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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis, anti-inflammatory activity, and in vitro antitumor effect of a novel class of cyclooxygenase inhibitors: 4-(Aryloyl)phenyl methyl sulfones
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Synthesis, anti-inflammatory activity, and in vitro antitumor effect of a novel class of cyclooxygenase inhibitors: 4-(Aryloyl)phenyl methyl sulfones

机译:一类新型环氧合酶抑制剂的合成,抗炎活性和体外抗肿瘤作用:4-(丙烯酰基)苯基甲基砜

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Following our previous research on anti-inflammatory drugs (NSAIDs), we report on the design and synthesis of 4-(aryloyl)phenyl methyl sulfones. These substances were characterized for their capacity to inhibit cyclooxygenase (COX-1 and COX-2) isoenzymes. Molecular modeling studies showed that the methylsulfone group of these compounds was inserted deep in the pocket of the human COX-2 binding site, in an orientation that precludes hydrogen bonding with Arg120, Ser353, and Tyr355 through their oxygen atoms. The N-arylindole 33 was the most potent inhibitor of COX-2 and also the most selective (COX-1/COX-2 IC_(50) ratio was 262). The indole derivative 33 was further tested in vivo for its anti-inflammatory activity in rats. This compound showed greater inhibitory activity than ibuprofen. Other compounds (20, 26, 9, and 30) showed strong activity against carrageenan-induced inflammation. The latter compounds showed a weak capacity to inhibit the proliferation of human cell lines K562, NCI-H460, and HT-29 in vitro.
机译:继我们先前对消炎药(NSAIDs)的研究之后,我们报告了4-(芳酰基)苯基甲基砜的设计和合成。这些物质的特征在于它们具有抑制环氧合酶(COX-1和COX-2)同工酶的能力。分子模型研究表明,这些化合物的甲基砜基团以无法阻止氢与Arg120,Ser353和Tyr355通过氧原子键合的方向插入人COX-2结合位点的口袋中。 N-芳基吲哚33是最有效的COX-2抑制剂,也是最有选择性的(COX-1 / COX-2 IC_(50)比为262)。进一步在体内测试了吲哚衍生物33在大鼠中的抗炎活性。该化合物显示出比布洛芬更大的抑制活性。其他化合物(20、26、9和30)对角叉菜胶诱导的炎症表现出较强的活性。后者化合物在体外抑制人细胞系K562,NCI-H460和HT-29增殖的能力较弱。

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