Synthesis of Novel Pyrazinamide Derivatives Based on 3-Chloropyrazine-2-carboxamide and Their Antimicrobial Evaluation

O. Janďourek, Marek Tauchman, P. Paterová, K. Konečná, L. Navrátilová, V. Kubíček, O. Holas, J. Zítko, M. Doležal
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引用次数: 12

Abstract

Aminodehalogenation of 3-chloropyrazine-2-carboxamide with variously substituted benzylamines yielded a series of fifteen 3-benzylaminopyrazine-2-carboxamides. Four compounds possessed in vitro whole cell activity against Mycobacterium tuberculosis H37Rv that was at least equivalent to that of the standard pyrazinamide. MIC values ranged from 6 to 42 µM. The best MIC (6 µM) was displayed by 3-[(4-methylbenzyl)amino]pyrazine-2-carboxamide (8) that also showed low cytotoxicity in the HepG2 cell line (IC50 ≥ 250 µM). Only moderate activity against Enterococcus faecalis and Staphylococcus aureus was observed. No activity was detected against any of tested fungal strains. Molecular docking with mycobacterial enoyl-ACP reductase (InhA) was performed to investigate the possible target of the prepared compounds. Active compounds shared common binding interactions of known InhA inhibitors. Antimycobacterial activity of the title compounds was compared to the previously published benzylamino-substituted pyrazines with differing substitution on the pyrazine core (carbonitrile moiety). The title series possessed comparable activity and lower cytotoxicity than molecules containing a carbonitrile group on the pyrazine ring.
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基于3-氯吡嗪-2-羧酰胺的新型吡嗪酰胺衍生物的合成及其抗菌性能评价
3-氯吡嗪-2-羧酰胺与不同取代的苄胺氨基脱卤化反应得到一系列15种3-氯吡嗪-2-羧酰胺。四种化合物具有抗结核分枝杆菌H37Rv的体外全细胞活性,至少与标准吡嗪酰胺相当。MIC值为6 ~ 42µM。3-[(4-甲基苄基)氨基]pyrazine-2-carboxamide(8)的MIC(6µM)最高,对HepG2细胞株的细胞毒性也较低(IC50≥250µM)。对粪肠球菌和金黄色葡萄球菌仅观察到中等活性。未检测到对任何被试真菌菌株的活性。通过与分枝杆菌烯酰acp还原酶(InhA)的分子对接,探讨了所制备化合物可能的作用靶点。活性化合物与已知的InhA抑制剂具有共同的结合相互作用。将标题化合物的抑菌活性与先前发表的吡嗪核心(碳腈部分)上不同取代的苄胺取代吡嗪进行了比较。与吡嗪环上含有碳腈基团的分子相比,标题系列具有相当的活性和更低的细胞毒性。
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