Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6289759 | International Journal of Food Microbiology | 2016 | 43 Pages |
Abstract
Human norovirus (NoV) is a major cause of fresh produce-associated outbreaks and human NoV in irrigation water can potentially lead to viral internalization in fresh produce. Therefore, there is a need to develop novel intervention strategies to target internalized viral pathogens while maintaining fresh produce quality. In this study electron beam (E-beam) and gamma radiation were evaluated for efficacy against a human NoV GII.4 strain and Tulane virus (TV). Virus survival following ionizing radiation treatments was determined using direct quantitative reverse transcriptase PCR (RT-qPCR), the porcine gastric mucin magnetic bead (PGM-MB) binding assay followed by RT-qPCR, and plaque assay. In simple media, a high dose of E-beam treatment was required to completely abolish the receptor binding ability of human NoV (35.3Â kGy) and TV (19.5-24.1Â kGy), as assessed using the PGM-MB binding assay. Both human NoV and TV were more susceptible to gamma irradiation than E-beam, requiring 22.4Â kGy to achieve complete inactivation. In whole strawberries, no human NoV or TV RNA was detected following 28.7Â kGy of E-beam treatment using the PGM-MB binding assay. Overall, human NoV and TV are highly resistant to ionizing radiation and therefore the technology may not be suitable to eliminate viruses in fresh produce at the currently approved levels. In addition, the PGM-MB binding assay is an improved method to detect viral infectivity compared to direct RT-qPCR.
Keywords
FCVVLPsRT-qPCRFDAHisto-blood group antigensMNVCDCPGMVP1Porcine gastric mucinCPEHBSSFBSDMEMDulbecco's modified Eagle MediumMOICytopathic effectSDS-PAGESodium dodecyl sulfate polyacrylamide gel electrophoresisFood safetyFood-borne illnessionizing radiationStrawberriesVLPs, Virus-like particlesFood and Drug Administrationfetal bovine serumHank's balanced salt solutionCenters for Disease Control and PreventionnovNorovirusMurine norovirusHuman norovirusTulane virusE-beamGamma irradiationElectron beammultiplicity of infectionFeline Calicivirus
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Authors
Erin DiCaprio, Nuttapong Phantkankum, Doug Culbertson, Yuanmei Ma, John H. Hughes, David Kingsley, Roberto M. Uribe, Jianrong Li,