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Topic:Arboviruses

Arboviruses are a group of viruses transmitted by arthropods, such as mosquitoes and ticks, that can infect horses, leading to various diseases. These viruses include the West Nile virus, Eastern equine encephalitis virus, and Western equine encephalitis virus, among others. Infection with arboviruses can result in neurological symptoms in horses, including ataxia, fever, and in severe cases, encephalitis. The transmission dynamics, pathogenesis, and clinical outcomes of arboviral infections in horses are subjects of ongoing research. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, clinical manifestations, diagnostic methods, and preventive measures related to arboviral infections in equine populations.
Orthoflavivirus-associated neurological disease in a UK horse.
The Veterinary record    March 13, 2026   Volume 198, Issue 6 e236 doi: 10.1002/vetr.70525
Cornelisse K, Ionescu AM.Keesjan Cornelisse and Andra-Maria Ionescu discuss the clinical presentation, investigation and diagnostic approach to a case of orthoflavivirus infection in a horse in south-west England.
Rocio virus sustained circulation in Brazil: first infection case in a horse highlights the need for enhanced arbovirus surveillance.
Archives of virology    February 28, 2026   Volume 171, Issue 4 106 doi: 10.1007/s00705-026-06574-9
Gräf T, Rodriguez MC, de Oliveira Brandão Y, Royer CA, do Nascimento Ferreira C, Confortin C, Zanluca C, Strottmann DM, Duarte Dos Santos CN....Rocio virus (ROCV), a neurotropic arbovirus of the genus, caused Brazil’s largest encephalitis outbreak in the 1970s but has since been rarely detected. We report the first ROCV encephalitis clinical case after nearly 40 years and isolated and sequenced the virus from CNS tissue of a horse. Metatranscriptomics enabled full-genome sequencing, revealing divergence from the reference sequence at an evolutionary rate of 5.8–7.0 × 10⁻⁴, consistent with . Thirty-one non-synonymous substitutions were identified, with the envelope protein most affected. Findings indicate ROCV cryptic circula...
Clinical signs, clinical pathology and outcomes in horses infected naturally with equine encephalosis virus.
Equine veterinary journal    November 14, 2025   Volume 58, Issue 2 434-443 doi: 10.1111/evj.70117
Piketh G, Viljoen A, Eberhardt C.Equine encephalosis (EE) is caused by an Orbivirus from the family Sedoreoviridae and is thus similar to African horse sickness (AHS) and Bluetongue viruses (BTV). These viruses are transmitted by Culicoides midges. Equine encephalosis can infect horses, donkeys and zebras sub-clinically while only horses develop clinical disease. The vector's distribution is climate-dependent with evidence for circulation in Southern Africa, the Middle East and India. Global warming could facilitate the expansion of this distribution and consequently the potential spread into Europe should not be overlooked. ...
Western equine encephalitis virus: A comprehensive review of epidemics, transmission, hosts, and strategies for mitigation.
Virulence    November 3, 2025   Volume 16, Issue 1 2580162 doi: 10.1080/21505594.2025.2580162
Wang L, Zheng R, Li Z, Zhang L.Recent increases in cases of western equine encephalitis (WEE) in South America have raised significant concerns about the virus's potential to cause an endemic disease due to its adaptation to mosquito vectors. Currently, there are no effective vaccines or treatments for WEEV, despite ongoing research into various biochemical products in animal models. The virus presents different pathological effects depending on the host. In humans, WEEV infection leads to central nervous system damage, resulting in encephalitis and severe neurological sequelae, which underscores the need for further resear...
Molecular and Serological Surveillance of Mosquito-Borne Viruses in Racehorses or Mosquitoes From Horse Farms in Shanghai, China, 2022.
Transboundary and emerging diseases    October 26, 2025   Volume 2025 6131435 doi: 10.1155/tbed/6131435
Zhang Y, Zheng J, Zhang H, Lin Y, Wang Y, Ma Z, Wei J, Zhou B, Zhong D.Getah virus (GETV), Japanese encephalitis virus (JEV), West Nile virus (WNV), and African horse sickness virus (AHSV) are mosquito-borne viruses threatening the health of racehorses. However, the systematic surveillance of these viruses among Shanghai racehorses remains lacking. Therefore, molecular and serological surveillance was conducted for these viruses in racehorses and mosquitoes at horse farms in Shanghai, China, during 2022 to assess their prevalence. Among 11,140 mosquitoes collected from seven farms across four districts, and were identified as the dominant species. RT-qPCR detec...
