首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Respiratory syncytial virus fusion inhibitors. Part 5: Optimization of benzimidazole substitution patterns towards derivatives with improved activity.
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Respiratory syncytial virus fusion inhibitors. Part 5: Optimization of benzimidazole substitution patterns towards derivatives with improved activity.

机译:呼吸道合胞病毒融合抑制剂。第5部分:苯并咪唑对具有改进活性的衍生物的取代方式的优化。

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Extensive SAR studies and optimization of ADME properties of benzimidazol-2-one derivatives led to the identification of BMS-433771 (3) as an orally active RSV fusion inhibitor. In order to extend the structure-activity relationships for this compound series, substitution of the benzimidazole ring was examined with a view to establishing additional productive interactions between the inhibitor and functionality present in the proposed binding pocket. Amongst the compounds synthesized, the 5-aminomethyl analogue 10aa demonstrated potent antiviral activity towards wild-type RSV and retained excellent inhibitory activity towards a virus that had been developed to express resistance to BMS-433771 (3), data consistent with an additional productive interaction between the inhibitor and the fusion protein target.
机译:广泛的SAR研究和苯并咪唑-2-酮衍生物的ADME性质的优化导致BMS-433771(3)被鉴定为口服活性RSV融合抑制剂。为了扩展该化合物系列的结构-活性关系,研究了苯并咪唑环的取代,目的是在抑制剂和提出的结合口袋中存在的官能团之间建立额外的生产性相互作用。在合成的化合物中,5-氨基甲基类似物10aa表现出对野生型RSV的有效抗病毒活性,并且对已开发出对BMS-433771产生抗性的病毒具有出色的抑制活性(3),数据与其他生产相互作用在抑制剂和融合蛋白靶之间。

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