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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.
Efficient homologous RNA recombination and requirement for an open reading frame during replication of equine arteritis virus defective interfering RNAs.
Journal of virology    September 12, 2000   Volume 74, Issue 19 9062-9070 doi: 10.1128/jvi.74.19.9062-9070.2000
Molenkamp R, Greve S, Spaan WJ, Snijder EJ.Equine arteritis virus (EAV), the prototype arterivirus, is an enveloped plus-strand RNA virus with a genome of approximately 13 kb. Based on similarities in genome organization and protein expression, the arteriviruses have recently been grouped together with the coronaviruses and toroviruses in the newly established order Nidovirales. Previously, we reported the construction of pEDI, a full-length cDNA copy of EAV DI-b, a natural defective interfering (DI) RNA of 5.6 kb (R. Molenkamp et al., J. Virol. 74:3156-3165, 2000). EDI RNA consists of three noncontiguous parts of the EAV genome fused ...
Genomic variability of equine herpesvirus-5.
Archives of virology    August 30, 2000   Volume 145, Issue 7 1359-1371 doi: 10.1007/s007050070095
Dunowska M, Holloway SA, Wilks CR, Meers J.Seventeen New Zealand isolates of equine herpesvirus 5 (EHV-5) were compared to the Australian prototype strain. PCR primers were designed to amplify EHV-5 glycoprotein B (gB) gene, and Restriction Fragment Length Polymorphism (RFLP) was used to detect differences between cloned PCR products. EHV-5 isolates from different horses showed a high degree of heterogeneity. However, EHV-5 isolates from individual horses remained homogeneous when examined over a period of time or isolated from different sites. A single EHV-5 gB RFLP profile was detected in isolates from each individual horse but one. ...
Equine herpesvirus 1 (EHV-1) glycoprotein D DNA inoculation in horses with pre-existing EHV-1/EHV-4 antibody.
Veterinary microbiology    August 18, 2000   Volume 76, Issue 2 117-127 doi: 10.1016/s0378-1135(00)00237-6
Ruitenberg KM, Love DN, Gilkerson JR, Wellington JE, Whalley JM.We have shown previously that equine herpesvirus 1 (EHV-1) glycoprotein D (gD) DNA elicited protective immune responses against EHV-1 challenge in murine respiratory and abortion models of EHV-1 disease. In this study, 20 horses, all with pre-existing antibody to EHV-4 and two with pre-existing antibody to EHV-1, were inoculated intramuscularly with three doses each of 50, 200 or 500microg EHV-1 gD DNA or with 500microg vector DNA. In 8 of 15 horses, inoculation with EHV-1 gD DNA led to elevated gD-specific antibody and nine horses exhibited increased virus neutralising (VN) antibody titres co...
Mutations occurring during serial passage of Japanese equine infectious anemia virus in primary horse macrophages.
Virus research    August 10, 2000   Volume 68, Issue 1 93-98 doi: 10.1016/s0168-1702(00)00147-7
Zheng YH, Sentsui H, Kono Y, Ikuta K.An attenuated equine infectious anemia virus (EIAV), named V26, was previously obtained after 50 passages of the Japanese virulent strain V70 in primary macrophage culture. To clarify the differences between both viruses, their full-length sequences were determined. There were higher mutations in S2 (6.15% amino acid difference) and LTR (10.7% nucleotide difference). The presumed initiation codon of the S2 gene was absent from the sequence of V26. There was a large insertion within the long-terminal repeat (LTR) U3 hypervariable region of V26. In addition, there were minor mutations in gag (1....
The acute phase protein serum amyloid A (SAA) as an inflammatory marker in equine influenza virus infection.
Acta veterinaria Scandinavica    August 5, 2000   Volume 40, Issue 4 323-333 doi: 10.1186/BF03547012
Hultén C, Sandgren B, Skiöldebrand E, Klingeborn B, Marhaug G, Forsberg M.The acute phase protein serum amyloid A (SAA) has proven potentially useful as an inflammatory marker in the horse, but the knowledge of SAA responses in viral diseases is limited. The aim of this study was to evaluate SAA as a marker for acute equine influenza A2 (H3N8) virus infection. This is a highly contagious, serious condition that inflicts suffering on affected horses and predisposes them to secondary bacterial infections and impaired performance. Seventy horses, suffering from equine influenza, as verified by clinical signs and seroconversion, were sampled in the acute (the first 48 h...
