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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.
Rapid separation and identification of the subtypes of swine and equine influenza A viruses by electromigration techniques with UV and fluorometric detection.
The Analyst    June 8, 2011   Volume 136, Issue 14 3010-3015 doi: 10.1039/c0an00896f
Horká M, Kubíček O, Kubesová A, Rosenbergová K, Kubíčková Z, Šlais K.Influenza A is viral disease, which is a cause of yearly epidemics and, potentially, pandemics. The conventional techniques used today are equipment-demanding, time-consuming and laborious. Recently, we have confirmed that the capillary isoelectric focusing is a suitable fast alternative for the verifying of virus purity. In the wide pH gradient of pH range 2.0-7.5 the isoelectric points for subtypes of equine (H3N8) and swine (H1N2) influenza A viruses were determined approximately as 6.6 and 6.5, respectively. In this contribution we have verified these findings using different isolates of d...
Equine Infectious Anemia Virus Infection and Immunity: Lessons for AIDS Vaccine Development.
Future virology    June 7, 2011   Volume 6, Issue 2 139-142 doi: 10.2217/fvl.10.85
Craigo JK, Montelaro RC.No abstract available
Persistent, widespread papilloma formation on the penis of a horse: a novel presentation of equine papillomavirus type 2 infection.
Veterinary dermatology    June 6, 2011   Volume 22, Issue 6 570-574 doi: 10.1111/j.1365-3164.2011.00987.x
Knight CG, Munday JS, Rosa BV, Kiupel M.A 9-year-old gelding presented with approximately 100 papillomas that covered about 75% of the distal penis. Biopsy was performed, and histology showed evidence of viral cytopathic change and koilocytosis. Polymerase chain reaction using DNA extracted from biopsied tissue amplified equine papillomavirus type 2 (EcPV-2) DNA sequences. Sixteen months later, the horse was re-examined and the appearance of the papillomas was unchanged. Equine papillomavirus type 2 DNA sequences were again amplified from both biopsied tissue and swabs of the penis. Papillomavirus was localized to the lesions by imm...
Serial use of serologic assays and fecal PCR assays to aid in identification of subclinical Lawsonia intracellularis infection for targeted treatment of Thoroughbred foals and weanlings.
Journal of the American Veterinary Medical Association    June 2, 2011   Volume 238, Issue 11 1482-1489 doi: 10.2460/javma.238.11.1482
Page AE, Slovis NM, Gebhart CJ, Wolfsdorf K, Mapes SM, Pusterla N.To assess the serial use of serum immunoperoxidase monolayer assays (IPMAs) and fecal PCR assays, combined with other diagnostic methods, to identify subclinical Lawsonia intracellularis infections for targeted treatment of Thoroughbred foals and weanlings at farms in which the pathogen was endemic or nonendemic. Methods: Evaluation study. Methods: 100 foals and weanlings (53 and 47 at farms in which L intracellularis was endemic and nonendemic, respectively). Methods: Serum was collected every 4 weeks and tested via IPMA, for antibodies against L intracellularis. Fecal samples were collected ...
Characterization of a full-length endogenous beta-retrovirus, EqERV-beta1, in the genome of the horse (Equus caballus).
Viruses    June 1, 2011   Volume 3, Issue 6 620-628 doi: 10.3390/v3060620
van der Kuyl AC.Information on endogenous retroviruses fixed in the horse (Equus caballus) genome is scarce. The recent availability of a draft sequence of the horse genome enables the detection of such integrated viruses by similarity search. Using translated nucleotide fragments from gamma-, beta-, and delta-retroviral genera for initial searches, a full-length beta-retrovirus genome was retrieved from a horse chromosome 5 contig. The provirus, tentatively named EqERV-beta1 (for the first equine endogenous beta-retrovirus), was 10434 nucleotide (nt) in length with the usual retroviral genome structure of 5'...
Serological evidence of West Nile virus circulation in Portugal.
