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Microwave-Generated Steam Decontamination of N95 Respirators Utilizing Universally Accessible Materials

机译:使用普遍接触的材料进行微波产生的N95呼吸器蒸汽去污

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摘要

The severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) pandemic has caused a severe, international shortage of N95 respirators, which are essential to protect health care providers from infection. Given the contemporary limitations of the supply chain, it is imperative to identify effective means of decontaminating, reusing, and thereby conserving N95 respirator stockpiles. To be effective, decontamination must result in sterilization of the N95 respirator without impairment of respirator filtration or user fit. Although numerous methods of N95 decontamination exist, none are universally accessible. In this work, we describe a microwave-generated steam decontamination protocol for N95 respirators for use in health care systems of all sizes, geographies, and means. Using widely available glass containers, mesh from commercial produce bags, a rubber band, and a 1,100-W commercially available microwave, we constructed an effective, standardized, and reproducible means of decontaminating N95 respirators. Employing this methodology against MS2 phage, a highly conservative surrogate for SARS-CoV-2 contamination, we report an average 6-log _(10) plaque-forming unit (PFU) (99.9999%) and a minimum 5-log _(10) PFU (99.999%) reduction after a single 3-min microwave treatment. Notably, quantified respirator fit and function were preserved, even after 20 sequential cycles of microwave steam decontamination. This method provides a valuable means of effective decontamination and reuse of N95 respirators by frontline providers facing urgent need.
机译:严重的急性呼吸综合征冠状病毒2(SARS-COV-2)大流行引起了严重的N95呼吸器的缺乏,这对于保护医疗保健提供者免受感染至关重要。鉴于供应链的当代局限性,必须识别去污,重用,从而节省N95呼吸器库存的有效手段。为了有效,净化必须导致N95呼吸器的灭菌,而不会损害呼吸器过滤或用户拟合。虽然存在许多N95去污的方法,但没有普遍接近。在这项工作中,我们描述了用于N95呼吸器的微波生成的蒸汽去污方案,用于各种尺寸,地理位置和手段的医疗保健系统。使用广泛的玻璃容器,来自商业生产袋,橡皮筋和1,100-W市售微波的网,我们构建了一种有效,标准化和可重复的去污性N95呼吸器。采用这种方法,针对MS2噬菌体,一个高度保守的SARS-COV-2污染,我们报告了平均6-log _(10)斑块形成单位(PFU)(99.9999%)和最小5-log _(10 )3分钟微波处理后PFU(99.999%)减少。值得注意的是,即使在微波蒸汽净化的20个序贯循环后,也保留了量化的呼吸器配合和功能。该方法通过面对迫切需要的前线提供者提供了有效的净化和重用N95呼吸器的有价值的净化和重用。

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