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细胞负载及浮游/附着/脱离状态对消毒效率的影响:以等离子体活化水灭活蜂房哈夫尼亚菌为例

Impact on disinfection efficiency of cell load and of planktonic/adherent/detached state: case of Hafnia alvei inactivation by plasma activated water.

作者信息

Kamgang-Youbi Georges, Herry Jean-Marie, Brisset Jean-Louis, Bellon-Fontaine Marie-Noëlle, Doubla Avaly, Naïtali Murielle

机构信息

INRA, AgroParisTech, Unité Mixte de Recherche 763 Bioadhésion et Hygiène des Matériaux, 25 Avenue de la République, 91 300, Massy, France.

出版信息

Appl Microbiol Biotechnol. 2008 Dec;81(3):449-57. doi: 10.1007/s00253-008-1641-9. Epub 2008 Sep 4.

Abstract

This paper describes the effects of initial microbial concentration and planktonic/adherent/detached states on the efficiency of plasma-activated water. This disinfecting solution was obtained by treating distilled water with an atmospheric pressure plasma produced by gliding electric discharges in humid air. The inactivation kinetics of planktonic cells of Hafnia alvei (selected as a bacterial model) were found to be of the first order. They were influenced by the initial microbial concentration. Efficiency decreased when the initial viable population N(0) increased, and the inactivation rate k(max) was linearly modified as a function of Log(10) (N(0)). This relation was used to compare planktonic, adherent, and detached cells independently from the level of population. Bacteria adhering to stainless steel and high-density polyethylene were also sensitive to treatment, but at a lower rate than their free-living counterparts. Moreover, cells detached from these solid substrates exhibited an inactivation rate lower than that of planktonic cells but similar to adherent bacteria. This strongly suggests the induction of a physiological modification to bacteria during the adhesion step, rendering adherent--and further detached--bacteria less susceptible to the treatment, when compared to planktonic bacteria.

摘要

本文描述了初始微生物浓度以及浮游/附着/脱离状态对等离子体活化水效率的影响。这种消毒溶液是通过在潮湿空气中利用滑动放电产生的大气压等离子体处理蒸馏水而获得的。已发现蜂房哈夫尼亚菌(选为细菌模型)的浮游细胞的失活动力学为一级动力学。它们受初始微生物浓度的影响。当初始活菌数N(0)增加时效率降低,并且失活速率k(max)作为Log(10)(N(0))的函数呈线性变化。该关系用于独立于菌数水平比较浮游、附着和脱离的细胞。附着于不锈钢和高密度聚乙烯的细菌对处理也敏感,但速率低于其自由生活的对应物。此外,从这些固体基质脱离的细胞的失活速率低于浮游细胞,但与附着细菌相似。这有力地表明在粘附步骤中细菌发生了生理变化,与浮游细菌相比,使附着的以及进一步脱离的细菌对处理的敏感性降低。

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