Veterinary microbiology    May 13, 2011   Volume 152, Issue 3-4 407-410 doi: 10.1016/j.vetmic.2011.05.013
Barros SC, Ramos F, Fagulha T, Duarte M, Henriques M, Luís T, Fevereiro M.The circulation of West Nile virus in Portugal was assessed by serological surveys conducted during 2004-2010 in horses and birds. The detection of WNV antibodies in both species in all the years covered by the study as well as the presence of anti-WNV IgM in symptomatic horses that had not traveled outside the country, support the notion that WNV circulates in Portugal.
Urban habituation, ecological connectivity and epidemic dampening: the emergence of Hendra virus from flying foxes (Pteropus spp.).
Proceedings. Biological sciences    May 11, 2011   Volume 278, Issue 1725 3703-3712 doi: 10.1098/rspb.2011.0522
Plowright RK, Foley P, Field HE, Dobson AP, Foley JE, Eby P, Daszak P.Anthropogenic environmental change is often implicated in the emergence of new zoonoses from wildlife; however, there is little mechanistic understanding of these causal links. Here, we examine the transmission dynamics of an emerging zoonotic paramyxovirus, Hendra virus (HeV), in its endemic host, Australian Pteropus bats (fruit bats or flying foxes). HeV is a biosecurity level 4 (BSL-4) pathogen, with a high case-fatality rate in humans and horses. With models parametrized from field and laboratory data, we explore a set of probable contributory mechanisms that explain the spatial and tempor...
African horse sickness in The Gambia: circulation of a live-attenuated vaccine-derived strain.
Epidemiology and infection    May 9, 2011   Volume 140, Issue 3 462-465 doi: 10.1017/S095026881100080X
Oura CA, Ivens PA, Bachanek-Bankowska K, Bin-Tarif A, Jallow DB, Sailleau C, Maan S, Mertens PC, Batten CA.African horse sickness virus serotype 9 (AHSV-9) has been known for some time to be circulating amongst equids in West Africa without causing any clinical disease in indigenous horse populations. Whether this is due to local breeds of horses being resistant to disease or whether the AHSV-9 strains circulating are avirulent is currently unknown. This study shows that the majority (96%) of horses and donkeys sampled across The Gambia were seropositive for AHS, despite most being unvaccinated and having no previous history of showing clinical signs of AHS. Most young horses (<3 years) were seropo...
Direct detection of equine herpesvirus type 1 DNA in nasal swabs by loop-mediated isothermal amplification (LAMP).
The Journal of veterinary medical science    May 6, 2011   Volume 73, Issue 9 1225-1227 doi: 10.1292/jvms.11-0065
Nemoto M, Ohta M, Tsujimura K, Bannai H, Yamanaka T, Kondo T, Matsumura T.We evaluated loop-mediated isothermal amplification (LAMP) as a means of detecting equine herpesvirus type 1 (EHV-1) DNA directly from nasal swabs. To increase the sensitivity, we added a step in which the samples were heat-treated to the original LAMP procedure. The detection limit of the LAMP assay with heat treatment was 10 times more sensitive than the original LAMP assay even when the DNA extraction step was omitted. In addition, the LAMP assay with heat treatment was more sensitive than the original LAMP assay and the polymerase chain reaction using clinical samples. The LAMP assay with ...
Phylogenetic analysis of eastern equine encephalitis virus isolates from Florida.
The American journal of tropical medicine and hygiene    May 5, 2011   Volume 84, Issue 5 709-717 doi: 10.4269/ajtmh.2011.10-0267
White GS, Pickett BE, Lefkowitz EJ, Johnson AG, Ottendorfer C, Stark LM, Unnasch TR.Florida has the highest degree of endemicity for eastern equine encephalitis virus (EEEV) of any state in the United States and is the only state with year-round transmission of EEEV. To further understand the viral population dynamics in Florida, the genome sequence of six EEEV isolates from central Florida were determined. These data were used to identify the most polymorphic regions of the EEEV genome from viruses isolated in Florida. The sequence of these polymorphic regions was then determined for 18 additional Florida isolates collected in four geographically distinct regions over a 20-y...
Protective effects of broadly neutralizing immunoglobulin against homologous and heterologous equine infectious anemia virus infection in horses with severe combined immunodeficiency.
