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Topic:Virus

The study of viral infections that affect equine species assesses the relationship between viruses and horses. Infections can lead to a range of clinical symptoms and may impact the health and performance of horses. Common equine viruses include Equine Influenza Virus, Equine Herpesvirus, and West Nile Virus, among others. Understanding the mechanisms of viral transmission, pathogenesis, and host immune responses is essential for developing effective prevention and treatment strategies. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, molecular biology, and clinical management of viral infections in horses.
Demographics of natural oral infection of mosquitos by Venezuelan equine encephalitis virus.
Journal of virology    January 14, 2015   Volume 89, Issue 7 4020-4022 doi: 10.1128/JVI.03265-14
Gutiérrez S, Thébaud G, Smith DR, Kenney JL, Weaver SC.The within-host diversity of virus populations can be drastically limited during between-host transmission, with primary infection of hosts representing a major constraint to diversity maintenance. However, there is an extreme paucity of quantitative data on the demographic changes experienced by virus populations during primary infection. Here, the multiplicity of cellular infection (MOI) and population bottlenecks were quantified during primary mosquito infection by Venezuelan equine encephalitis virus, an arbovirus causing neurological disease in humans and equids.
Voluntary surveillance program for equine influenza virus in the United States from 2010 to 2013.
Journal of veterinary internal medicine    January 14, 2015   Volume 29, Issue 1 417-422 doi: 10.1111/jvim.12519
Pusterla N, Kass PH, Mapes S, Wademan C, Akana N, Barnett C, MacKenzie C, Vaala W.Recent surveillance studies for equine respiratory viruses have shown that equine influenza virus (EIV) continues to be a prevalent respiratory virus of equids throughout the United States and Europe. Objective: To gain a better understanding of the prevalence and epidemiology of EIV shed by horses, mules and donkeys in the United States from March 2010 to November 2013. Methods: 2,605 equids. Methods: Nasal secretions from index cases with acute onset of respiratory disease were tested by qPCR for EIV. Multilevel logistic regression was used to model the association between EIV status and pre...
Quantitative molecular viral loads in 7 horses with naturally occurring equine herpesvirus-1 infection.
Equine veterinary journal    December 30, 2014   Volume 47, Issue 6 689-693 doi: 10.1111/evj.12351
Estell KE, Dawson DR, Magdesian KG, Swain E, Laing ST, Siso S, Mapes S, Pusterla N.Data associating quantitative viral load with severity, clinical signs and survival in equine herpesvirus-1 myeloencephalopathy (EHM) have not been reported. Objective: To report the clinical signs, treatment, and temporal progression of viral loads in 7 horses with naturally occurring EHM and to examine the association of these factors with survival. Methods: Retrospective case series. Methods: The population included 7 horses with EHM presented to the University of California, Davis William R. Pritchard Veterinary Medical Teaching Hospital from May to September 2011. Horses were graded using...
West Nile virus-specific immunoglobulin isotype responses in vaccinated and infected horses.
American journal of veterinary research    December 24, 2014   Volume 76, Issue 1 92-100 doi: 10.2460/ajvr.76.1.92
Khatibzadeh SM, Gold CB, Keggan AE, Perkins GA, Glaser AL, Dubovi EJ, Wagner B.To compare antibody responses of horses naturally infected with West Nile virus (WNV) and those vaccinated against WNV, to identify whether vaccination interferes with the ability to diagnose WNV infection, and to determine the duration of antibody responses after vaccination. Methods: Sera from horses naturally infected with WNV (n = 10) and adult WNV-naïve horses before and after vaccination with a live canarypox virus-vectored vaccine (7) or a killed virus vaccine (8). Methods: An established WNV IgM capture ELISA was used to measure IgM responses. Newly developed capture ELISAs were used ...
Serologic assessment of possibility for MERS-CoV infection in equids.
Emerging infectious diseases    December 23, 2014   Volume 21, Issue 1 181-182 doi: 10.3201/eid2101.141342
Meyer B, García-Bocanegra I, Wernery U, Wernery R, Sieberg A, Müller MA, Drexler JF, Drosten C, Eckerle I.No abstract available
Equid herpesvirus 1 (EHV1) infection of equine mesenchymal stem cells induces a pUL56-dependent downregulation of select cell surface markers.
