Literature DB >> 18606204

Mucosal immunization against ovine lentivirus using PEI-DNA complexes and modified vaccinia Ankara encoding the gag and/or env genes.

R Reina1, C Barbezange, H Niesalla, X de Andrés, H Arnarson, E Biescas, M Mazzei, C Fraisier, T N McNeilly, C Liu, M Perez, M L Carrozza, P Bandecchi, C Solano, H Crespo, I Glaria, C Huard, D J Shaw, I de Blas, D de Andrés, F Tolari, S Rosati, M Suzan-Monti, V Andrésdottir, S Torsteinsdottir, G Petursson, L Lujan, M Pepin, B Amorena, B Blacklaws, G D Harkiss.   

Abstract

Sheep were immunized against Visna/Maedi virus (VMV) gag and/or env genes via the nasopharynx-associated lymphoid tissue (NALT) and lung using polyethylenimine (PEI)-DNA complexes and modified vaccinia Ankara, and challenged with live virus via the lung. env immunization enhanced humoral responses prior to but not after VMV challenge. Systemic T cell proliferative and cytotoxic responses were generally low, with the responses following single gag gene immunization being significantly depressed after challenge. A transient reduction in provirus load in the blood early after challenge was observed following env immunization, whilst the gag gene either alone or in combination with env resulted in significantly elevated provirus loads in lung. However, despite this, a significant reduction in lesion score was observed in animals immunized with the single gag gene at post-mortem. Inclusion of IFN-gamma in the immunization mixture in general had no significant effects. The results thus showed that protective effects against VMV-induced lesions can be induced following respiratory immunization with the single gag gene, though this was accompanied by an increased pulmonary provirus load.

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Year:  2008        PMID: 18606204     DOI: 10.1016/j.vaccine.2008.06.065

Source DB:  PubMed          Journal:  Vaccine        ISSN: 0264-410X            Impact factor:   3.641


  6 in total

1.  Efficient generation of mucosal and systemic antigen-specific CD8+ T-cell responses following pulmonary DNA immunization.

Authors:  Maytal Bivas-Benita; Liat Bar; Geoffrey O Gillard; David R Kaufman; Nathaniel L Simmons; Avi-Hai Hovav; Norman L Letvin
Journal:  J Virol       Date:  2010-03-24       Impact factor: 5.103

2.  Small ruminant lentiviruses in Jordan: evaluation of sheep and goat serological response using recombinant and peptide antigens.

Authors:  Francesco Tolari; Wafa'a Al-Ramadneh; Maurizio Mazzei; Maria Luisa Carrozza; Mario Forzan; Patrizia Bandecchi; Elena Grego; Sergio Rosati
Journal:  Trop Anim Health Prod       Date:  2013-02-08       Impact factor: 1.559

3.  Small ruminant macrophage polarization may play a pivotal role on lentiviral infection.

Authors:  Helena Crespo; Luigi Bertolotti; Magda Juganaru; Idoia Glaria; Damián de Andrés; Beatriz Amorena; Sergio Rosati; Ramsés Reina
Journal:  Vet Res       Date:  2013-09-26       Impact factor: 3.683

Review 4.  Immunogenetics of small ruminant lentiviral infections.

Authors:  Nancy Stonos; Sarah K Wootton; Niel Karrow
Journal:  Viruses       Date:  2014-08-22       Impact factor: 5.048

5.  Clearance of Maedi-visna infection in a longitudinal study of naturally infected rams is associated with homozygosity for the TMEM154 resistance allele.

Authors:  Scott Jones; Heather McKay; Laura Eden; Nicola Bollard; Stephen Dunham; Peers Davies; Rachael Tarlinton
Journal:  J Med Microbiol       Date:  2022-02       Impact factor: 2.472

Review 6.  Immunization against small ruminant lentiviruses.

Authors:  Ramsés Reina; Damián de Andrés; Beatriz Amorena
Journal:  Viruses       Date:  2013-08-02       Impact factor: 5.048

  6 in total

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