Journal of virology    May 4, 2011   Volume 85, Issue 13 6814-6818 doi: 10.1128/JVI.00077-11
Taylor SD, Leib SR, Wu W, Nelson R, Carpenter S, Mealey RH.Using the equine infectious anemia virus (EIAV) lentivirus model system, we previously demonstrated protective effects of broadly neutralizing immune plasma in young horses (foals) with severe combined immunodeficiency (SCID). However, in vivo selection of a neutralization-resistant envelope variant occurred. Here, we determined the protective effects of purified immunoglobulin with more potent broadly neutralizing activity. Overall, protection correlated with the breadth and potency of neutralizing activity in vitro. Four of five SCID foals were completely protected against homologous challen...
Fatal human case of Western equine encephalitis, Uruguay.
Emerging infectious diseases    May 3, 2011   Volume 17, Issue 5 952-954 doi: 10.3201/eid1705.101068
Delfraro A, Burgueño A, Morel N, González G, García A, Morelli J, Pérez W, Chiparelli H, Arbiza J.No abstract available
[West Nile virus – I. conquest of the West].
Medecine sciences : M/S    April 28, 2011   Volume 27, Issue 4 375-381 doi: 10.1051/medsci/2011274012
Lanteri MC, Assal A, Norris PJ, Busch MP.No abstract available
Development of an antigen-capture ELISA for the detection of equine influenza virus nucleoprotein.
Journal of virological methods    April 28, 2011   Volume 175, Issue 1 120-124 doi: 10.1016/j.jviromet.2011.04.016
Ji Y, Guo W, Zhao L, Li H, Lu G, Wang Z, Wang G, Liu C, Xiang W.An antigen-capture enzyme-linked immunosorbent assay (AC-ELISA) was developed for the detection of the equine influenza virus (EIV), employing monoclonal and polyclonal antibodies against the A/equine/Xingjiang/2007 (H3N8) nucleoprotein (NP). Immunoglobulin G antibodies were purified and used as capture or detector antibodies. The specificity of the optimized AC-ELISA was evaluated using EIV, equine herpesvirus 1 (EHV-1), equine herpesvirus 4 (EHV-4), equine arteritis virus (EAV) and Japanese encephalitis virus (JEV), resulting in only EIV specimens yielding a strong signal. A minimal concentr...
Molecular epidemiology of the rabies virus in Slovenia 1994-2010.
Veterinary microbiology    April 23, 2011   Volume 152, Issue 1-2 181-186 doi: 10.1016/j.vetmic.2011.04.019
Rihtarič D, Hostnik P, Grom J, Toplak I.A molecular epidemiology study was performed on a selection of 30 rabies-positive brain samples collected between 1994 and 2010 in Slovenia and originating from the red fox (n=19), badger (n=3), cattle (n=3), dog (n=2), cat (n=1), marten (n=1) and horse (n=1). Based on the comparison of 1092 and 672 nucleotide sequences of nucleoprotein (N) and partial glycoprotein (G) gene regions, a low genetic diversity of the circulating strains was detected, but both phylogenetic trees were consistent with the topology where partial nucleoprotein or glycoprotein genes were used. A high sequence identity i...
Genetic analysis of the matrix and non-structural genes of equine influenza virus (H3N8) from epizootic of 2008-2009 in India.
Veterinary microbiology    April 22, 2011   Volume 152, Issue 1-2 169-175 doi: 10.1016/j.vetmic.2011.04.011
Virmani N, Bera BC, Shanumugasundaram K, Singh BK, Gulati BR, Singh RK, Vaid RK.India faced an epizootic of equine influenza in 2008-2009. The isolated viruses were typed as H3N8 and grouped with the clade 2 viruses of Florida sublineage on the basis of haemagglutinin (HA) gene sequence analysis. This report describes the genetic analysis and selection pressure of matrix (M) and non-structural 1 (NS1) genes of the Indian isolates. All isolates shared 98.41% and 99.54% homology with other clade 2 viruses of Asian origin for M1 and M2 amino acid (aa) sequences, respectively. There were 3 and 4 unique aa residue changes respectively in M1 and M2 proteins in all Asian isolate...
