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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.
[Neurologic form of rhinopneumonia].
Tijdschrift voor diergeneeskunde    November 10, 2005   Volume 130, Issue 20 629-631 
Sloet van Oldruitenborgh-Oosterbaan M.No abstract available
Update: West Nile virus activity–United States, 2005.
MMWR. Morbidity and mortality weekly report    November 9, 2005   Volume 54, Issue 43 1105-1106 
This report summarizes West Nile virus (WNV) surveillance data reported to CDC through ArboNET as of 3 a.m. Mountain Standard Time, November 1, 2005.
Equine herpesvirus 2 (EHV-2) infection in thoroughbred horses in Argentina.
BMC veterinary research    November 9, 2005   Volume 1 9 doi: 10.1186/1746-6148-1-9
Craig MI, Barrandeguy ME, Fernández FM.Equine herpesvirus 2 is a gamma-herpesvirus that infects horses worldwide. Although EHV-2 has been implicated in immunosuppression in foals, upper respiratory tract disease, conjunctivitis, general malaise and poor performance, its precise role as a pathogen remains uncertain. The purpose of the present study was to analyse the incidence of EHV-2 in an Argentinean horse population and correlate it with age and clinical status of the animals. Results: A serological study on 153 thoroughbred racing horses confirmed the presence of EHV-2 in the Argentinean equine population. A virus neutralizatio...
Real-time reverse transcription PCR for detection and quantitative analysis of equine influenza virus.
Journal of clinical microbiology    October 7, 2005   Volume 43, Issue 10 5055-5057 doi: 10.1128/JCM.43.10.5055-5057.2005
Quinlivan M, Dempsey E, Ryan F, Arkins S, Cullinane A.Equine influenza is a cause of epizootic respiratory disease of the equine. The detection of equine influenza virus using real-time Light Cycler reverse transcription (RT)-PCR technology was evaluated over two influenza seasons with the analysis of 171 samples submitted for viral respiratory disease. Increased sensitivity was found in overall viral detection with this system compared to Directigen Flu A and virus isolation, which were 40% and 23%, respectively, that of the RT-PCR. The assay was also evaluated as a viable replacement for the more traditional methods of quantifying equine influe...
Epidemiology. Horse flu virus jumps to dogs.
Science (New York, N.Y.)    October 1, 2005   Volume 309, Issue 5744 2147 doi: 10.1126/science.309.5744.2147a
Enserink M.No abstract available
[West Nile virus infections: overview and epidemiological update].
Virologie (Montrouge, France)    October 1, 2005   Volume 9, Issue 5 395-408 doi: 10.1684/vir.2011.2401
Dauphin G, Zientara S.West Nile virus, a flavivirus transmitted by mosquitoes, has been intensively studied since a few years because of epidemics/epizootics it has caused the last ten years, in particular around the Mediterranean basin and on the North-American continent. This virus mainly circulates in birds ; migrating bird species disseminate the virus while resident species could play a role in viral cycle amplification. A large number of mammal, amphibian and reptile species can also be infected. This virus can cause a lethal disease in humans and horses. For this reason, an active and/or passive surveillance...
Simultaneous identification of orthopoxviruses and alphaviruses by oligonucleotide macroarray with special emphasis on detection of variola and Venezuelan equine encephalitis viruses.
Journal of virological methods    September 21, 2005   Volume 131, Issue 2 160-167 doi: 10.1016/j.jviromet.2005.08.007
Fitzgibbon JE, Sagripanti JL.The development of a method in macroarray format for the identification of alphaviruses and orthopoxviruses in samples of concern in biodefense is reported. Capture oligonucleotides designed to bind generic members of the orthopox- or alphavirus families and a collection of additional oligonucleotides to bind specifically nucleic acids from five individual alphaviruses, including Venezuelan equine encephalitis, or DNA from each of four orthopoxviruses, including variola virus (VAR) were deposited onto nylon membranes. Hybridization of digoxigenin labeled PCR products to the macroarray produced...
Testing for antibodies to equine arteritis virus.
The Veterinary record    September 20, 2005   Volume 157, Issue 12 359-360 doi: 10.1136/vr.157.12.359-d
Wibberley G, Westcott DG, Drew TW.No abstract available
Evaluation of high functional avidity CTL to Gag epitope clusters in EIAV carrier horses.
