Rempel David, Henneman John, Agalloco James, Crittenden Jill
Division of Occupational and Environmental Medicine, Department of Medicine, University of California, San Francisco, California, USA.
Biosecurity Research Institute, Department of Animal Sciences & Industry, Kansas State University, Manhattan, Kansas, USA.
Appl Biosaf. 2021 Jun 1;26(2):71-79. doi: 10.1089/apb.20.0042. Epub 2021 Jun 2.
During a pandemic, when the supply of N95 filtering facepiece respirators (FFRs) is limited, FFRs may be decontaminated by methods that inactivate pathogens as long as they do not damage FFR function. Hydrogen peroxide (HO) is widely used for decontamination in medical settings. To review the literature on the use of HO to decontaminate N95 FFRs and identify methods that inactivate virus and preserve FFR filtration efficiency and fit. The literature was searched for studies evaluating HO decontamination methods on inactivating SARS-CoV-2 and other viruses and microorganisms inoculated on N95 FFRs and the effects on respirator filtration efficiency and fit. Current U.S. Federal guidelines are also presented. Findings from relevant laboratory studies ( = 24) are summarized in tables. Commercially available HO decontamination systems differ on how HO is delivered, the temperature, the duration of treatment, and other factors that can impact N95 FFR filtration efficiency and fit. Some methods inactivate SARS-CoV-2 virus-contaminated N95 FFRs with >3 log attenuation, whereas other methods are yet to be evaluated. Most of the HO methods reviewed effectively decontaminate N95 FFRs without damaging FFR function. However, some methods adversely impact N95 fit or filtration efficiency, which could go undetected by the end user and compromise their protection from pathogen inhalation. When making decisions about HO decontamination of respirators, it is important to understand differences in methods, effects on different FFR models, and potential hazards to workers who manage the decontamination process.
在大流行期间,当N95过滤式面罩呼吸器(FFR)的供应有限时,只要不损害FFR功能,FFR可通过使病原体失活的方法进行消毒。过氧化氢(HO)在医疗环境中广泛用于消毒。为了回顾关于使用HO对N95 FFR进行消毒的文献,并确定使病毒失活并保持FFR过滤效率和贴合性的方法。检索文献以查找评估HO消毒方法对接种在N95 FFR上的SARS-CoV-2和其他病毒及微生物的灭活作用以及对呼吸器过滤效率和贴合性的影响的研究。还介绍了美国现行的联邦指南。相关实验室研究(n = 24)的结果汇总在表格中。市售的HO消毒系统在HO的输送方式、温度、处理持续时间以及其他可能影响N95 FFR过滤效率和贴合性的因素方面存在差异。一些方法可使受SARS-CoV-2病毒污染的N95 FFR的病毒载量降低超过3个对数,而其他方法尚未得到评估。所审查的大多数HO方法能有效对N95 FFR进行消毒而不损害其功能。然而,一些方法会对N95的贴合性或过滤效率产生不利影响,最终用户可能无法察觉,从而影响其对吸入病原体的防护。在决定对呼吸器进行HO消毒时,了解方法差异、对不同FFR型号的影响以及对管理消毒过程的工人的潜在危害非常重要。