Park Jin-Soo, Sung Bong-Jo, Yoon Kyung-Soo, Jeong Choon-Soo
Department of Biological Science, University of Ulsan, Ulsan, 44610, South Korea.
L&E Research Center, LG Electronics, Seoul, South Korea.
BMC Microbiol. 2016 Jul 30;16(1):173. doi: 10.1186/s12866-016-0785-5.
Several mechanisms have been suggested for the bactericidal action of ionizers including electrical phenomena, effects of negative and positive ions and electrostatic repulsion. Negative and positive ions have indeed been shown to have bactericidal effects. In addition, since ozone is generated along with ions, these may contribute to the bacterial killing. In this study, we used a newly developed ionizer, which generates a relatively low concentration of ozone, to determine whether its effect on bacterial cells were due to ions or ozone, and, if ions, how the ions exerted their effects.
The effect of ions on bacterial killing was compared with that of the ozone produced using an ion trap to remove the ions. The ionizer had the ability to kill the bacteria, and ion capture dramatically reduced its bactericidal effect, indicating that the ozone generated had little or no bactericidal effect under these conditions, and the ions produced were responsible for almost all the bacterial killing. Operation of the ionizer increased the level of 8-oxo-dG, a marker of oxidative DNA damage, and decreased aconitase activity, which is known to be sensitive to ROS. The ionizer further affected the adenylate energy charge of bacterial cells. Removal of the ions with the ion trap greatly reduced all these effects.
These results indicate that negative and positive ions generated by the ionizer are responsible for inducing oxidative stress and so reducing bacterial survival.
关于离子发生器的杀菌作用,已经提出了几种机制,包括电现象、负离子和正离子的作用以及静电排斥。事实上,负离子和正离子已被证明具有杀菌作用。此外,由于离子产生的同时会生成臭氧,这些可能有助于杀灭细菌。在本研究中,我们使用了一种新开发的离子发生器,其产生的臭氧浓度相对较低,以确定其对细菌细胞的作用是由于离子还是臭氧,如果是离子,离子是如何发挥作用的。
将离子对细菌杀灭的作用与使用离子阱去除离子后产生的臭氧的作用进行了比较。离子发生器具有杀灭细菌的能力,离子捕获显著降低了其杀菌效果,表明在这些条件下产生的臭氧几乎没有杀菌作用,产生的离子几乎对所有细菌杀灭负责。离子发生器的运行增加了8-氧代-dG的水平,这是氧化DNA损伤的标志物,并降低了乌头酸酶活性,已知该酶对活性氧敏感。离子发生器进一步影响细菌细胞的腺苷酸能荷。用离子阱去除离子大大降低了所有这些影响。
这些结果表明,离子发生器产生的负离子和正离子负责诱导氧化应激,从而降低细菌存活率。