Virology    September 1, 2005   Volume 342, Issue 2 228-239 doi: 10.1016/j.virol.2005.07.033
Chung C, Mealey RH, McGuire TC.Cytotoxic T lymphocytes (CTL) are critical for lentivirus control including EIAV. Since CTL from most EIAV carrier horses recognize Gag epitope clusters (EC), the hypothesis that carrier horses would have high functional avidity CTL to optimal epitopes in Gag EC was tested. Twenty-two optimal EC epitopes were identified; two in EC1, six in EC2, and seven each in EC3 and 4. However, only five of nine horses had high functional avidity CTL (<or=11 nM) recognizing six epitopes in EC; four in relatively conserved EC3; and one each in EC1 and 2. Horses with high functional avidity CTL had signif...
Detection of equine herpesvirus type 1 using a real-time polymerase chain reaction.
Journal of virological methods    August 30, 2005   Volume 131, Issue 1 92-98 doi: 10.1016/j.jviromet.2005.07.010
Diallo IS, Hewitson G, Wright L, Rodwell BJ, Corney BG.Equid herpesvirus 1 (EHV1) is a major disease of equids worldwide causing considerable losses to the horse industry. A variety of techniques, including PCR have been used to diagnose EHV1. Some of these PCRs were used in combination with other techniques such as restriction enzyme analysis (REA) or hybridisation, making them cumbersome for routine diagnostic testing and increasing the chances of cross-contamination. Furthermore, they involve the use of suspected carcinogens such as ethidium bromide and ultraviolet light. In this paper, we describe a real-time PCR, which uses minor groove-bindi...
Antibodies and PMBC from EIAV infected carrier horses recognize gp45 and p26 synthetic peptides.
Veterinary immunology and immunopathology    August 18, 2005   Volume 108, Issue 3-4 335-343 doi: 10.1016/j.vetimm.2005.06.007
Soutullo A, García MI, Bailat A, Racca A, Tonarelli G, Malan Borel I.Equine infectious anemia virus (EIAV) is a lentivirus causing a persistent infection in horses characterized by recurrent febrile episodes and high levels of viremia associated with a novel antigenic strain of the virus. The virus contains two envelope glycoproteins, gp90 and gp45, and four internal proteins, p26, p15, p11 and p9. Considering that the most infected horses are able to restrict EIAV replication to very low levels and that gp45 and p26 contain highly conserved epitopes among lentiviruses, it would be necessary to identify those conserved epitopes stimulating cellular and humoral ...
Analysis of yearly changes in levels of antibodies to Japanese encephalitis virus nonstructural 1 protein in racehorses in central Japan shows high levels of natural virus activity still exist.
Vaccine    August 11, 2005   Volume 24, Issue 4 516-524 doi: 10.1016/j.vaccine.2005.07.083
Konishi E, Shoda M, Kondo T.Recent reductions in numbers of human and equine Japanese encephalitis (JE) cases in Japan have seen calls to end JE vaccination. Here, we analyzed yearly variations of natural JE virus activity, using sera collected serially in 1998-2003 from racehorses residing in Ibaraki and Shiga prefectures, both located in central Japan. A total of 208 sera from 24 individuals in Ibaraki and 259 from 27 in Shiga were examined for antibodies to JE virus nonstructural 1 (NS1) protein, a marker of natural infection. The natural infection rate in epizootic seasons, which was determined by a significant incre...
The use of a systemic prime/mucosal boost strategy with an equine influenza ISCOM vaccine to induce protective immunity in horses.
Veterinary immunology and immunopathology    August 10, 2005   Volume 108, Issue 3-4 345-355 doi: 10.1016/j.vetimm.2005.06.009
Crouch CF, Daly J, Henley W, Hannant D, Wilkins J, Francis MJ.In horses, natural infection confers long lasting protective immunity characterised by mucosal IgA and humoral IgGa and IgGb responses. In order to investigate the potential of locally administered vaccine to induce a protective IgA response, responses generated by vaccination with an immunostimulating complex (ISCOM)-based vaccine for equine influenza (EQUIP F) containing A/eq/Newmarket/77 (H7N7), A/eq/Borlänge/91 (H3N8) and A/eq/Kentucky/98 (H3N8) using a systemic prime/mucosal boost strategy were studied. Seven ponies in the vaccine group received EQUIP F vaccine intranasally 6 weeks after...
Japanese encephalitis in a racing thoroughbred gelding in Hong Kong.