Molecular characterization and analysis of equine rotavirus circulating in Japan from 2003 to 2008.
Veterinary microbiology    April 22, 2011   Volume 152, Issue 1-2 67-73 doi: 10.1016/j.vetmic.2011.04.016
Nemoto M, Tsunemitsu H, Imagawa H, Hata H, Higuchi T, Sato S, Orita Y, Sugita S, Bannai H, Tsujimura K, Yamanaka T, Kondo T, Matsumura T.Using a total of 2018 fecal samples collected between 2003 and 2008 from foals with diarrhea, the molecular epidemiology of group A equine rotaviruses circulating in Japan was investigated by the reverse transcription-polymerase chain reaction (RT-PCR) typing and sequence analysis of the VP4 (P type) and VP7 (G type) genes. A total of 1149 samples showed positive reactions with RT-PCR, of which 462 samples (40.2%) were positive for G3 type, 502 samples (43.7%) were positive for G14 type, and 185 samples (16.1%) were positive for both G3 and G14 types. To examine P types, 59 G3 and 56 G14 posit...
Kinetics of Equid herpesvirus type 2 infections in a group of Thoroughbred foals.
Veterinary microbiology    April 22, 2011   Volume 152, Issue 1-2 176-180 doi: 10.1016/j.vetmic.2011.04.017
Dunowska M, Howe L, Hanlon D, Stevenson M.The significance of infection with Equid herpesvirus 2 (EHV-2) remains unresolved, mainly due to its widespread distribution, and frequent isolation of the virus not only from diseased animals, but also from clinically normal horses. It has been suggested that EHV-2 exerts its effects on the host indirectly, through predisposition to secondary infections. The aim of this study was to determine kinetics of EHV-2 infection among foals and to investigate the role that EHV-2 may play in development of Rhodococcus equi pneumonia on one farm. Serial blood samples were collected from 43 foals over a ...
C-terminal truncation of the transmembrane protein of an attenuated lentiviral vaccine alters its in vitro but not in vivo replication and weakens its potential pathogenicity.
Virus research    April 22, 2011   Volume 158, Issue 1-2 235-245 doi: 10.1016/j.virusres.2011.04.007
Jiang CG, Gao X, Ma J, Lin YZ, Wang XF, Zhao LP, Hua YP, Liu D, Zhou JH.Preliminary studies revealed that the gene of the gp45 transmembrane protein (TM) of the attenuated equine infectious anemia virus (EIAV) vaccine strain EIAV(FDDV13) had a high frequency of a premature stop codon at position 261W, which generated a 154-residue truncation at the C-terminus. EIAV(FDDV-TM36), a recombinant virus with the TM truncated at the intracytoplasmic (CT) domain due to the presence of a stop codon, was constructed based on EIAV(FDDV)3-8, which is a proviral derivative of the vaccine. EIAV(FDDV-TM36) had a significantly reduced replication capability compared to EIAV(FDDV)3...
Antigenic and genetic analysis of H3N8 influenza viruses isolated from horses in Japan and Mongolia, and imported from Canada and Belgium during 2007-2010.
Archives of virology    April 20, 2011   Volume 156, Issue 8 1379-1385 doi: 10.1007/s00705-011-1000-5
Motoshima M, Okamatsu M, Asakura S, Kuribayashi S, Sengee S, Batchuluun D, Ito M, Maeda Y, Eto M, Sakoda Y, Sodnomdarjaa R, Kida H.A/equine/Kanazawa/1/2007 (H3N8), A/equine/Hokkaido/I828/2008 (H3N8) and A/equine/Mongolia/1/2008 (H3N8) were isolated from infected horses. A/equine/Yokohama/aq19/2009 (H3N8) and A/equine/Yokohama/aq13/2010 (H3N8) were isolated from horses imported from Canada and Belgium examined at the Animal Quarantine Service in Yokohama, Japan. In the present study, these five isolates were genetically and antigenically analyzed. Phylogenetic analysis of hemagglutinin (HA) and neuraminidase (NA) genes showed that three isolates from horses in Japan and imported from Canada belonged to the same branch, cla...
