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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.
Relationship between equine herpesvirus-1 myeloencephalopathy and viral genotype.
Equine veterinary journal    November 3, 2010   Volume 42, Issue 8 672-674 doi: 10.1111/j.2042-3306.2010.00307.x
Pronost S, Cook RF, Fortier G, Timoney PJ, Balasuriya UB.No abstract available
The effect of heterotypic infections of older horses with equine influenza virus type-2 on some clinical and immunological parameters.
Polish journal of veterinary sciences    November 3, 2010   Volume 13, Issue 3 515-523 
Zaleska M, Anusz K, Winnicka A, Kita J.Twelve horses, all of them 10 years old, were vaccinated intramuscularly on 0 and 28 days of the experiment with inactivated vaccine containing only antigens of A-equi-2/Miami/63. Another three unvaccinated horses, each at the age of 10 years, were the negative control group. One, ten-year-old horse was vaccinated with commercial inactivated vaccine containing both antigens of A-equi-2/Miami/63 as well as A-equi-1/Praha/56 as positive control. Three horses were challenged intranasally with homotypic strain of Miami/63, while six other were challenged with heterotypic strains--three with Suffol...
Genome sequence conservation of Hendra virus isolates during spillover to horses, Australia.
Emerging infectious diseases    October 30, 2010   Volume 16, Issue 11 1767-1769 doi: 10.3201/eid1611.100501
Marsh GA, Todd S, Foord A, Hansson E, Davies K, Wright L, Morrissy C, Halpin K, Middleton D, Field HE, Daniels P, Wang LF.Bat-to-horse transmission of Hendra virus has occurred at least 14 times. Although clinical signs in horses have differed, genome sequencing has demonstrated little variation among the isolates. Our sequencing of 5 isolates from recent Hendra virus outbreaks in horses found no correlation between sequences and time or geographic location of outbreaks.
Equine herpesvirus-1 infected peripheral blood mononuclear cell subpopulations during viremia.
Veterinary microbiology    October 28, 2010   Volume 149, Issue 1-2 40-47 doi: 10.1016/j.vetmic.2010.10.004
Wilsterman S, Soboll-Hussey G, Lunn DP, Ashton LV, Callan RJ, Hussey SB, Rao S, Goehring LS.Infection with equine herpesvirus-1 (EHV-1) causes respiratory disease, late term abortions and equine herpesvirus myeloencephalitis (EHM) and remains an important problem in horses worldwide. Despite increasing outbreaks of EHM in recent years, our understanding of EHM pathogenesis is still limited except for the knowledge that a cell-associated viremia in peripheral blood mononuclear cells (PBMCs) is a critical link between primary respiratory EHV-1 infection and secondary complications such as late-term abortion or EHM. To address this question our objective was to identify which PBMC subpo...
Infectivity and pathogenicity of canine H3N8 influenza A virus in horses.
Influenza and other respiratory viruses    October 21, 2010   Volume 4, Issue 6 345-351 doi: 10.1111/j.1750-2659.2010.00157.x
Yamanaka T, Tsujimura K, Kondo T, Matsumura T, Ishida H, Kiso M, Hidari KI, Suzuki T.Equine H3N8 influenza A viruses (EIVs) cause respiratory disease in horses and circulate among horses worldwide. In 2004, an outbreak of canine H3N8 influenza A virus (CIV) occurred among dogs in Florida and has spread among dogs in the United States (US). Genetic analyses revealed that this CIV is closely related to the recent EIVs. Although CIV-infected dogs could be the source of H3N8 influenza A virus for horses, it remains unclear whether the CIV circulating in the United States still maintains its infectivity and/or pathogenicity in horses. To address this, we investigated the infectivit...
A comparative antibody study of the potential susceptibility of Thoroughbred and non-Thoroughbred horse populations in Ireland to equine influenza virus.