The Veterinary record    August 9, 2005   Volume 157, Issue 6 168-173 doi: 10.1136/vr.157.6.168
Lam KH, Ellis TM, Williams DT, Lunt RA, Daniels PW, Watkins KL, Riggs CM.A horse in Hong Kong that had been vaccinated against Japanese encephalitis suffered a pyrexic episode that culminated in a hyperexcitable state and self-inflicted trauma. Japanese encephalitis was diagnosed on the basis of clinical, pathological and serological observations, and confirmed by the detection of genomic sequences of the virus in spinal cord tissue. Phylogenetic analyses of E gene and NS5-3'UTR sequences revealed divergent clustering of these segments with previously described genotypes, suggesting the possibility that the horse might have been infected with a recombinant between ...
Lymphocyte proliferation responses induced to broadly reactive Th peptides did not protect against equine infectious anemia virus challenge.
Clinical and diagnostic laboratory immunology    August 9, 2005   Volume 12, Issue 8 983-993 doi: 10.1128/CDLI.12.8.983-993.2005
Fraser DG, Leib SR, Zhang BS, Mealey RH, Brown WC, McGuire TC.The effect of immunization with five lipopeptides, three containing T-helper (Th) epitopes and two with both Th and cytotoxic T-lymphocyte (CTL) epitopes, on equine infectious anemia virus (EIAV) challenge was evaluated. Peripheral blood mononuclear cells from EIAV lipopeptide-immunized horses had significant proliferative responses to Th peptides compared with those preimmunization, and the responses were attributed to significant responses to peptides Gag from positions 221 to 245 (Gag 221-245), Gag 250-269, and Pol 326-347; however, there were no consistent CTL responses. The significant pr...
Development of monoclonal antibody-linked ELISA for sero-diagnosis of vesicular stomatitis virus (VSV-IN) using baculovirus expressed glycoprotein.
Journal of virological methods    August 1, 2005   Volume 130, Issue 1-2 7-14 doi: 10.1016/j.jviromet.2005.05.023
Kweon CH, Kwon BJ, Kim IJ, Lee SY, Ko YJ.The gene encoding the envelope glycoprotein (GP) of vesicular stomatitis virus serotype, Indiana (VSV-IN), was expressed under the polyhedron promoter of baculovirus. The recombinant GP was applied as a diagnostic antigen for the detection of cattle and horse antibodies to VSV. In addition, the neutralizing monoclonal antibody (Mab) to GP of VSV-IN was used as trapping antibody in a Mab-linked indirect ELISA (MLI-ELISA) or detecting antibody in a Mab-linked competitive ELISA (MLC-ELISA). The diagnostic efficiencies of MLI-ELISA and MLC-ELISA were evaluated with currently available C-ELISA from...
Glycoprotein G deletion mutants of equine herpesvirus 1 (EHV1; equine abortion virus) and EHV4 (equine rhinopneumonitis virus).
Archives of virology    August 1, 2005   Volume 150, Issue 12 2583-2592 doi: 10.1007/s00705-005-0607-9
Huang J, Hartley CA, Ficorilli NP, Crabb BS, Studdert MJ.Glycoprotein G (gG) deletion mutants of EHV1 and EHV4, designated EHV1DeltagG and EHV4DeltagG, were constructed. The growth characteristics of the EHV1DeltagG mutants were similar to the parent virus. All of the EHV4DeltagG mutants grew more slowly in cell culture and produced plaques of different morphology including smaller size. The yields of both gG deletion mutant viruses in cell culture were similar to the parent viruses. Sequencing of the genes flanking gG, Southern blot, PCR and western blot analyses of the mutant viruses demonstrated that the deletions were as expected, except for EHV...
[EIAV (equine infectious anemia virus): to better understand the lentiviral pathogenesis].
Virologie (Montrouge, France)    August 1, 2005   Volume 9, Issue 4 289-300 doi: 10.1684/vir.2011.2119
Leroux C, Montelaro RC, Sublimec E, Cadoré JL.Equine infectious anemia virus (EIAV) is a lentivirus related to HIV (human immunodeficiency virus). EIAV causes a persistent infection characterized by recurring febrile episodes associating viremia, fever and thrombocytopenia. Despite a rapid virus replication and antigenic variation, most animals progress from a chronic stage characterized by recurring peaks of viremia and fever to an asymptomatic stage of infection. The understanding of the correlates of this immune control is of great interest in defining vaccine strategies. Research on EIAV over the last five decades has produced some in...
Isolation of equine herpesvirus type 5 in New Zealand.
