The Institute of Environmental Sciences, Bogazici University, Bebek, Istanbul 34342, Turkey.
School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0512, USA.
Curr Opin Biotechnol. 2015 Jun;33:296-304. doi: 10.1016/j.copbio.2015.03.018. Epub 2015 Apr 10.
Disinfectants play an important role in maintaining acceptable health standards by significantly reducing microbial loads as well as reducing, if not eliminating, pathogens. This review focuses on quaternary ammonium compounds (QACs), a widely used class of organic disinfectants. Specifically, it reviews the occurrence, microbial adaptation, and degradation of QACs, focusing on recent reports on the ecology of QAC-degraders, the pathways and mechanisms of microbial adaptation which lead to resistance to QACs, as well as to antibiotics. With the help of culture-dependent and nonculture-dependent tools, as well as advanced analytical techniques, a better understanding of the fate and effect of QACs and their biotransformation products is emerging. Understanding the underlying mechanisms and conditions that result in QAC resistance and biodegradation will be instrumental in the prudent use of existing QAC formulations and foster the development of safer disinfectants. Development and implementation of (bio)technologies for the elimination of QACs from treated wastewater effluents will lessen adverse impacts to both humans and the environment.
消毒剂在维持可接受的健康标准方面发挥着重要作用,它不仅能显著降低微生物负荷,还能降低(如果不能消除的话)病原体。本综述重点关注季铵化合物(QACs),这是一类广泛使用的有机消毒剂。具体来说,它综述了 QACs 的出现、微生物适应性和降解情况,重点关注最近关于 QAC 降解菌生态、导致 QAC 抗性和抗生素抗性的微生物适应性途径和机制的报告。借助基于培养和非培养的工具以及先进的分析技术,人们对 QAC 及其生物转化产物的命运和影响有了更好的理解。了解导致 QAC 抗性和生物降解的潜在机制和条件将有助于审慎使用现有的 QAC 制剂,并促进更安全的消毒剂的开发。开发和实施(生物)技术以消除处理后的废水废水中的 QACs 将减少对人类和环境的不利影响。