Influenza and other respiratory viruses    October 21, 2010   Volume 4, Issue 6 363-372 doi: 10.1111/j.1750-2659.2010.00163.x
Gildea S, Arkins S, Cullinane A.In Ireland, horses may be protected against equine influenza virus (EIV) as a result of natural exposure or vaccination. Current mandatory vaccination programmes are targeted at highly mobile horses. A correlation between antibody levels as measured by single radial haemolysis (SRH) and protective immunity against EIV has been established. Objective: The objective of this study was to determine the susceptibility of selected populations of horses by quantifying their antibodies to EIV. Methods: Blood samples were collected from Thoroughbred weanlings, yearlings, racehorses and broodmares, teas...
Historical thoughts on influenza viral ecosystems, or behold a pale horse, dead dogs, failing fowl, and sick swine.
Influenza and other respiratory viruses    October 21, 2010   Volume 4, Issue 6 327-337 doi: 10.1111/j.1750-2659.2010.00148.x
Morens DM, Taubenberger JK.To understand human influenza in a historical context of viral circulation in avian species, mammals, and in the environment. Methods: Historical review. Methods: Global events in a variety of circumstances over more than 3,000 years time. Methods: Comprehensive review of the historical literature including all major publications on pandemic and panzootic influenza. Methods: Influenza pandemics, panzootics, major epidemics and epizootics, and instances of interspecies transmission of influenza A. Results: Extensive documentation of human and animal influenza over many centuries suggests that i...
Equine influenza – surveillance and control.
Influenza and other respiratory viruses    October 21, 2010   Volume 4, Issue 6 339-344 doi: 10.1111/j.1750-2659.2010.00176.x
Cullinane A, Elton D, Mumford J.Equine influenza virus (EIV) is considered the most important respiratory virus of horses because it is highly contagious and has the potential to disrupt major equestrian events. Equine influenza (EI) can be controlled by vaccination but it has been demonstrated repeatedly in the field that antigenic drift impacts on vaccine efficacy. EI surveillance maintains awareness of emergence and international spread of antigenic variants. It not only serves as an early warning system for horse owners, trainers and veterinary clinicians but is fundamental to influenza control programmes based on vaccin...
Serologic evidence of the recent circulation of Saint Louis encephalitis virus and high prevalence of equine encephalitis viruses in horses in the Nhecolândia sub-region in South Pantanal, Central-West Brazil.
Memorias do Instituto Oswaldo Cruz    October 15, 2010   Volume 105, Issue 6 829-833 doi: 10.1590/s0074-02762010000600017
Pauvolid-Corrêa A, Tavares FN, Costa EV, Burlandy FM, Murta M, Pellegrin AO, Nogueira MF, Silva EE.As in humans, sub-clinical infection by arboviruses in domestic animals is common; however, its detection only occurs during epizootics and the silent circulation of some arboviruses may remain undetected. The objective of the present paper was to assess the current circulation of arboviruses in the Nhecolândia sub-region of South Pantanal, Brazil. Sera from a total of 135 horses, of which 75 were immunized with bivalent vaccine composed of inactive Eastern equine encephalitis virus (EEEV) and Western equine encephalitis virus(WEEV) and 60 were unvaccinated, were submitted to thorough viral i...
Amino acid mutations in the env gp90 protein that modify N-linked glycosylation of the Chinese EIAV vaccine strain enhance resistance to neutralizing antibodies.
Viral immunology    October 5, 2010   Volume 23, Issue 5 531-539 doi: 10.1089/vim.2009.0006
Han X, Zou J, Wang X, Guo W, Huo G, Shen R, Xiang W.The Chinese EIAV vaccine is an attenuated live-virus vaccine obtained by serial passage of a virulent horse isolate (EIAV(L)) in donkeys (EIAV(D)), and subsequently in donkey cells in vitro. In this study, we compare the env gene of the original horse virulent virus (EIAV(L)) with attenuated strains serially passaged in donkey MDM (EIAV(DLV)), and donkey dermal cells (EIAV(FDDV)). Genetic comparisons among parental and attenuated strains found that vaccine strains contained amino acid substitutions/deletions in gp90 that resulted in a loss of three potential N-linked glycosylation sites, desig...
Virally and physically transgenized equine adipose-derived stromal cells as a cargo for paracrine secreted factors.
