Far-UVC (222 nm) irradiation effectively inactivates ssRNA, dsRNA, ssDNA, and dsDNA viruses as compared to germicidal UVC (254 nm).

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Photochemistry and Photobiology Pub Date : 2025-01-01 Epub Date: 2024-05-12 DOI:10.1111/php.13961
Monika, Santhosh Kumar Madugula, Kiran Kondabagil, Ambarish Kunwar
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引用次数: 0

Abstract

Ultraviolet-C (UVC) irradiation is being used as an effective approach for the disinfection of pathogenic viruses present in air, surfaces, and water. Recently, far-UVC radiation (222 nm) emitted by KrCl* (krypton-chloride) excimer lamps have been recommended for disinfecting high-risk public spaces to reduce the presence and transmission of infectious viruses owing to limited human health exposure risks as compared to germicidal UVC (254 nm). In this study, the UVC inactivation performances of individual filtered KrCl* excimer lamp (222 nm) and germicidal UVC lamp (254 nm) were determined against four viruses, bacteriophages MS2, Phi6, M13, and T4, having different genome compositions (ssRNA, dsRNA, ssDNA and dsDNA, respectively) and shapes (i.e., spherical (Phi6), linear (M13), and icosahedral (MS2 and T4)). Here, the disinfection efficacies of filtered KrCl* excimer lamp (222 nm) and germicidal UVC lamp (254 nm) were evaluated for highly concentrated virus droplets that mimic the virus-laden droplets released from the infected person and deposited on surfaces as fomites. Filtered KrCl* excimer (222 nm) showed significantly better inactivation against all viruses having different genome compositions and structures compared to germicidal UVC (254 nm). The obtained sensitivity against the filtered KrCl* excimer (222 nm) was found to be in the order, T4 > M13 > Phi6 > MS2 whereas for the germicidal UVC (254 nm) it was T4 > M13 > MS2 > Phi6. These results provide a strong basis to promote the use of filtered KrCl* excimer lamps (222 nm) in disinfecting contagious viruses and to limit the associated disease spread in public places and other high-risk areas.

与杀菌型紫外线(254 纳米)相比,远紫外线(222 纳米)辐照可有效灭活 ssRNA、dsRNA、ssDNA 和 dsDNA 病毒。
紫外线-C(UVC)辐照是对空气、物体表面和水中的致病病毒进行消毒的有效方法。与杀菌型紫外线(254 纳米)相比,KrCl*(氯氪)准分子灯发出的远紫外线辐射(222 纳米)对人体健康的暴露风险有限,因此最近被推荐用于高风险公共场所的消毒,以减少传染性病毒的存在和传播。本研究测定了单个过滤 KrCl* 准分子灯(222 nm)和紫外线杀菌灯(254 nm)对四种病毒(噬菌体 MS2、Phi6、M13 和 T4)的紫外线灭活性能,这四种病毒的基因组组成(分别为 ssRNA、dsRNA、ssDNA 和 dsDNA)和形状(即球形(Phi6)、线形(M13)和二十面体(MS2 和 T4))各不相同。在此,我们评估了过滤型 KrCl* 准分子灯(222 纳米)和紫外线杀菌灯(254 纳米)对高浓度病毒液滴的消毒效果,这些液滴模仿了从感染者身上释放出来并沉积在物体表面的病毒液滴。与紫外线杀菌灯(254 纳米)相比,经过过滤的 KrCl* 准分子灯(222 纳米)对不同基因组组成和结构的所有病毒的灭活率都明显更高。对过滤 KrCl* 准分子(222 纳米)的敏感度依次为 T4 > M13 > Phi6 > MS2,而对紫外线杀菌灯(254 纳米)的敏感度依次为 T4 > M13 > MS2 > Phi6。这些结果为推广使用过滤 KrCl* 准分子灯(222 纳米)对传染性病毒进行消毒以及限制相关疾病在公共场所和其他高风险区域的传播提供了有力的依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Photochemistry and Photobiology
Photochemistry and Photobiology 生物-生化与分子生物学
CiteScore
6.70
自引率
12.10%
发文量
171
审稿时长
2.7 months
期刊介绍: Photochemistry and Photobiology publishes original research articles and reviews on current topics in photoscience. Topics span from the primary interaction of light with molecules, cells, and tissue to the subsequent biological responses, representing disciplinary and interdisciplinary research in the fields of chemistry, physics, biology, and medicine. Photochemistry and Photobiology is the official journal of the American Society for Photobiology.
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