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外排介导的对阳离子杀菌剂的耐受性,值得关注吗?

Efflux-mediated tolerance to cationic biocides, a cause for concern?

作者信息

Wand Matthew E, Sutton J Mark

机构信息

Technology Development Group, UK Health Security Agency, Research and Evaluation, Porton Down, Salisbury, Wiltshire, SP4 0JG, UK.

出版信息

Microbiology (Reading). 2022 Nov;168(11). doi: 10.1099/mic.0.001263.

Abstract

With an increase in the number of isolates resistant to multiple antibiotics, infection control has become increasingly important to help combat the spread of multi-drug-resistant pathogens. An important component of this is through the use of disinfectants and antiseptics (biocides). Antibiotic resistance has been well studied in bacteria, but little is known about potential biocide resistance genes and there have been few reported outbreaks in hospitals resulting from a breakdown in biocide effectiveness. Development of increased tolerance to biocides has been thought to be more difficult due to the mode of action of biocides which affect multiple cellular targets compared with antibiotics. Very few genes which contribute towards increased biocide tolerance have been identified. However, the majority of those that have are components or regulators of different efflux pumps or genes which modulate membrane function/modification. This review will examine the role of efflux in increased tolerance towards biocides, focusing on cationic biocides and heavy metals against Gram-negative bacteria. As many efflux pumps which are upregulated by biocide presence also contribute towards an antimicrobial resistance phenotype, the role of these efflux pumps in cross-resistance to both other biocides and antibiotics will be explored.

摘要

随着对多种抗生素耐药的分离株数量增加,感染控制对于对抗多重耐药病原体的传播变得越来越重要。其中一个重要组成部分是通过使用消毒剂和防腐剂(杀生剂)。抗生素耐药性在细菌中已得到充分研究,但对于潜在的杀生剂耐药基因却知之甚少,并且很少有医院报告因杀生剂效力下降而导致的疫情爆发。由于杀生剂的作用方式与抗生素相比会影响多个细胞靶点,因此人们认为对杀生剂产生更高耐受性的发展更为困难。目前已鉴定出的有助于提高杀生剂耐受性的基因非常少。然而,其中大多数是不同外排泵的组成部分或调节因子,或者是调节膜功能/修饰的基因。本综述将探讨外排在提高对杀生剂耐受性方面的作用,重点关注阳离子杀生剂和重金属对革兰氏阴性菌的影响。由于许多因杀生剂存在而上调的外排泵也会导致抗菌耐药表型,因此将探讨这些外排泵在对其他杀生剂和抗生素的交叉耐药中的作用。

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