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通过在水中施加电晕放电来使黑色枯草芽孢杆菌的孢子和营养体两种形式失活。

Inactivation of Bacillus subtilis var. niger of both spore and vegetative forms by means of corona discharges applied in water.

机构信息

CERPEM, Maison de la Technopole, 6 rue Léonard de Vinci, 53000 Laval, France.

出版信息

Water Res. 2013 Mar 1;47(3):1381-9. doi: 10.1016/j.watres.2012.12.011. Epub 2012 Dec 19.

DOI:10.1016/j.watres.2012.12.011
PMID:23286986
Abstract

Spores are dormant units of bacteria resistant to numerous disinfection methods. Additionally, the effects on bacteria of repetitive electrical discharges in water by used of the so-called "corona discharges" or streamer are poorly described. In this study vegetative and spore forms of Bacillus subtilis var. niger were subjected to these discharges. To generate corona discharges in water, a Marx generator capable of delivering 60-90 kV was used with a coaxial chamber of treatment. Vegetative and spore form reductions were defined using colony-forming unit counting. Proteins extracts were separated by two-dimensional electrophoresis and spots of interest were characterized by mass spectrometry. Shock waves were assessed by the diminution of liposome size and OD(400 nm). The results show a decrease in bacteria viability of 2 log(10) after 1000 discharges on the vegetative form and 4 log(10) after 10,000 discharges on the spores. Two-dimensional electrophoresis showed that the streamers impact the regulation of several proteins in the vegetative forms with UniProt ID: P80861, Q06797, P80244, C0ZI91, respectively. The reduction appears to be due, in part, to hydrogen peroxide (H(2)O(2)) generated by the corona discharges while spore deactivation remained insensitive to these chemicals. The spore eradication was associated to shock waves induced by the discharges but not H(2)O(2). Corona discharges appear as a prospective method for eradication of spores in water. The corona discharges can be an efficient method for decontamination processes of waste water.

摘要

芽孢是细菌的休眠单位,能够抵抗多种消毒方法。此外,重复的电放电对细菌的影响在水中利用所谓的“电晕放电”或流光的效果描述很差。在这项研究中,枯草芽孢杆菌 var. niger 的营养体和芽孢形式都受到了这些放电的影响。为了在水中产生电晕放电,使用了一个能够输送 60-90kV 的 Marx 发生器,并使用同轴处理室。使用集落形成单位计数来定义营养体和芽孢形式的减少。蛋白质提取物通过二维电泳分离,并用质谱法对感兴趣的斑点进行了表征。通过脂质体大小和 OD(400nm)的减少来评估冲击波。结果表明,在 1000 次放电后,营养体的细菌活力下降了 2 个对数(10),而在 10000 次放电后,芽孢的细菌活力下降了 4 个对数(10)。二维电泳表明,流光会影响营养体中几种蛋白质的调节,UniProt ID:P80861、Q06797、P80244、C0ZI91 分别为。这种减少似乎部分是由于电晕放电产生的过氧化氢(H(2)O(2)),而芽孢失活对这些化学物质仍然不敏感。芽孢的根除与放电引起的冲击波有关,但与 H(2)O(2)无关。电晕放电似乎是一种在水中消灭芽孢的有前途的方法。电晕放电可以成为废水净化过程的有效方法。

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