Potent environmental-friendly virucidal medical textiles against coronavirus to combat infections during the COVID-19 pandemic

Author:

Chitichotpanya Chayanisa12ORCID,Khwanmuang Phasinee1,Yamprayoonswat Wariya3ORCID,Porntheeraphat Supanit3,Jongkaewwattana Anan4,Chitichotpanya Pisutsaran5

Affiliation:

1. Department of Chemistry, Faculty of Science, Mahidol University, Bangkok, Thailand

2. Center for Surface Science and Engineering, Faculty of Science, Mahidol University, Bangkok, Thailand

3. Digital Agriculture Technology Research Team (DAT), Deputy Executive Director Research and Development Intelligent Systems and Networks (ITSN), National Electronics and Computer Technology Center (NECTEC), National Science and Technology Development Agency (NSTDA), Pathumthani, Thailand

4. Virology and Cell Technology Laboratory, National Center for Genetic Engineering and Biotechnology (BIOTEC), National Science and Technology Development Agency (NSTDA), Pathumthani, Thailand

5. Department of Materials and Textile Technology, Faculty of Science and Technology, Thammasat University, Patumthani, Thailand

Abstract

The sudden outburst of Coronavirus disease 19 or COVID-19 has raised serious awareness about viral contamination on the environment, which is one of the major causes of the disease. Transmission via contaminated surfaces has been recognized as a significant route for spreading the virus. To suppress and control the spread of SARS-CoV-2, potent virucidal finishing agents for decontamination of medical textiles are urgently required. In this study, an environmental-friendly, economical, non-toxic, and practical finishing on medical textiles with potent virucidal activity was proposed with the combined concepts of a new green synthesis of TiO2@Ag core-shell nanostructures using ascorbic acid reduction and UV-curing process. In order to evaluate efficiency of virucidal activity, effects of the amount of TiO2@Ag NPs and contact time were determined against the coronavirus following ISO 18184:2019 standard. The finishing agent exhibited an excellent 99.9% virucidal efficacy. The stability of virucidal activity and mechanical properties were determined under repeated washing. The finished fabrics had the ability to retain their virucidal activity and tensile strength through 20 washes. The results suggested that the finishing agent had great potential as a potent and non-toxic virucide against the coronavirus for medical textile applications.

Funder

Thailand Center of Excellence for Life Sciences

Thailand research fund

Publisher

SAGE Publications

Subject

Industrial and Manufacturing Engineering,Polymers and Plastics,Materials Science (miscellaneous),Chemical Engineering (miscellaneous)

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