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Quinoline–1,2,3-triazole Hybrids: Design and Synthesis through Click Reaction,Evaluation of Anti-Tubercular Activity,Molecular Docking and In Silico ADME Studies

机译:喹啉-1,2,3-三唑杂种:通过点击反应,抗结核活性的评估,分子对接和硅ADME研究的设计和合成

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摘要

A new series of quinoline-1,2,3-triazole derivatives(6a-j and 10a-j)were designed based on the molecular hybridization concept and the molecules were synthesized by employing a click chemistry approach.The pharmacophoric units(quinoline and 1,2,3-triazole)are linked through either an ether or an amide functionality;such a simple structural modification of the linker group significantly enhanced the anti-tubercular activity of the molecules and all the amide derivatives showed better inhibition activity as compared to their ether analogs.However,these compounds did not inhibit significantly the growth of tested bacterial strains: the activity profile is similar to that observed for standard anti-TB drugs indicating the specificity of these compounds towards the M.tuberculosis strain.The molecular docking studies of the active compounds with two target enzymes(Inh A and CYP121)of M.tuberculosis revealed the strong binding interactions,mainly through hydrogen bonding,between the molecules and the target receptors.Furthermore,prediction of in silico-ADME(A: absorption,D: distribution,M: metabolism and E: excretion)parameters indicated that these compounds have an excellent oral bioavailability.The results suggest that these quinoline-1,2,3-triazole hybrids are a promising class of molecular entities for the development of new anti-tubercular leads.
机译:根据分子杂交概念设计了一系列新系列的喹啉-1,2,3-三唑衍生物(6A-J和10A-J),并通过采用点击化学方法合成分子。 ,2,3-三唑)通过乙醚或酰胺功能链接;接头组的这种简单结构修饰显着增强了分子的抗结核活性,与它们相比,所有酰胺衍生物都表现出更好的抑制活性。乙醚类似物。但是,这些化合物并未显着抑制测试细菌菌株的生长:活性谱类似于标准抗TB药物观察到的,表明这些化合物对大麻结核的特异性的特异性。大结核病的活性化合物具有两种靶酶(INH A和CYP121),揭示了分子之间的强结合相互作用,主要是通过氢键。和目标受体。FURTHERMORE,在硅adme中的预测(A:吸收,D:分布,M:代谢和E:排泄)参数表明这些化合物具有出色的口服生物利用度。结果表明这些Quinoline-1, 2,3-三唑杂种是一种有前途的分子实体,用于开发新的抗结核铅。

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