DNA旋转酶
拓扑异构酶
拓扑异构酶
拓扑异构酶抑制剂
喹诺酮类
生物
抗菌剂
微生物学
环丙沙星
细菌
DNA
DNA复制
抗菌剂
氧氟沙星
抗生素
左氧氟沙星
抗生素耐药性
抗感染药
SOS响应
药物开发
作者
Daisuke Fukuda,Danielle S. Powell,Aruni Mulgirigama,Ivo Vojtek,Hirofumi Ozeki,Daisuke Yoshimoto,Hideki Iida,Naoki Johira,Yoko Kayama,Shinya Kawamatsu,Satowa Suzuki
摘要
Bacterial topoisomerases are enzymes critical for maintaining genomic DNA integrity and ensuring bacterial cell survival, making them ideal targets for antibacterial agents. Bacterial topoisomerase inhibitors, such as quinolones and fluoroquinolones, target two enzymes, DNA gyrase and topoisomerase IV, and inhibit the control of DNA supercoiling/decatenation, leading to impaired DNA replication and bacterial cell death. Since their initial discovery, many quinolones and fluoroquinolones have been developed with activity against a wide range of bacterial species, contributing significantly to the treatment of various infectious diseases worldwide. Fluoroquinolones such as levofloxacin and ciprofloxacin remain important and effective therapeutic options today due to their broad-spectrum antibacterial activity, chemical stability and high bioavailability. However, side effects of fluoroquinolones have become a concern, leading to warnings being issued in the United States, Europe and the United Kingdom. Furthermore, in many countries, the prevalence of fluoroquinolone-resistant bacteria has been steadily increasing each year, which poses a serious threat to public health. The clinical development of new non-quinolone bacterial topoisomerase inhibitors (for example, zoliflodacin, gepotidacin and fobrepodacin) offers a promising solution to these issues and has the potential to play a crucial role in combating the growing problem of antimicrobial resistance. This review article will discuss the evolution of quinolone and fluoroquinolone antibacterial agents as key topoisomerase inhibitors, examine their current clinical applications and challenges to future development, and explore the potential of new topoisomerase inhibitors.
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