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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Targeting fatty acid biosynthesis for the development of novel chemotherapeutics against Mycobacterium tuberculosis: evaluation of A-ring-modified diphenyl ethers as high-affinity InhA inhibitors.
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Targeting fatty acid biosynthesis for the development of novel chemotherapeutics against Mycobacterium tuberculosis: evaluation of A-ring-modified diphenyl ethers as high-affinity InhA inhibitors.

机译:靶向脂肪酸生物合成开发针对结核分枝杆菌的新型化学疗法:评价A环修饰的二苯醚作为高亲和力InhA抑制剂。

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摘要

Structure-based design was used to develop a focused library of A-ring-modified diphenyl ether InhA inhibitors. From this library of analogs, two high-affinity alkyl-substituted diphenyl ethers, 6PP and 8PP, were selected for advanced study into their in vitro activity against Mycobacterium tuberculosis clinical isolates, their in vivo properties, and their signature response mode of action. 6PP and 8PP demonstrated enhanced activity against whole bacteria and showed activity in a rapid macrophage model of infection. In addition, transcriptional profiling revealed that the A-ring modifications of 6PP and 8PP increased the specificity of each analog for InhA. Both analogs had substantially longer half-lives in serum than did the parent compound, exhibited a fivefold reduction in cytotoxicity compared to the parent compound, and were well tolerated when administered orally at 300 mg/kg of body weight in animal models. Thus, the A-ring modifications increased the affinity and whole-cell specificity of thecompounds for InhA and increased their bioavailability. The next step in optimization of the pharmacophore for preclinical evaluation is modification of the B ring to increase the bioavailability to that required for oral delivery.
机译:基于结构的设计用于开发A环修饰的二苯醚InhA抑制剂的聚焦库。从该类似物库中,选择了两种高亲和力的烷基取代的二苯醚6PP和8PP,以进一步研究其对结核分枝杆菌临床分离株的体外活性,它们的体内特性以及它们的特征反应模式。 6PP和8PP表现出对整个细菌的增强活性,并在快速巨噬细胞感染模型中表现出活性。此外,转录谱分析表明,6PP和8PP的A环修饰增加了每个类似物对InhA的特异性。两种类似物在血清中的半衰期均比母体化合物长得多,与母体化合物相比,其细胞毒性降低了五倍,并且在动物模型中以300 mg / kg体重口服给药时具有良好的耐受性。因此,A环修饰增加了化合物对InhA的亲和力和全细胞特异性,并提高了它们的生物利用度。为临床前评估优化药效团的下一步是修饰B环,以将生物利用度提高到口服给药所需的生物利用度。

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