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载氧化铜多功能阴离子交换剂的杀菌活性-细菌类型和介质组成的影响。

Biocidal activity of multifunctional cuprite-doped anion exchanger - Influence of bacteria type and medium composition.

机构信息

Department of Industrial Chemistry, Wroclaw University of Economics and Business, 53-345 Wroclaw, Poland.

Department of Industrial Chemistry, Wroclaw University of Economics and Business, 53-345 Wroclaw, Poland.

出版信息

Sci Total Environ. 2023 Sep 15;891:164667. doi: 10.1016/j.scitotenv.2023.164667. Epub 2023 Jun 5.

Abstract

The study presents unconventional, bifunctional, heterogeneous antimicrobial agents - CuO-loaded anion exchangers. The synergetic effect of a cuprous oxide deposit and polymeric support with trimethyl ammonium groups was studied against the reference strains of Enterococcus faecalis ATCC 29212 and Pseudomonas aeruginosa ATCC 27853. Biological testing (minimum bactericidal concentration, MBC), time- and dose-dependent bactericidal effect (under different conditions - medium composition and static/dynamic culture) demonstrated promising antimicrobial activity and confirmed its multimode character. The standard values of MBC, for all studied hybrid polymers and bacteria, were similar (64-128 mg/mL). However, depending on the medium conditions, due to the copper release into the bulk solution, bacteria were actively killed even at much lower doses of the hybrid polymer (25 mg/mL) and low Cu(II) concentrations in solution (0.01 mg/L). Simultaneously, confocal microscopic studies confirmed the effective inhibition of bacterial adhesion and biofilm formation on their surface. The studies conducted under different conditions showed also the influence of the structure and physical properties of studied materials on the biocidal efficacy and an antimicrobial action mechanism was proposed that could be significantly affected by electrostatic interactions and copper release to the solution. Although the antibacterial activity was also dependent on various strategies of bacterial cell resistance to heavy metals present in the aqueous medium, the studied hybrid polymers are versatile and efficient biocidal agents against bacteria of both types, Gram-positive and Gram-negative. Therefore, they can be a convenient alternative for point-of-use water disinfection systems providing water quality in medical devices such as dental units, spa equipment, and aesthetic devices used in the cosmetic sector.

摘要

该研究提出了非传统的、双功能的、多相抗菌剂 - 负载氧化铜的阴离子交换剂。研究了氧化铜沉积物和带有三甲铵基团的聚合物载体的协同作用对粪肠球菌 ATCC 29212 和铜绿假单胞菌 ATCC 27853 的参考菌株的抗菌作用。生物测试(最小杀菌浓度,MBC)、时间和剂量依赖性杀菌效果(在不同条件下 - 培养基组成和静态/动态培养)表明其具有有前景的抗菌活性,并证实了其多模式特性。对于所有研究的混合聚合物和细菌,标准 MBC 值相似(64-128 mg/mL)。然而,根据培养基条件,由于铜向本体溶液中的释放,即使在混合聚合物的低得多剂量(25 mg/mL)和溶液中低 Cu(II)浓度(0.01 mg/L)下,细菌也被积极杀死。同时,共聚焦显微镜研究证实了有效抑制其表面上细菌的粘附和生物膜形成。在不同条件下进行的研究还表明,研究材料的结构和物理性质对杀菌功效的影响,提出了一种抗菌作用机制,该机制可能会受到静电相互作用和铜向溶液中的释放的显著影响。尽管抗菌活性还取决于细菌细胞对存在于水介质中的重金属的各种抵抗策略,但研究的混合聚合物是针对革兰氏阳性和革兰氏阴性细菌的多功能和有效的杀菌剂。因此,它们可以作为替代用于即时使用的水消毒系统,为牙科器械、水疗设备和用于美容行业的美容设备等医疗设备提供水质。

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