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具有内置分层结构的驱病原体塑料经纱防止冠状病毒污染表面。

Pathogen-Repellent Plastic Warp with Built-In Hierarchical Structuring Prevents the Contamination of Surfaces with Coronaviruses.

机构信息

Department of Engineering Physics, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4L7, Canada.

Department of Medicine, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4L7, Canada.

出版信息

ACS Appl Mater Interfaces. 2022 Mar 9;14(9):11068-11077. doi: 10.1021/acsami.1c21476. Epub 2022 Feb 28.

Abstract

Amidst the COVID-19 pandemic, it is evident that viral spread is mediated through several different transmission pathways. Reduction of these transmission pathways is urgently needed to control the spread of viruses between infected and susceptible individuals. Herein, we report the use of pathogen-repellent plastic wraps (RepelWrap) with engineered surface structures at multiple length scales (nanoscale to microscale) as a means of reducing the indirect contact transmission of viruses through fomites. To quantify viral repellency, we developed a touch-based viral quantification assay to mimic the interaction of a contaminated human touch with a surface through the modification of traditional viral quantification methods (viral plaque and TCID50 assays). These studies demonstrate that RepelWrap reduced contamination with an enveloped DNA virus as well as the (HuCoV-229E) by more than 4 log 10 (>99.99%) compared to a standard commercially available polyethylene plastic wrap. In addition, RepelWrap maintained its repellent properties after repeated 300 touches and did not show an accumulation in viral titer after multiple contacts with contaminated surfaces, while increases were seen on other commonly used surfaces. These findings show the potential use of repellent surfaces in reducing viral contamination on surfaces, which could, in turn, reduce the surface-based spread and transmission.

摘要

在 COVID-19 大流行期间,很明显病毒传播是通过几种不同的传播途径介导的。为了控制感染者和易感者之间病毒的传播,迫切需要减少这些传播途径。在此,我们报告了使用具有工程表面结构(纳米级到微米级多个长度尺度)的抗病原体塑料包装(RepelWrap)作为减少通过污染物间接接触传播病毒的一种手段。为了量化病毒的驱避性,我们开发了一种基于触摸的病毒定量测定法,通过修改传统的病毒定量方法(病毒斑和 TCID50 测定法)来模拟受污染的人类触摸与表面的相互作用。这些研究表明,与标准商用聚乙烯塑料包装相比,RepelWrap 使包膜 DNA 病毒(以及(HuCoV-229E))的污染减少了 4 个对数(超过 99.99%)。此外,RepelWrap 在重复 300 次触摸后仍保持其驱避特性,并且在与污染表面多次接触后,病毒滴度没有增加,而在其他常用表面上则观察到增加。这些发现表明,驱避表面在减少表面污染病毒方面具有潜在用途,这反过来又可以减少基于表面的传播和传播。

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