Utilisation of bacteriophage display libraries to identify peptide sequences recognised by equine herpesvirus type 1 specific equine sera.
Journal of virological methods    August 2, 2000   Volume 88, Issue 1 89-104 doi: 10.1016/s0166-0934(00)00183-x
Birch-Machin I, Ryder S, Taylor L, Iniguez P, Marault M, Ceglie L, Zientara S, Cruciere C, Cancellotti F, Koptopoulos G, Mumford J, Binns M....Three filamentous phage random peptide display libraries were used in biopanning experiments with purified IgG from the serum of a gnotobiotic foal infected with equine herpesvirus-1 (EHV-1) to enrich for epitopes binding to anti-EHV-1 antibodies. The sequences of the amino acids displayed were aligned with protein sequences of EHV-1, thereby identifying a number of potential antibody binding regions. Presumptive epitopes were identified within the proteins encoded by genes 7 (DNA helicase/primase complex protein), 11 (tegument protein), 16 (glycoprotein C), 41 (integral membrane protein), 70 ...
Attitudes of Australian veterinarians about the cause and treatment of lower-respiratory-tract disease in racehorses.
Preventive veterinary medicine    July 29, 2000   Volume 46, Issue 3 149-159 doi: 10.1016/s0167-5877(00)00150-1
Christley RM, Rose RJ, Hodgson DR, Reid SW, Evans S, Bailey C, Hodgson JL.A questionnaire was administered to members of the Australian Equine Veterinary Association to investigate their attitudes and behaviours regarding the cause, diagnosis and treatment of lower-respiratory-tract disease in racehorses. The most-important perceived risk factors related to the level of exposure and resistance to infectious agents, whereas factors associated with racing and climatic factors were lower ranked. By far the most-commonly implicated primary cause of disease was respiratory viruses. However, specific diagnostic tests (such as viral serology or virus isolation) were rarely...
In vitro detection of equine arteritis virus from seminal plasma for identification of carrier stallions.
The Journal of veterinary medical science    July 25, 2000   Volume 62, Issue 6 643-646 doi: 10.1292/jvms.62.643
Fukunaga Y, Wada R, Sugita S, Fujita Y, Nambo Y, Imagawa H, Kanemaru T, Kamada M, Komatsu N, Akashi H.Equine arteritis virus (EAV) was readily isolated in RK-13 cell monolayers by plaque assay from seminal plasma of experimental carrier stallions when they contained high titers of virus regardless of the presence of non-viral cytotoxicity in the seminal plasma. The cytotoxicity interfered with virus isolation from seminal plasma which contained virus at titers less than 10 PFU/ml. However, it was possible to detect the virus in seminal plasma pretreated with PEG (#6000). EAV was consistently identified by RT-PCR from crude seminal plasma which contained virus at titers of more than 10(2.7) PFU...
Development of a differential multiplex PCR assay for equine herpesvirus 1 and 4 as a diagnostic tool.
Journal of veterinary medicine. B, Infectious diseases and veterinary public health    July 20, 2000   Volume 47, Issue 5 351-359 doi: 10.1046/j.1439-0450.2000.00361.x
Carvalho R, Passos LM, Martins AS.In this study, a multiplex polymerase chain reaction (PCR) procedure was developed for differentiation of strains and field isolates of equine herpesvirus type 1 (EHV-1) and type 4 (EHV-4). Specific oli-gonucleotide primers were combined to amplify the thymidine kinase (TK) gene region of EHV-1 and EHV-4, which would yield fragments of different lengths for each virus in the same amplification reaction. The specificity of the largest PCR amplicon for EHV-4 was confirmed by restriction digestion with HindIII. The multiplex PCR proved to be a fast and sensitive method for typing EHV-1 and EHV-4 ...
Equine viral arteritis.
