Azzali Elisa, Machado Diana, Kaushik Amit, Vacondio Federica, Flisi Sara, Cabassi Clotilde Silvia, Lamichhane Gyanu, Viveiros Miguel, Costantino Gabriele, Pieroni Marco
Centro Interdipartimentale Misure (CIM) 'G. Casnati', University of Parma , Parco Area delle Scienze 23/A, 43124 Parma, Italy.
Global Health and Tropical Medicine, GHTM, Instituto de Higiene e Medicina Tropical, IHMT, Universidade Nova de Lisboa, UNL , Rua da Junqueira, 100, 1349-008 Lisbon, Portugal.
J Med Chem. 2017 Aug 24;60(16):7108-7122. doi: 10.1021/acs.jmedchem.7b00793. Epub 2017 Aug 10.
Tuberculosis remains one of the deadliest infectious diseases in the world, and the increased number of multidrug-resistant and extremely drug-resistant strains is a significant reason for concern. This makes the discovery of novel antitubercular agents a cogent priority. We have previously addressed this need by reporting a series of substituted 2-aminothiazoles capable to inhibit the growth of actively replicating, nonreplicating persistent, and resistant Mycobacterium tuberculosis strains. Clues from the structure-activity relationships lining up the antitubercular activity were exploited for the rational design of improved analogues. Two compounds, namely N-phenyl-5-(2-(p-tolylamino)thiazol-4-yl)isoxazole-3-carboxamide 7a and N-(pyridin-2-yl)-5-(2-(p-tolylamino)thiazol-4-yl)isoxazole-3-carboxamide 8a, were found to show high inhibitory activity toward susceptible M. tuberculosis strains, with an MIC of 0.125-0.25 μg/mL (0.33-0.66 μM) and 0.06-0.125 μg/mL (0.16-0.32 μM), respectively. Moreover, they maintained good activity also toward resistant strains, and they were selective over other bacterial species and eukaryotic cells, metabolically stable, and apparently not susceptible to the action of efflux pumps.
结核病仍然是世界上最致命的传染病之一,耐多药和极端耐药菌株数量的增加是一个令人担忧的重要原因。这使得发现新型抗结核药物成为一项紧迫的优先任务。我们之前通过报道一系列能够抑制活跃复制、非复制持续性和耐药结核分枝杆菌菌株生长的取代2-氨基噻唑来满足这一需求。利用抗结核活性的构效关系线索进行合理设计,以改进类似物。发现两种化合物,即N-苯基-5-(2-(对甲苯氨基)噻唑-4-基)异恶唑-3-甲酰胺7a和N-(吡啶-2-基)-5-(2-(对甲苯氨基)噻唑-4-基)异恶唑-3-甲酰胺8a,对敏感结核分枝杆菌菌株表现出高抑制活性,MIC分别为0.125 - 0.25 μg/mL(0.33 - 0.66 μM)和0.06 - 0.125 μg/mL(0.16 - 0.32 μM)。此外,它们对耐药菌株也保持良好活性,对其他细菌种类和真核细胞具有选择性,代谢稳定,且显然不易受外排泵作用的影响。