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Development and Validation of Three Triplex Real-Time RT-PCR Assays for Typing African Horse Sickness Virus: Utility for Disease Control and Other Laboratory Applications
Rubén Villalba, Cristina Tena-Tomás, María José Ruano, Marta Valero-Lorenzo, Ana López-Herranz, Cristina Cano-Gómez and Montserrat Agüero Viruses 16(3) 470 (2024) https://doi.org/10.3390/v16030470
Cache Valley virus isolation from a horse in Veracruz State, Mexico
Gamaliel Ortega-Soriano, Jessica A. Plante, Veronica A. Fabela-Becerril, Ana L. Gonzalez-Perez, Mario Solis-Hernandez, Grace Rafael, Steven G. Widen, Kenneth S. Plante, Scott C. Weaver and Jose Guillermo Estrada-Franco Frontiers in Tropical Diseases 5 (2024) https://doi.org/10.3389/fitd.2024.1456666
Modelling bluetongue and African horse sickness vector (Culicoides spp.) distribution in the Western Cape in South Africa using random forest machine learning
Stability and Detection Limit of Avian Influenza, Newcastle Disease Virus, and African Horse Sickness Virus on Flinders Technology Associates Card by Conventional Polymerase Chain Reaction
Identification of three novel linear B-cell epitopes on VP7 of African horse sickness virus using monoclonal antibodies
Xinbing Hu, Jing Xu, Xuanying Wang, Zhancheng Tian, Guiquan Guan, Jianxun Luo, Hong Yin and Junzheng Du Veterinary Microbiology 298 110258 (2024) https://doi.org/10.1016/j.vetmic.2024.110258
Cytokine mRNA Expression Profile in Target Organs of IFNAR (-/-) Mice Infected with African Horse Sickness Virus
Eva Calvo-Pinilla, Luis Jiménez-Cabello, Sergio Utrilla-Trigo, Miguel Illescas-Amo and Javier Ortego International Journal of Molecular Sciences 25(4) 2065 (2024) https://doi.org/10.3390/ijms25042065
Environmental and Historical Determinants of African Horse Sickness: Insights from Predictive Modeling
KwangHyok Kim, TianGang Xu, Arivizhivendhan Kannan Villalan, TianYing Chi, XiaoJing Yu, MyongIl Jin, RenNa Wu, GuanYing Ni, ShiFeng Sui, ZhiLiang Wang, XiaoLong Wang and Daniel Diaz Transboundary and Emerging Diseases 2024(1) (2024) https://doi.org/10.1155/2024/5586647
KwangHyok Kim, TianGang Xu, Arivizhivendhan Kannan Villalan, TianYing Chi, XiaoJing Yu, MyongIl Jin, RenNa Wu, GuanYing Ni, ShiFeng Sui, ZhiLiang Wang and XiaoLong Wang (2024) https://doi.org/10.1101/2024.02.20.581150
First Isolation and Molecular Characterization of Umatilla Virus (Sedoreoviridae, Orbivirus) in Brazil
Landeson Barros, Sandro Silva, Ana Cecília Cruz, Eliana da Silva, Ana Lúcia Wanzeller, Valéria Carvalho, Jannifer Chiang and Lívia Martins Viruses 16(7) 1050 (2024) https://doi.org/10.3390/v16071050
Identification of T cell and linear B cell epitopes on African horse sickness virus serotype 4 proteins VP1-1, VP2, VP4, VP7 and NS3
Effect of Exercise in a Vector-Protected Arena for Preventing African Horse Sickness Transmission on Physiological, Biochemical, and Behavioral Variables of Horses
African horse sickness vaccination status correlated with disease outcome in South Africa
ML Genis, JE Crafford, CT Weyer, D Pollard, JD Grewar and AJ Guthrie Journal of the South African Veterinary Association 94(1) 99 (2023) https://doi.org/10.36303/JSAVA.573
The Socioeconomic Impact of Diseases of Working Equids in Low and Middle-Income Countries: A Critical Review
Pathological features of African horse sickness virus infection in IFNAR−/− mice
Luke M. Jones, Phillippa C. Hawes, Francisco J. Salguero and Javier Castillo-Olivares Frontiers in Veterinary Science 10 (2023) https://doi.org/10.3389/fvets.2023.1114240
Modelling African horse sickness emergence and transmission in the South African control area using a deterministic metapopulation approach
The impact of strategic ventilation adjustments on stress responses in horses housed full-time in a vector-protected barn during the African horse sickness outbreak in Thailand
Nanoparticle- and Microparticle-Based Vaccines against Orbiviruses of Veterinary Importance
Luis Jiménez-Cabello, Sergio Utrilla-Trigo, Natalia Barreiro-Piñeiro, Tomás Pose-Boirazian, José Martínez-Costas, Alejandro Marín-López and Javier Ortego Vaccines 10(7) 1124 (2022) https://doi.org/10.3390/vaccines10071124