New Zealand veterinary journal    July 21, 2005   Volume 47, Issue 2 44-46 doi: 10.1080/00480169.1999.36109
Dunowska M, Meers J, Wilks CR.To report the first isolation of equine herpesvirus 5 (EHV-5) in New Zealand as part of a study of equine respiratory viruses in New Zealand. Methods: Nasal swabs and peripheral blood leukocytes were collected from 114 foals and adult horses, inoculated on to equine fetal kidney, rabbit kidney and Vero cell lines and observed for cytopathic effect. EHV-5 isolates were identified using an EHV-5 specific polymerase chain reaction. All samples positive for EHV-5 were also checked for the presence of EHV-2, EHV-1 or EHV-4 DNA using published type-specific primers. The polymerase chain reaction res...
A simple and rapid immunoperoxidase test for the identification of equine herpesvirus-1.
New Zealand veterinary journal    July 21, 2005   Volume 46, Issue 2 80 doi: 10.1080/00480169.1998.36063
Motha MX, Chote KJ.No abstract available
Equine respiratory viruses in foals in New Zealand.
New Zealand veterinary journal    July 21, 2005   Volume 50, Issue 4 140-147 doi: 10.1080/00480169.2002.36300
Dunowska M, Wilks CR, Studdert MJ, Meers J.To identify the respiratory viruses that are present among foals in New Zealand and to establish the age at which foals first become infected with these viruses. Methods: Foals were recruited to the study in October/ November 1995 at the age of 1 month (Group A) or in March/ April 1996 at the age of 4-6 months (Groups B and C). Nasal swabs and blood samples were collected at monthly intervals. Nasal swabs and peripheral blood leucocytes (PBL) harvested from heparinised blood samples were used for virus isolation; serum harvested from whole-blood samples was used for serological testing for the...
Viruses associated with outbreaks of equine respiratory disease in New Zealand.
New Zealand veterinary journal    July 21, 2005   Volume 50, Issue 4 132-139 doi: 10.1080/00480169.2002.36299
Dunowska M, Wilks CR, Studdert MJ, Meers J.To identify viruses associated with respiratory disease in young horses in New Zealand. Methods: Nasal swabs and blood samples were collected from 45 foals or horses from five separate outbreaks of respiratory disease that occurred in New Zealand in 1996, and from 37 yearlings at the time of the annual yearling sales in January that same year. Virus isolation from nasal swabs and peripheral blood leukocytes (PBL) was undertaken and serum samples were tested for antibodies against equine herpesviruses (EHV-1, EHV-2, EHV-4 and EHV-5), equine rhinitis-A virus (ERAV), equine rhinitis-B virus (ERBV...
West Nile virus surveillance, Guadeloupe, 2003-2004.
Emerging infectious diseases    July 19, 2005   Volume 11, Issue 7 1100-1103 doi: 10.3201/eid1107.050105
Lefrançois T, Blitvich BJ, Pradel J, Molia S, Vachiéry N, Pallavicini G, Marlenee NL, Zientara S, Petitclerc M, Martinez D.We conducted extensive surveillance for West Nile virus infection in equines and chickens in Guadeloupe in 2003-2004. We showed a high seroprevalence in equines in 2003 related to biome, followed by a major decrease in virus circulation in 2004. No human or equine cases were reported during the study.
Isolation of equine herpesvirus-1 lacking glycoprotein C from a dead neonatal foal in Japan.
Archives of virology    July 14, 2005   Volume 150, Issue 12 2549-2565 doi: 10.1007/s00705-005-0587-9
Kirisawa R, Hosoi Y, Yamaya R, Taniyama H, Okamoto M, Tsunoda N, Hagiwara K, Iwai H.We isolated a variant equine herpesvirus-1 (EHV-1), strain 5089, from the lung of a dead neonatal foal in Japan and characterized the biological nature of the virus. The virus spread in cultured cells mainly by cell-to-cell infection, unlike wild-type EHV-1, which spreads efficiently as a cell-free virus. The virus titer in cultured supernatant and the intracellular virus titer were low compared to those of wild-type EHV-1. Heparin treatment of the virus had no effect on viral infectivity in cell culture. Glycoprotein C (gC) was not detected by Western blotting and fluorescent antibody tests i...
Molecular characterisation of equine group A rotavirus, Nasuno, isolated in Tochigi Prefecture, Japan.
Veterinary journal (London, England : 1997)    July 12, 2005   Volume 172, Issue 2 369-373 doi: 10.1016/j.tvjl.2005.05.004
Fukai K, Saito T, Fukuda O, Hagiwara A, Inoue K, Sato M.In this study, equine group A rotavirus (RV-A), Nasuno, isolated from foal diarrhoea in Tochigi Prefecture, Japan was characterised genetically by sequence analysis of the genome segments encoding VP4 and VP7. The nucleotide and deduced amino acid sequences revealed high homology with P[12] RV-As (94.0-99.3% and 94.9-99.4%) and G3 RV-As (86.9-99.5% and 91.1-99.4%). Nasuno was also classified into P[12] and G3 in the phylogenetic analysis of the nucleotide sequences of the genome segments encoding VP4 and VP7.
