Recent Developments in Antibacterial 4-Quinolone-3-carboxylic Acids

C. Tzeng, Yeh‐long Chen
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引用次数: 1

Abstract

During the past decade, the synthesis of new 4-quinolone-3-carboxylic acids and the evaluation of their antibacterial activities have continued, and the roles of DNA gyrase and topoisol1erase IV have been well defined. Several of the structure-activity relationships regarding the side-chain at C-7, the effect of halogen or methoxy groups at C-8, and the effect of the C-5 amino group were greatly influenced by the choice of the N-l substituent. The spectrum and potency of the C-7 piperazinyl and pyrrolidinyl quinolones was greatly enhanced by the judicious choice of C-5, C-8, and N-I substituents. Although it was initially thought that the C-6 fluoro group was re-sponsible for enhanced bacterial penetration and DNA gyrase inhibition, it has been discovered that compounds without this component also display broad and potent antimicrobial activity. Therefore, the appropriate term for these newer antibacterial agents is suggested to be 4quinolone-3-carboxylic acids.
抗菌4-喹诺酮-3-羧酸的研究进展
在过去的十年中,新的4-喹诺酮-3-羧酸的合成和抗菌活性的评价一直在继续,DNA旋切酶和拓扑isol1酶IV的作用也得到了很好的定义。n - 1取代基的选择对C-7侧链、C-8卤素或甲氧基的影响以及C-5氨基的影响等几个构效关系都有很大的影响。合理选择C-5、C-8和n - 1取代基,可大大增强C-7哌嗪基和吡咯烷基喹诺酮类化合物的光谱和效价。虽然最初认为C-6氟基团是增强细菌渗透和抑制DNA旋切酶的原因,但已经发现,不含该成分的化合物也显示出广泛而有效的抗菌活性。因此,建议将这些新型抗菌剂命名为4 -喹诺酮-3-羧酸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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