BMC cell biology    September 23, 2010   Volume 11 73 doi: 10.1186/1471-2121-11-73
Donofrio G, Capocefalo A, Franceschi V, Morini G, Del Bue M, Conti V, Cavirani S, Grolli S.Adipose-Derived Stromal Cells have been shown to have multiple lineage differentiation properties and to be suitable for tissues regeneration in many degenerative processes. Their use has been proposed for the therapy of joint diseases and tendon injuries in the horse. In the present report the genetic manipulation of Equine Adipose-Derived Stromal Cells has been investigated. Results: Equine Adipose-Derived Stromal Cells were successfully virally transduced as well as transiently and stably transfected with appropriate parameters, without detrimental effect on their differentiation properties...
Epizotiology and phylogeny of equine arteritis virus in hucul horses.
Veterinary microbiology    September 16, 2010   Volume 148, Issue 2-4 402-407 doi: 10.1016/j.vetmic.2010.09.008
Rola J, Larska M, Rola JG, Belák S, Autorino GL.The aim of the study was to determine the situation of equine arteritis virus (EAV) infections in hucul horses. A total of 176 horses (154 mares and 22 stallions) from the biggest hucul horse stud in Poland were tested. Antibodies against EAV were detected in 97 (55.1%) horses. The EAV seroprevalence among mares was 53.2% while in stallions - 68.2%. The percentage of positive mares increased with their age, thus amongst the mares of less than 2 years of age the percentage was 32.5%, while in the group of 3-5 years old increased to 59.4% and in the mares in the age of 6-10 years and older than ...
Fast duplex one-step reverse transcriptase PCR for rapid differential detection of West Nile and Japanese encephalitis viruses.
Journal of clinical microbiology    September 15, 2010   Volume 48, Issue 11 4010-4014 doi: 10.1128/JCM.00582-10
Yeh JY, Lee JH, Seo HJ, Park JY, Moon JS, Cho IS, Lee JB, Park SY, Song CS, Choi IS.The aim of this study was to develop a highly sensitive and specific one-step duplex reverse transcriptase PCR (RT-PCR) assay for the simultaneous and differential detection of West Nile (WNV) and Japanese encephalitis (JEV) viruses. The bioinformatic analysis of published sequences of WNV and JEV revealed conserved regions not targeted by previously reported primers. A total of 13 primers were designed based on these regions to detect all of the WNV and JEV lineages and to discriminate between the two viruses by the generation of 482- and 241-bp cDNA products, respectively. The results indica...
Description of the first recorded major occurrence of equine viral arteritis in France.
Equine veterinary journal    September 14, 2010   Volume 42, Issue 8 713-720 doi: 10.1111/j.2042-3306.2010.00109.x
Pronost S, Pitel PH, Miszczak F, Legrand L, Marcillaud-Pitel C, Hamon M, Tapprest J, Balasuriya UB, Freymuth F, Fortier G.The vast majority of equine arteritis virus (EAV) infections are inapparent or relatively mild, but may occasionally cause outbreaks of equine viral arteritis. The event observed in France during the summer of 2007 was the most important seen in the country, with mortality and disruption of economic activity. Objective: To describe the different stages seen during the outbreak and to show how molecular tools were used for both the detection and management of the crisis. Methods: EAV detection was performed by real-time reverse transcription-polymerase chain reaction (RT-PCR) in blood, nasal sw...
Equine influenza viruses isolated during outbreaks in China in 2007 and 2008.
The Veterinary record    September 8, 2010   Volume 167, Issue 10 382-383 doi: 10.1136/vr.c3805
Wei G, Xue-Feng L, Yan Y, Ying-Yuan W, Ling-Li D, Li-Ping Z, Wen-Hua X, Jian-Hua Z.No abstract available
West Nile virus serosurveillance in horses in Donana, Spain, 2005 to 2008.
The Veterinary record    September 8, 2010   Volume 167, Issue 10 379-380 doi: 10.1136/vr.c3155
Jiménez-Clavero MA, Llorente F, Sotelo E, Soriguer R, Gómez-Tejedor C, Figuerola J.No abstract available
Molecular characterization of equine rotaviruses circulating in Argentinean foals during a 17-year surveillance period (1992-2008).