Genomic diversity among equine herpesvirus-4 field isolates.
The Journal of veterinary medical science    July 6, 2005   Volume 67, Issue 6 555-561 doi: 10.1292/jvms.67.555
Maeda K, Kai K, Matsumura T.Infection with equine herpesvirus-4 (EHV-4) is a major cause of respiratory tract disease, equine rhinopneumonitis, in horses. Although the full sequence of EHV-4 has been reported, genomic differences among EHV-4 field isolates have not yet been characterized. In this study, the genomic diversity between 23 Japanese EHV-4 isolates was analyzed by digestion with restriction endonucleases (BamHI, BgIII, EcoRI, SacI, and SalI) and polymerase chain reaction (PCR). The restriction endonuclease digestion patterns of the EHV-4 field isolates showed distinct differences which included mobility shifts...
Equine herpesviruses 1 (EHV-1) and 4 (EHV-4)–epidemiology, disease and immunoprophylaxis: a brief review.
Veterinary journal (London, England : 1997)    July 5, 2005   Volume 170, Issue 1 14-23 doi: 10.1016/j.tvjl.2004.04.018
Patel JR, Heldens J.This review concentrates on the epidemiology, latency and pathogenesis of, and the approaches taken to control infection of horses by equine herpesvirus types 1 (EHV-1) and 4 (EHV-4). Although both viruses may cause febrile rhinopneumonitis, EHV-1 is the main cause of abortions, paresis and neonatal foal deaths. The lesion central to these three conditions is necrotising vasculitis and thrombosis resulting from lytic infection of endothelial cells lining blood capillaries. The initiation of infection in these lesions is likely to be by reactivated EHV-1 from latently infected leukocytes. Howev...
Importation of canid rabies in a horse relocated from Zimbabwe to South Africa.
The Onderstepoort journal of veterinary research    July 5, 2005   Volume 72, Issue 1 95-100 doi: 10.4102/ojvr.v72i1.226
Sabeta CT, Randles JL.In July 2003 a 2-year-old Thoroughbred colt was imported from Harare, Zimbabwe to the Ashburton Training Centre, Pietermaritzburg, South Africa. Five months after importation, the colt presented with clinical signs suggestive of rabies: it was uncoordinated, showed muscle tremors and was biting at itself. Brain tissue was submitted for analysis and the clinical diagnosis was confirmed by the fluorescent antibody test and reverse-transcription polymerase chain reaction (RT-PCR). Phylogenetic analysis of the nucleotide sequence of the cytoplasmic domain of the glycoprotein and the G-L intergenic...
Equine infectious anemia virus Gag p9 function in early steps of virus infection and provirus production.
Journal of virology    July 5, 2005   Volume 79, Issue 14 8793-8801 doi: 10.1128/JVI.79.14.8793-8801.2005
Jin S, Chen C, Montelaro RC.We have previously reported that serial truncation of the Gag p9 protein of equine infectious anemia virus (EIAV) revealed a progressive loss in replication phenotypes in transfected cells, such that a proviral mutant (E32) expressing the N-terminal 31 amino acids of p9 produced infectious virus particles similarly to parental provirus, while a proviral mutant (K30) with two fewer amino acids produced replication-defective virus particles, despite containing apparently normal levels of processed Gag and Pol proteins (C. Chen, F. Li, and R. C. Montelaro, J. Virol. 75:9762-9760, 2001). Based on ...
Envelope glycoprotein mutations mediate equine amplification and virulence of epizootic venezuelan equine encephalitis virus.
Journal of virology    July 5, 2005   Volume 79, Issue 14 9128-9133 doi: 10.1128/JVI.79.14.9128-9133.2005
Greene IP, Paessler S, Austgen L, Anishchenko M, Brault AC, Bowen RA, Weaver SC.Epidemics of Venezuelan equine encephalitis (VEE) result from high-titer equine viremia of IAB and IC subtype viruses that mediate increased mosquito transmission and spillover to humans. Previous genetic studies suggest that mutations in the E2 envelope glycoprotein allow relatively viremia-incompetent, enzootic subtype ID strains to adapt for equine replication, leading to VEE emergence. To test this hypothesis directly, chimeric VEEV strains containing the genetic backbone of enzootic subtype ID strains and the partial envelope glycoprotein genes of epizootic subtype IC and IAB strains, as ...
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