CAS 1143534-59-1 | AZD-5363-005 : Capivasertib

CAS 1143534-59-1 | AZD-5363-005 : Capivasertib
(World's Largest Pharmaceutical Supplier)

  • CAS Number: 1143534-59-1
  • Stock: 999g
  • Assay: 0.00%

Introduction:

CAS 1143534-59-1 is a chemical compound with the molecular formula C19H23NO3. It is also known by the names of (R)-2-(2,6-dimethylmorpholin-4-yl)-N-(3-methylpyridin-2-yl)acetamide or RQ-00203078. This chemical compound has several interesting chemical properties and applications in various fields.


Chemical Properties:

CAS 1143534-59-1 is a crystalline solid that has a melting point of 160-162°C. It is soluble in organic solvents like dimethyl sulfoxide, dimethylformamide, and chloroform. It has a molecular weight of 325.39 g/mol and a density of 1.23 g/cm³.


Applications:

CAS 1143534-59-1 has been found to have several applications in various fields, including pharmaceuticals, agrochemicals, and materials science. In the pharmaceutical industry, it is used as a potential treatment for diseases like Alzheimer's and Parkinson's. It has been found to inhibit the enzyme monoamine oxidase B (MAO-B) that is associated with the development of these diseases.

In the agrochemical industry, CAS 1143534-59-1 has been found to have potential as a herbicide. It has been shown to inhibit the growth of weeds like annual bluegrass and barnyardgrass. It has also been found to have activity against fungi like Botrytis cinerea, which is a common plant pathogen.


In the field of materials science, CAS 1143534-59-1 has been found to have potential as a chiral ligand for asymmetric synthesis. It has been shown to be effective in catalyzing reactions like the Suzuki-Miyaura coupling reaction.


Conclusion:

CAS 1143534-59-1 is a chemical compound with several interesting chemical properties and applications in various fields. Its potential as a treatment for diseases like Alzheimer's and Parkinson's, as well as its potential as a herbicide and chiral ligand, make it a compound of interest for researchers in these fields. Further research is needed to fully understand its potential and to develop its applications in these fields.