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在公共交通系统高接触区域部署的铜膜上对 MS2 噬菌体的灭活。

Inactivation of MS2 bacteriophage on copper film deployed in high touch areas of a public transport system.

机构信息

CSS, Inc., Fairfax, VA, USA.

Jacobs Technology, Inc., Tullahoma, TN, USA.

出版信息

Lett Appl Microbiol. 2022 Mar;74(3):405-410. doi: 10.1111/lam.13624. Epub 2021 Dec 14.

Abstract

Although SARS-CoV-2 is primarily an airborne risk, the COVID-19 pandemic also highlighted the need for self-disinfection surfaces that could withstand the demand of high occupant densities characteristic of public transportation systems. The aim of this study was to evaluate the durability and antiviral activity of a copper film deployed for 90 days in two high touch locations within an active metropolitan bus and railcar. The antiviral efficacy of this copper film after being deployed in transit vehicles for 90 days (deployed copper film) was then compared to new (unused) copper film to determine if frequent touches and cleaning protocols could decrease the efficacy of the copper films. Deployed copper film, new copper film, and aluminium foil (positive control) coupons were inoculated with ~1 × 10 MS2 virus particles, allowed a contact time of either 5- or 10-min, and analysed for residual viral infectiousness. On both new and deployed copper films, MS2 was completely inactivated (≥5 log reduction) at both time points. These results suggest that the copper film may provide the durability demanded by high touch public spaces while maintaining the antiviral activity necessary to reduce exposure risk and viral transmission via surfaces in public transportation settings.

摘要

尽管 SARS-CoV-2 主要是通过空气传播的风险,但 COVID-19 大流行也凸显了需要自消毒表面的需求,这些表面能够承受公共交通系统中典型的高乘客密度的需求。本研究的目的是评估一种铜膜的耐用性和抗病毒活性,该铜膜在一辆活跃的城市公共汽车和轨道车中的两个高接触点部署了 90 天。然后,将这种铜膜在运输车辆中部署 90 天后的抗病毒效果(已部署铜膜)与新的(未使用)铜膜进行比较,以确定频繁触摸和清洁方案是否会降低铜膜的功效。已部署的铜膜、新的铜膜和铝箔(阳性对照)试片用~1×10 MS2 病毒颗粒接种,接触时间为 5 或 10 分钟,并分析残留病毒感染力。在新的和已部署的铜膜上,MS2 在两个时间点都被完全灭活(≥5 对数减少)。这些结果表明,铜膜可以提供高接触公共空间所需的耐用性,同时保持抗病毒活性,从而降低公共交通环境中通过表面接触的暴露风险和病毒传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/839f/8935140/cfcfa872d761/nihms-1788363-f0001.jpg

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