Equine alphaherpesviruses (EHV-1 and EHV-4) differ in their efficiency to infect mononuclear cells during early steps of infection in nasal mucosal explants.
Veterinary microbiology    April 12, 2011   Volume 152, Issue 1-2 21-28 doi: 10.1016/j.vetmic.2011.03.038
Vandekerckhove AP, Glorieux S, Gryspeerdt AC, Steukers L, Van Doorsselaere J, Osterrieder N, Van de Walle GR, Nauwynck HJ.Equine herpesvirus type 1 (EHV-1) replicates extensively in the epithelium of the upper respiratory tract, after which it can spread throughout the body via a cell-associated viremia in mononuclear leukocytes reaching the pregnant uterus and central nervous system. In a previous study, we were able to mimic the in vivo situation in an in vitro respiratory mucosal explant system. A plaquewise spread of EHV-1 was observed in the epithelial cells, whereas in the connective tissue below the basement membrane (BM), EHV-1-infected mononuclear leukocytes were noticed. Equine herpesvirus type 4 (EHV-4...
Serological survey of African horse sickness in selected districts of Jimma zone, Southwestern Ethiopia.
Tropical animal health and production    April 5, 2011   Volume 43, Issue 8 1543-1547 doi: 10.1007/s11250-011-9839-8
Bitew M, Andargie A, Bekele M, Jenberie S, Ayelet G, Gelaye E.A cross-sectional serological survey was undertaken in selected districts of different agro-ecology of Jimma zone (Dedo, Yebu, Seka, Serbo, and Jimma town) from November 2009 to February 2010 to determine the seroprevalence of African horse sickness virus and associated risk factors of the disease. Two hundred seventy-four equids (189 horses, 43 mules, and 47 donkeys) with a history of non-vaccination for at least 2 years were selected randomly from the above areas. Sera samples were collected and assayed for the presence of specific antibody against African horse sickness virus using blocking...
Seroprevalence of West Nile virus in feral horses on Sheldon National Wildlife Refuge, Nevada, United States.
The American journal of tropical medicine and hygiene    April 5, 2011   Volume 84, Issue 4 637-640 doi: 10.4269/ajtmh.2011.10-0467
Franson JC, Hofmeister EK, Collins GH, Dusek RJ.We screened 1,397 feral horses (Equus caballus) on Sheldon National Wildlife Refuge, Nevada, United States, for IgM and IgG against flavivirus during 2004-2006, 2008, and 2009. Positive serum samples were tested for neutralizing antibodies to West Nile virus (WNV) and St. Louis encephalitis virus (SLEV). One animal was positive for antibody against WNV in 2004, but all others tested in 2004-2006 were negative. In 2008 and 2009, we found evidence of increasing seropositive horses with age, whereas seroprevalence of WNV decreased from 19% in 2008 to 7.2% in 2009. No horses were positive for anti...
A competitive ELISA for the detection of group-specific antibody to equine encephalosis virus.
Journal of virological methods    March 31, 2011   Volume 174, Issue 1-2 60-64 doi: 10.1016/j.jviromet.2011.03.024
Crafford JE, Guthrie AJ, Van Vuuren M, Mertens PP, Burroughs JN, Howell PG, Batten CA, Hamblin C.A polyclonal antibody-based, group-specific, competitive ELISA (C-ELISA) for the detection of antibodies to equine encephalosis virus (EEV) was developed. The assay measures the competition between a specific guinea pig antiserum and a test serum, for a pre-titrated EEV antigen. The C-ELISA detected antibodies to the seven known EEV serotypes. Reference antisera raised against other arboviruses did not cross react with EEV antigen. Negative sera from horses in the United Kingdom were used to establish the baseline for a negative population. Negative and positive populations of South African ho...
