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A comparative study for the inactivation of multidrug resistance bacteria using dielectric barrier discharge and nano-second pulsed plasma

机译:介电势垒放电和纳秒脉冲等离子体灭活多药耐药细菌的比较研究

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摘要

Bacteria can be inactivated through various physical and chemical means, and these have always been the focus of extensive research. To further improve the methodology for these ends, two types of plasma systems were investigated: nano-second pulsed plasma (NPP) as liquid discharge plasma and an Argon gas-feeding dielectric barrier discharge (Ar-DBD) as a form of surface plasma. To understand the sterilizing action of these two different plasma sources, we performed experiments with Staphylococcus aureus (S. aureus) bacteria (wild type) and multidrug resistant bacteria (Penicillum-resistant, Methicillin-resistant and Gentamicin-resistant). We observed that both plasma sources can inactivate both the wild type and multidrug-resistant bacteria to a good extent. Moreover, we observed a change in the surface morphology, gene expression and β-lactamase activity. Furthermore, we used X-ray photoelectron spectroscopy to investigate the variation in functional groups (C-H/C-C, C-OH and C=O) of the peptidoglycan (PG) resulting from exposure to plasma species. To obtain atomic scale insight in the plasma-cell interactions and support our experimental observations, we have performed molecular dynamics simulations to study the effects of plasma species, such as OH, H2O2, O, O3, as well as O2 and H2O, on the dissociation/formation of above mentioned functional groups in PG.
机译:细菌可以通过各种物理和化学方法灭活,这些一直是广泛研究的重点。为了进一步改善用于这些目的的方法,研究了两种类型的等离子体系统:纳秒脉冲等离子体(NPP)作为液体放电等离子体,以及氩气进给介质阻挡放电(Ar-DBD)作为表面等离子体。为了了解这两种不同血浆来源的杀菌作用,我们对金黄色葡萄球菌(野生型)和耐多药细菌(耐青霉素,耐甲氧西林和耐庆大霉素)进行了实验。我们观察到两种血浆来源都可以在很大程度上灭活野生型和耐多药细菌。此外,我们观察到了表面形态,基因表达和β-内酰胺酶活性的变化。此外,我们使用X射线光电子能谱研究了暴露于血浆中的肽聚糖(PG)的官能团(C-H / C-C,C-OH和C = O)的变化。为了获得有关等离子体与细胞相互作用的原子尺度见解并支持我们的实验观察,我们进行了分子动力学模拟,以研究诸如OH,H2O2,O,O3以及O2和H2O等等离子体物质对原子团的影响。 PG中上述官能团的解离/形成。

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