Veterinary microbiology    December 23, 2014   Volume 176, Issue 1-2 32-39 doi: 10.1016/j.vetmic.2014.12.013
Claessen C, Favoreel H, Ma G, Osterrieder N, De Schauwer C, Piepers S, Van de Walle GR.Equid herpesvirus 1 (EHV1) is an ubiquitous alphaherpesvirus that can cause respiratory disease, abortion and central nervous disorders. EHV1 is known to infect a variety of different cell types in vitro, but its tropism for cultured primary equine mesenchymal stem cells (MSC) has never been explored. We report that equine MSC were highly permissive for EHV1 and supported lytic replication of the virus in vitro. Interestingly, we observed that an infection of MSC with EHV1 resulted in a consistent downregulation of cell surface molecules CD29 (β1-integrin), CD105 (endoglin), major histocompat...
[Surveillance of West Nile fever in horses in the Czech Republic from 2011 to 2013]. Sedlák K, Zelená H, Křivda V, Šatrán P.The West Nile virus (WNV) is an important mosquito-borne flavivirus occurring around the world. Occasionally found in Central Europe, the virus spread massively through whole Hungary between 2008 and 2009. The aim of our study was to determine the recent prevalence of the WNV infection in horses in the Czech Republic. Methods: Overall, 2349 serum samples, collected from healthy unvaccinated adult horses in the Czech Republic between 2011 and 2013, were tested. A commercially available competitive ELISA kit (cELISA) was used for this purpose and positive samples were confirmed by virus neutrali...
Re-emergence of a genetic outlier strain of equine arteritis virus: Impact on phylogeny.
Virus research    December 17, 2014   Volume 202 144-150 doi: 10.1016/j.virusres.2014.12.009
Steinbach F, Westcott DG, McGowan SL, Grierson SS, Frossard JP, Choudhury B.Equine arteritis virus (EAV) is the causative agent of equine viral arteritis (EVA), a respiratory and reproductive disease of equids, which is notifiable in some countries including the Great Britain (GB) and to the OIE. Herein, we present the case of a persistently infected stallion and the phylogenetic tracing of the virus strain isolated. Discussing EAV occurrence and phylogenetic analysis we review features, which may aid to harmonise and enhance the classification of EAV.
Role of enhanced vector transmission of a new West Nile virus strain in an outbreak of equine disease in Australia in 2011.
Parasites & vectors    December 12, 2014   Volume 7 586 doi: 10.1186/s13071-014-0586-3
van den Hurk AF, Hall-Mendelin S, Webb CE, Tan CS, Frentiu FD, Prow NA, Hall RA.In 2011, a variant of West Nile virus Kunjin strain (WNVKUN) caused an unprecedented epidemic of neurological disease in horses in southeast Australia, resulting in almost 1,000 cases and a 9% fatality rate. We investigated whether increased fitness of the virus in the primary vector, Culex annulirostris, and another potential vector, Culex australicus, contributed to the widespread nature of the outbreak. Methods: Mosquitoes were exposed to infectious blood meals containing either the virus strain responsible for the outbreak, designated WNVKUN2011, or WNVKUN2009, a strain of low virulence th...
Equine disease surveillance: quarterly summary.
The Veterinary record    November 29, 2014   Volume 175, Issue 21 530-533 doi: 10.1136/vr.g6835
Equine influenza in England and Scotland, Significant numbers of outbreaks of equine herpesvirus 1 neurological disease in the USA, Summary of surveillance testing, April to June 2014. These are among matters discussed in the most recent quarterly equine disease surveillance report, prepared by Defra, the Animal Health Trust and the British Equine Veterinary Association.
Focus on: Hendra virus in Australia.
The Veterinary record    November 29, 2014   Volume 175, Issue 21 533-534 doi: 10.1136/vr.g6836
Hughes K.Cases of Hendra virus infection in horses in Australia have been seen regularly since the virus was first isolated in 1994. Kristopher Hughes, associate professor of equine medicine at Charles Sturt University in Australia, gives an overview of how knowledge of the virus has developed in the past 20 years.
Spatial and temporal distribution of West Nile virus in horses in Israel (1997-2013)–from endemic to epidemics.
PloS one    November 17, 2014   Volume 9, Issue 11 e113149 doi: 10.1371/journal.pone.0113149
Aharonson-Raz K, Lichter-Peled A, Tal S, Gelman B, Cohen D, Klement E, Steinman A.With the rapid global spread of West Nile virus (WNV) and the endemic state it has acquired in new geographical areas, we hereby bring a thorough serological investigation of WNV in horses in a longstanding endemic region, such as Israel. This study evaluates the environmental and demographic risk factors for WNV infection in horses and suggests possible factors associated with the transition from endemic to epidemic state. West Nile virus seroprevalence in horses in Israel was determined throughout a period of more than a decade, before (1997) and after (2002 and 2013) the massive West Nile f...