First serological evidence of West Nile virus activity in horses in Serbia.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    March 25, 2011   Volume 11, Issue 9 1303-1305 doi: 10.1089/vbz.2010.0249
West Nile virus (WNV), the most widely distributed flavivirus worldwide, has lately reemerged in Europe, causing worrisome outbreaks in humans and horses. Serological analysis by enzyme-linked immunoassay and plaque reduction neutralization test showed for the first time in Serbia that 12% of 349 horses presented specific neutralizing WNV antibodies, which in one case also cross-neutralized Usutu virus (USUV). This is the first time that anti-USUV high neutralizing antibody titers are reported in horses. All these data indicate that WNV and USUV are circulating in the region and advise on the ...
First genetic characterization of equine adenovirus type 1 (EAdV-1) in Turkey.
Research in veterinary science    March 25, 2011   Volume 92, Issue 2 324-326 doi: 10.1016/j.rvsc.2011.03.001
Ataseven VS, Oğuzoğlu TÇ, Başaran-Karapınar Z, Bilge-Dağalp S.Equine adenovirus type 1 (EAdV-1) is a cause of repiratory tract infection in equids. In present study for the first time in Turkey, the prevalence of EAdV-1 in nasal swab samples obtained from horses showing respiratory symptoms was investigated by polymerase chain reaction (PCR), and molecular characterization of the hexon gene detected in the Turkish (TR) strain was performed. Overall, the prevalence of EAdV-1 was found low (1.4%) as indicated by a positive PCR reaction from the nasal swab extracts tested. Phylogenetic analysis based on the partial sequences of the hexon gene of a TR-EAdV-1...
Molecular evolution of the six internal genes of H5N1 equine influenza A virus.
Archives of virology    March 23, 2011   Volume 156, Issue 7 1257-1262 doi: 10.1007/s00705-011-0966-3
Abdel-Moneim AS, Shehab GM, Abu-Elsaad AA.Phylogenetic and evolutionary patterns of the six internal genes of an equine H5N1 influenza A virus isolated in Egypt on 2009 were analyzed using direct sequencing. All of the internal genes of the equine H5N1 strain showed a genetic pattern potentially related to Eurasian lineages. Variable dendrogram topologies revealed an absence of reassortment in the equine strain while confirming its close relatedness to other Egyptian H5N1 strains from human and avian species. The equine strain is characterized by a variety of amino acid substitutions in six internal proteins compared to the available ...
Detection of antibodies to West Nile virus in horses, Costa Rica, 2004.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    March 21, 2011   Volume 11, Issue 8 1081-1084 doi: 10.1089/vbz.2010.0198
Hobson-Peters J, Arévalo C, Cheah WY, Blitvich BJ, Tan CS, Sandis A, Araya LN, Hernández JL, Toye P, Hall RA.We conducted a serosurvey for West Nile virus (WNV) infection in equines in Costa Rica in 2004. Antibodies to WNV were detected in 28% of the horses using an epitope blocking ELISA that is specific for WNV. WNV infection was confirmed for a subset of these sera by plaque reduction neutralization tests and Western blot. This is the first evidence of WNV activity in Costa Rica.
Spread of West Nile virus in Iran: a cross-sectional serosurvey in equines, 2008-2009.
Epidemiology and infection    March 14, 2011   Volume 139, Issue 10 1587-1593 doi: 10.1017/S0950268811000173
Ahmadnejad F, Otarod V, Fallah MH, Lowenski S, Sedighi-Moghaddam R, Zavareh A, Durand B, Lecollinet S, Sabatier P.We report the first large-scale serosurvey for West Nile virus (WNV) conducted in the equine population in Iran. Blood samples were obtained in 2008-2009 from 1054 equines collected from 260 districts located in 27 provinces. The overall seroprevalence rate for WNV neutralizing antibodies was 23·7%. Marked geographical variations were observed as province-specific seroprevalence rates ranged from 1% to 88%, the highest values being observed in the southern and western parts of the country. The presence of IgM-positive animals (n=9) indicated a recent circulation of WNV in several provinces. L...
Borna disease virus infection of a horse in Great Britain.
The Veterinary record    March 2, 2011   Volume 168, Issue 14 380b doi: 10.1136/vr.c6405
Priestnall SL, Schöniger S, Ivens PA, Eickmann M, Brachthäuser L, Kehr K, Tupper C, Piercy RJ, Menzies-Gow NJ, Herden C.No abstract available
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