Veterinary microbiology    September 8, 2010   Volume 148, Issue 2-4 150-160 doi: 10.1016/j.vetmic.2010.08.032
Garaicoechea L, Miño S, Ciarlet M, Fernández F, Barrandeguy M, Parreño V.P[12]G3 and P[12]G14 equine rotaviruses (ERVs) are epidemiologically important in horses. In Argentina, the prevalent ERV strains have been historically P[12]G3. The aim of this study was the detection and characterization of ERV strains circulating in foals in Argentina during a 17-year study (1992-2008). Additionally, the gene sequences of VP7, VP4 and NSP4 encoding genes of representative Argentinean ERV strains were determined and phylogenetic analyses were performed to elucidate the evolutionary relationships of the ERV strains in Argentina. ERVs were detected in 165 (21%) out of 771 diar...
Cotton rats and house sparrows as hosts for North and South American strains of eastern equine encephalitis virus.
Emerging infectious diseases    August 26, 2010   Volume 16, Issue 9 1373-1380 doi: 10.3201/eid1609.100459
Arrigo NC, Adams AP, Watts DM, Newman PC, Weaver SC.Eastern equine encephalitis virus (EEEV; family Togaviridae, genus Alphavirus) is an arbovirus that causes severe disease in humans in North America and in equids throughout the Americas. The enzootic transmission cycle of EEEV in North America involves passerine birds and the ornithophilic mosquito vector, Culiseta melanura, in freshwater swamp habitats. However, the ecology of EEEV in South America is not well understood. Culex (Melanoconion) spp. mosquitoes are considered the principal vectors in Central and South America; however, a primary vertebrate host for EEEV in South America has not...
Comparative evaluation of four competitive/blocking ELISAs for the detection of influenza A antibodies in horses.
Veterinary microbiology    August 24, 2010   Volume 148, Issue 2-4 377-383 doi: 10.1016/j.vetmic.2010.08.014
Kittelberger R, McFadden AM, Hannah MJ, Jenner J, Bueno R, Wait J, Kirkland PD, Delbridge G, Heine HG, Selleck PW, Pearce TW, Pigott CJ, O'Keefe JS.New Zealand is free from equine influenza and has never experienced an incursion in its horse population. As part of New Zealand's preparedness to an incursion of an exotic animal disease, it was considered necessary to select the most accurate test for equine influenza (EI) from the array of those available. Four readily available blocking/competitive enzyme-linked immunosorbent assays (ELISA), originally developed and marketed for the detection of antibodies against the avian influenza virus, were evaluated using serum samples from New Zealand non-infected, non-vaccinated horses (n=365), and...
Duration of immunity induced by an equine influenza and tetanus combination vaccine formulation adjuvanted with ISCOM-Matrix.
Vaccine    August 20, 2010   Volume 28, Issue 43 6989-6996 doi: 10.1016/j.vaccine.2010.08.043
Heldens JG, Pouwels HG, Derks CG, Van de Zande SM, Hoeijmakers MJ.Equine influenza is a contagious disease caused by equine influenza virus which belongs to the orthomyxovirus family. Outbreaks of equine influenza cause severe economic loses to the horse industry and consequently horses in competition are required to be regularly vaccinated against equine influenza. Unlike the existing inactivated vaccines, Equilis Prequenza Te is the only one able to induce protection against clinical disease and virus excretion after a primary vaccination course consisting of two vaccine applications 4-6 weeks apart until the recommended time of the third vaccination. In t...
Report of the Second Havemeyer EHV-1 Workshop, Steamboat Springs, Colorado, USA, September 2008.
