Pereira Ana P, Antunes Patrícia, Peixe Luísa, Freitas Ana R, Novais Carla
UCIBIO-Applied Molecular Biosciences Unit, Laboratory of Microbiology, Department of Biological Sciences, Faculty of Pharmacy, University of Porto, Porto, Portugal.
Associate Laboratory i4HB - Institute for Health and Bioeconomy, Faculty of Pharmacy, University of Porto, Porto, Portugal.
Front Microbiol. 2024 Jun 25;15:1392018. doi: 10.3389/fmicb.2024.1392018. eCollection 2024.
Cationic biocides (CBs), such as quaternary ammonium compounds and biguanides, are critical for controlling the spread of bacterial pathogens like spp., a leading cause of multidrug-resistant healthcare-associated infections. The widespread use of CBs in recent decades has prompted concerns about the potential emergence of spp. populations exhibiting resistance to both biocides and antibiotics. Such concerns arise from their frequent exposure to subinhibitory concentrations of CBs in clinical, food chain and diverse environmental settings. This comprehensive narrative review aimed to explore the complexity of the ' response to CBs and of their possible evolution toward resistance. To that end, CBs' activity against diverse spp. collections, the prevalence and roles of genes associated with decreased susceptibility to CBs, and the potential for co- and cross-resistance between CBs and antibiotics are reviewed. Significant methodological and knowledge gaps are identified, highlighting areas that future studies should address to enhance our comprehension of the impact of exposure to CBs on spp. populations' epidemiology. This knowledge is essential for developing effective One Health strategies that ensure the continued efficacy of these critical agents in safeguarding Public Health.
阳离子杀菌剂(CBs),如季铵化合物和双胍类,对于控制像[具体菌种]这样的细菌病原体传播至关重要,[具体菌种]是耐多药医疗相关感染的主要原因。近几十年来CBs的广泛使用引发了对[具体菌种]群体可能出现对杀菌剂和抗生素均耐药的担忧。这种担忧源于它们在临床、食物链和各种环境中频繁接触亚抑制浓度的CBs。这篇全面的叙述性综述旨在探讨[具体菌种]对CBs的反应复杂性及其可能向耐药性演变的情况。为此,综述了CBs对不同[具体菌种]菌株集合的活性、与CBs敏感性降低相关基因的流行情况和作用,以及CBs与抗生素之间的交叉耐药和共同耐药可能性。确定了重大的方法学和知识差距,突出了未来研究应解决的领域,以增强我们对接触CBs对[具体菌种]群体流行病学影响的理解。这些知识对于制定有效的“同一健康”策略至关重要,这些策略可确保这些关键药剂在保障公众健康方面持续有效。