A unique evolution of the s2 gene of equine infectious anemia virus in hosts correlated with particular infection statuses.
Viruses    November 10, 2014   Volume 6, Issue 11 4265-4279 doi: 10.3390/v6114265
Wang XF, Wang S, Liu Q, Lin YZ, Du C, Tang YD, Na L, Wang X, Zhou JH.Equine infectious anemia virus (EIAV) is a member of the Lentivirus genus in the Retroviridae family that exhibits a genomic structure similar to that of HIV-1. The S2 accessory proteins play important roles in viral replication in vivo and in viral pathogenicity; however, studies on S2 evolution in vivo are limited. This study analyzed the evolutionary characteristics of the S2 gene of a pathogenic EIAV strain, EIAVLN40, in four experimentally infected horses. The results demonstrated that 14.7% (10 of 68 residues) of the stable amino acid mutations occurred longitudinally in S2 during a 150-...
New perspectives in infectious diseases.
The Veterinary clinics of North America. Equine practice    November 6, 2014   Volume 30, Issue 3 xv-xvi doi: 10.1016/j.cveq.2014.10.001
Mealey RH.No abstract available
Equine viral arteritis.
The Veterinary clinics of North America. Equine practice    November 6, 2014   Volume 30, Issue 3 543-560 doi: 10.1016/j.cveq.2014.08.011
Balasuriya UB.Equine arteritis virus (EAV), the causative agent of equine viral arteritis (EVA), is a respiratory and reproductive disease that occurs throughout the world. EAV infection is highly species-specific and exclusively limited to members of the family Equidae, which includes horses, donkeys, mules, and zebras. EVA is an economically important disease and outbreaks could cause significant losses to the equine industry. The primary objective of this article is to summarize current understanding of EVA, specifically the disease, pathogenesis, epidemiology, host immune response, vaccination and treat...
Equine viral arteritis.
The Veterinary clinics of North America. Equine practice    November 6, 2014   Volume 30, Issue 3 543-560 doi: 10.1016/j.cveq.2014.08.011
Balasuriya UB.Equine arteritis virus (EAV), the causative agent of equine viral arteritis (EVA), is a respiratory and reproductive disease that occurs throughout the world. EAV infection is highly species-specific and exclusively limited to members of the family Equidae, which includes horses, donkeys, mules, and zebras. EVA is an economically important disease and outbreaks could cause significant losses to the equine industry. The primary objective of this article is to summarize current understanding of EVA, specifically the disease, pathogenesis, epidemiology, host immune response, vaccination and treat...
High prevalence of West Nile virus in equines from the two provinces of Pakistan.
Epidemiology and infection    October 31, 2014   Volume 143, Issue 9 1931-1935 doi: 10.1017/S0950268814002878
Zohaib A, Saqib M, Beck C, Hussain MH, Lowenski S, Lecollinet S, Sial A, Asi MN, Mansoor MK, Saqalein M, Sajid MS, Ashfaq K, Muhammad G, Cao S.This study describes the first large-scale serosurvey on West Nile virus (WNV) conducted in the equine population in Pakistan. Sera were collected from 449 equids from two provinces of Pakistan during 2012-2013. Equine serum samples were screened using a commercial ELISA kit detecting antibodies against WNV and related flaviviruses. ELISA-positive samples were further investigated using virus-specific microneutralization tests (MNTs) to identify infections with Japanese encephalitis virus (JEV), WNV and tick-borne encephalitis virus (TBEV). Anti-WNV antibodies were detected in 292 samples by E...
Prevalence of antibodies against influenza virus in non-vaccinated equines from the Brazilian Pantanal.
Revista do Instituto de Medicina Tropical de Sao Paulo    October 30, 2014   Volume 56, Issue 6 487-492 doi: 10.1590/s0036-46652014000600006
Gaíva e Silva L, Borges AM, Villalobos EM, Lara Mdo C, Cunha EM, de Oliveira AC, Braga IA, Aguiar DM.The prevalence of antibodies against Equine Influenza Virus (EIV) was determined in 529 equines living on ranches in the municipality of Poconé, Pantanal area of Brazil, by means of the hemagglutination inhibition test, using subtype H3N8 as antigen. The distribution and possible association among positive animal and ranches were evaluated by the chi-square test, spatial autoregressive and multiple linear regression models. The prevalence of antibodies against EIV was estimated at 45.2% (95% CI 30.2 - 61.1%) with titers ranging from 20 to 1,280 HAU. Seropositive equines were found on 92.0% of...
The haemagglutination activity of equine herpesvirus type 1 glycoprotein C.
