Virucidal Effect of Cold Atmospheric Gaseous Plasma on Feline Calicivirus, a Surrogate for Human Norovirus

Author:

Aboubakr Hamada A.12,Williams Paul3,Gangal Urvashi3,Youssef Mohammed M.2,El-Sohaimy Sobhy A. A.4,Bruggeman Peter J.3,Goyal Sagar M.1

Affiliation:

1. Department of Veterinary Population Medicine, Veterinary Diagnostic Laboratory, College of Veterinary Medicine, University of Minnesota, St. Paul, Minnesota, USA

2. Food Science and Technology Department, Faculty of Agriculture, Alexandria University, El-Shatby, Alexandria, Egypt

3. Department of Mechanical Engineering, College of Science and Engineering, University of Minnesota, Minneapolis, Minnesota, USA

4. Department of Food Biotechnology, Arid Land Cultivation and Development Institute, City of Scientific Research and Technology Applications, New Borg El-Arab, Alexandria, Egypt

Abstract

ABSTRACT Minimal food-processing methods are not effective against foodborne viruses, such as human norovirus (NV). It is important, therefore, to explore novel nonthermal technologies for decontamination of foods eaten fresh, minimally processed and ready-to-eat foods, and food contact surfaces. We studied the in vitro virucidal activity of cold atmospheric gaseous plasma (CGP) against feline calicivirus (FCV), a surrogate of NV. Factors affecting the virucidal activity of CGP (a so-called radio frequency atmospheric pressure plasma jet) were the plasma generation power, the exposure time and distance, the plasma feed gas mixture, and the virus suspension medium. Exposure to 2.5-W argon (Ar) plasma caused a 5.55 log 10 unit reduction in the FCV titer within 120 s. The reduction in the virus titer increased with increasing exposure time and decreasing exposure distance. Of the four plasma gas mixtures studied (Ar, Ar plus 1% O 2 , Ar plus 1% dry air, and Ar plus 0.27% water), Ar plus 1% O 2 plasma treatment had the highest virucidal effect: more than 6.0 log 10 units of the virus after 15 s of exposure. The lowest virus reduction was observed with Ar plus 0.27% water plasma treatment (5 log 10 unit reduction after 120 s). The highest reduction in titer was observed when the virus was suspended in distilled water. Changes in temperature and pH and formation of H 2 O 2 were not responsible for the virucidal effect of plasma. The oxidation of viral capsid proteins by plasma-produced reactive oxygen and nitrogen species in the solution was thought to be responsible for the virucidal effect. In conclusion, CGP exhibits virucidal activity in vitro and has the potential to combat viral contamination in foods and on food preparation surfaces.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference55 articles.

1. Scharff RL. 3 March 2010. Health-related costs from foodborne illness in the United States. http://www.publichealth.lacounty.gov/eh/docs/ReportPublication/HlthRelatedCostsFromFoodborneIllinessUS.pdf.

2. The European Union Summary Report on Trends and Sources of Zoonoses, Zoonotic Agents and Food‐borne Outbreaks in 2010

3. European Center for Disease Prevention and Control. 2013. Factsheet for health professionals. http://www.ecdc.europa.eu/en/healthtopics/norovirus_infection/factsheet-health-professionals/Pages/factsheet_health_professionals.aspx.

4. CDC. 30 December 2014. U.S. trends and outbreaks. http://www.cdc.gov/norovirus/trends-outbreaks.html.

5. European Food Safety Authority. 30 April 2009. Community summary report. Food-borne outbreaks in the European Union in 2007. European Food Safety Authority, Parma, Italy. http://www.efsa.europa.eu/de/efsajournal/doc/271r.pdf.

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