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分枝杆菌膜蛋白3(MmpL3)抑制剂在抗结核领域的研究进展 被引量:1
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作者 文雨 杨帆 +1 位作者 汤杰 于丽芳 《中国药物化学杂志》 CAS 2023年第8期618-629,633,共13页
结核病是由结核分枝杆菌感染引起的全球最为致命的传染病。耐药结核病(MDR-TB、XDR-TB)因治愈率低、治疗周期长,使结核病防治情势日益严峻。开发具有新结构、新作用机制的抗结核药物是治疗耐药结核病的重要手段之一。分枝杆菌膜蛋白3(Mm... 结核病是由结核分枝杆菌感染引起的全球最为致命的传染病。耐药结核病(MDR-TB、XDR-TB)因治愈率低、治疗周期长,使结核病防治情势日益严峻。开发具有新结构、新作用机制的抗结核药物是治疗耐药结核病的重要手段之一。分枝杆菌膜蛋白3(MmpL3)通过质子动力转运的方式参与分枝菌酸前体海藻糖单分枝菌酸酯(TMM)的跨膜转运,进而在结核杆菌细胞壁的重要组分分枝菌酸的生物合成途径中发挥关键作用。干扰MmpL3的转运功能将破坏结核分枝杆菌的生物活性,因此,MmpL3被认为是当前抗结核药物的重要靶点之一。本文作者对近年来MmpL3抑制剂在抗结核病领域的开发及应用情况进行综述,以期为后续抗结核药物的研究提供有价值的参考。 展开更多
关键词 耐药结核病 mmpl3晶体结构 抗结核药物 mmpl3抑制剂
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Design,synthesis,and biological evaluation of 1,2,4-triazole derivatives as potent antitubercular agents
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作者 Yu Wen Shichun Lun +8 位作者 Yuxue Jiao Wei Zhang Tianyu Hu Ting Liu Fan Yang Jie Tang Bing Zhang William R.Bishai Li-Fang Yu 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第3期326-331,共6页
Inhibition of mycobacterial membrane protein large 3(MmpL3)thereby affecting the mycolic acid biosynthetic pathway has been proven to be an effective strategy for developing antitubercular drugs.Based on the X-ray cry... Inhibition of mycobacterial membrane protein large 3(MmpL3)thereby affecting the mycolic acid biosynthetic pathway has been proven to be an effective strategy for developing antitubercular drugs.Based on the X-ray crystal structure of MmpL3 inhibitor complexes,a series of novel 1,2,4-triazole derivatives were designed,synthesized and evaluated antitubercular activity against Mtb strain H37Rv.Comprehensive structure–activity relationship exploration resulted in the identification of compounds 21 and 28,which possess potent antitubercular activity against Mtb strain H37Rv[minimum inhibitory concentration(MIC)=0.03–0.13μg/mL]and the clinical isolates of multidrug resistance(MDR)and extensive drug resistance(XDR)tuberculosis(MIC=0.06–1.0μg/mL).Moreover,compounds 21 and 28 showed neglectable cytotoxicity(IC_(50)≥32μg/mL)to the mammalian Vero cells and favorable physicochemical and pharmacokinetic properties according to the in silico absorption,distribution,metabolism and excretion(ADME)prediction.Finally,the potential target of representative 1,2,4-triazole 28 was identified to be MmpL3 using a microscale thermophoresis(MST)assay. 展开更多
关键词 TUBERCULOSIS MDR and XDR-TB mmpl3 inhibitor 1 2 4-Triazole Structure-based drug design
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