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环取代-2/4-喹啉甲醛衍生物的合成、抗结核活性及三维定量构效关系研究

Synthesis, anti-tuberculosis activity, and 3D-QSAR study of ring-substituted-2/4-quinolinecarbaldehyde derivatives.

作者信息

Nayyar Amit, Malde Alpeshkumar, Coutinho Evans, Jain Rahul

机构信息

Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research, Sector 67, S.A.S. Nagar, Punjab 160 062, India.

出版信息

Bioorg Med Chem. 2006 Nov 1;14(21):7302-10. doi: 10.1016/j.bmc.2006.06.049. Epub 2006 Jul 14.

DOI:10.1016/j.bmc.2006.06.049
PMID:16843663
Abstract

We have previously identified ring-substituted quinolines as a new structural class of anti-tuberculosis agents. In our ongoing efforts at structural optimization of this class, four series of ring-substituted-2/4-quinolinecarbaldehyde derivatives were synthesized. All twenty-four compounds were synthesized using short and convenient one to two high yielding steps. The newly synthesized compounds were tested in vitro against drug-sensitive Mycobacterium tuberculosis H37Hv strain. Several derivatives were found to be promising inhibitors of M. tuberculosis. For example, derivatives 4a-c (Series 2), 7a-d (Series 3), and 8a-b (Series 4) displayed >90% inhibition at 6.25 microg/mL in the primary assay. The most active compounds, N-(2-fluorophenyl)-N'-quinolin-2-ylmethylene-hydrazine (4a), N-(2-adamantan-1-yl-quinolin-4-ylmethylene)-N'-(4-fluorophenyl)hydrazine (7c), and N-(2-cyclohexyl-quinolin-4-ylmethylene)-N'-(2-fluorophenyl)hydrazine (8a), exhibited 99% inhibition at the lowest tested concentration of 3.125 microg/mL against drug-sensitive M. tuberculosis H37Rv strain. The similarity index based on steric and electrostatic features of the molecules was used, in conjunction with principal component analysis and linear discriminant analysis, successively to classify the molecules based on their activity into two classes. This classification method gives us confidence in predicting the activity class of any new unsynthesized molecule belonging to these series.

摘要

我们之前已确定环取代喹啉是一类新型抗结核药物。在我们对该类药物进行结构优化的持续研究中,合成了四个系列的环取代 -2/4-喹啉甲醛衍生物。所有24种化合物均通过一到两个高产率的简短便捷步骤合成。对新合成的化合物针对药物敏感的结核分枝杆菌H37Hv菌株进行了体外测试。发现几种衍生物是有前景的结核分枝杆菌抑制剂。例如,衍生物4a - c(系列2)、7a - d(系列3)和8a - b(系列4)在初步试验中于6.25μg/mL时显示出>90%的抑制率。活性最高的化合物,N-(2-氟苯基)-N'-喹啉-2-基亚甲基肼(4a)、N-(2-金刚烷-1-基喹啉-4-基亚甲基)-N'-(4-氟苯基)肼(7c)和N-(2-环己基喹啉-4-基亚甲基)-N'-(2-氟苯基)肼(8a),在针对药物敏感的结核分枝杆菌H37Rv菌株的最低测试浓度3.125μg/mL时表现出99%的抑制率。基于分子的空间和静电特征的相似性指数,与主成分分析和线性判别分析相结合,依次将分子根据其活性分为两类。这种分类方法使我们有信心预测属于这些系列的任何新的未合成分子的活性类别。

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