Massachusetts Institute of Technology, Media Lab, Cambridge, Massachusetts, USA.
SecureBio, Inc., Cambridge, Massachusetts, USA.
Photochem Photobiol. 2024 May-Jun;100(3):501-520. doi: 10.1111/php.13866. Epub 2023 Nov 6.
The COVID-19 pandemic underscored the crucial importance of enhanced indoor air quality control measures to mitigate the spread of respiratory pathogens. Far-UVC is a type of germicidal ultraviolet technology, with wavelengths between 200 and 235 nm, that has emerged as a highly promising approach for indoor air disinfection. Due to its enhanced safety compared to conventional 254 nm upper-room germicidal systems, far-UVC allows for whole-room direct exposure of occupied spaces, potentially offering greater efficacy, since the total room air is constantly treated. While current evidence supports using far-UVC systems within existing guidelines, understanding the upper safety limit is critical to maximizing its effectiveness, particularly for the acute phase of a pandemic or epidemic when greater protection may be needed. This review article summarizes the substantial present knowledge on far-UVC safety regarding skin and eye exposure and highlights research priorities to discern the maximum exposure levels that avoid adverse effects. We advocate for comprehensive safety studies that explore potential mechanisms of harm, generate action spectra for crucial biological effects and conduct high-dose, long-term exposure trials. Such rigorous scientific investigation will be key to determining safe and effective levels for far-UVC deployment in indoor environments, contributing significantly to future pandemic preparedness and response.
COVID-19 大流行凸显了加强室内空气质量控制措施对于减轻呼吸道病原体传播的至关重要性。远紫外线-C(far-UVC)是一种杀菌紫外线技术,波长在 200 至 235nm 之间,已成为室内空气消毒的一种极具前景的方法。由于与传统的 254nm 上室杀菌系统相比具有更高的安全性,远紫外线-C 允许对有人居住的空间进行整个房间的直接暴露,由于整个房间的空气都在不断处理,因此可能具有更高的效果。虽然目前的证据支持在现有指南内使用远紫外线-C 系统,但了解上限安全值对于最大限度地提高其效果至关重要,特别是在大流行或流行病的急性阶段,可能需要更大的保护。这篇综述文章总结了关于皮肤和眼睛暴露的远紫外线-C 安全性的大量现有知识,并强调了研究重点,以确定避免不良反应的最大暴露水平。我们主张进行全面的安全性研究,探索潜在的危害机制,生成关键生物学效应的作用光谱,并进行高剂量、长期暴露试验。这种严格的科学研究将是确定远紫外线-C 在室内环境中安全有效部署的关键,对未来的大流行准备和应对将有重大贡献。