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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Novel quinoline and naphthalene derivatives as potent antimycobacterial agents.
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Novel quinoline and naphthalene derivatives as potent antimycobacterial agents.

机译:新型喹啉和萘衍生物可作为有效的抗分枝杆菌药。

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We have designed and synthesized both the quinoline and naphthalene based molecules influenced by the unique structural make-up of mefloquine and TMC207, respectively. These compounds were evaluated for their anti-mycobacterial activity against drug sensitive Mycobacterium tuberculosis H37Rv in vitro at single-dose concentration (6.25 microg/mL). The compounds 22, 23, 26 and 27 inhibited the growth of M. tuberculosis H37Rv 99%, 90%, 98% and 91% respectively. Minimum inhibitory concentration of compounds 22, 23, 26 and 27 was found to be 6.25 microg/mL. Our molecular modeling and docking studies of designed compounds showed hydrogen bonding with Glu-61, Tyr-64 and Asn-190 amino acid residues at the putative binding site of ATP synthase, these interactions were coherent as shown by Mefloquine and TMC207, where hydrogen bonding was found with Tyr-64 and Glu-61 respectively. SAR analysis indicates importance of hydroxyl group and nature of substituents on piperazinyl-phenyl ring was critical in dictating the biological activity of newly synthesized compounds.
机译:我们已经设计并合成了分别受甲氟喹和TMC207独特结构影响的喹啉和萘基分子。在单剂量浓度(6.25微克/毫升)下,评估了这些化合物对药物敏感性结核分枝杆菌H37Rv的抗分枝杆菌活性。化合物22、23、26和27分别抑制结核分枝杆菌H37Rv的生长99%,90%,98%和91%。发现化合物22、23、26和27的最小抑制浓度为6.25微克/毫升。我们对设计化合物的分子建模和对接研究表明,在ATP合酶推定的结合位点,氢与Glu-61,Tyr-64和Asn-190氨基酸残基键合,这些相互作用如Mefloquine和TMC207所示是连贯的,其中氢键被分别用Tyr-64和Glu-61发现。 SAR分析表明,羟基的重要性以及哌嗪基-苯基环上取代基的性质对于决定新合成化合物的生物活性至关重要。

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