Department of Chemistry, Emory University, Atlanta, Georgia 30322, United States.
Department of Microbiology and Immunology, Emory University, Atlanta, Georgia 30322, United States.
ACS Infect Dis. 2024 Nov 8;10(11):3868-3879. doi: 10.1021/acsinfecdis.4c00433. Epub 2024 Oct 23.
is a major nosocomial pathogen that persists in healthcare settings despite rigorous disinfection protocols due to intrinsic mechanisms conferring resistance. We sought to systematically assess cationic biocide efficacy against this pathogen using a panel of multidrug-resistant clinical isolates. Our studies revealed widespread resistance to commercial cationic disinfectants that are the current standard of care, raising concerns about their efficacy. To address this shortcoming, we highlight a new class of quaternary phosphonium compounds that are highly effective against all members of the panel. To understand the difference in efficacy, mechanism of action studies were carried out, which identified a discrete inner-membrane selective target. Resistance selection studies implicated the SmvRA efflux system (a transcriptionally regulated, inner membrane-associated efflux system) as a major determinant of resistance. This system is also implicated in resistance to two commercial bolaamphiphile antiseptics, octenidine and chlorhexidine, which was further validated herein. In sum, this work highlights, for the first time, a discrete inner-membrane specific mechanism for the bolaamphiphile class of disinfectants that contrasts with the prevailing model of indiscriminate membrane interactions of commercial amphiphiles paving the way for future innovations in disinfectant research.
是一种主要的医院病原体,尽管有严格的消毒方案,但由于内在机制赋予了它耐药性,它仍然存在于医疗机构中。我们试图使用一组多药耐药的临床分离株系统地评估阳离子杀生物剂对这种病原体的功效。我们的研究揭示了对目前标准护理的商业阳离子消毒剂的广泛耐药性,这引起了人们对其功效的担忧。为了解决这一缺点,我们强调了一类新的季铵𬭸化合物,它们对该小组的所有成员都非常有效。为了了解功效上的差异,进行了作用机制研究,该研究确定了一个离散的内膜选择性靶标。耐药性选择研究表明 SmvRA 外排系统(一种转录调节的、内膜相关的外排系统)是耐药性的主要决定因素。该系统也与两种商业两性表面活性剂防腐剂奥替尼定和洗必泰的耐药性有关,本文进一步验证了这一点。总之,这项工作首次强调了季铵𬭸类消毒剂的一个离散的内膜特异性作用机制,与商业两性表面活性剂普遍存在的不分青红皂白的膜相互作用模型形成对比,为未来的消毒剂研究创新铺平了道路。