Department of Chemical Sciences, National Institute of Pharmaceutical Education and Research (NIPER), Balanagar, Hyderabad 500037, Telangana, India.
Department of Pharmaceutical Analysis, National Institute of Pharmaceutical Education and Research (NIPER),Balanagar, Hyderabad 500037, Telangana, India.
Bioorg Med Chem. 2022 Jun 15;64:116777. doi: 10.1016/j.bmc.2022.116777. Epub 2022 Apr 23.
Ever increasing drug resistance has become an impeding threat that continues to hamper effective tackling of otherwise treatable tuberculosis (TB). Such dismal situation necessitates identification and exploration of multitarget acting newer chemotypes with bactericidal efficacy as a priority, that could efficiently hinder uncontrolled spread of TB. In this context, herein we present design, synthesis and bio-evaluation of chalcone tethered bezoxazole-2-amines as promising anti-TB chemotypes. Preliminary screening of 24 compounds revealed initial hits 3,4,5-trimethoxyphenyl and 5-nitrofuran-2-yl derivative exhibiting selective inhibition of Mycobacterium tuberculosis (Mtb) H37Rv. Further, structural optimization of hit compounds generated 12 analogues, amongst which 5-nitrofuran-2-yl derivatives displayed potent inhibition of not only drug-susceptible (DS) Mtb but also clinical isolates of drug-resistant (DR) Mtb strains equipotently. Moreover, cell viability test against Vero cells found these compounds with favourable selectivity. Time kill analysis led to the identification of the lead compound (E)-1-(4-((5-chlorobenzo[d]oxazol-2-yl)amino)phenyl)-3-(5-nitrofuran-2-yl)prop-2-en-1-one, that demonstrated bactericidal killing of Mtb bacilli. Together with acceptable microsomal stability, the lead compound of the series manifested all desirable traits of a promising antitubercular agent.
不断增加的耐药性已成为一个阻碍因素,持续阻碍着对可治疗结核病(TB)的有效治疗。这种令人沮丧的情况需要确定和探索具有杀菌功效的多靶标新型化学型,作为优先事项,这可以有效地阻止结核病的失控传播。在这种情况下,本文提出了设计、合成和生物评价查尔酮连接苯并恶唑-2-胺作为有前途的抗结核化学型。对 24 种化合物的初步筛选显示,初始命中物 3,4,5-三甲氧基苯基和 5-硝基呋喃-2-基衍生物对结核分枝杆菌(Mtb)H37Rv 具有选择性抑制作用。进一步对命中化合物进行结构优化,生成了 12 种类似物,其中 5-硝基呋喃-2-基衍生物不仅对药物敏感(DS)Mtb 而且对耐药(DR)Mtb 临床分离株具有同等的强效抑制作用。此外,对 Vero 细胞的细胞活力测试发现这些化合物具有良好的选择性。时间杀伤分析确定了先导化合物(E)-1-(4-((5-氯苯并[d]恶唑-2-基)氨基)苯基)-3-(5-硝基呋喃-2-基)丙-2-烯-1-酮,该化合物对 Mtb 杆菌具有杀菌作用。该系列的先导化合物具有可接受的微粒体稳定性,表现出有前途的抗结核药物的所有理想特性。