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Polymyxins and Bacterial Membranes: A Review of Antibacterial Activity and Mechanisms of Resistance

机译:聚杂体和细菌膜:抗菌活性的综述及抵抗机制

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摘要

Following their initial discovery in the 1940s, polymyxin antibiotics fell into disfavor due to their potential clinical toxicity, especially nephrotoxicity. However, the dry antibiotic development pipeline, together with the rising global prevalence of infections caused by multidrug-resistant (MDR) Gram-negative bacteria have both rejuvenated clinical interest in these polypeptide antibiotics. Parallel to the revival of their use, investigations into the mechanisms of action and resistance to polymyxins have intensified. With an initial known effect on biological membranes, research has uncovered the detailed molecular and chemical interactions that polymyxins have with Gram-negative outer membranes and lipopolysaccharide structure. In addition, genetic and epidemiological studies have revealed the basis of resistance to these agents. Nowadays, resistance to polymyxins in MDR Gram-negative pathogens is well elucidated, with chromosomal as well as plasmid-encoded, transferrable pathways. The aims of the current review are to highlight the important chemical, microbiological, and pharmacological properties of polymyxins, to discuss their mechanistic effects on bacterial membranes, and to revise the current knowledge about Gram-negative acquired resistance to these agents. Finally, recent research, directed towards new perspectives for improving these old agents utilized in the 21st century, to combat drug-resistant pathogens, is summarized.
机译:在20世纪40年代的初步发现之后,由于其潜在的临床毒性,特别是肾毒性,Polymyxin抗生素陷入了弱点。然而,干燥的抗生素发育管道以及多药抗性(MDR)革兰阴性细菌引起的感染的全局患病率的上升既具有恢复活力的临床兴趣,这些多肽抗生素都具有恢复活力的临床兴趣。与其使用的复兴平行,调查进入动作机制和对多种多糖苷的抵抗力。通过对生物膜的初始效果,研究已经发现了多种辛与革兰氏阴性外膜和脂多糖结构的详细分子和化学相互作用。此外,遗传和流行病学研究揭示了对这些药剂的抵抗力的基础。如今,对MDR革兰氏阴性病原体中的多态蛋白抗性良好,染色体以及质粒编码,可转移途径。目前审查的目的是突出多态的重要化学,微生物和药理性质,讨论其对细菌膜的机制作用,并修改目前关于革兰阴性获得的抗性对这些药剂的抗性的知识。最后,最近的研究,针对改善在21世纪中使用的这些旧代表的新观点,总结了对抗耐药病原体。

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  • 作者

    Carole Ayoub Moubareck;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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