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首页> 外文期刊>Chemical biology and drug design >A New Approach to Counteract Bacteria Resistance: A Comparative Study Between Moxifloxacin and a New Moxifloxacin Derivative in Different Model Systems of Bacterial Membrane
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A New Approach to Counteract Bacteria Resistance: A Comparative Study Between Moxifloxacin and a New Moxifloxacin Derivative in Different Model Systems of Bacterial Membrane

机译:抗细菌耐药性的新方法:莫西沙星与新型莫西沙星衍生物在不同细菌膜系统中的比较研究

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摘要

New drug design has been one of the major challenges to combat bacterial resistance over the past decade. Conventional antibiotics act by destroying bacterial cell wall or by blocking biosynthetic pathways necessary for its survival. Unfortunately, there has been a fast increase in multiresistance, to several conventional antibiotics, in clinical bacterial strains. Previous studies have shown that metalloantibiotics, ternary complexes of antibiotic-metal-phenanthroline, present an increased potential as antimicrobial agents. In this work moxifloxacin, a fourth-generation quinolone, with a broad spectrum of action, and its copper ternary complex (metalloantibiotic) have been study by fluorescence spectroscopy. Partition coefficients were determined and showed that while free moxifloxacin exhibits the same behaviour independently of the lipidic system tested, the metalloantibiotic presents higher partition to liposomes, in a lipid compositiondependent way. These significant differences in the interaction of the metalloantibiotic with model bacteria membranes point out for a putative change in its uptake mechanism with increased drug-lipid interaction potentiating metalloantibiotic influx.
机译:在过去的十年中,新药设计一直是抵抗细菌耐药性的主要挑战之一。常规抗生素通过破坏细菌细胞壁或阻断其生存所必需的生物合成途径起作用。不幸的是,在临床细菌菌株中,对几种常规抗生素的多药耐药性迅速增加。先前的研究表明,金属-抗生素,抗生素-金属-菲咯啉的三元复合物,作为抗菌剂的潜力不断增加。在这项工作中,通过荧光光谱法研究了具有广泛作用范围的第四代喹诺酮莫西沙星及其铜三元复合物(金属抗生素)。测定了分配系数并显示出,尽管游离莫西沙星表现出相同的行为而与所测试的脂质系统无关,但金属抗生素以脂质组成依赖性方式呈现出更高的脂质体分配。金属抗生素与模型细菌膜之间相互作用的这些显着差异表明,随着药物-脂质相互作用的增强,金属抗生素的涌入,其摄取机制发生了可能的变化。

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