Veterinary pathology    July 15, 2000   Volume 37, Issue 4 287-296 doi: 10.1354/vp.37-4-287
Del Piero F.Equine viral arteritis (EVA) can cause prominent economic losses for the equine industry. The purpose of this review is to provide the pathologist some familiarity with the clinical history, lesions, pathogenesis, and diagnosis of EVA. EVA is caused by an arterivirus (equine arteritis virus, EAV), and the vascular system is the principal but not unique viral target. EVA has variable presentations, including interstitial pneumonia, panvasculitis with edema, thrombosis and hemorrhage, lymphoid necrosis, renal tubular necrosis, abortion, and inflammation of male accessory genital glands. EAV anti...
Equine viral arteritis.
Veterinary pathology    July 15, 2000   Volume 37, Issue 4 287-296 doi: 10.1354/vp.37-4-287
Del Piero F.Equine viral arteritis (EVA) can cause prominent economic losses for the equine industry. The purpose of this review is to provide the pathologist some familiarity with the clinical history, lesions, pathogenesis, and diagnosis of EVA. EVA is caused by an arterivirus (equine arteritis virus, EAV), and the vascular system is the principal but not unique viral target. EVA has variable presentations, including interstitial pneumonia, panvasculitis with edema, thrombosis and hemorrhage, lymphoid necrosis, renal tubular necrosis, abortion, and inflammation of male accessory genital glands. EAV anti...
Equine viral arteritis.
Veterinary pathology    July 15, 2000   Volume 37, Issue 4 287-296 doi: 10.1354/vp.37-4-287
Del Piero F.Equine viral arteritis (EVA) can cause prominent economic losses for the equine industry. The purpose of this review is to provide the pathologist some familiarity with the clinical history, lesions, pathogenesis, and diagnosis of EVA. EVA is caused by an arterivirus (equine arteritis virus, EAV), and the vascular system is the principal but not unique viral target. EVA has variable presentations, including interstitial pneumonia, panvasculitis with edema, thrombosis and hemorrhage, lymphoid necrosis, renal tubular necrosis, abortion, and inflammation of male accessory genital glands. EAV anti...
Equine viral arteritis.
Veterinary pathology    July 15, 2000   Volume 37, Issue 4 287-296 doi: 10.1354/vp.37-4-287
Del Piero F.Equine viral arteritis (EVA) can cause prominent economic losses for the equine industry. The purpose of this review is to provide the pathologist some familiarity with the clinical history, lesions, pathogenesis, and diagnosis of EVA. EVA is caused by an arterivirus (equine arteritis virus, EAV), and the vascular system is the principal but not unique viral target. EVA has variable presentations, including interstitial pneumonia, panvasculitis with edema, thrombosis and hemorrhage, lymphoid necrosis, renal tubular necrosis, abortion, and inflammation of male accessory genital glands. EAV anti...
Equid herpesvirus 1: platelets and alveolar macrophages are potential sources of activated TGF-B1 in the horse.
Veterinary immunology and immunopathology    July 13, 2000   Volume 75, Issue 1-2 71-79 doi: 10.1016/s0165-2427(00)00187-2
Chesters PM, Hughes A, Edington N.Cell mediated responses to Equid herpesvirus 1 (EHV-1) are of short duration in vivo and require considerable expansion to be detected in vitro. Raised serum levels of active transforming growth factor B (TGF-B1) have been shown to depress proliferative T cell responses in experimental infections with EHV-1 in ponies. The present work indicates that latent transforming growth factor B (TGF-B1) is present in circulating platelets, lymph node, bronchial epithelium and alveolar macrophages. Activation of platelets in vitro by thrombin resulted in the release of latent TGF-B1 from platelets, with ...
Recent developments in the epidemiology of virus diseases and BSE.
Infection    July 8, 2000   Volume 27 Suppl 2 S39-S41 doi: 10.1007/BF02561670
Kaaden OR, Truyen U.There is a continuous change in viral epidemics with respect to clinical symptoms, their duration or disappearance and the emergence of new diseases. This can be observed both in human and animal diseases. This evolution of virus diseases is mainly related to three factors: etiological agent, host and environment. As far as genetic alterations of the virus are concerned, two major mechanisms are involved: 1) mutations such as recombination and reassortment; 2) selection for resistance or susceptibility. The epidemiology of newly emerged virus diseases in man and animals, such as AIDS and hemor...
