Application of the polyacrylonitrile fiber as a support for the green heterogeneous base catalyst and supported phase-transfer catalyst
作者:Xian-Lei Shi、Minli Tao、Huikun Lin、Wenqin Zhang
DOI:10.1039/c4ra12069h
日期:——
Highly efficient and recyclable polyethylene polyamine functionalized polyacrylonitrile fiber as the heterogeneous base catalyst and supported phase-transfer catalyst.
Bicyclic compositions and methods for modulating a kinase cascade
申请人:Hangauer David G.
公开号:US20080004241A1
公开(公告)日:2008-01-03
The invention relates to compounds and methods for modulating one or more components of a kinase cascade.
该发明涉及化合物和方法,用于调节激酶级联中的一个或多个组分。
Protein kinase and phosphatase inhibitors and methods for designing them
申请人:——
公开号:US20030166615A1
公开(公告)日:2003-09-04
The present invention provides a method for identifying inhibitors of protein kinases and/or protein phosphatases. Methods are also provided for inhibiting protein kinase and/or protein phosphatase activity. Specific non-peptide protein tyrosine kinase and/or protein phosphatase inhibitors are provided. The protein kinase or protein phosphatase inhibitors of the present invention may be used to treat a number of conditions in patients, including cancer, psoriasis, arthrosclerosis, immune system activity, Type II diabetes, and obesity.
The present invention provides a method for identifying inhibitors of protein kinases. Methods are also provided for inhibiting protein kinase activity. Specific non-peptide protein tyrosine kinase inhibitors are provided. The protein kinases produced using the method of the present invention may be used to treat a number of conditions in patients, including cancer, psoriasis, atherosclerosis, or immune system activity.
Synthesis with Docking Studies of Novel Heterocycles as Antimicrobial Agents Utilizing 2-Cyano-N-arylacetamide.
作者:Ewies Ewies、Hayam Abdelsalaam
DOI:10.21608/ejchem.2020.21812.2294
日期:2020.1.28
2-Cyano-N-arylacetamide reagent is used in a straight forward synthesis of various interesting nitrogenous heterocycles such as iminocoumarine, thiazole, dihydropyridine and imidazole or benzoimidazole. Molecular docking studies are described to show the most active compounds as antimicrobial agents. Also, Biological testing of these compounds for their antimicrobial activities against some strains