-2-enamide;
N-acryloyl-glycinamide;
2-Propenamide,N-(2-amino-2-oxoethyl);
acryloylglycine amide;
Description
N-(2-Amino-2-oxoethyl)prop-2-enamide CAS NO:2479-62-1, commonly referred to as AEPEA, is a synthetic derivative of propanoic acid. It is a colorless, odorless, and water-soluble compound that has been used in various scientific research applications. AEPEA is a versatile compound that has been used in a wide range of chemical and biological processes, including as a substrate in enzyme-catalyzed reactions, as a reagent in peptide synthesis, and as a fluorescent probe for the detection of proteins and nucleic acids. In addition, AEPEA has been studied for its potential therapeutic applications, including its ability to act as an antioxidant and to modulate the activity of various enzymes.
Mechanism of Action
AEPEA CAS NO:2479-62-1 is believed to act as an antioxidant by scavenging reactive oxygen species and reducing oxidative stress. It has also been shown to modulate the activity of certain enzymes, including cytochrome P450, which has been implicated in drug metabolism. In addition, AEPEA has been shown to inhibit the activity of certain protein kinases, which may have implications for the treatment of various diseases.
Future Directions
AEPEA CAS NO:2479-62-1 has been extensively studied for its potential therapeutic applications, however, further research is necessary to fully understand its mechanisms of action and potential clinical applications. In addition, further research is needed to explore the potential of AEPEA as an antioxidant and to identify new applications for the compound. Finally, more research is needed to identify new synthesis methods for AEPEA and to optimize existing methods.
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