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Infectious plasmid resistance and efflux pump mediated resistance.

机译:传染性质粒抗性和外排泵介导的抗性。

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摘要

Various bacterial plasmids can be eliminated from bacterial species cultured as pure or mixed bacterial cultures by non-mutagenic heterocyclic compounds at subinhibitory concentrations. For plasmid curing, the replication should be inhibited at three different levels simultaneously: the intracellular replication of plasmid DNA, partition and intercellular transconjugal transfer. The antiplasmid action of the compounds depends on the chemical structure. The targets for antiplasmid compounds were analysed in detail. It was found that amplified extrachromosomal DNA in the superhelical state binds more drug molecules than does the linear or open-circular form of the plasmid or the chromosome, without stereospecificity which leads to functional inactivation of the extrachromosomal genetic code. Plasmid elimination also occurs in ecosystems containing numerous bacterial species simultaneously, but the elimination of antibiotic resistance-encoding plasmids from all individual cells of the population is never complete. The medical significance of plasmid elimination in vitro is, it provides a method to isolate plasmid-free bacteria for biotechnology without any risk of mutations, and it opens up a new perspective in rational drug design against bacterial plasmids. Hypothetically, the combination of antiplasmid drugs and antibiotics may improve the effectivity of antibiotics against resistant bacteria; therefore, the results cannot be exploited until the curing efficiency reaches 100%. Inhibition of the conjugational transfer of antibiotic resistance plasmids can be exploited to reduce the spreading of these plasmids in ecosystems.
机译:可以通过亚诱变浓度的非诱变杂环化合物从培养为纯细菌或混合细菌培养物的细菌物种中消除各种细菌质粒。对于质粒固化,应同时在三个不同的水平上抑制复制:质粒DNA的细胞内复制,分配和细胞间跨结膜转移。化合物的抗质粒作用取决于化学结构。详细分析了抗质粒化合物的靶标。已经发现,与质粒或染色体的线性或开环形式相比,处于超螺旋状态的扩增的染色体外DNA与更多的药物分子结合,而没有立体特异性,这导致染色体外遗传密码的功能失活。质粒消除也同时发生在包含众多细菌物种的生态系统中,但是从种群的所有单个细胞中消除编码抗生素抗性的质粒从未彻底消除。体外消除质粒的医学意义在于,它为生物技术提供了一种分离无质粒细菌的方法,并且没有突变的风险,并且为针对细菌质粒的合理药物设计开辟了新的前景。从理论上讲,抗质粒药物和抗生素的组合可以提高抗生素对耐药菌的有效性。因此,在固化效率达到100%之前,无法利用结果。可以利用对抗生素抗性质粒的共轭转移的抑制来减少这些质粒在生态系统中的扩散。

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