Literature DB >> 15010222

Use of recombinant modified vaccinia Ankara viral vectors for equine influenza vaccination.

C C Breathnach1, R Rudersdorf, D P Lunn.   

Abstract

Recombinant modified vaccinia Ankara (MVA) vectors expressing equine influenza virus genes were constructed and evaluated for use in equine vaccination. Two strains of recombinant MVA, expressing either hemagglutinin (HA) or nucleoprotein (NP) genes were constructed. Each influenza virus gene was cloned from A/equine/Kentucky/1/81 (Eq/Ky) into an MVA construction plasmid, and was introduced to the deletion III locus of the wild type MVA genome by homologous recombination. Recombinant viruses were plaque purified, and antigen expression was confirmed by immunostaining. Two ponies were primed by vaccination with 50 microg HA-DNA and two ponies were vaccinated with 50 microg NP-DNA using the PowderJect XR research device. Six and 10 weeks later, ponies were immunized with 2 x 10(9) infectious units of recombinant MVA encoding the homologous influenza antigen, equally divided between intramuscular and intradermal sites in the neck. A marked rise in influenza virus-specific IgGa and IgGb serum antibody titers was detected following administration of MVA boosters with both HA and NP antigens. Influenza virus-specific lymphoproliferative responses and IFN-gamma mRNA production were also strongly elicited by both antigens. This study demonstrates the facility with which recombinant MVA viruses expressing defined pathogen genes can be constructed, and provides preliminary evidence of the immunogenicity and safety of these vectors in the horse.

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Year:  2004        PMID: 15010222     DOI: 10.1016/j.vetimm.2003.11.004

Source DB:  PubMed          Journal:  Vet Immunol Immunopathol        ISSN: 0165-2427            Impact factor:   2.046


  8 in total

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Review 2.  Equine Influenza Virus and Vaccines.

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Journal:  Viruses       Date:  2021-08-20       Impact factor: 5.818

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Authors:  R H Mealey; D M Stone; M T Hines; D C Alperin; M H Littke; S R Leib; S E Leach; S A Hines
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4.  Neutralizing epitopes of the SARS-CoV S-protein cluster independent of repertoire, antigen structure or mAb technology.

Authors:  Jody D Berry; Kevin Hay; James M Rini; Meng Yu; Linfa Wang; Francis A Plummer; Cindi R Corbett; Anton Andonov
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5.  Evaluation of immune responses following infection of ponies with an EHV-1 ORF1/2 deletion mutant.

Authors:  Gisela Soboll Hussey; Stephen B Hussey; Bettina Wagner; David W Horohov; Gerlinde R Van de Walle; Nikolaus Osterrieder; Lutz S Goehring; Sangeeta Rao; David P Lunn
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Review 6.  A Comprehensive Review on Equine Influenza Virus: Etiology, Epidemiology, Pathobiology, Advances in Developing Diagnostics, Vaccines, and Control Strategies.

Authors:  Raj K Singh; Kuldeep Dhama; Kumaragurubaran Karthik; Rekha Khandia; Ashok Munjal; Sandip K Khurana; Sandip Chakraborty; Yashpal S Malik; Nitin Virmani; Rajendra Singh; Bhupendra N Tripathi; Muhammad Munir; Johannes H van der Kolk
Journal:  Front Microbiol       Date:  2018-09-06       Impact factor: 5.640

7.  Induction of antibody responses to African horse sickness virus (AHSV) in ponies after vaccination with recombinant modified vaccinia Ankara (MVA).

Authors:  Rachael Chiam; Emma Sharp; Sushila Maan; Shujing Rao; Peter Mertens; Barbara Blacklaws; Nick Davis-Poynter; James Wood; Javier Castillo-Olivares
Journal:  PLoS One       Date:  2009-06-22       Impact factor: 3.240

8.  Experimental infection with equine herpesvirus type 1 (EHV-1) induces chorioretinal lesions.

Authors:  Gisela Soboll Hussey; Lutz S Goehring; David P Lunn; Stephen B Hussey; Teng Huang; Nikolaus Osterrieder; Cynthia Powell; Jesse Hand; Carine Holz; Josh Slater
Journal:  Vet Res       Date:  2013-12-05       Impact factor: 3.683

  8 in total

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