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通过分子杂交方法设计新型吩噻嗪-噻二唑杂化物以开发高效抗结核药物。

Design of new phenothiazine-thiadiazole hybrids via molecular hybridization approach for the development of potent antitubercular agents.

作者信息

Ramprasad Jurupula, Nayak Nagabhushana, Dalimba Udayakumar

机构信息

Organic Chemistry Laboratory, Department of Chemistry, National Institute of Technology Karnataka, Surathkal, Srinivasanagar, Mangalore 575025, India.

Organic Chemistry Laboratory, Department of Chemistry, National Institute of Technology Karnataka, Surathkal, Srinivasanagar, Mangalore 575025, India.

出版信息

Eur J Med Chem. 2015 Dec 1;106:75-84. doi: 10.1016/j.ejmech.2015.10.035. Epub 2015 Oct 23.

Abstract

A new library of phenothiazine and 1,3,4-thiadiazole hybrid derivatives (5a-u) was designed based on the molecular hybridization approach and the molecules were synthesized in excellent yields using a facile single-step chloro-amine coupling reaction between 2-chloro-1-(10H-phenothiazin-10-yl)ethanones and 2-amino-5-subsituted-1,3,4-thiadiazoles. The compounds were evaluated for their in vitro inhibition activity against Mycobacterium tuberculosis H37Rv (MTB). Compounds 5 g and 5 n were emerged as the most active compounds of the series with MIC of 0.8 μg/mL (∼ 1.9 μM). Also, compounds 5a, 5b, 5c, 5e, 5l and 5m (MIC = 1.6 μg/mL), and compounds 5j, 5k and 5o (MIC = 3.125 μg/mL) showed significant inhibition activity. The structure-activity relationship demonstrated that an alkyl (methyl/n-propyl) or substituted (4-methyl/4-Cl/4-F) phenyl groups on the 1,3,4-thiadiazole ring enhance the inhibition activity of the compounds. The cytotoxicity study revealed that none of the active molecules are toxic to a normal Vero cell line thus proving the lack of general cellular toxicity. Further, the active molecules were subjected to molecular docking studies with target enzymes InhA and CYP121.

摘要

基于分子杂交方法设计了一个新的吩噻嗪和1,3,4 - 噻二唑杂化衍生物库(5a - u),通过2 - 氯 - 1 -(10H - 吩噻嗪 - 10 - 基)乙酮与2 - 氨基 - 5 - 取代 - 1,3,4 - 噻二唑之间简便的单步氯胺偶联反应,以优异的产率合成了这些分子。评估了这些化合物对结核分枝杆菌H37Rv(MTB)的体外抑制活性。化合物5g和5n是该系列中活性最高的化合物,MIC为0.8μg/mL(约1.9μM)。此外,化合物5a、5b、5c、5e、5l和5m(MIC = 1.6μg/mL)以及化合物5j、5k和5o(MIC = 3.125μg/mL)显示出显著的抑制活性。构效关系表明,1,3,4 - 噻二唑环上的烷基(甲基/正丙基)或取代(4 - 甲基/4 - Cl/4 - F)苯基增强了化合物的抑制活性。细胞毒性研究表明,这些活性分子对正常的Vero细胞系均无毒性,从而证明它们缺乏一般细胞毒性。此外,对活性分子与靶标酶InhA和CYP121进行了分子对接研究。

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