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过氧化氢光解杀菌活性中光波长与过氧化氢浓度之间的协同相互作用。

Synergistic interaction between wavelength of light and concentration of H₂O₂ in bactericidal activity of photolysis of H₂O₂.

作者信息

Toki Toshihide, Nakamura Keisuke, Kurauchi Michiko, Kanno Taro, Katsuda Yusuke, Ikai Hiroyo, Hayashi Eisei, Egusa Hiroshi, Sasaki Keiichi, Niwano Yoshimi

机构信息

Tohoku University Graduate School of Dentistry, 4-1 Seiryo, Aoba-ku, Sendai 980-8575, Japan.

Tohoku University Graduate School of Dentistry, 4-1 Seiryo, Aoba-ku, Sendai 980-8575, Japan.

出版信息

J Biosci Bioeng. 2015 Mar;119(3):358-62. doi: 10.1016/j.jbiosc.2014.08.015. Epub 2014 Oct 2.

Abstract

The present study aimed to evaluate the interaction between wavelength of light in the range of ultra violet A-visible and concentration of H2O2 in the reaction of photolysis of H2O2 from the point of view of hydroxyl radical (·OH) generation and the bactericidal activity. Light emitting diodes (LEDs) emitting the light at wavelengths of 365, 385, 400 and 465 nm were used at an irradiance of 1000 mW/cm(2). H2O2 was used at the final concentrations of 0, 250, 500, and 1000 mM. Quantitative analysis of ·OH generated by the LED irradiation of H2O2 were performed using an electron spin resonance-spin trapping technique. In a bactericidal assay, a bacterial suspension of Staphylococcus aureus prepared in sterile physiological saline was irradiated with the LEDs. The bactericidal activity of each test condition was evaluated by viable counts. When H2O2 was irradiated with the LEDs, ·OH was generated and bacteria were killed dependently on the concentration of H2O2 and the wavelength of LED. The two-way analysis of variance revealed that the wavelength, the H2O2 concentration and their interaction significantly affected the yield of ·OH and the bactericidal activity of the photolysis of H2O2. Therefore, it is suggested that bactericidal activity of photolysis of H2O2 could be enhanced by controlling the wavelength and the concentration of H2O2, which may contributes to shortening the treatment time and/or to reducing the concentration of H2O2.

摘要

本研究旨在从羟基自由基(·OH)生成及杀菌活性的角度,评估紫外A-可见光范围内的光波长与过氧化氢(H2O2)浓度在H2O2光解反应中的相互作用。使用发射波长为365、385、400和465 nm的发光二极管(LED),辐照度为1000 mW/cm²。H2O2的终浓度分别为0、250、500和1000 mM。采用电子自旋共振-自旋捕获技术对LED照射H2O2产生的·OH进行定量分析。在杀菌试验中,用LED照射在无菌生理盐水中制备的金黄色葡萄球菌细菌悬液。通过活菌计数评估每种测试条件的杀菌活性。当用LED照射H2O2时,会产生·OH,并且细菌的杀灭情况取决于H2O2的浓度和LED的波长。双向方差分析表明,波长、H2O2浓度及其相互作用对·OH的产生量和H2O2光解的杀菌活性有显著影响。因此,建议通过控制H2O2的波长和浓度来提高H2O2光解的杀菌活性,这可能有助于缩短治疗时间和/或降低H2O2的浓度。

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