Induction of apoptosis by equine arteritis virus infection.
Virus genes    June 29, 2000   Volume 20, Issue 2 143-147 doi: 10.1023/a:1008122715387
Archambault D, St-Laurent G.Equine arteritis virus (EAV) is the etiological agent of equine viral arteritis, a contagious viral disease of equids. EAV is the prototype virus of the arteriviruses, a group of small enveloped viruses with positive single-stranded RNA genomes. Because apoptosis or programmed cell death is believed to play an important role in the biogenesis of several cytopathogenic viruses, we examined whether EAV was able to induce cell apoptosis in vitro. To do this, Vero cells were infected with EAV at a multiplicity of infection of 0.1 tissue culture infectious dose (TCID50) per cell, and analyzed at va...
Bluetongue and equine viral arteritis viruses as models of virus-induced fetal injury and abortion.
Animal reproduction science    June 14, 2000   Volume 60-61 643-651 doi: 10.1016/s0378-4320(00)00105-6
MacLachlan NJ, Conley AJ, Kennedy PC.A number of viruses have the capacity to cross the placenta and infect the fetus to cause, among other potential outcomes, developmental defects (teratogenesis), fetal death and abortion. Bluetongue virus (BTV) infection of fetal ruminants provides an excellent model for the study of virus-induced teratogenesis. This model has shown that only viruses modified by passage in cell culture, such as modified live virus vaccine strains, readily cross the ruminant placenta, and that the timing of fetal infection determines the outcome. Thus, cerebral malformations only occur after fetal infection at ...
Immune responses and viral replication in long-term inapparent carrier ponies inoculated with equine infectious anemia virus.
Journal of virology    June 14, 2000   Volume 74, Issue 13 5968-5981 doi: 10.1128/jvi.74.13.5968-5981.2000
Hammond SA, Li F, McKeon BM, Cook SJ, Issel CJ, Montelaro RC.Persistent infection of equids by equine infectious anemia virus (EIAV) is typically characterized by a progression during the first year postinfection from chronic disease with recurring disease cycles to a long-term asymptomatic infection that is maintained indefinitely. The goal of the current study was to perform a comprehensive longitudinal analysis of the course of virus infection and development of host immunity in experimentally infected horses as they progressed from chronic disease to long-term inapparent carriage. We previously described the evolution of EIAV genomic quasispecies (C...
Identification and molecular characterization of Hendra virus in a horse in Queensland.
Australian veterinary journal    June 7, 2000   Volume 78, Issue 4 281-282 doi: 10.1111/j.1751-0813.2000.tb11759.x
Hooper PT, Gould AR, Hyatt AD, Braun MA, Kattenbelt JA, Hengstberger SG, Westbury HA.No abstract available
A fatal case of Hendra virus infection in a horse in north Queensland: clinical and epidemiological features.
Australian veterinary journal    June 7, 2000   Volume 78, Issue 4 279-280 doi: 10.1111/j.1751-0813.2000.tb11758.x
Field HE, Barratt PC, Hughes RJ, Shield J, Sullivan ND.No abstract available
Chronic idiopathic inflammatory bowel diseases of the horse.
Journal of veterinary internal medicine    June 1, 2000   Volume 14, Issue 3 258-265 doi: 10.1892/0891-6640(2000)0142.3.co;2
Schumacher J, Edwards JF, Cohen ND.A review of reported cases of inflammatory bowel diseases (IBDs) of horses for which no etiology was identified included cases of granulomatous enteritis (GE), multisystemic eosinophilic epitheliotropic disease (MEED), lymphocytic-plasmacytic enterocolitis (LPE), and idiopathic eosinophilic enterocolitis (EC). The terms EC and MEED were both used to describe a disease in horses characterized by infiltration of intestine and extraintestinal tissues with eosinophils. We use EC to describe IBD characterized by only intestinal infiltration by eosinophils. Horses with GE, MEED, or LPE are usually e...
Virulence of the V592 isolate of equid herpesvirus-1 in ponies.
