首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis of N-substituted 2-((1E)-alkenyl)-4-(1H)-quinolone derivatives as antimycobacterial agents against non-tubercular mycobacteria.
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Synthesis of N-substituted 2-((1E)-alkenyl)-4-(1H)-quinolone derivatives as antimycobacterial agents against non-tubercular mycobacteria.

机译:N-取代的2-(((1E)-烯基)-4-(1H)-喹诺酮衍生物的合成,作为针对非结核分枝杆菌的抗分枝剂。

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摘要

In an effort to improve biological activities and to examine antimycobacterial-lipophilicity relationships of 2-[(1E)-alkenyl)]-4-(1H)-quinolones, we have synthesized a series of 30 quinolones by introducing several alkyl groups, an alkenyl and an alkynyl group at N-1. All synthetic compounds were first tested in vitro against Mycobacterium smegmatis and the most active compounds (MIC values approximately 3.0-7.0 muM) were further examined against three other rapidly growing strains of mycobacteria using a microtiter broth dilution assay. The Clog P values of the synthetic compounds were calculated to provide an estimate of their lipophilicity. Compounds 18e, 19a and 19b displayed the most potent inhibitory effect against M. smegmatis mc(2)155 with an MIC value of approximately 1.5 muM, which was twenty fold and thirteen fold more potent than isoniazid and ethambutol, respectively. On the other hand, compounds 17e, 18e and 19a were most active against Mycobacterium fortuitum and Mycobacterium phlei with an MIC value of approximately 3.0 muM. In the human diploid embryonic lung cell line MRC-5 cytotoxicity assay, the derivatives showed moderate to strong cytotoxic activity. Although the antimycobacterial activity of our synthetic compounds could not be correlated with the calculated log P values, an increase in lipophilicity enhances the antimycobacterial activity and C13-C15 total chain length at positions 1 and 2 is required to achieve optimal inhibitory effect against the test strains.
机译:为了改善生物活性并检查2-[((1E)-烯基)]-4-(1H)-喹诺酮类药物的抗分枝亲脂性关系,我们通过引入几个烷基基团(烯基)合成了30种喹诺酮类化合物和在N-1的炔基。首先在体外针对耻垢分枝杆菌进行了所有合成化合物的测试,并使用微量滴定液稀释法对最具活性的化合物(MIC值约为3.0-7.0μM)针对其他三种快速增长的分枝杆菌菌株进行了进一步测试。计算合成化合物的Clog P值以估计其亲脂性。化合物18e,19a和19b表现出对耻垢分枝杆菌mc(2)155的最强抑制作用,MIC值约为1.5μM,分别比异烟肼和乙胺丁醇高20倍和13倍。另一方面,化合物17e,18e和19a对Fortuitum fortuitum和phlei分支杆菌的活性最高,MIC值约为3.0μM。在人类二倍体胚胎肺细胞系MRC-5细胞毒性测定中,衍生物显示出中等至强的细胞毒性活性。尽管我们合成化合物的抗分枝杆菌活性与计算出的log P值不相关,但亲脂性的提高增强了抗分枝杆菌活性,为了获得对测试菌株的最佳抑制作用,需要在位置1和2处增加C13-C15的总链长。 。

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