Corrigendum to “Development of African horse sickness disabled infectious single animal (DISA)-DIVA vaccine platform applied for all nine serotypes” [Vaccine 64 (2025) 127772].
Vaccine    October 14, 2025   Volume 66 127839 doi: 10.1016/j.vaccine.2025.127839
van Rijn PA, Wernery U, Feddema AJ, Maris-Veldhuis MA, Joseph S, van Gennip RGP.No abstract available
Introduction of West Nile virus lineage 2 leads to neuroinvasive cases in humans and horses in Sicily, 2022-2023.
Veterinary research    September 25, 2025   Volume 56, Issue 1 177 doi: 10.1186/s13567-025-01575-z
In Italy, West Nile virus (WNV) has been consistently causing disease in humans, horses, and birds since 2008; it was initially confined to the northeast of the country and then spread gradually to the western and southern regions. WNV lineage 1 (WNV-L1) virus was the only lineage that circulated in Italy until 2011, but it was progressively replaced by WNV lineage 2 (WNV-L2). WNV disease in humans was not observed in Sicily, southern Italy, until 2016, when the first case of West Nile neuroinvasive disease (WNND) due to WNV-L1 was reported. Our results demonstrate the introduction of WNV-L2 i...
West Nile virus in horses: surveillance, diagnosis and prevention in the UK.
The Veterinary record    September 5, 2025   Volume 197, Issue 5 e5926 doi: 10.1002/vetr.5926
Whitlock F, Newton R, King S, Ionescu AM, Higgins S.With the geographical distribution of West Nile virus expanding, there is growing concern about the potential for an incursion to the UK. Here, Fleur Whitlock, Richard Newton, Simon King, Andra-Maria Ionescu and Sara Higgins provide a timely reminder of key aspects of the virus' biology.
V4020 Venezuelan Equine Encephalitis Vaccine: Mitigating Neuroinvasion and Reversion Through Rational Design.
Viruses    August 19, 2025   Volume 17, Issue 8 1136 doi: 10.3390/v17081136
Centers A, Barnaby K, Goedeker S, Pignataro A, Tretyakova I, Lukashevich I, Pushko P, Chung D.There is a need for safe and effective vaccines against the Venezuelan equine encephalitis virus that infects both humans and equines. However, development of a live-attenuated vaccine using the TC-83 strain has been hampered by substantial reactogenicity and the potential for neuroinvasion. In this study, we demonstrate that V4020, a new TC-83-based investigational VEEV vaccine with redundant safety features preventing neuroinvasion and reversion, exhibited no neuroinvasion potential in a murine model. Following subcutaneous or intramuscular administration, a subset of mice that received the ...
Seroprevalence and Passive Clinical Surveillance of West Nile Virus in Horses from Ecological High-Risk Areas in Western Romania: Exploratory Findings from a Cross-Sectional Study.
Microorganisms    August 16, 2025   Volume 13, Issue 8 1910 doi: 10.3390/microorganisms13081910
This cross-sectional study evaluated the seroprevalence and clinical impact of West Nile virus (WNV) infection in horses from three ecologically high-risk counties in western Romania (Timiș, Arad, and Bihor) between 2023 and 2025. A total of 306 unvaccinated horses were tested using a commercial ELISA, with 8.17% testing positive for WNV antibodies, indicating prior exposure. Passive surveillance for clinical signs during mosquito seasons identified 16 horses with acute neurological symptoms, four of which were confirmed as clinical cases based on WNV-specific IgM positivity, suggesting proba...
Suspected tickborne virus infection in a horse from Dartmoor.
The Veterinary record    August 15, 2025   Volume 197, Issue 4 151-152 doi: 10.1002/vetr.5905
Ionescu AM, Folly AJ, Johnson N, Cornelisse K.No abstract available
Development of an African horse sickness VP6 DIVA diagnostic ELISA.
