Literature DB >> 26178384

Evaluation of Cross-Protection of a Lineage 1 West Nile Virus Inactivated Vaccine against Natural Infections from a Virulent Lineage 2 Strain in Horses, under Field Conditions.

Serafeim C Chaintoutis1, Nikolaos Diakakis2, Maria Papanastassopoulou3, Georgios Banos4, Chrysostomos I Dovas5.   

Abstract

Although experimental data regarding cross-protection of horse West Nile virus (WNV) vaccines against lineage 2 infections exist, the cross-protective efficacy of these vaccines under field conditions has not been demonstrated. This study was conducted to evaluate the capability of an inactivated lineage 1 vaccine (Equip WNV) to protect against natural infections from the Nea Santa-Greece-2010 lineage 2 strain. In total, 185 WNV-seronegative horses in Thessaloniki, Greece, were selected during 2 consecutive years (2011 and 2012); 140 were immunized, and 45 were used as controls. Horses were examined for signs compatible with WNV infection. Neutralizing antibody titers against the Greek strain and the PaAn001/France lineage 1 strain were determined in immunized horses. WNV circulation was detected during both years in the study area. It was estimated that 37% and 27% of the horses were infected during 2011 and 2012, respectively. Three control animals developed clinical signs, and the WNV diagnosis was confirmed. Signs related to WNV infection were not observed in the vaccinated animals. The nonvaccinated animals had a 7.58% ± 1.82% higher chance of exhibiting signs than immunized animals (P < 0.05). Neutralizing antibodies raised against both strains in all immunized horses were detectable 1 month after the initial vaccination course. The cross-protective capacity of the lowest titer (1:40) was evident in 19 animals which were subsequently infected and did not exhibit signs. Neutralizing antibodies were detectable until the annual booster, when strong anamnestic responses were observed (geometrical mean titer ratio [GMTR] for lineage 1 of 30.2; GMTR for lineage 2 of 27.5). The results indicate that Equip WNV is capable of inducing cross-protection against natural infections from a virulent lineage 2 WNV strain in horses.
Copyright © 2015, American Society for Microbiology. All Rights Reserved.

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Year:  2015        PMID: 26178384      PMCID: PMC4550672          DOI: 10.1128/CVI.00302-15

Source DB:  PubMed          Journal:  Clin Vaccine Immunol        ISSN: 1556-679X


  51 in total

1.  Identification of neutralizing epitopes within structural domain III of the West Nile virus envelope protein.

Authors:  David W C Beasley; Alan D T Barrett
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2.  Prospective immunization of the endangered California condors (Gymnogyps californianus) protects this species from lethal West Nile virus infection.

Authors:  Gwong-Jen J Chang; Brent S Davis; Cynthia Stringfield; Christine Lutz
Journal:  Vaccine       Date:  2006-12-05       Impact factor: 3.641

3.  Incidence and effects of West Nile virus infection in vaccinated and unvaccinated horses in California.

Authors:  Ian A Gardner; Susan J Wong; Gregory L Ferraro; Udeni B Balasuriya; Pamela J Hullinger; W David Wilson; Pei-Yong Shi; N James MacLachlan
Journal:  Vet Res       Date:  2007 Jan-Feb       Impact factor: 3.683

Review 4.  West Nile virus state of the art report of MALWEST Project.

Authors:  Andriani Marka; Alexandros Diamantidis; Anna Papa; George Valiakos; Serafeim C Chaintoutis; Dimitrios Doukas; Persefoni Tserkezou; Alexios Giannakopoulos; Konstantinos Papaspyropoulos; Eleni Patsoula; Evangelos Badieritakis; Agoritsa Baka; Maria Tseroni; Danai Pervanidou; Nikos T Papadopoulos; George Koliopoulos; Dimitrios Tontis; Chrysostomos I Dovas; Charalambos Billinis; Athanassios Tsakris; Jenny Kremastinou; Christos Hadjichristodoulou; Nikolaos Vakalis; Evdokia Vassalou; Spyridoula Zarzani; Athanassios Zounos; Katerina Komata; Georgios Balatsos; Stavroula Beleri; Anastasia Mpimpa; Vasilios Papavasilopoulos; Ioannis Rodis; Grigorios Spanakos; Nikolaos Tegos; Vasiliki Spyrou; Zisis Dalabiras; Periklis Birtsas; Labrini Athanasiou; Maria Papanastassopoulou; Charalambos Ioannou; Christos Athanasiou; Christos Gerofotis; Elpida Papadopoulou; Theodolinta Testa; Ourania Tsakalidou; George Rachiotis; Nikolaos Bitsolas; Zissis Mamouris; Katerina Moutou; Theologia Sarafidou; Konstantinos Stamatis; Konstantina Sarri; Sotirios Tsiodras; Theano Georgakopoulou; Marios Detsis; Maria Mavrouli; Anastasia Stavropoulou; Lida Politi; Georgia Mageira; Varvara Christopoulou; Georgia Diamantopoulou; Nikolaos Spanakis; Georgia Vrioni; Evangelia-Theofano Piperaki; Kornilia Mitsopoulou; Ilias Kioulos; Antonios Michaelakis; Ioannis Stathis; Ioannis Tselentis; Anna Psaroulaki; Maria Keramarou; Dimosthenis Chochlakis; Yeorgios Photis; Maria Konstantinou; Panagiotis Manetos; Stylianos Tsobanoglou; Spyros Mourelatos; Vasilis Antalis; Panagiotis Pergantas; Georgios Eleftheriou
Journal:  Int J Environ Res Public Health       Date:  2013-12-02       Impact factor: 3.390

