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Phenotypic Resistance to Antibiotics

机译:表型对抗生素的耐药性

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The development of antibiotic resistance is usually associated with genetic changes, either to the acquisition of resistance genes, or to mutations in elements relevant for the activity of the antibiotic. However, in some situations resistance can be achieved without any genetic alteration; this is called phenotypic resistance. Non-inherited resistance is associated to specific processes such as growth in biofilms, a stationary growth phase or persistence. These situations might occur during infection but they are not usually considered in classical susceptibility tests at the clinical microbiology laboratories. Recent work has also shown that the susceptibility to antibiotics is highly dependent on the bacterial metabolism and that global metabolic regulators can modulate this phenotype. This modulation includes situations in which bacteria can be more resistant or more susceptible to antibiotics. Understanding these processes will thus help in establishing novel therapeutic approaches based on the actual susceptibility shown by bacteria during infection, which might differ from that determined in the laboratory. In this review, we discuss different examples of phenotypic resistance and the mechanisms that regulate the crosstalk between bacterial metabolism and the susceptibility to antibiotics. Finally, information on strategies currently under development for diminishing the phenotypic resistance to antibiotics of bacterial pathogens is presented.
机译:抗生素抗性的发展通常与遗传变化有关,或者与抗性基因的获得有关,或者与与抗生素活性有关的元素的突变有关。但是,在某些情况下,无需任何遗传改变即可获得抗药性。这称为表型耐药。非继承的抗性与特定过程相关,例如生物膜的生长,静止的生长阶段或持久性。这些情况可能在感染期间发生,但临床微生物学实验室通常不会在经典药敏试验中考虑这些情况。最近的工作还表明,对抗生素的敏感性高度依赖于细菌的代谢,全球代谢调节剂可以调节这种表型。这种调节包括细菌可能更具有抗药性或对抗生素更敏感的情况。因此,了解这些过程将有助于根据细菌在感染过程中表现出的实际敏感性建立新颖的治疗方法,这可能与实验室确定的方法不同。在这篇综述中,我们讨论了表型耐药性的不同例子,以及调节细菌代谢与抗生素敏感性之间相互影响的机制。最后,介绍了有关减少细菌病原体对抗生素的表型耐药性目前正在开发的策略的信息。

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