Mechanism of virus inactivation by cold atmospheric-pressure plasma and plasmaactivated water

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Abstract

Viruses cause serious pathogenic contamination that severely affects the environment and human health. Cold atmospheric-pressure plasma efficiently inactivates pathogenic bacteria; however, the mechanism of virus inactivation by plasma is not fully understood. In this study, surface plasma in argon mixed with 1% air and plasma-activated water was used to treat water containing bacteriophages. Both agents efficiently inactivated bacteriophages T4, Φ174, and MS2 in a timedependent manner. Prolonged storage had marginal effects on the antiviral activity of plasma-activated water. DNA and protein analysis revealed that the reactive species generated by plasma damaged both nucleic acids and proteins, consistent with the morphological examination showing that plasma treatment caused the aggregation of bacteriophages. The inactivation of bacteriophages was alleviated by the singlet oxygen scavengers, demonstrating that singlet oxygen played a primary role in this process. Our findings provide a potentially effective disinfecting strategy to combat the environmental viruses using cold atmospheric-pressure plasma and plasma-activated water.

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Guo, L., Xu, R., Gou, L., Liu, Z., Zhao, Y., Liu, D., … Kong, M. G. (2018). Mechanism of virus inactivation by cold atmospheric-pressure plasma and plasmaactivated water. Applied and Environmental Microbiology, 84(17). https://doi.org/10.1128/AEM.00726-18

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