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探索金属离子和季铵盐之间的抗菌相互作用,以开发协同的金属抗菌制剂。

Exploring antimicrobial interactions between metal ions and quaternary ammonium compounds toward synergistic metallo-antimicrobial formulations.

机构信息

Department of Biological Sciences, University of Calgary, Calgary, Canada.

出版信息

Microbiol Spectr. 2024 Oct 3;12(10):e0104724. doi: 10.1128/spectrum.01047-24. Epub 2024 Aug 20.

Abstract

UNLABELLED

Multi-target antimicrobial agents are considered a viable alternative to target-specific antibiotics, resistance to which emerged as a global threat. Used centuries before the discovery of conventional antibiotics, metal(loid)-based antimicrobials (MBAs), which target multiple biomolecules within the bacterial cell, are regaining research interest. However, there is a significant limiting factor-the balance between cost and efficiency. In this article, we utilize a checkerboard assay approach to explore antimicrobial combinations of MBAs with commonly used quaternary ammonium compound (QAC) antiseptics in order to discover novel combinations with more pronounced antimicrobial properties than would be expected from a simple sum of antimicrobial effects of initial components. This phenomenon, called synergy, was herein demonstrated for several mixtures of Al3+with cetyltrimethylammonium bromide (CTAB) and TeO32- with benzalkonium chloride (BAC) and didecyldimethylammonium bromide (DDAB) against planktonic and biofilm growth of ATCC27853. Biofilm growth of ATCC25922 was synergistically inhibited by the Cu2 +and benzalkonium chloride (BAC) mixture. Multiple additive mixtures were identified for both organisms. The current study observed unexpected species and growth state specificities for the synergistic combinations. The benefit of synergistic mixtures will be captured in economy/efficiency optimization for antimicrobial applications in which MBAs and QACs are presently used.

IMPORTANCE

We are entering the antimicrobial resistance era (AMR), where resistance to antibiotics is becoming more and more prevalent. In order to address this issue, various approaches are being explored. In this article, we explore for synergy between two very different antimicrobials, the antiseptic class of quaternary ammonium compounds and antimicrobial metals. These two antimicrobials have very different actions. Considering a OneHealth approach to the problem, finding synergistic mixtures allows for greater efficacy at lower concentrations, which would also address antimicrobial pollution issues.

摘要

未加说明

多靶点抗菌剂被认为是对抗生素特异性药物的可行替代品,抗生素的耐药性已成为全球威胁。金属(类)抗菌剂(MBAs)在常规抗生素被发现的几个世纪前就被使用了,它们针对细菌细胞内的多种生物分子,重新引起了研究兴趣。然而,存在一个显著的限制因素——成本和效率之间的平衡。在本文中,我们利用棋盘试验方法来探索 MBA 与常用季铵化合物(QAC)消毒剂的抗菌组合,以发现具有比初始成分的抗菌效果之和更明显抗菌特性的新型组合。这种现象称为协同作用,本文针对几种 Al3+与十六烷基三甲基溴化铵(CTAB)和 TeO32-与苯扎氯铵(BAC)和双十烷基二甲基溴化铵(DDAB)的混合物对 ATCC27853 浮游生物和生物膜生长的协同作用进行了证明。Cu2+与苯扎氯铵(BAC)混合物对 ATCC25922 的生物膜生长具有协同抑制作用。对于两种生物,都确定了多个添加剂混合物。本研究观察到协同组合具有出乎意料的物种和生长状态特异性。在当前 MBA 和 QAC 目前用于抗菌应用的经济/效率优化中,将利用协同混合物的优势。

重要性

我们正进入抗生素耐药性时代(AMR),抗生素耐药性越来越普遍。为了解决这个问题,正在探索各种方法。在本文中,我们探索了两种非常不同的抗菌剂——季铵化合物的消毒剂类和抗菌金属之间的协同作用。这两种抗菌剂的作用方式非常不同。考虑到一种综合健康方法来解决这个问题,找到协同混合物可以在较低浓度下实现更高的功效,这也将解决抗菌污染问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8015/11448152/9fe3b61ce10d/spectrum.01047-24.f001.jpg

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