磁性材料具有重要的应用价值,在许多领域发挥着关键作用。
中文名称 | 英文名称 | CAS号 | 化学式 | 分子量 |
---|---|---|---|---|
N-(2-甲基-5-硝基苯基)乙酰胺 | N-(2-methyl-5-nitrophenyl)acetamide | 2879-79-0 | C9H10N2O3 | 194.19 |
中文名称 | 英文名称 | CAS号 | 化学式 | 分子量 |
---|---|---|---|---|
—— | N-[5-[(3,4-dimethylphenyl)carbamoylamino]-2-methylphenyl]acetamide | 1374006-34-4 | C18H21N3O2 | 311.384 |
—— | N-[5-[(3,5-dichlorophenyl)carbamoylamino]-2-methylphenyl]acetamide | 1374006-30-0 | C16H15Cl2N3O2 | 352.22 |
—— | N-[5-[(2-chlorophenyl)carbamoylamino]-2-methylphenyl]acetamide | 1374006-28-6 | C16H16ClN3O2 | 317.775 |
—— | N-[5-[(3,4-dichlorophenyl)carbamoylamino]-2-methylphenyl]acetamide | 1374006-29-7 | C16H15Cl2N3O2 | 352.22 |
—— | N-[5-[(3-acetylphenyl)carbamoylamino]-2-methylphenyl]acetamide | 1374006-35-5 | C18H19N3O3 | 325.367 |
—— | N-[2-methyl-5-[(3-phenoxyphenyl)carbamoylamino]phenyl]acetamide | 1374006-36-6 | C22H21N3O3 | 375.427 |
—— | N-[5-[[3,5-bis(trifluoromethyl)phenyl]carbamoylamino]-2-methylphenyl]acetamide | 1374006-31-1 | C18H15F6N3O2 | 419.326 |
—— | N-[5-[(6-chloropyridin-3-yl)carbamoylamino]-2-methylphenyl]acetamide | 1374006-39-9 | C15H15ClN4O2 | 318.763 |
There is no nonhormonal contraceptive pill for men, although hundreds of genes have been identified to play roles during spermatogenesis and fertilization in the male reproductive tract. To address the absence of contraceptive drugs for men, we established a DNA-encoded chemistry technology (DEC-Tec) platform. Our drug discovery campaign on BRDT, a validated spermatogenic-specific contraceptive target, yielded rapid discovery of potent and specific inhibitors of the second bromodomain of BRDT that have unique binding characteristics to BRDT-BD2 relative to BRDT-BD1. Our study emphasizes the robustness and validation of the DEC-Tec platform where the obtained structure–affinity relationship data would allow us to identify specific protein binders immediately without performing exhaustive medicinal chemistry optimization of compounds with potential as male contraceptives.
尽管已经鉴定出数百个基因在男性生殖道的精子生成和受精过程中发挥作用,但目前还没有非激素类男性避孕药。为了解决男性避孕药的缺失问题,我们建立了一个DNA编码化学技术(DEC-Tec)平台。我们对BRDT(一个经过验证的特定于精子生成的避孕靶点)的药物发现工作,快速发现了BRDT第二个溴结构域的强效和特异性抑制剂,这些抑制剂与BRDT-BD1相比,对BRDT-BD2具有独特的结合特性。我们的研究强调了DEC-Tec平台的稳健性和验证性,所获得的结构-亲和力关系数据将使我们能够立即识别特定的蛋白结合剂,而无需对具有男性避孕药潜力的化合物进行详尽药物化学优化。