Moreau M, Feuilloley M G J, Veron W, Meylheuc T, Chevalier S, Brisset J-L, Orange N
Laboratory of Cold Microbiology UPRES EA 2123, University of Rouen, Evreux, France.
Appl Environ Microbiol. 2007 Sep;73(18):5904-10. doi: 10.1128/AEM.00662-07. Epub 2007 Jul 20.
Gliding arc (glidarc) discharge is a physicochemical technique for decontamination at atmospheric pressure and ambient temperature. It leads to the destruction of bacterial phytopathogens responsible for important losses in industrial agriculture, namely, Erwinia spp., without the formation of resistant forms. We investigated the effect of a novel optimized prototype allowing bacterial killing without lag time. This prototype also decreases the required duration of treatment by 50%. The study of the time course effect of the process on bacterial morphology suggests that glidarc induces major alterations of the bacterial membrane. We showed that glidarc causes the release of bacterial genomic DNA. By contrast, an apparent decrease in the level of extractible lipopolysaccharide was observed; however, no changes in the electrophoretic pattern and cytotoxic activity of the macromolecule were noted. Analysis of extractible proteins from the outer membrane of the bacteria revealed that glidarc discharge induces the release of these proteins from the lipid environment, but may also be responsible for protein dimerization and/or aggregation. This effect was not observed in secreted enzymatic proteins, such as pectate lyase. Analysis of the data supports the hypothesis that the plasma generated by glidarc discharge is acting essentially through oxidative mechanisms. Furthermore, these results indicate that, in addition to effectively destroying bacteria, glidarc discharge should be used to improve the extraction of bacterial molecules.
滑动弧放电是一种在常压和常温下进行去污的物理化学技术。它能导致对工业农业造成重大损失的细菌性植物病原体(即欧文氏菌属)的破坏,且不会形成抗性形式。我们研究了一种新型优化原型的效果,该原型可实现无延迟的细菌杀灭。此原型还将所需的处理时间缩短了50%。对该过程对细菌形态的时间进程影响的研究表明,滑动弧会引起细菌膜的重大改变。我们发现滑动弧会导致细菌基因组DNA的释放。相比之下,可提取脂多糖的水平明显下降;然而,该大分子的电泳图谱和细胞毒性活性未观察到变化。对细菌外膜可提取蛋白质的分析表明,滑动弧放电会促使这些蛋白质从脂质环境中释放出来,但也可能导致蛋白质二聚化和/或聚集。在分泌的酶蛋白(如果胶酸裂解酶)中未观察到这种效应。数据分析支持了滑动弧放电产生的等离子体主要通过氧化机制起作用的假设。此外,这些结果表明,除了有效杀灭细菌外,滑动弧放电还应用于改善细菌分子的提取。