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表面灭活程序中的等离子体活化雾化过氧化氢(aHP)

Plasma-Activated Aerosolized Hydrogen Peroxide (aHP) in Surface Inactivation Procedures.

作者信息

Freyssenet Camille, Karlen Stéphane

机构信息

Swiss Federal Institute of Technology Lausanne, EPFL RHO DSPS, Lausanne, Switzerland.

出版信息

Appl Biosaf. 2019 Mar 1;24(1):10-19. doi: 10.1177/1535676018818559.

Abstract

INTRODUCTION

Hydrogen peroxide is a strong oxidant that possesses an antimicrobial activity. It has been successfully used in surface/room decontamination processes either under the form of hydrogen peroxide vapor (HPV) or of vaporized hydrogen peroxide (VHP). Aerosolized hydrogen peroxide (aHP) offers a third alternative. The technology relies on the dispersion of aerosols of a hydrogen peroxide solution often complemented with silver cations. aHP provides an inexpensive and safe approach to treat contaminated rooms but sometimes fails to achieve the 6-log10 reduction limit in the number of viable microorganisms.

METHODS

Here, we used a venturi-based aHP generator that generates 4 mm in size aerosols from a 12% plasma-activated hydrogen peroxide solution free of silver cations.

RESULTS & DISCUSSION: We could successfully and constantly inactivate bacterial growth from biological indicators containing at least 10 spores of placed on stainless steel discs wrapped in Tyvek pouches. We could also show that the biological indicators placed at various locations in a class II biosafety cabinet were equally inactivated, showing that hydrogen peroxide aerosols migrate through HEPA filters.

CONCLUSIONS

Considering that our method for aerosol generation is simple, reproducible, and highly effective at inactivating spores, our approach is expected to serve as a relatively cost effective alternative method for disinfecting potentially contaminated rooms or surfaces.

摘要

引言

过氧化氢是一种具有抗菌活性的强氧化剂。它已成功用于表面/房间消毒过程,其形式为过氧化氢蒸汽(HPV)或汽化过氧化氢(VHP)。雾化过氧化氢(aHP)提供了第三种选择。该技术依赖于过氧化氢溶液气溶胶的分散,通常辅以银阳离子。aHP提供了一种廉价且安全的方法来处理受污染的房间,但有时无法实现将活微生物数量减少6个对数级的限度。

方法

在此,我们使用了一种基于文丘里管的aHP发生器,该发生器从不含银阳离子的12%等离子体活化过氧化氢溶液中产生尺寸为4毫米的气溶胶。

结果与讨论

我们能够成功且持续地灭活置于包裹在特卫强袋中的不锈钢圆盘上的含有至少10个芽孢的生物指示剂中的细菌生长。我们还能够表明,置于II级生物安全柜不同位置的生物指示剂同样被灭活,这表明过氧化氢气溶胶可穿过高效空气过滤器。

结论

鉴于我们产生气溶胶的方法简单、可重复且在灭活芽孢方面非常有效,我们的方法有望成为一种相对经济高效的替代方法,用于对潜在受污染的房间或表面进行消毒。

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