Virus research    October 23, 2014   Volume 195 172-176 doi: 10.1016/j.virusres.2014.10.014
Andoh K, Hattori S, Mahmoud HY, Takasugi M, Shimoda H, Bannai H, Tsujimura K, Matsumura T, Kondo T, Kirisawa R, Mochizuki M, Maeda K.Equine herpesvirus type 1 (EHV-1) has haemagglutination (HA) activity toward equine red blood cells (RBCs), but the identity of its haemagglutinin is unknown. To identify the haemagglutinin of EHV-1, the major glycoproteins of EHV-1 were expressed in 293T cells, and the cells or cell lysates were mixed with equine RBCs. The results showed that only EHV-1 glycoprotein C (gC)-producing cells adsorbed equine RBCs, and that the lysate of EHV-1 gC-expressing cells agglutinated equine RBCs. EHV-1 lacking gC did not show HA activity. HA activity was inhibited by monoclonal antibodies (MAbs) specific ...
Combination of an unbiased amplification method and a resequencing microarray for detecting and genotyping equine arteritis virus.
Journal of clinical microbiology    October 22, 2014   Volume 53, Issue 1 287-291 doi: 10.1128/JCM.01935-14
Hans A, Gaudaire D, Manuguerra JC, Leon A, Gessain A, Laugier C, Berthet N, Zientara S.This study shows that an unbiased amplification method applied to equine arteritis virus RNA significantly improves the sensitivity of the real-time reverse transcription-quantitative PCR (RT-qPCR) recommended by the World Organization for Animal Health. Twelve viral RNAs amplified using this method were hybridized on a high-density resequencing microarray for effective viral characterization.
Inefficient transmissibility of NS-truncated H3N8 equine influenza virus in dogs.
Journal of microbiology and biotechnology    October 16, 2014   Volume 25, Issue 3 317-320 doi: 10.4014/jmb.1409.09078
Na W, Song M, Yeom M, Park N, Kang B, Moon H, Jeong DG, Kim JK, Song D.H3N8 equine influenza virus (EIV) causes respiratory diseases in the horse population, and it has been demonstrated that EIV can transmit into dogs owing to its availability on receptors of canine respiratory epithelial cells. Recently, we isolated H3N8 EIV from an EIV-vaccinated horse that showed symptoms of respiratory disease, and which has a partially truncated nonstructural gene (NS). However, it is not clear that the NS-truncated EIV has an ability to cross the host species barrier from horses to dogs as well. Here, we experimentally infected the NS-truncated H3N8 EIV into dogs, and moni...
Discovery of Australian bat lyssavirus in horses poses further threats to human and animal health.
Australian veterinary journal    October 9, 2014   Volume 92, Issue 9 N2 doi: 10.1111/avj.133
Richmond R.No abstract available
Antiviral activity of a Bacillus sp. P34 peptide against pathogenic viruses of domestic animals.
Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology]    October 9, 2014   Volume 45, Issue 3 1089-1094 doi: 10.1590/s1517-83822014000300043
Scopel e Silva D, de Castro CC, da Silva e Silva F, Sant'anna V, Vargas GD, de Lima M, Fischer G, Brandelli A, da Motta Ade S, Hübner Sde O.P34 is an antimicrobial peptide produced by a Bacillus sp. strain isolated from the intestinal contents of a fish in the Brazilian Amazon basin with reported antibacterial activity. The aim of this work was to evaluate the peptide P34 for its in vitro antiviral properties against canine adenovirus type 2 (CAV-2), canine coronavirus (CCoV), canine distemper virus (CDV), canine parvovirus type 2 (CPV-2), equine arteritis virus (EAV), equine influenza virus (EIV), feline calicivirus (FCV) and feline herpesvirus type 1 (FHV-1). The results showed that the peptide P34 exhibited antiviral activity a...
Impact of equine herpesvirus type 1 (EHV-1) infection on the migration of monocytic cells through equine nasal mucosa.
Comparative immunology, microbiology and infectious diseases    October 8, 2014   Volume 37, Issue 5-6 321-329 doi: 10.1016/j.cimid.2014.09.004
Baghi HB, Nauwynck HJ.The mucosal surfaces are important sites of entry for a majority of pathogens, and viruses in particular. The migration of antigen presenting cells (APCs) from the apical side of the mucosal epithelium to the lymph node is a key event in the development of mucosal immunity during viral infections. However, the mechanism by which viruses utilize the transmigration of these cells to invade the mucosa is largely unexplored. Here, we establish an ex vivo explant model of monocytic cell transmigration across the nasal mucosal epithelium and lamina propria. Equine nasal mucosal CD172a(+) cells (nmCD...
