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Does the wide use of quaternary ammonium compounds enhance the selection and spread of antimicrobial resistance and thus threaten our health?

机译:季铵化合物的广泛使用是否会增强抗药性的选择和传播,从而威胁我们的健康?

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摘要

Quaternary ammonium compounds (QACs) are widely used biocides that possess antimicrobial effect against a broad range of microorganisms. These compounds are used for numerous industrial purposes, water treatment, antifungal treatment in horticulture, as well as in pharmaceutical and everyday consumer products as preserving agents, foam boosters, and detergents. Resistance toward QACs is widespread among a diverse range of microorganisms and is facilitated by several mechanisms such as modifications in the membrane composition, expression of stress response and repair systems, or expression of efflux pump genes. Development of resistance in both pathogenic and nonpathogenic bacteria has been related to application in human medicine and the food industry. QACs in cosmetic products will inevitably come into intimate contact with the skin or mucosal linings in the mouth and thus are likely to add to the selection pressure toward more QAC-resistant microorganisms among the skin or mouth flora. There is increasing evidence of coresistance and cross-resistance between QACs and a range of other clinically important antibiotics and disinfectants. Use of QACs may have driven the fixation and spread of certain resistance cassette collectors (class 1 integrons), currently responsible for a major part of antimicrobial resistance in gram-negative bacteria. More indiscriminate use of QACs such as in cosmetic products may drive the selection of further new genetic elements that will aid in the persistence and spread of antimicrobial resistance and thus in limiting our treatment options for microbial infections.
机译:季铵化合物(QAC)是被广泛使用的杀生物剂,对多种微生物均具有抗菌作用。这些化合物可用于多种工业用途,园艺中的水处理,抗真菌处理以及药物和日常消费品中作为防腐剂,泡沫促进剂和清洁剂。对QAC的抗性在各种各样的微生物中广泛分布,并通过多种机制促进,例如膜组成的修饰,应激反应和修复系统的表达或外排泵基因的表达。致病性细菌和非致病性细菌中抗药性的发展与在人类医学和食品工业中的应用有关。化妆品中的QAC不可避免地会与口腔中的皮肤或粘膜内层紧密接触,因此可能会增加对皮肤或口腔菌群中更具QAC抵抗力的微生物的选择压力。越来越多的证据表明QAC与一系列其他临床上重要的抗生素和消毒剂之间具有抗药性和交叉耐药性。 QAC的使用可能已经推动了某些耐药盒收集器(1类整合素)的固定和扩散,目前这些耐药盒收集器是革兰氏阴性细菌抗微生物耐药性的主要部分。 QAC的更广泛使用(例如在化妆品中)可能会推动对其他新遗传元素的选择,这将有助于抗菌素耐药性的持续存在和传播,从而限制我们对微生物感染的治疗选择。

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