Song Hyeyeon, Dang Yun-Mi, Ha Sanghyun, Ha Ji-Hyoung
Hygienic Safety and Distribution Research Group, World Institute of Kimchi, Gwangju, South Korea.
Front Microbiol. 2022 Apr 25;13:841108. doi: 10.3389/fmicb.2022.841108. eCollection 2022.
Slightly acidic electrolyzed water (SAEW), an effective non-thermal virucidal treatment, is used widely to prevent infectious viral cross-contamination. Surface disinfection technologies using ultraviolet C-light-emitting diode (UVC-LED) irradiation have recently attracted considerable attention. The SAEW sprayer technique is an efficient approach to preventing the spread of infectious viral pathogens in the public healthcare sector. Therefore, we investigated a small-scale system comprising sprayed SAEW disinfection combined with UVC-LED irradiation to inactivate the human norovirus (HuNoV) in the environment. A stainless-steel surface was inoculated with a HuNoV genogroup II genotype 4 (GII.4) to achieve maximum reduction values of 3.21 log10 genomic copies. For optimal disinfection conditions, the response surface methodology based on the Box-Behnken design revealed that the specific treatment conditions for inactivation of HuNoV GII.4 were an SAEW droplet volume of 180 μL, 30 ppm available chlorine concentration of SAEW, and a UVC-LED exposure dose of 2 mJ/cm. The results indicate that the combined disinfection treatment could efficiently prevent the spread of HuNoVs in environment. Furthermore, the quadratic polynomial equations of the 3-D response surface can be employed to predict the effects of combined disinfection treatment on HuNoV contamination on environmental surfaces. Therefore, sprayed SAEW disinfection combined with UVC-LED irradiation proposed in this study may offer insights for designing optimal control strategies and techniques to prevent the transmission of infectious diseases, particularly HuNoV.
微酸性电解水(SAEW)是一种有效的非热病毒灭活处理方法,被广泛用于预防传染性病毒的交叉污染。利用紫外线C发光二极管(UVC-LED)照射的表面消毒技术最近引起了广泛关注。SAEW喷雾器技术是预防公共卫生部门传染性病毒病原体传播的一种有效方法。因此,我们研究了一种小型系统,该系统包括喷雾SAEW消毒与UVC-LED照射相结合,以灭活环境中的人诺如病毒(HuNoV)。在不锈钢表面接种HuNoV基因II型4基因型(GII.4),以实现3.21 log10基因组拷贝的最大减少值。对于最佳消毒条件,基于Box-Behnken设计的响应面方法表明,灭活HuNoV GII.4的具体处理条件为SAEW液滴体积180 μL、SAEW有效氯浓度30 ppm以及UVC-LED暴露剂量2 mJ/cm²。结果表明,联合消毒处理可以有效预防HuNoV在环境中的传播。此外,三维响应面的二次多项式方程可用于预测联合消毒处理对环境表面HuNoV污染的影响。因此,本研究提出的喷雾SAEW消毒与UVC-LED照射相结合的方法可能为设计预防传染病尤其是HuNoV传播的最佳控制策略和技术提供见解。