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History of antibiotic adaptation influences microbial evolutionary dynamics during subsequent treatment

机译:抗生素适应的历史会影响后续治疗期间的微生物进化动力学

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摘要

Antibiotic regimens often include the sequential changing of drugs to limit the development and evolution of resistance of bacterial pathogens. It remains unclear how history of adaptation to one antibiotic can influence the resistance profiles when bacteria subsequently adapt to a different antibiotic. Here, we experimentally evolved Pseudomonas aeruginosa to six 2-drug sequences. We observed drug order–specific effects, whereby adaptation to the first drug can limit the rate of subsequent adaptation to the second drug, adaptation to the second drug can restore susceptibility to the first drug, or final resistance levels depend on the order of the 2-drug sequence. These findings demonstrate how resistance not only depends on the current drug regimen but also the history of past regimens. These order-specific effects may allow for rational forecasting of the evolutionary dynamics of bacteria given knowledge of past adaptations and provide support for the need to consider the history of past drug exposure when designing strategies to mitigate resistance and combat bacterial infections.
机译:抗生素治疗方案通常包括药物的顺序更换,以限制细菌病原体耐药性的发展和演变。尚不清楚当细菌随后适应另一种抗生素时,对一种抗生素的适应史如何影响耐药性。在这里,我们实验性地将铜绿假单胞菌进化为六个2-药物序列。我们观察到了特定于药物顺序的作用,即对第一种药物的适应可以限制随后对第二种药物的适应速率,对第二种药物的适应可以恢复对第一种药物的敏感性,或者最终耐药水平取决于2种药物的顺序。 -药物顺序。这些发现表明耐药性不仅取决于当前的药物治疗方案,而且还取决于过去的治疗方案。考虑到过去的适应性知识,这些特定顺序的影响可能允许合理预测细菌的进化动力学,并在设计减轻耐药性和抵抗细菌感染的策略时考虑过去药物暴露的历史提供了支持。

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