Evaluating the Effectiveness of Strategies for the Control of Equine Influenza Virus in the New Zealand Equine Population.
Transboundary and emerging diseases    October 7, 2014   Volume 63, Issue 3 321-332 doi: 10.1111/tbed.12277
Rosanowski SM, Cogger N, Rogers CW, Stevenson MA.New Zealand has never experienced an equine influenza (EI) outbreak. The 2007 outbreak of EI in Australia showed that in a naïve population EI spreads rapidly and substantial efforts (in terms of movement restrictions, mass vaccination and post-vaccination surveillance) were required to achieve eradication. To control EI, it is essential that animal health authorities have well-defined strategies for containment, control and eradication in place before an incursion occurs. A spatially explicit stochastic simulation model, InterSpread Plus, was used to evaluate EI control strategies for the Ne...
Equine influenza virus.
The Veterinary clinics of North America. Equine practice    October 3, 2014   Volume 30, Issue 3 507-522 doi: 10.1016/j.cveq.2014.08.003
Landolt GA.For decades the horse has been viewed as an isolated or "dead-end" host for influenza A viruses, with equine influenza virus being considered as relatively stable genetically. Although equine influenza viruses are genetically more stable than those of human lineage, they are by no means in evolutionary stasis. Moreover, recent transmission of equine-lineage influenza viruses to dogs also challenges the horse's status as a dead-end host. This article reviews recent developments in the epidemiology and evolution of equine influenza virus. In addition, the clinical presentation of equine influenz...
Complete genome sequence of equid herpesvirus 3.
Genome announcements    October 2, 2014   Volume 2, Issue 5 e00797-14 doi: 10.1128/genomeA.00797-14
Sijmons S, Vissani A, Tordoya MS, Muylkens B, Thiry E, Maes P, Matthijnssens J, Barrandeguy M, Van Ranst M.Equid herpesvirus 3 (EHV-3) is a member of the subfamily Alphaherpesvirinae that causes equine coital exanthema. Here, we report the first complete genome sequence of EHV-3. The 151,601-nt genome encodes 76 distinct genes like other equine alphaherpesviruses, but genetically, EHV-3 is significantly more divergent.
Outbreaks of Vesicular stomatitis Alagoas virus in horses and cattle in northeastern Brazil. Cargnelutti JF, Olinda RG, Maia LA, de Aguiar GM, Neto EG, Simões SV, de Lima TG, Dantas AF, Weiblen R, Flores EF, Riet-Correa F.The current article describes outbreaks of vesicular stomatitis (VS) in horses and cattle in Paraiba and Rio Grande do Norte states, northeastern Brazil, between June and August 2013. The reported cases affected 15-20 horses and 6 cattle distributed over 6 small farms in 4 municipalities, but additional data indicated the involvement of a large number of animals on several farms. The disease was characterized by blisters; eruptive lesions in coronary bands, lips, mouth, and muzzle; salivation; claudication and loss of condition. Swollen lower limbs and lips, and ulcerated and erosive areas in ...
Hendra virus.
The Veterinary clinics of North America. Equine practice    September 30, 2014   Volume 30, Issue 3 579-589 doi: 10.1016/j.cveq.2014.08.004
Middleton D.Hendra virus infection of horses occurred sporadically between 1994 and 2010 as a result of spill-over from the viral reservoir in Australian mainland flying-foxes, and occasional onward transmission to people also followed from exposure to affected horses. An unprecedented number of outbreaks were recorded in 2011 leading to heightened community concern. Release of an inactivated subunit vaccine for horses against Hendra virus represents the first commercially available product that is focused on mitigating the impact of a Biosafety Level 4 pathogen. Through preventing the development of acut...
The Australian Public is Still Vulnerable to Emerging Virulent Strains of West Nile Virus.
Frontiers in public health    September 17, 2014   Volume 2 146 doi: 10.3389/fpubh.2014.00146
Prow NA, Hewlett EK, Faddy HM, Coiacetto F, Wang W, Cox T, Hall RA, Bielefeldt-Ohmann H.The mosquito-borne West Nile virus (WNV) is responsible for outbreaks of viral encephalitis in humans and horses with particularly virulent strains causing recent outbreaks in Eastern Europe, the Middle East, and North America. In Australia, a strain of WNV, Kunjin (WNVKUN), is endemic in the north and infection with this virus is generally asymptomatic. However, in early 2011, following extensive flooding, an unprecedented outbreak of WNVKUN encephalitis in horses occurred in South-Eastern Australia, resulting in more than 1,000 cases and a mortality of 10-15%. Despite widespread evidence of ...
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