Investigating the Role of African Horse Sickness Virus VP7 Protein Crystalline Particles on Virus Replication and Release
Shani Bekker, Christiaan A. Potgieter, Vida van Staden and Jacques Theron Viruses 14(10) 2193 (2022) https://doi.org/10.3390/v14102193
Experimental infection with African Horse Sickness Virus in horses induces only mild temporal hematologic changes and acute phase reactant response
Eva-Christina Schliewert, Emma H. Hooijberg, Johannes S. Steyn, Christiaan Potgieter, Geoffrey T. Fosgate and Amelia Goddard American Journal of Veterinary Research 1 (2022) https://doi.org/10.2460/ajvr.22.08.0123
Viral Safety Issues in the Production and Manufacturing of Human Immunoglobulin Preparations from Equine Plasma/Serum
Clinical, Virological and Immunological Responses after Experimental Infection with African Horse Sickness Virus Serotype 9 in Immunologically Naïve and Vaccinated Horses
Manuel Durán-Ferrer, Rubén Villalba, Paloma Fernández-Pacheco, Cristina Tena-Tomás, Miguel-Ángel Jiménez-Clavero, José-Antonio Bouzada, María-José Ruano, Jovita Fernández-Pinero, Marisa Arias, Javier Castillo-Olivares and Montserrat Agüero Viruses 14(7) 1545 (2022) https://doi.org/10.3390/v14071545
Inference for a spatio-temporal model with partial spatial data: African horse sickness virus in Morocco
Seroprevalence and Risk Factors of African Horse Sickness in Three Agroecological Zones of Cameroon
Mohamed M. F. Ndebé, Mohamed M. M. Mouiche, Frédéric Moffo, et al. Veterinary Medicine International 2022 1 (2022) https://doi.org/10.1155/2022/2457772
Comparative immune responses after vaccination with the formulated inactivated African horse sickness vaccine serotype 1 between naïve horses and pretreated horses with the live-attenuated African horse sickness vaccine
Re‐parameterization of a mathematical model of African horse sickness virus using data from a systematic literature search
Emma L. Fairbanks, Marnie L. Brennan, Peter P. C. Mertens, Michael J. Tildesley and Janet M. Daly Transboundary and Emerging Diseases 69(4) (2022) https://doi.org/10.1111/tbed.14420
Physicochemical factors affecting the diversity and abundance of Afrotropical Culicoides species in larval habitats in Senegal
Humoral antibody response of 10 horses after vaccination against African horse sickness with an inactivated vaccine containing all 9 serotypes in one injection
Sero-prevalence and risk factors of African Horse Sickness among donkeys in a highland area of Kenya
Gichure Mary, Kitala Philip, Kihurani David, Mande John and Munene Njenga Journal of Veterinary Medicine and Animal Health 12(3) 125 (2020) https://doi.org/10.5897/JVMAH2020.0862
Safety and efficacy of inactivated African horse sickness (AHS) vaccine formulated with different adjuvants
Sushila Maan, Manjunatha N. Belaganahalli, Narender S. Maan, Houssam Attoui and Peter P. C. Mertens Livestock Diseases and Management, Emerging and Transboundary Animal Viruses 161 (2020) https://doi.org/10.1007/978-981-15-0402-0_8
Reverse genetics approaches: a novel strategy for African horse sickness virus vaccine design
Eva Calvo-Pinilla, Alejandro Marín-López, Sergio Utrilla-Trigo, Luís Jiménez-Cabello and Javier Ortego Current Opinion in Virology 44 49 (2020) https://doi.org/10.1016/j.coviro.2020.06.003
Update of the Culicoides (Diptera: Ceratopogonidae) species checklist from Algeria with 10 new records
Cross-protective immune responses against African horse sickness virus after vaccination with protein NS1 delivered by avian reovirus muNS microspheres and modified vaccinia virus Ankara
Modeling Arboviral Infection in Mice Lacking the Interferon Alpha/Beta Receptor
Alejandro Marín-Lopez, Eva Calvo-Pinilla, Sandra Moreno, Sergio Utrilla-Trigo, Aitor Nogales, Alejandro Brun, Erol Fikrig and Javier Ortego Viruses 11(1) 35 (2019) https://doi.org/10.3390/v11010035
Plant-produced chimeric virus-like particles - a new generation vaccine against African horse sickness
Daria A. Rutkowska, Nobalanda B. Mokoena, Tsepo L. Tsekoa, Vusi S. Dibakwane and Martha M. O’Kennedy BMC Veterinary Research 15(1) (2019) https://doi.org/10.1186/s12917-019-2184-2
Production of monoclonal antibodies binding to the VP7 protein of African horse sickness virus
Assessment of reproducibility of a VP7 Blocking ELISA diagnostic test for African horse sickness