5.  Protection provided by a recombinant ALVAC(®)-WNV vaccine expressing the prM/E genes of a lineage 1 strain of WNV against a virulent challenge with a lineage 2 strain.

Authors:  J M Minke; L Siger; L Cupillard; B Powers; T Bakonyi; S Boyum; N Nowotny; R Bowen
Journal:  Vaccine       Date:  2011-05-05       Impact factor: 3.641

6.  Immunologic responses to West Nile virus in vaccinated and clinically affected horses.

Authors:  Ann H Davidson; Josie L Traub-Dargatz; Racquel M Rodeheaver; Eileen N Ostlund; Douglas D Pedersen; Ron G Moorhead; Joe B Stricklin; Renee D Dewell; Susan D Roach; Rachel E Long; Sara J Albers; Robert J Callan; M D Salman
Journal:  J Am Vet Med Assoc       Date:  2005-01-15       Impact factor: 1.936

7.  Comparative efficacies of three commercially available vaccines against West Nile Virus (WNV) in a short-duration challenge trial involving an equine WNV encephalitis model.

Authors:  K K Seino; M T Long; E P J Gibbs; R A Bowen; S E Beachboard; P P Humphrey; M A Dixon; M A Bourgeois
Journal:  Clin Vaccine Immunol       Date:  2007-08-08

8.  DNA vaccination of the American crow (Corvus brachyrhynchos) provides partial protection against lethal challenge with West Nile virus.

Authors:  Michel L Bunning; Patricia E Fox; Richard A Bowen; Nicholas Komar; Gwong-Jen J Chang; Tully J Speaker; Michael R Stephens; Nicole Nemeth; Nicholas A Panella; Stanley A Langevin; Paul Gordy; Max Teehee; Patricia R Bright; Michael J Turell
Journal:  Avian Dis       Date:  2007-06       Impact factor: 1.577

Review 9.  Virology, pathology, and clinical manifestations of West Nile virus disease.

Authors:  Edward B Hayes; James J Sejvar; Sherif R Zaki; Robert S Lanciotti; Amy V Bode; Grant L Campbell
Journal:  Emerg Infect Dis       Date:  2005-08       Impact factor: 6.883

Review 10.  Flaviviruses in Europe: complex circulation patterns and their consequences for the diagnosis and control of West Nile disease.

Authors:  Cécile Beck; Miguel Angel Jimenez-Clavero; Agnès Leblond; Benoît Durand; Norbert Nowotny; Isabelle Leparc-Goffart; Stéphan Zientara; Elsa Jourdain; Sylvie Lecollinet
Journal:  Int J Environ Res Public Health       Date:  2013-11-12       Impact factor: 3.390

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Journal:  Emerg Microbes Infect       Date:  2018-03-14       Impact factor: 7.163

Review 3.  Comparative Pathology of West Nile Virus in Humans and Non-Human Animals.

Authors:  Alex D Byas; Gregory D Ebel
Journal:  Pathogens       Date:  2020-01-07

Review 4.  Animal and Human Vaccines against West Nile Virus.

Authors:  Juan-Carlos Saiz
Journal:  Pathogens       Date:  2020-12-21

5.  Pathogenicity and virulence of West Nile virus revisited eight decades after its first isolation.

Authors:  Juan-Carlos Saiz; Miguel A Martín-Acebes; Ana B Blázquez; Estela Escribano-Romero; Teresa Poderoso; Nereida Jiménez de Oya
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Review 6.  Equids' Core Vaccines Guidelines in North America: Considerations and Prospective.

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  6 in total

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