Equine veterinary journal    August 19, 2010   Volume 42, Issue 6 572-575 doi: 10.1111/j.2042-3306.2010.00157.x
Kydd JH, Slater J, Osterrieder N, Antczak DF, Lunn DP.This report summarises the findings of the Second Havemeyer EHV-1 Workshop, which was held in Steamboat Springs, Colorado, USA in September 2008. A total of 38 delegates, consisting of veterinary clinicians and scientists from academia and industry participated in a series of sessions that focused on equine herpesvirus myeloencephalopathy (EHM). Each session consisted of a review, followed by short presentations on current research topics. The sessions included EHM epidemiology, in vivo and in vitro models for studying EHM, EHV-1 virulence determinants, real-time PCR diagnostics, antiviral med...
Development of a new primer-probe energy transfer method for the differentiation of neuropathogenic and non-neuropathogenic strains of equine herpesvirus-1.
Journal of virological methods    August 13, 2010   Volume 169, Issue 2 425-427 doi: 10.1016/j.jviromet.2010.08.007
Malik P, Pálfi V, Bálint A.Equine herpesvirus-1 (EHV-1) is a major pathogen of horses with worldwide distribution that can cause various clinical signs ranged from mild respiratory disease to neurological symptoms. Comparison of neuropathogenic and non-neuropathogenic EHV-1 strains revealed that a single non-synonymous nucleotide substitution (A/G2254) in the ORF30 region is associated with the altered functions of the viral DNA polymerase and therefore the neuropathogenicity of EHV-1 virus strains. The aim of the present study was the development of a new differentiation method of this particular single nucleotide poly...
Extended phylogeny of the equine arteritis virus sequences including South American sequences.
Intervirology    August 6, 2010   Volume 54, Issue 1 30-36 doi: 10.1159/000318925
Metz GE, Ocampos GP, Serena MS, Gambaro SE, Nosetto E, Echeverría MG.To perform genetic analysis of the ORF5 of equine arteritis virus (EAV) may provide new insights into the genetic evolution and origin of the Argentinean EAV sequences. Methods: A total of 76 sequences were analyzed by neighbor joining (NJ), maximum parsimony and maximum likelihood algorithms. The analysis of the selective pressures was performed using the Tajima's test. Results: The trees showed similar topologies. Two clades were identified: the first clade was formed by strains isolated mainly from a donkey, whereas the second clade presented four large groups from different geographic regi...
West Nile virus range expansion into British Columbia.
Emerging infectious diseases    August 4, 2010   Volume 16, Issue 8 1251-1258 doi: 10.3201/eid1608.100483
Roth D, Henry B, Mak S, Fraser M, Taylor M, Li M, Cooper K, Furnell A, Wong Q, Morshed M.In 2009, an expansion of West Nile virus (WNV) into the Canadian province of British Columbia was detected. Two locally acquired cases of infection in humans and 3 cases of infection in horses were detected by ELISA and plaque-reduction neutralization tests. Ten positive mosquito pools were detected by reverse transcription PCR. Most WNV activity in British Columbia in 2009 occurred in the hot and dry southern Okanagan Valley. Virus establishment and amplification in this region was likely facilitated by above average nightly temperatures and a rapid accumulation of degree-days in late summer....
Equine influenza: a review of an unpredictable virus.
Veterinary journal (London, England : 1997)    August 3, 2010   Volume 189, Issue 1 7-14 doi: 10.1016/j.tvjl.2010.06.026
Daly JM, MacRae S, Newton JR, Wattrang E, Elton DM.This review discusses some of the challenges still faced in the control of equine influenza virus H3N8 infection. A widespread outbreak of equine influenza in the United Kingdom during 2003 in vaccinated Thoroughbred racehorses challenged the current dogma on vaccine strain selection. Furthermore, several new developments in the first decade of the 21st century, including transmission to and establishment in dogs, a presumed influenza-associated encephalopathy in horses and an outbreak of equine influenza in Australia, serve as a reminder of the unpredictable nature of influenza viruses. The a...
Microbead electrochemiluminescence immunoassay for detection and identification of Venezuelan equine encephalitis virus.
