Literature DB >> 21536085

Prior infection of pigs with a genotype 3 swine hepatitis E virus (HEV) protects against subsequent challenges with homologous and heterologous genotypes 3 and 4 human HEV.

Brenton J Sanford1, Barbara A Dryman, Yao-Wei Huang, Alicia R Feagins, Tanya Leroith, Xiang-Jin Meng.   

Abstract

Hepatitis E virus (HEV) is an important human pathogen. At least four recognized and two putative genotypes of mammalian HEV have been reported: genotypes 1 and 2 are restricted to humans whereas genotypes 3 and 4 are zoonotic. The current experimental vaccines are all based on a single strain of HEV, even though multiple genotypes of HEV are co-circulating in some countries and thus an individual may be exposed to more than one genotype. Genotypes 3 and 4 swine HEV is widespread in pigs and known to infect humans. Therefore, it is important to know if prior infection with a genotype 3 swine HEV will confer protective immunity against subsequent exposure to genotypes 3 and 4 human and swine HEV. In this study, specific-pathogen-free pigs were divided into 4 groups of 6 each. Pigs in the three treatment groups were each inoculated with a genotype 3 swine HEV, and 12 weeks later, challenged with the same genotype 3 swine HEV, a genotype 3 human HEV, and a genotype 4 human HEV, respectively. The control group was inoculated and challenged with PBS buffer. Weekly sera from all pigs were tested for HEV RNA and IgG anti-HEV, and weekly fecal samples were also tested for HEV RNA. The pigs inoculated with swine HEV became infected as evidenced by fecal virus shedding and viremia, and the majority of pigs also developed IgG anti-HEV prior to challenge at 12 weeks post-inoculation. After challenge, viremia was not detected and only two pigs challenged with swine HEV had 1-week fecal virus shedding, suggesting that prior infection with a genotype 3 swine HEV prevented pigs from developing viremia and fecal virus shedding after challenges with homologous and heterologous genotypes 3 and 4 HEV. The results from this study have important implications for future development of an effective HEV vaccine.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 21536085      PMCID: PMC3106128          DOI: 10.1016/j.virusres.2011.04.010

Source DB:  PubMed          Journal:  Virus Res        ISSN: 0168-1702            Impact factor:   3.303


  49 in total

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Authors:  X J Meng; R H Purcell; P G Halbur; J R Lehman; D M Webb; T S Tsareva; J S Haynes; B J Thacker; S U Emerson
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3.  Safety and efficacy of a recombinant hepatitis E vaccine.

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Journal:  N Engl J Med       Date:  2007-03-01       Impact factor: 91.245

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Authors:  Suzanne U Emerson; Robert H Purcell
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Journal:  Proc Natl Acad Sci U S A       Date:  2017-06-19       Impact factor: 11.205

2.  Cross-species infection of pigs with a novel rabbit, but not rat, strain of hepatitis E virus isolated in the United States.

Authors:  Caitlin M Cossaboom; Laura Córdoba; Brenton J Sanford; Pablo Piñeyro; Scott P Kenney; Barbara A Dryman; Youchun Wang; Xiang-Jin Meng
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3.  Infection Dynamics of Hepatitis E Virus in Wild-Type and Immunoglobulin Heavy Chain Knockout JH -/- Gnotobiotic Piglets.

Authors:  Danielle M Yugo; C Lynn Heffron; Junghyun Ryu; Kyungjun Uh; Sakthivel Subramaniam; Shannon R Matzinger; Christopher Overend; Dianjun Cao; Scott P Kenney; Harini Sooryanarain; Thomas Cecere; Tanya LeRoith; Lijuan Yuan; Nathaniel Jue; Sherrie Clark-Deener; Kiho Lee; Xiang-Jin Meng
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7.  Assessment of the cross-protective capability of recombinant capsid proteins derived from pig, rat, and avian hepatitis E viruses (HEV) against challenge with a genotype 3 HEV in pigs.

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8.  Prevalence of hepatitis E virus in slaughter-age pigs in Scotland.

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Review 9.  Hepatitis E virus: foodborne, waterborne and zoonotic transmission.

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10.  Infection by Brazilian and Dutch swine hepatitis E virus strains induces haematological changes in Macaca fascicularis.

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