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使用杀菌紫外线C(UVC)照射设备对受SARS-CoV-2污染的N95口罩进行可扩展、有效且快速的去污处理。

Scalable, effective, and rapid decontamination of SARS-CoV-2 contaminated N95 respirators using germicidal ultraviolet C (UVC) irradiation device.

作者信息

Rathnasinghe Raveen, Karlicek Robert F, Schotsaert Michael, Koffas Mattheos, Arduini Brigitte L, Jangra Sonia, Wang Bowen, Davis Jason L, Alnaggar Mohammed, Costa Anthony, Vincent Richard, García-Sastre Adolfo, Vashishth Deepak, Balchandani Priti

机构信息

Department of Microbiology, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA.

Graduate School of Biomedical Sciences, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA.

出版信息

Sci Rep. 2021 Oct 7;11(1):19970. doi: 10.1038/s41598-021-99431-5.

Abstract

Particulate respirators such as N95s are an essential component of personal protective equipment (PPE) for front-line workers. This study describes a rapid and effective UVC irradiation system that would facilitate the safe re-use of N95 respirators and provides supporting information for deploying UVC for decontamination of SARS-CoV-2 during the COVID-19 pandemic. To assess the inactivation potential of the proposed UVC germicidal device as a function of time by using 3 M 8211-N95 particulate respirators inoculated with SARS-CoV-2. A germicidal UVC device to deliver tailored UVC dose was developed and test coupons (2.5 cm) of the 3 M-N95 respirator were inoculated with 10 plaque-forming units (PFU) of SARS-CoV-2 and were UV irradiated. Different exposure times were tested (0-164 s) by fixing the distance between the lamp and the test coupon to 15.2 cm while providing an exposure of at least 5.43 mWcm. Primary measure of outcome was titration of infectious virus recovered from virus-inoculated respirator test coupons after UVC exposure. Other measures included the method validation of the irradiation protocol, using lentiviruses (biosafety level-2 agent) and establishment of the germicidal UVC exposure protocol. An average of 4.38 × 10 PFU ml (SD 772.68) was recovered from untreated test coupons while 4.44 × 10 PFU ml (SD 203.67), 4.00 × 10 PFU ml (SD 115.47), 1.56 × 10 PFU ml (SD 76.98) and 4.44 × 10 PFU ml (SD 76.98) was recovered in exposures 2, 6, 18 and 54 s per side respectively. The germicidal device output and positioning was monitored and a minimum output of 5.43 mW cm was maintained. Infectious SARS-CoV-2 was not detected by plaque assays (minimal level of detection is 67 PFU ml) on N95 respirator test coupons when irradiated for 120 s per side or longer suggesting 3.5 log reduction in 240 s of irradiation, 1.3 J cm. A scalable germicidal UVC device to deliver tailored UVC dose for rapid decontamination of SARS-CoV-2 was developed. UVC germicidal irradiation of N95 test coupons inoculated with SARS-CoV-2 for 120 s per side resulted in 3.5 log reduction of virus. These data support the reuse of N95 particle-filtrate apparatus upon irradiation with UVC and supports use of UVC-based decontamination of SARS-CoV-2 during the COVID-19 pandemic.

摘要

诸如N95口罩之类的颗粒物呼吸器是一线工作人员个人防护装备(PPE)的重要组成部分。本研究描述了一种快速有效的紫外线(UVC)照射系统,该系统将有助于N95呼吸器的安全重复使用,并为在2019冠状病毒病(COVID-19)大流行期间部署UVC对严重急性呼吸综合征冠状病毒2(SARS-CoV-2)进行消毒提供支持信息。通过使用接种了SARS-CoV-2的3M 8211-N95颗粒物呼吸器,评估所提议的UVC杀菌装置随时间变化的灭活潜力。开发了一种可提供定制UVC剂量的杀菌UVC装置,将3M-N95呼吸器的测试样本(2.5厘米)接种10个SARS-CoV-2噬斑形成单位(PFU)后进行紫外线照射。通过将灯与测试样本之间的距离固定为15.2厘米,同时提供至少5.43毫瓦/平方厘米的照射量,测试了不同的暴露时间(0至164秒)。主要的结果测量是对UVC照射后从接种病毒的呼吸器测试样本中回收的传染性病毒进行滴定。其他测量包括使用慢病毒(生物安全2级试剂)对照射方案进行方法验证以及确定杀菌UVC暴露方案。从未经处理的测试样本中平均回收4.38×10 PFU/毫升(标准差772.68),而在每侧分别暴露2秒、6秒、18秒和54秒后回收的量分别为4.44×10 PFU/毫升(标准差203.67)、4.00×10 PFU/毫升(标准差115.47)、1.56×10 PFU/毫升(标准差76.98)和4.44×10 PFU/毫升(标准差76.98)。对杀菌装置输出和定位进行了监测,并保持最低输出为5.43毫瓦/平方厘米。当每侧照射120秒或更长时间时,在N95呼吸器测试样本上通过噬斑测定法未检测到传染性SARS-CoV-2(最低检测水平为67 PFU/毫升),这表明在240秒照射(1.3焦耳/平方厘米)下病毒减少了3.5个对数级。开发了一种可扩展的杀菌UVC装置以提供定制的UVC剂量,用于快速对SARS-CoV-2进行消毒。对接种SARS-CoV-2的N95测试样本每侧进行120秒的UVC杀菌照射导致病毒减少3.5个对数级。这些数据支持在UVC照射后重复使用N95颗粒过滤装置,并支持在COVID-19大流行期间使用基于UVC的SARS-CoV-2消毒方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea4c/8497543/787298faf7a5/41598_2021_99431_Fig1_HTML.jpg

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