Journal of virological methods    August 1, 2010   Volume 169, Issue 2 274-281 doi: 10.1016/j.jviromet.2010.07.022
Dai X, Hilsen RE, Hu WG, Fulton RE.An electrochemiluminescence (ECL) immunoassay, incorporating chemically biotinylated and ruthenylated antibodies down-selected from a panel of monoclonal and polyclonal reagents, was developed to detect and identify Venezuelan equine encephalitis virus (VEEV). The limit of detection (LOD) of the optimized ECL assay was 10(3)pfu/ml VEEV TC-83 virus and 1 ng/ml recombinant (r) VEEV E2 protein. The LOD of the ECL assay was approximately one log unit lower than that of a sandwich enzyme-linked immunosorbent assay (ELISA) incorporating the same immunoreagents. Repetition of ECL assays over time and...
EcPV2 DNA in equine squamous cell carcinomas and normal genital and ocular mucosa.
Veterinary microbiology    July 22, 2010   Volume 147, Issue 3-4 292-299 doi: 10.1016/j.vetmic.2010.07.008
Vanderstraeten E, Bogaert L, Bravo IG, Martens A.Squamous cell carcinoma (SCC) represents the most common malignant tumour of the eye and external genitals in horses. Comparable to humans, papillomaviruses (PV) have been proposed as etiological agents of cancer in horses and recently, Equine papillomavirus type 2 (EcPV2) has been identified in genital SCCs. Hitherto it had never been demonstrated in ocular SCCs. The first goal of this study was to determine the prevalence of EcPV2 DNA in tissue samples from equine genital and ocular SCCs, genital papillomas and penile intraepithelial neoplasia (PIN) lesions, using EcPV2-specific PCR. The sec...
In vivo cross-protection to African horse sickness Serotypes 5 and 9 after vaccination with Serotypes 8 and 6.
Vaccine    July 16, 2010   Volume 28, Issue 39 6505-6517 doi: 10.1016/j.vaccine.2010.06.105
von Teichman BF, Dungu B, Smit TK.The polyvalent African horsesickness (AHS) attenuated live virus (AHS-ALV) vaccine produced at Onderstepoort Biological Products incorporates 7 of the 9 known serotypes circulating in southern Africa. Serological cross-reaction has been shown in vitro to Serotypes 5 and 9 by Serotypes 8 and 6 respectively, but the degree of in vivo cross-protection between these serotypes in vaccinated horses has not previously been reported. Due to the increasing incidence of AHS Serotypes 5 and 9 in the field, over the last 3-4 seasons of AHS in South Africa, and the absence of Serotypes 5 and 9 in the AHS-A...
Genetic heterogeneity and variation in viral load during equid herpesvirus-2 infection of foals.
Veterinary microbiology    July 7, 2010   Volume 147, Issue 3-4 253-261 doi: 10.1016/j.vetmic.2010.06.031
Brault SA, Bird BH, Balasuriya UB, MacLachlan NJ.Equine herpesvirus-2 (EHV-2) infection has been implicated as a cause of a variety of clinical disorders in young horses, including upper respiratory tract disease, generalized malaise, fever, pharyngeal lymphoid hyperplasia, and lymphadenopathy. Considerable sequence heterogeneity has been demonstrated previously among EHV-2 strains, and individual horses can be concurrently infected with more than one virus strain. In this study, the temporal variation of the viral load and genomic diversity of the glycoprotein B (gB) gene of EHV-2 in the nasal secretions of a cohort of foals was characteriz...
Equus caballus major histocompatibility complex class I is an entry receptor for equine herpesvirus type 1.
Journal of virology    July 7, 2010   Volume 84, Issue 18 9027-9034 doi: 10.1128/JVI.00287-10
Kurtz BM, Singletary LB, Kelly SD, Frampton AR.In this study, Equus caballus major histocompatibility complex class I (MHC-I) was identified as a cellular entry receptor for the alphaherpesvirus equine herpesvirus type 1 (EHV-1). This novel EHV-1 receptor was discovered using a cDNA library from equine macrophages. cDNAs from this EHV-1-susceptible cell type were inserted into EHV-1-resistant B78H1 murine melanoma cells, these cells were infected with an EHV-1 lacZ reporter virus, and cells that supported virus infection were identified by X-Gal (5-bromo-4-chloro-3-indolyl-beta-d-galactopyranoside) staining. Positive cells were subjected t...
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