Manuel Durán‐Ferrer, Montserrat Agüero, Stephan Zientara, et al. Transboundary and Emerging Diseases 66(1) 83 (2019) https://doi.org/10.1111/tbed.12968
Culicoides species as potential vectors of African horse sickness virus in the southern regions of South Africa
M. A. Riddin, G. J. Venter, K. Labuschagne and M. H. Villet Medical and Veterinary Entomology 33(4) 498 (2019) https://doi.org/10.1111/mve.12391
African Horse Sickness: A Review of Current Understanding and Vaccine Development
African horse sickness virus (AHSV) with a deletion of 77 amino acids in NS3/NS3a protein is not virulent and a safe promising AHS Disabled Infectious Single Animal (DISA) vaccine platform
Immunogenicity of plant‐produced African horse sickness virus‐like particles: implications for a novel vaccine
Susan J. Dennis, Ann E. Meyers, Alan J. Guthrie, Inga I. Hitzeroth and Edward P. Rybicki Plant Biotechnology Journal 16(2) 442 (2018) https://doi.org/10.1111/pbi.12783
The immunogenicity of recombinant vaccines based on modified Vaccinia Ankara (MVA) viruses expressing African horse sickness virus VP2 antigens depends on the levels of expressed VP2 protein delivered to the host
Spatial distribution modelling of Culicoides (Diptera: Ceratopogonidae) biting midges, potential vectors of African horse sickness and bluetongue viruses in Senegal
Analysis of the immunological biomarker profile during acute Zika virus infection reveals the overexpression of CXCL10, a chemokine linked to neuronal damage
Felipe Gomes Naveca, Gemilson Soares Pontes, Aileen Yu-hen Chang, et al. Memórias do Instituto Oswaldo Cruz 113(6) (2018) https://doi.org/10.1590/0074-02760170542
Effectiveness of Stable Fly Protectants on Adult Horses
Rachel S. Mottet, Roger D. Moon, Marcia R. Hathaway and Krishona L. Martinson Journal of Equine Veterinary Science 69 11 (2018) https://doi.org/10.1016/j.jevs.2018.06.002
Dynamics of African horse sickness virus nucleic acid and antibody in horses following immunization with a commercial polyvalent live attenuated vaccine
Serological evidence of African horse sickness virus infection of donkeys in Karamoja sub-region, North-eastern Uganda
Nakayima Jesca, L. Nanfuka Mary, Aleper Daniel and Okidi Duke Journal of Veterinary Medicine and Animal Health 9(10) 280 (2017) https://doi.org/10.5897/JVMAH2017.0608
Structural Protein VP2 of African Horse Sickness Virus Is Not Essential for Virus Replication
In Vitro
René G. P. van Gennip, Sandra G. P. van de Water, Christiaan A. Potgieter, Piet A. van Rijn and Stanley Perlman Journal of Virology 91(4) (2017) https://doi.org/10.1128/JVI.01328-16
A Dual Laser Scanning Confocal and Transmission Electron Microscopy Analysis of the Intracellular Localization, Aggregation and Particle Formation of African Horse Sickness Virus Major Core Protein VP7
Gayle V. Wall, Daria A. Rutkowska, Eshchar Mizrachi, Henk Huismans and Vida van Staden Microscopy and Microanalysis 23(1) 56 (2017) https://doi.org/10.1017/S143192761601268X
Vaccination with recombinant Modified Vaccinia Ankara (MVA) viruses expressing single African horse sickness virus VP2 antigens induced cross-reactive virus neutralising antibodies (VNAb) in horses when administered in combination
B-cell epitopes of African horse sickness virus serotype 4 recognised by immune horse sera
Evans M. Mathebula, Frederika E. Faber, Wouter Van Wyngaardt, et al. Onderstepoort Journal of Veterinary Research 84(1) (2017) https://doi.org/10.4102/ojvr.v84i1.1313
Comparative Risk Analysis of TwoCulicoides-Borne Diseases in Horses: Equine Encephalosis More Likely to Enter France than African Horse Sickness
The sero-prevalence and sero-incidence of African horse sickness and equine encephalosis in selected horse and donkey populations in Zimbabwe
Stuart J.G. Gordon, Charlotte Bolwell, Chris W. Rogers, et al. Onderstepoort Journal of Veterinary Research 84(1) (2017) https://doi.org/10.4102/ojvr.v84i1.1445
Development of a Novel Reverse Transcription Loop-Mediated Isothermal Amplification Assay for the Rapid Detection of African Horse Sickness Virus
V. L. Fowler, E. L. A. Howson, J. Flannery, et al. Transboundary and Emerging Diseases 64(5) 1579 (2017) https://doi.org/10.1111/tbed.12549