Virology journal    August 12, 2025   Volume 22, Issue 1 276 doi: 10.1186/s12985-025-02898-1
Tinarwo M, Dennis SJ, Hitzeroth II, Meyers AE, Rybicki EP, Mbewana S.African horse sickness (AHS) is a severe, noncontagious disease of equines caused by the African horse sickness virus (AHSV). The virus has nine serotypes and is transmitted by the midge. AHS is endemic in South Africa and other sub-Saharan African countries. Currently, the disease is managed using a live attenuated vaccine manufactured by Onderstepoort Biological Products (OBP). Although this vaccine has been in use for decades, it has several drawbacks, including the possibility of reversion to virulence, and it does not allow for the differentiation of infected horses from vaccinated horse...
Cellular Immune Response in Horses After West Nile Neuroinvasive Disease.
Animals : an open access journal from MDPI    August 11, 2025   Volume 15, Issue 16 2352 doi: 10.3390/ani15162352
Tolnai C, O'Sullivan C, Lőrincz M, Karvouni M, Tenk M, Marosi A, Forgách P, Paszerbovics B, Wagenhoffer Z, Kutasi O.West Nile virus (WNV) is a mosquito-borne neurotropic virus that causes neurologic disease in both humans and horses. Yet the long-term cellular immune response following natural infection in horses remains poorly understood. This study aims to evaluate the WNV-specific T-cell response in horses recovered from West Nile neuroinvasive disease (WNND). Twelve client-owned horses (4 Hungarian sport horses, 2 Lippizaners, 1 KWPN, 1 Shagya Arabian, 1 Friesian, 1 Gidran, 1 Andalusian, and 1 draft cross horse) with confirmed clinical WNV infection were enrolled, and peripheral blood mononuclear cells ...
Serological differentiation of West Nile, Usutu, and tick-borne encephalitis virus antibodies in birds and horses using mutant E protein ELISAs.
Scientific reports    August 6, 2025   Volume 15, Issue 1 28752 doi: 10.1038/s41598-025-14448-4
Schwarzer A, Ziegler U, Fertey J, Kreuz M, Vahlenkamp TW, Groschup MH, Ulbert S.West Nile virus (WNV), Usutu virus (USUV) and tick-borne encephalitis virus (TBEV) are worldwide endemic zoonotic orthoflaviviruses, often co-circulating in the same areas. Serological studies in animals, mostly birds and horses, are important means to monitor the spread of these viruses and the infection risks for humans. However, cross-reactive antibodies to these structurally similar flaviviruses frequently impact serological differentiation in enzyme-linked immunosorbent assays (ELISAs), hence time-consuming virus neutralization tests (VNTs) have to be employed in laboratories with high bi...
West Nile virus transmission in the Metropolitan Area of Barcelona (Spain): A One-Health surveillance approach.
One health (Amsterdam, Netherlands)    July 21, 2025   Volume 21 101150 doi: 10.1016/j.onehlt.2025.101150
Busquets N, Gardela J, José-Cunilleras E, Solé A, Salvador MJ, Obón E, Molina-López R, Aranda C, Montalvo T, Corbella I, Bou-Monclús MA....West Nile virus (WNV), mainly transmitted by mosquitoes, poses significant health risks to humans and horses, particularly in endemic regions. The first detection of WNV lineage 2 in Spain was in 2017 in Catalonia (northeastern Spain). In 2023, WNV was confirmed in a young yellow-legged gull and a probable human case was notified within the urban settings. We aimed to define the zone of WNV circulation in the Barcelona Metropolitan Area where these infections occurred and the effectiveness of the One Health approach for early WNV detection. The Catalan WNV surveillance and control programs in...
Species Extinction, Infrastructure Development and Epidemics: The Changing Ecology of African Horsesickness in the Cape Colony, c.1653-1900.
Journal of southern African studies    July 15, 2025   Volume 50, Issue 6 1037-1057 doi: 10.1080/03057070.2024.2508570
Andreas C.The virus that causes African horsesickness does not affect any indigenous species, but produces high mortality among horses, a species introduced by the Dutch East India Company in 1653. While the insect-borne disease did not occur in the immediate vicinity of the Cape Peninsula, horsesickness could have constituted an endemic disease barrier to the horse-based expansion of the colonial sphere into the hinterland, where it was seasonally prevalent. That it did so to only a limited extent is due to a substantial alteration of the ecology of the disease that largely resulted from inadvertent si...
