Research Group in Advanced Oxidation Processes (AdOx), Chemical Systems Engineering Center-Department of Chemical Engineering, University of São Paulo, São Paulo, Brazil.
Scientific Platform Pasteur USP (SPPU), University of São Paulo, São Paulo, Brazil.
Photochem Photobiol Sci. 2022 Nov;21(11):1915-1929. doi: 10.1007/s43630-022-00268-2. Epub 2022 Jul 21.
As part of efforts to combat the Covid-19 pandemic and decrease the high transmissibility of the new coronavirus, SARS-CoV-2, effective inactivation strategies, such as UV-C decontamination technologies, can be reliably disseminated and well-studied. The present study investigated the susceptibility of a high viral load of SARS-CoV-2 in filtering facepiece respirators (FFR) N95, surgical mask, cotton fabric mask and N95 straps under three different doses of UV-C, applying both real-time PCR (qPCR) and plaque formation assays to quantify viral load reduction and virus infectivity, respectively. The results show that more than 95% of the amount of SARS-CoV-2 RNA could be reduced after 10 min of UV-C exposure (0.93 J cm per side) in FFR N95 and surgical masks and, after 5 min of UV-C treatment (0.46 J cm per side) in fabric masks. Furthermore, the analysis of viable coronaviruses after these different UV-C treatments demonstrated that the lowest applied dose is sufficient to decontaminate all masks ([Formula: see text] 3-log reduction of the infective viral load, > 99.9% reduction). However, for the elastic strap of N95 respirators, a UV-C dose three times greater than that used in masks (1.4 J cm per side) is required. The findings suggest that the complete decontamination of masks can be performed effectively and safely in well-planned protocols for pandemic crises or as strategies to reduce the high consumption and safe disposal of these materials in the environment.
作为应对新冠疫情和降低新型冠状病毒 SARS-CoV-2 高传播性的努力的一部分,有效的灭活策略,如 UV-C 消毒技术,可以得到可靠的传播和深入研究。本研究调查了在三种不同剂量的 UV-C 下,过滤式面罩(FFR)N95、外科口罩、棉织物口罩和 N95 带的高病毒载量 SARS-CoV-2 的敏感性,分别应用实时 PCR(qPCR)和噬斑形成测定法来定量病毒载量减少和病毒感染性。结果表明,在 FFR N95 和外科口罩中,经过 10 分钟的 UV-C 照射(每侧 0.93 J cm),超过 95%的 SARS-CoV-2 RNA 量可以减少,在织物口罩中,经过 5 分钟的 UV-C 处理(每侧 0.46 J cm)后,超过 95%的 SARS-CoV-2 RNA 量可以减少。此外,对这些不同 UV-C 处理后的存活冠状病毒的分析表明,最低应用剂量足以对所有口罩进行消毒([公式:见正文]对感染性病毒载量减少 3 个对数,减少率超过 99.9%)。然而,对于 N95 口罩的弹性带,需要比口罩中使用的 UV-C 剂量大三倍(每侧 1.4 J cm)。这些发现表明,可以在有计划的大流行危机应对协议或作为减少这些材料在环境中高消耗和安全处置的策略中,有效地、安全地对口罩进行完全消毒。