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Fight evolution with evolution: plasmid-dependent phages with a wide host range prevent the spread of antibiotic resistance

机译:通过进化来对抗进化:具有广泛宿主范围的质粒依赖性噬菌体可防止抗生素耐药性的扩散

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摘要

The emergence of pathogenic bacteria resistant to multiple antibiotics is a serious worldwide public health concern. Whenever antibiotics are applied, the genes encoding for antibiotic resistance are selected for within bacterial populations. This has led to the prevalence of conjugative plasmids that carry resistance genes and can transfer themselves between diverse bacterial groups. In this study, we investigated whether it is feasible to attempt to prevent the spread of antibiotic resistances with a lytic bacteriophage, which can replicate in a wide range of gram-negative bacteria harbouring conjugative drug resistance–conferring plasmids. The counter-selection against the plasmid was shown to be effective, reducing the frequency of multidrug-resistant bacteria that formed via horizontal transfer by several orders of magnitude. This was true also in the presence of an antibiotic against which the plasmid provided resistance. Majority of the multiresistant bacteria subjected to phage selection also lost their conjugation capability. Overall this study suggests that, while we are obligated to maintain the selection for the spread of the drug resistances, the ‘fight evolution with evolution’ approach could help us even out the outcome to our favour.
机译:对多种抗生素具有抗性的病原菌的出现是全世界范围内严重的公共卫生问题。无论何时使用抗生素,都会在细菌种群中选择编码抗生素抗性的基因。这导致了携带抗性基因并且可以在不同细菌群之间转移的结合质粒的流行。在这项研究中,我们调查了尝试通过裂解性噬菌体阻止抗生素耐药性的扩散是否可行,裂解性噬菌体可以在多种带有结合耐药性质粒的革兰氏阴性细菌中复制。已证明对质粒的反选择是有效的,从而将通过水平转移形成的耐多药细菌的频率降低了几个数量级。在存在质粒可提供抗性的抗生素的情况下也是如此。多数经过噬菌体选择的多抗细菌也失去了其结合能力。总体而言,这项研究表明,尽管我们有义务保持对耐药性扩散的选择,但“以进化论奋斗”方法可以帮助我们使结果趋于一致。

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