West Nile Virus Antibody Prevalence in Horses During the 2023 Outbreak in Tunisia, North Africa.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    July 11, 2025   doi: 10.1177/15303667251359822
Dachraoui K, Ben Osman R, Ben Slama S, Sayadi A, Maachach Y, Trifi M, Labidi I, Lachheb J, Badr C, Larbi I, Zhioua E.A total of 20 horses belonging to the Pasteur Institute of Tunis used for the production of therapeutic serum antiscorpion venom were tested for the presence of antibodies anti-West Nile virus (WNV) during the 2023 outbreak of West Nile disease that affected humans and horses in Tunisia. Of the 20 samples tested in November 2023 by enzyme-linked immuno-sorbent assay (ELISA), five were positive, leading to a seroprevalence of 25%. Since the number of horses is not substantial, all samples were tested also by virus microneutralization test (MNT) using the Tunisian strain of WNV lineage 1 isolate...
Detection of Novel Orthobunyavirus Reassortants in Fatal Neurologic Case in Horse and Culicoides Biting Midges, South Africa.
Emerging infectious diseases    June 26, 2025   Volume 31, Issue 7 1455-1459 doi: 10.3201/eid3107.241800
Rakaki ME, van der Walt M, Williams J, Venter M.We detected Shuni virus in horses and ovine fetuses and Shamonda virus in a caprine fetus in South Africa. We identified a Shuni/Shamonda virus reassortant in a horse and Shuni/Caimito, Shamonda/Caimito, and Shamonda/Sango virus reassortants in Culicoides midges. Continued genomic surveillance will be needed to detect orthobunyavirus infections in Africa.
First Detection of West Nile Virus (WNV) Lineage 2 in Mosquitoes in the Republic of Kosovo.
Transboundary and emerging diseases    June 24, 2025   Volume 2025 3208806 doi: 10.1155/tbed/3208806
Hoxha I, Xhekaj B, Muja-Bajraktari N, Sekulin K, Unterköfler MS, Schlamadinger L, Situmorang T, Fuehrer HP, Obwaller AG, Camp JV, Walochnik J....West Nile virus (WNV, family Flaviviridae) is the most geographically widespread arbovirus affecting humans. It circulates between wild birds and mosquitoes, while humans and horses are dead-end hosts. In recent years, several outbreaks have been reported from European countries, including the Balkan Peninsula. In the Republic of Kosovo, a southern Balkan country, data on WNV are scarce, and neither mosquito monitoring nor WNV surveillance is established. To address this gap, we aimed to assess a first monitoring approach that should set the basis and support future large-scale activities in t...
Isolation and genetic characterization of a novel Kevo orbivirus and a strain of Mobuck virus from Ochlerotatus communis mosquitoes in Finland.
The Journal of general virology    June 6, 2025   Volume 106, Issue 6 002101 doi: 10.1099/jgv.0.002101
Suvanto MT, Truong Nguyen PT, Vauhkonen H, Olander V, Joensuu R, Culverwell CL, Kaansalo K, Hepojoki J, Vapalahti O, Korhonen EM, Smura T, Huhtamo E.The genus (, ) comprises several globally important vector-borne animal viruses, such as borne bluetongue virus, African horse sickness virus and epizootic haemorrhagic disease virus (EHDV). Orbiviruses that are associated with mosquitoes are a diverse group including established mosquito-borne animal pathogens such as the Peruvian horse sickness virus and phylogenetically related less well-characterized viruses isolated mostly from mammals. Although reported from various geographic regions, these viruses have not previously been detected in northern Europe. Using next-generation sequencing a...
Epidemiology and surveillance of West Nile virus in the Mediterranean Basin during 2010-2023: A systematic review.
