Comparing the Efficacy of Formaldehyde with Hydrogen Peroxide Fumigation on Infectious Bronchitis Virus.

IF 0.5 Q4 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Applied Biosafety Pub Date : 2020-06-01 DOI:10.1177/1535676020909998
Jamie Stuart, John Chewins, Jason Tearle
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引用次数: 6

Abstract

Background: The recent reclassification of formaldehyde as a presumed carcinogen prompted the investigation into the comparative efficacy of hydrogen peroxide as a fumigant in microbiological safety cabinets.

Introduction: The aim of the study was to quantify the biocidal efficacy of formaldehyde fumigation, including variables such as exposure time and concentration, and then to compare this to the biocidal efficacy achieved from a hydrogen peroxide vapor fumigation system. The study also investigated the ability of both fumigants to permeate the microbiological safety cabinet (MBSC), including the workspace, under the work tray, and after the HEPA filters. Furthermore, the effect of organic soiling on efficacy was also assessed. Infectious bronchitis virus (IBV) was used as the biological target to develop this study model.

Methods: A model using IBV was developed to determine the efficacy of formaldehyde and hydrogen peroxide as fumigants. Virus was dried on stainless steel discs, and variables including concentration, time, protein soiling, and location within an MBSC were assessed.

Results: It was demonstrated that formaldehyde fumigation could achieve a 6-log reduction in the titer of the virus throughout the cabinet, and high protein soiling in the presentation did not affect efficacy. Appropriate cycle parameters for the hydrogen peroxide system were developed, and when challenged with IBV, it was shown that vaporized hydrogen peroxide could achieve an equal 6-log titer reduction as formaldehyde within the cabinet workspace and overcome the presence of soiling.

Conclusion: Hydrogen peroxide was demonstrated to be a viable alternative to formaldehyde under most situations tested. However, the hydrogen peroxide system did not achieve an equal titer reduction above the cabinet's first HEPA filter using the cabinet workspace cycle, and further optimization of the hydrogen peroxide cycle parameters, including pulsing of the cabinet fans, may be required to achieve this.

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甲醛与过氧化氢熏蒸治疗传染性支气管炎病毒的疗效比较。
背景:最近甲醛作为推定致癌物的重新分类促使了对过氧化氢作为微生物安全柜熏蒸剂的比较功效的调查。本研究的目的是量化甲醛熏蒸的杀菌效果,包括暴露时间和浓度等变量,然后将其与过氧化氢蒸汽熏蒸系统的杀菌效果进行比较。该研究还调查了两种熏蒸剂渗透微生物安全柜(MBSC)的能力,包括工作空间、工作托盘下面和高效微粒空气过滤器之后。此外,还评价了有机污染对药效的影响。本研究以传染性支气管炎病毒(IBV)为生物学靶点建立模型。方法:建立IBV模型,测定甲醛和过氧化氢作为熏蒸剂的效果。病毒在不锈钢圆盘上干燥,并评估浓度、时间、蛋白质污染和在MBSC内的位置等变量。结果:甲醛熏蒸可以使整个橱柜的病毒滴度降低6倍,并且演示文稿中的高蛋白污染不影响效果。为过氧化氢系统开发了合适的循环参数,当使用IBV挑战时,结果表明,汽化的过氧化氢可以在橱柜工作空间内实现6对数滴度的甲醛还原,并克服了污染的存在。结论:在大多数测试情况下,过氧化氢被证明是甲醛的可行替代品。然而,使用柜式工作空间循环,过氧化氢系统并没有达到与柜式第一个HEPA过滤器相同的滴度降低,可能需要进一步优化过氧化氢循环参数,包括柜式风扇的脉冲,以实现这一目标。
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来源期刊
Applied Biosafety
Applied Biosafety Environmental Science-Management, Monitoring, Policy and Law
CiteScore
2.50
自引率
13.30%
发文量
27
期刊介绍: Applied Biosafety (APB), sponsored by ABSA International, is a peer-reviewed, scientific journal committed to promoting global biosafety awareness and best practices to prevent occupational exposures and adverse environmental impacts related to biohazardous releases. APB provides a forum for exchanging sound biosafety and biosecurity initiatives by publishing original articles, review articles, letters to the editors, commentaries, and brief reviews. APB informs scientists, safety professionals, policymakers, engineers, architects, and governmental organizations. The journal is committed to publishing on topics significant in well-resourced countries as well as information relevant to underserved regions, engaging and cultivating the development of biosafety professionals globally.
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