喹诺酮类药物家族:从抗菌药物到抗癌药物。

Claudia Sissi, Manlio Palumbo
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引用次数: 132

摘要

目前的综述主要集中在结构修饰负责转化为抗菌剂抗癌剂。事实上,基于喹诺酮结构的药物的一个显著特征是它们靶向不同的II型拓扑异构酶的显著能力。特别是,该药物家族的一些同系物不仅对细菌拓扑异构酶具有高活性,而且对真核拓扑异构酶也具有高活性,并且对培养的哺乳动物细胞和体内肿瘤模型具有毒性。因此,这些细胞毒性喹诺酮类药物代表了新的抗癌药物的可开发来源,也可能有助于解决毒副作用和耐药性现象。它们结合金属离子辅助因子的能力代表了调节其药理反应的另一种手段。此外,喹诺酮类药物将抗菌和抗癌化疗联系在一起,并为阐明不同物种的药物机制提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The quinolone family: from antibacterial to anticancer agents.

The present review focuses on the structural modifications responsible for the transformation of an antibacterial into an anticancer agent. Indeed, a distinctive feature of drugs based on the quinolone structure is their remarkable ability to target different type II topoisomerase enzymes. In particular, some congeners of this drug family display high activity not only against bacterial topoisomerases, but also against eukaryotic topoisomerases and are toxic to cultured mammalian cells and in vivo tumor models. Hence, these cytotoxic quinolones represent an exploitable source of new anticancer agents, which might also help addressing side-toxicity and resistance phenomena. Their ability to bind metal ion co-factors represents an additional means of modulating their pharmacological response(s). Moreover, quinolones link antibacterial and anticancer chemotherapy together and provide an opportunity to clarify drug mechanism across divergent species.

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