Current research in parasitology & vector-borne diseases    June 2, 2025   Volume 7 100277 doi: 10.1016/j.crpvbd.2025.100277
Abbas I, Ahmed F, Muqaddas H, Alberti A, Varcasia A, Sedda L.Climate change can cause spatio-temporal shifts in the epidemiology of various vector borne pathogens, especially in vulnerable areas such as the Mediterranean Basin (MB). Among these pathogens, the West Nile virus (WNV) became endemic in the region. This systematic review and meta-analysis study summarizes WNV epidemiology, molecular characteristics, and surveillance in various MB countries, relying on data and scientific articles on WNV published during 2010-2023. The number of published articles varied across the three MB subregions: Southern Europe (n = 153), North Africa (n = 33), and...
First detection of West Nile virus seropositivity in horses in southern Iraq.
Open veterinary journal    May 31, 2025   Volume 15, Issue 5 2016-2020 doi: 10.5455/OVJ.2025.v15.i5.17
Al-Rammahi HM, Mohsen RK, Othman RM.West Nile virus (WNV) circulates between birds and mosquitoes, with horses and humans as incidental dead-end hosts. Despite documented cases in neighboring countries and human cases in southern Iraq, no previous studies have investigated WNV in Iraqi horses. Unassigned: To determine the seroprevalence of WNV in horses from three southern Iraqi governorates (Thi-Qar, Misan, and Basrah) between March and June 2024. Unassigned: Blood samples were collected from 236 horses regardless of age, sex, or health status. Serum samples were analyzed using commercial competitive enzyme-linked immunosorbent...
Seroprevalence of West Nile, Usutu and tick-borne encephalitis viruses in equids from south-western France in 2023.
Veterinary research    April 24, 2025   Volume 56, Issue 1 91 doi: 10.1186/s13567-025-01508-w
Chevalier N, Migné CV, Mariteragi-Helle T, Dumarest M, De Mas M, Chevrier M, Queré E, Marcillaud-Pitel C, Lupo C, Bigeard C, Touzet T, Leblond A....The circulation of West Nile virus (WNV), Usutu virus (USUV), and tick-borne encephalitis virus (TBEV) was investigated in south-western France during the first six months of 2023, following the emergence of WNV in equids in Gironde, a département in south-western France, in 2022. Blood samples were collected from 494 horses located in the Gironde département and divided into three zones: the Confluence zone, the Intermediate zone and the Arcachon Basin. Samples were tested for WNV-, USUV- and TBEV-specific antibodies. An overall seroprevalence of 14% (95% CI [11-18%]) for orthoflavivirus an...
Blood-Meal Hosts of the Enzootic Vector of Eastern Equine Encephalomyelitis Virus, Culiseta melanura, in Michigan, United States.
The American journal of tropical medicine and hygiene    April 8, 2025   tpmd240637 doi: 10.4269/ajtmh.24-0637
Keven JB, Walker ED.Eastern equine encephalomyelitis virus (EEEV) is endemic in Michigan, showing an upsurge in human cases and in infections of white-tailed deer, horses, and other animals in the past decade (2010-2020). However, blood-host associations of the enzootic mosquito vector Culiseta melanura in the Great Lakes region are poorly known compared with other better-studied regions. Vertebrate sources of blood meals of Cs. melanura collected from resting boxes were determined through sequencing of the mitochondrial cytochrome B gene generated from polymerase chain reaction. Thirty-six unique avian species w...
Local Circulation of Sindbis Virus in Wild Birds and Horses, the Netherlands, 2021-2022.
Emerging infectious diseases    March 26, 2025   Volume 31, Issue 4 863-866 doi: 10.3201/eid3104.241503
Streng K, Holicki CM, Hesson JC, Graham H, Chandler F, Krol L, Blom R, Münger E, van der Linden A, Koenraadt CJM, Schrama M, de Saint Lary CB....We report Sindbis virus circulation in the Netherlands based on serologic evidence found in 6 resident wild birds and 3 horses (2021-2022). Tested mosquitoes were molecularly negative, and humans were serologically negative. Veterinarians and health practitioners in the Netherlands should be aware of the importance of surveillance for Sindbis virus.
Short-term effect of weather variables on West Nile virus infection in Equids in Spain: A space-time stratified case-crossover design.
