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评估 COUNTERFOG® SDR-F05A+ 去污系统对噬菌体ɸ29 的表面消毒效果。

Assessment of Surface Disinfection Effectiveness of Decontamination System COUNTERFOG® SDR-F05A+ Against Bacteriophage ɸ29.

机构信息

Escuela Politécnica Superior UAH, Universidad de Alcalá, Campus Universitario, Ctra. Madrid-Barcelona km 33,600, 28805, Alcalá de Henares, Spain.

Centro de Biología Molecular Severo Ochoa (CBMSO), Consejo Superior de Investigaciones Científicas (CSIC) and Universidad Autónoma de Madrid (UAM), Madrid, Spain.

出版信息

Food Environ Virol. 2022 Sep;14(3):304-313. doi: 10.1007/s12560-022-09526-z. Epub 2022 Jul 19.

Abstract

The experience of COVID19 pandemic has demonstrated the real concern of biological agents dispersed in the air and surfaces environments. Therefore, the need of a fast and large-scale disinfection method has arisen for prevention of contagion. COUNTERFOG® is an innovative technology developed for large-scale decontamination of air and surfaces. The objective of this study is to assess experimentally the effectiveness of COUNTERFOG® in disinfecting viral-contaminated surfaces. We also aim to measure the necessary time to disinfect said surfaces. Stainless steel surfaces were contaminated with bacteriophage φ29 and disinfected using COUNTERFOG® SDR-F05A+, which uses a sodium hypochlorite solution at different concentrations and for different exposure times. A log reduction over 6 logs of virus titer is obtained in 1 min with 1.2% sodium hypochlorite when the application is direct; while at a radial distance of 5 cm from the point of application the disinfection reaches a reduction of 5.5 logs in 8 min. In the same way, a higher dilution of the sodium hypochlorite concentration (0.7% NaOCl) requires more exposure time (16 min) to obtain the same log reduction (> 6 logs). COUNTERFOG® creates, in a short time and at a distance of 2 m from the point of application, a thin layer of disinfectant that covers the surfaces. The selection of the concentration and exposure time is critical for the efficacy of disinfection. These tests demonstrate that a concentration between 0.7- 1.2% sodium hypochlorite is enough for a fast and efficient ɸ29 phage inactivation. The fact that ɸ29 phage is more resistant to disinfection than SARS-CoV-2 sustains this disinfection procedure.

摘要

新冠疫情大流行的经历表明,人们真正关注的是空气中和表面环境中分散的生物制剂。因此,需要一种快速且大规模的消毒方法来预防感染。COUNTERFOG®是一种为大规模空气和表面消毒而开发的创新技术。本研究的目的是实验评估 COUNTERFOG®对污染病毒的表面进行消毒的效果。我们还旨在测量对这些表面进行消毒所需的时间。不锈钢表面用噬菌体 φ29 污染,并使用 COUNTERFOG® SDR-F05A+进行消毒,该产品使用不同浓度的次氯酸钠溶液并在不同的暴露时间下使用。当直接应用时,1.2%次氯酸钠可在 1 分钟内使病毒滴度降低 6 个对数级;而在距应用点 5cm 的放射距离处,消毒 8 分钟即可达到 5.5 个对数级的减少。同样,次氯酸钠浓度的稀释度更高(0.7%NaOCl)需要更长的暴露时间(16 分钟)才能达到相同的对数减少(>6 个对数级)。COUNTERFOG®在短时间内在距应用点 2m 的距离内产生一层薄薄的消毒剂,覆盖表面。消毒剂浓度和暴露时间的选择对消毒效果至关重要。这些测试表明,浓度在 0.7-1.2%之间的次氯酸钠足以实现快速有效的 φ29 噬菌体失活。噬菌体 φ29 比 SARS-CoV-2 更能抵抗消毒这一事实支持了这种消毒程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ba7/9458555/d666188005db/12560_2022_9526_Fig1_HTML.jpg

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