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Cross-resistance to human cationic antimicrobial peptides and to polymyxins mediated by the plasmid-encoded MCR-1?

机译:对人阳离子抗菌肽和质粒编码的MCR-1α介导的多粘菌素的交叉耐药性。

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摘要

To evaluate whether acquired resistance to cationic antimicrobial peptides (CAMP) group molecules, being normal components of the human immune system, may select co-resistance to antibiotic peptides such as polymyxins, considering they share the same mechanism of action. We aimed to evaluate strains producing the recently identified plasmid-encoded polymyxin resistance determinant MCR-1, which is a phosphoethanolamine transferase that modifies the lipopolysaccharide structure of Gram-negative bacteria.Methods: In-vitro susceptibility studies using human CAMPs, namely cathelicidin LL-37, α-defensin 5 (HD5) and β-defensin 3 (HDB3), towards MCR-1-producing and colistin-resistant Escherichia coli or Klebsiella pneumoniae were performed.Results: Cross-resistance to CAMPs and colistin mediated by MCR-1 or chromosomal mechanisms was neither observed in E. coli nor in K. pneumoniae.Conclusion: Therefore, the future therapeutic development of human CAMPs may likely not be impeded by the spread of MCR-1 plasmid-mediated resistance to polymyxins, at least in E. coli.
机译:为了评估对阳离子抗菌肽(CAMP)组分子(人类免疫系统的正常组成部分)的获得性抗性是否可以选择对抗生素肽(如多粘菌素)的共耐药性,因为它们具有相同的作用机制。我们的目的是评估产生最近鉴定的质粒编码的多粘菌素抗性决定簇MCR-1的菌株,MCR-1是一种磷酸乙醇胺转移酶,可修饰革兰氏阴性细菌的脂多糖结构。 37,对产生MCR-1和大肠菌素耐药的大肠埃希菌或肺炎克雷伯菌进行了α-防御素5(HD5)和β-防御素3(HDB3)结果。结论:因此,MCR-1质粒介导的对多粘菌素的抗药性的扩散可能不会阻碍人类CAMPs的未来治疗发展,至少在E. E. coli和肺炎克雷伯氏菌中均未见到。大肠杆菌

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