Acta tropica    March 25, 2025   Volume 264 107602 doi: 10.1016/j.actatropica.2025.107602
Fonseca-Rodríguez O, Pailler-García L, Urban A, Cáceres G, Napp S, Busquets N.West Nile virus (WNV) is an arthropod-borne virus primarily transmitted by Culex mosquitoes, among birds, but occasionally infecting humans and equids. Understanding environmental factors on the disease occurrence is crucial for planning effective prevention and control strategies. Our study estimates the short-term effects of ambient temperature, relative humidity and precipitation on weekly cases of WNV in equids in Spain, using a space-time stratified case-crossover design. Because WNV transmission occurs sometime after the weather conditions become favorable for the vector, we aimed to est...
Host-feeding preferences of Culex pipiens and its potential significance for flavivirus transmission in the Camargue, France.
Medical and veterinary entomology    March 21, 2025   doi: 10.1111/mve.12802
Rodríguez-Valencia V, Olive MM, Le Goff G, Faisse M, Bourel M, L'Ambert G, Vollot B, Tolsá-García MJ, Paupy C, Roiz D.The spread of the West Nile (WNV) and Usutu (USUV) flaviviruses in Europe in recent decades highlights the urgent need to understand the transmission networks of these pathogens as a basis for effective decision-making. These viruses are part of a complex disease cycle that involves birds as principal hosts and humans and horses as dead-end hosts. Our study aims to uncover the intricate relationships between the main mosquito vector of these viruses, Culex pipiens L. (Diptera: Culicidae) and its feeding preferences based on the forage ratio among several host species, primarily birds in a lan...
Orthoflavivirus circulation in South-East Queensland, Australia, before and during the 2021-2022 incursion of Japanese encephalitis virus assessed through sero-epidemiological survey of a sentinel equine population.
One health (Amsterdam, Netherlands)    November 5, 2024   Volume 19 100930 doi: 10.1016/j.onehlt.2024.100930
Yuen NKY, Harrison JJ, Wang ASW, McMahon IE, Habarugira G, Coyle MP, Bielefeldt-Ohmann H.An incursion and outbreak of Japanese encephalitis virus (JEV) was reported in Australia in 2021 and 2022, respectively. There was speculation that JEV may have been circulating in Australia unknowingly prior to the detection. In this study, we determined sero-prevalence and transmission of West Nile virus (WNV), Murray Valley encephalitis virus (MVEV) and JEV, prior to and post JEV incursion in a sentinel equine population in south-east Queensland (SEQ), Australia, using blocking ELISAs (screening test) and virus neutralisation test (confirmatory). Serum samples collected between 2018 and 202...
Equine Encephalomyelitis Outbreak, Uruguay, 2023-2024.
Emerging infectious diseases    November 2, 2024   Volume 31, Issue 1 doi: 10.3201/eid3101.240915
Frabasile S, Morel N, Pérez R, Marrero LM, Burgueño A, Cortinas MN, Bassetti L, Negro R, Rodríguez S, Bórmida V, Gayo V, de Souza VC, Naveca FG....We report the genomic analysis from early equine cases of the Western equine encephalitis virus outbreak during 2023-2024 in Uruguay. Sequences are related to a viral isolate from an outbreak in 1958 in Argentina. A viral origin from South America or continuous enzootic circulation with infrequent spillover is possible.
Outbreak of Western Equine Encephalitis Virus Infection Associated with Neurological Disease in Horses Following a Nearly 40-Year Intermission Period in Argentina.
Viruses    October 10, 2024   Volume 16, Issue 10 1594 doi: 10.3390/v16101594
Vissani MA, Alamos F, Tordoya MS, Minatel L, Schammas JM, Dus Santos MJ, Trono K, Barrandeguy ME, Balasuriya UBR, Carossino M.Western equine encephalitis virus (WEEV) is a mosquito-borne arbovirus (genus , family ) that has re-emerged in South America in late 2023, causing severe disease in both horses and humans after a nearly 40-year intermission period. We here describe the virological, serological, pathological, and molecular features of WEEV infection in horses during the 2023-2024 outbreak in Argentina. WEEV-infected horses developed neurological signs with mild to severe encephalitis associated with minimal to abundant WEEV-infected cells, as demonstrated by WEEV-specific in situ hybridization. The distributio...
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