Doctoral School, University of Silesia, Bankowa 14, Katowice 40-032, Poland.
Institute of Biology, Biotechnology and Environmental Protection, Faculty of Natural Sciences, University of Silesia, Jagiellońska 29, Katowice 40-032, Poland.
J Hazard Mater. 2023 Mar 15;446:130728. doi: 10.1016/j.jhazmat.2023.130728. Epub 2023 Jan 4.
Controversial and inconsistent findings on the toxicity of metallic nanoparticles (NPs) against many bacteria are common in recorded studies; therefore, further advanced experimental work is needed to elucidate the mechanisms underlying nanotoxicity. This study deciphered the direct effects of Ag-NPs, Cu-NPs, ZnO-NPs and TiO-NPs on membrane permeability, cytoplasmic leakage, ATP level, ATPase activity and fatty acid profiling of Escherichia coli, Bacillus cereus and Staphylococcus epidermidis as model microorganisms. A multifaceted analysis of all collected results indicated the different influences of individual NPs on the measured parameters depending on their type and concentration. Predominantly, membrane permeability was correlated with increased cytoplasmic leakage, reduced total ATP levels and ATPase activity. The established fatty acid profiles were unique and concerned various changes in the percentages of hydroxyl, cyclopropane, branched and unsaturated fatty acids. Decisively, E. coli was more susceptible to changes in measured parameters than B. cereus and S. epidermidis. Also, it was established that ZnO-NPs and Cu-NPs had a major differentiating impact on studied parameters. Additionally, bacterial cell imaging using scanning electron microscopy elucidated different NPs distributions on the cell surface. The presented results are believed to provide novel, valuable and accumulated knowledge in the understanding of NPs action on bacterial membranes.
在记录的研究中,关于金属纳米粒子(NPs)对许多细菌的毒性的争议和不一致的发现很常见;因此,需要进一步进行先进的实验工作,以阐明纳米毒性的机制。本研究揭示了 Ag-NPs、Cu-NPs、ZnO-NPs 和 TiO-NPs 对大肠杆菌、蜡状芽孢杆菌和表皮葡萄球菌作为模型微生物的膜通透性、细胞质渗漏、ATP 水平、ATP 酶活性和脂肪酸谱的直接影响。对所有收集到的结果进行多方面分析表明,根据 NPs 的类型和浓度,个别 NPs 对测量参数的影响不同。主要是,膜通透性与细胞质渗漏增加、总 ATP 水平和 ATP 酶活性降低有关。建立的脂肪酸谱是独特的,涉及羟基、环丙烷、支链和不饱和脂肪酸百分比的各种变化。大肠杆菌比蜡状芽孢杆菌和表皮葡萄球菌更容易受到测量参数变化的影响。此外,还确定了 ZnO-NPs 和 Cu-NPs 对研究参数有重大区分作用。此外,使用扫描电子显微镜对细菌细胞成像揭示了不同 NPs 在细胞表面的分布。所呈现的结果被认为在理解 NPs 对细菌膜的作用方面提供了新的、有价值的和累积的知识。