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UVC 光谱范围内 SARS-CoV-2 的紫外线灭活:KrCl*准分子、汞蒸气和发光二极管 (LED) 光源。

UV Inactivation of SARS-CoV-2 across the UVC Spectrum: KrCl* Excimer, Mercury-Vapor, and Light-Emitting-Diode (LED) Sources.

机构信息

Department of Civil, Environmental, and Architectural Engineering, University of Colorado Bouldergrid.266190.a, Boulder, Colorado, USA.

Department of Environmental Science, University of Arizonagrid.134563.6, Tucson, Arizona, USA.

出版信息

Appl Environ Microbiol. 2021 Oct 28;87(22):e0153221. doi: 10.1128/AEM.01532-21. Epub 2021 Sep 8.

Abstract

Effective disinfection technology to combat severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) can help reduce viral transmission during the ongoing COVID-19 global pandemic and in the future. UV devices emitting UVC irradiation (200 to 280 nm) have proven to be effective for virus disinfection, but limited information is available for SARS-CoV-2 due to the safety requirements of testing, which is limited to biosafety level 3 (BSL3) laboratories. In this study, inactivation of SARS-CoV-2 in thin-film buffered aqueous solution (pH 7.4) was determined across UVC irradiation wavelengths of 222 to 282 nm from krypton chloride (KrCl*) excimers, a low-pressure mercury-vapor lamp, and two UVC light-emitting diodes. Our results show that all tested UVC devices can effectively inactivate SARS-CoV-2, among which the KrCl* excimer had the best disinfection performance (i.e., highest inactivation rate). The inactivation rate constants of SARS-CoV-2 across wavelengths are similar to those for murine hepatitis virus (MHV) from our previous investigation, suggesting that MHV can serve as a reliable surrogate of SARS-CoV-2 with a lower BSL requirement (BSL2) during UV disinfection tests. This study provides fundamental information on UVC's action on SARS-CoV-2 and guidance for achieving reliable disinfection performance with UVC devices. UV light is an effective tool to help stem the spread of respiratory viruses and protect public health in commercial, public, transportation, and health care settings. For effective use of UV, there is a need to determine the efficiency of different UV wavelengths in killing pathogens, specifically SARS-CoV-2, to support efforts to control the ongoing COVID-19 global pandemic and future coronavirus-caused respiratory virus pandemics. We found that SARS-CoV-2 can be inactivated effectively using a broad range of UVC wavelengths, and 222 nm provided the best disinfection performance. Interestingly, 222-nm irradiation has been found to be safe for human exposure up to thresholds that are beyond those effective for inactivating viruses. Therefore, applying UV light from KrCl* excimers in public spaces can effectively help reduce viral aerosol or surface-based transmissions.

摘要

有效消毒技术对抗严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)有助于减少当前 COVID-19 大流行期间和未来的病毒传播。已经证明,发射 UVC 辐射(200 至 280nm)的紫外线设备对病毒消毒非常有效,但是由于测试的安全要求,对于 SARS-CoV-2 的信息有限,仅限于生物安全 3 级(BSL3)实验室。在这项研究中,确定了从氪氯(KrCl*)准分子、低压汞蒸气灯和两个 UVC 发光二极管的 222 至 282nm 的 UVC 照射波长下,薄膜缓冲水溶液(pH 7.4)中 SARS-CoV-2 的失活情况。我们的结果表明,所有测试的 UVC 设备都可以有效地使 SARS-CoV-2失活,其中 KrCl准分子具有最佳的消毒性能(即最高的失活率)。SARS-CoV-2 在波长范围内的失活速率常数与我们之前研究中的鼠肝炎病毒(MHV)相似,这表明在 UV 消毒测试中,MHV 可以作为 SARS-CoV-2 的可靠替代品,其所需的生物安全级别较低(BSL2)。这项研究提供了有关 UVC 对 SARS-CoV-2 作用的基本信息,并为使用 UVC 设备实现可靠的消毒性能提供了指导。紫外线是帮助遏制呼吸道病毒传播和保护商业、公共、交通和医疗保健场所公共卫生的有效工具。为了有效使用紫外线,需要确定不同紫外线波长在杀死病原体(特别是 SARS-CoV-2)方面的效率,以支持控制当前 COVID-19 大流行和未来由冠状病毒引起的呼吸道病毒大流行的努力。我们发现,使用广泛的 UVC 波长可以有效地使 SARS-CoV-2 失活,而 222nm 提供了最佳的消毒性能。有趣的是,已经发现 222nm 辐射对人类的暴露是安全的,其阈值超过了有效灭活病毒的阈值。因此,在公共场所应用 KrCl准分子的紫外线可以有效地帮助减少病毒气溶胶或基于表面的传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/526f/8552892/8f4453745893/aem.01532-21-f001.jpg

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