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季铵化合物与铜离子协同抗菌及消除生物膜的活性

Synergistic antibacterial and biofilm eradication activity of quaternary-ammonium compound with copper ion.

作者信息

Gao Songtai, Sun Yujun, Lu Zhong, Jiang Nan, Yao Huaiying

机构信息

Research Center for Environmental Ecology and Engineering, School of Environmental Ecology and Biological Engineering, Key Laboratory of Green Chemical Process of Ministry of Education, Wuhan Institute of Technology, Wuhan 430205, China.

Research Center for Environmental Ecology and Engineering, School of Environmental Ecology and Biological Engineering, Key Laboratory of Green Chemical Process of Ministry of Education, Wuhan Institute of Technology, Wuhan 430205, China.

出版信息

J Inorg Biochem. 2023 Jun;243:112190. doi: 10.1016/j.jinorgbio.2023.112190. Epub 2023 Mar 13.

Abstract

Antibiotics overuse and misuse increase the emergence of multidrug-resistant bacterial strains, which often leads to the failure of conventional antibiotic therapies. Even worse, the tendency of bacteria to form biofilms further increases the therapeutic difficulty, because the extracellular matrix prevents the penetration of antibiotics and triggers bacterial tolerance. Therefore, developing novel antibacterial agents or therapeutic strategies with diverse antibacterial mechanisms and destruction of bacteria biofilm is a promising way to combat bacterial infections. In the present study, the combination of quaternary ammonium compound poly(diallyl dimethyl ammonium chloride) (PDDA) with Cu was screened out to fight common pathogenic Staphylococcus aureus (S. aureus) through multi-mechanisms. This combination appeared strong synergistic antibacterial activity, and the fractional inhibitory concentration index was as low as 0.032. The synergistic antibacterial mechanism involved the destruction of the membrane function, generation of intracellular reactive oxygen, and promotion more Cu into the cytoplasm. Further, the combination of PDDA and Cu reduced the extracellular polysaccharide matrix, meanwhile killing the bacteria embedded in the biofilm. The biocompatibility study in vitro revealed this combination exhibited low cytotoxicity and hemolysis ratio even at 8 times of minimum bactericidal concentration. This work provides a novel antibacterial agents combination with higher efficiency to fight planktonic and biofilm conditions of S. aureus.

摘要

抗生素的过度使用和滥用增加了多重耐药细菌菌株的出现,这常常导致传统抗生素治疗的失败。更糟糕的是,细菌形成生物膜的趋势进一步增加了治疗难度,因为细胞外基质会阻止抗生素的渗透并引发细菌耐受性。因此,开发具有多种抗菌机制并能破坏细菌生物膜的新型抗菌剂或治疗策略是对抗细菌感染的一种有前景的方法。在本研究中,筛选出季铵化合物聚二烯丙基二甲基氯化铵(PDDA)与铜的组合,通过多种机制对抗常见致病性金黄色葡萄球菌(金黄色葡萄球菌)。这种组合表现出很强的协同抗菌活性,分级抑制浓度指数低至0.032。协同抗菌机制包括破坏膜功能、产生细胞内活性氧以及促进更多铜进入细胞质。此外,PDDA与铜的组合减少了细胞外多糖基质,同时杀死了嵌入生物膜中的细菌。体外生物相容性研究表明,即使在最低杀菌浓度的8倍时该组合仍表现出低细胞毒性和溶血率。这项工作提供了一种新型抗菌剂组合,能更有效地对抗金黄色葡萄球菌的浮游菌和生物膜状态。

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