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使用自动化房间消毒设备对人冠状病毒进行灭活。

Inactivation of human coronaviruses using an automated room disinfection device.

机构信息

Institute for Nanoscale Science and Technology, College of Science and Engineering, Flinders University, Bedford Park, SA, 5042, Australia.

Molecular Biosciences, College of Science and Engineering, Flinders University, Bedford Park, SA, 5042, Australia.

出版信息

Sci Rep. 2023 Nov 16;13(1):20048. doi: 10.1038/s41598-023-47082-z.

Abstract

The emergence of more virulent and epidemic strains of viruses, especially in the context of COVID-19, makes it more important than ever to improve methods of decontamination. The objective of this study was to evaluate the potential of on-demand production of chlorine species to inactivate human coronaviruses. The commercial prototype disinfection unit was provided by Unipolar Water Technologies. The Unipolar device generates active chlorine species using an electrochemical reaction and dispenses the disinfectant vapour onto surfaces with an aspirator. The minimum effective concentration and exposure time of disinfectant were evaluated on human hepatoma (Huh7) cells using 50% tissue culture infectious dose (TCID) assay and human coronavirus 229E (HCoV-229E), a surrogate for pathogenic human coronaviruses. We showed that chlorine species generated in the Unipolar device inactivate HCoV-229E on glass surfaces at ≥ 400 parts per million active chlorine concentration with a 5 min exposure time. Here, inactivation refers to the inability of the virus to infect the Huh7 cells. Importantly, no toxic effect was observed on Huh7 cells for any of the active chlorine concentrations and contact times tested.

摘要

病毒出现了更多毒性更强、更具传染性的菌株,尤其是在 COVID-19 背景下,因此改进消毒方法比以往任何时候都更加重要。本研究旨在评估按需生产氯物种以灭活人类冠状病毒的潜力。商用原型消毒设备由单极水技术公司提供。单极设备通过电化学反应产生活性氯物种,并使用吸气器将消毒剂蒸气分配到表面。使用 50%组织培养感染剂量(TCID)测定法和人冠状病毒 229E(HCoV-229E)评估了最小有效浓度和消毒剂暴露时间,HCoV-229E 是人冠状病毒的替代品。我们表明,在单极设备中产生的氯物种在 400ppm 以上的活性氯浓度下,通过 5 分钟的暴露时间,可在玻璃表面上使 HCoV-229E 失活。这里,失活是指病毒无法感染 Huh7 细胞。重要的是,在测试的任何活性氯浓度和接触时间下,对 Huh7 细胞均未观察到任何毒性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b345/10654563/16f3222660b1/41598_2023_47082_Fig1_HTML.jpg

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