Journal of comparative pathology    May 12, 2000   Volume 122, Issue 4 288-297 doi: 10.1053/jcpa.1999.0373
Smith KC, Whitwell KE, Mumford JA, Hannant D, Blunden AS, Tearle JP.The V592 strain of equid herpesvirus-1 (EHV-1), which was originally isolated from a fetus during an abortion epizootic, has proved to be of low virulence in infection studies. Five Welsh Mountain pony mares and one foal were challenged intranasally or by aerosol with this isolate, and monitored clinically and virologically. All six animals shed virus in nasopharyngeal mucus, and viraemia was recorded from day 7 post-infection (PI). Pathological investigations revealed mild rhinitis and bronchiolitis in the mares, with viral antigen expression in degenerating epithelial cells of the nasal muco...
Equine influenza vaccine efficacy: the significance of antigenic variation.
Veterinary microbiology    May 9, 2000   Volume 74, Issue 1-2 173-177 doi: 10.1016/s0378-1135(00)00177-2
Yates P, Mumford JA.To investigate the level of cross-protection induced by equine influenza H3N8 vaccines derived from different lineages, two studies have been carried out with ponies vaccinated with 'American-like' and 'European-like' vaccines and experimentally challenged with a European-like strain. The results demonstrated that equine influenza vaccines clearly protect against challenge with homologous virus if serum antibody titres are sufficiently high. On the other hand, protection is incomplete even when animals vaccinated with heterologous strains have comparative antibody levels. Nevertheless, the pro...
Oral vesicular lesions in horses without evidence of vesicular stomatitis virus infection.
Journal of the American Veterinary Medical Association    May 9, 2000   Volume 216, Issue 9 1399-1404 doi: 10.2460/javma.2000.216.1399
Kim L, Morley PS, McCluskey BJ, Mumford EL, Swenson SL, Salman MD.To report clinical and serologic findings in horses with oral vesicular lesions that were consistent with vesicular stomatitis (VS) but apparently were not associated with VS virus (VSV) infection. Methods: Serial case study. Methods: 8 horses. Methods: Horses were quarantined after appearance of oral lesions typical of VS. Severity of clinical signs was scored every 2 to 5 days for 3 months. Serum samples were tested for antibodies by use of competitive ELISA (cELISA), capture ELISA for IgM, serum neutralization, and complement fixation (CF). Virus isolation was attempted from swab specimens ...
DNA vaccination against influenza viruses: a review with emphasis on equine and swine influenza.
Veterinary microbiology    May 9, 2000   Volume 74, Issue 1-2 149-164 doi: 10.1016/s0378-1135(00)00175-9
Olsen CW.The influenza virus vaccines that are commercially-available for humans, horses and pigs in the United States are inactivated, whole-virus or subunit vaccines. While these vaccines may decrease the incidence and severity of clinical disease, they do not consistently provide complete protection from virus infection. DNA vaccines are a novel alternative to conventional vaccination strategies, and offer many of the potential benefits of live virus vaccines without their risks. In particular, because immunogens are synthesized de novo within DNA transfected cells, antigen can be presented by MHC c...
The predicted metal-binding region of the arterivirus helicase protein is involved in subgenomic mRNA synthesis, genome replication, and virion biogenesis.
Journal of virology    May 9, 2000   Volume 74, Issue 11 5213-5223 doi: 10.1128/jvi.74.11.5213-5223.2000
van Dinten LC, van Tol H, Gorbalenya AE, Snijder EJ.Equine arteritis virus (EAV), the prototype Arterivirus, is a positive-stranded RNA virus that expresses its replicase in the form of two large polyproteins of 1,727 and 3,175 amino acids. The functional replicase subunits (nonstructural proteins), which drive EAV genome replication and subgenomic mRNA transcription, are generated by extensive proteolytic processing. Subgenomic mRNA transcription involves an unusual discontinuous step and generates the mRNAs for structural protein expression. Previously, the phenotype of mutant EAV030F, which carries a single replicase point mutation (Ser-2429...
Identification and phylogenetic comparison of Salem virus, a novel paramyxovirus of horses.
Virology    May 4, 2000   Volume 270, Issue 2 417-429 doi: 10.1006/viro.2000.0305
Renshaw RW, Glaser AL, Van Campen H, Weiland F, Dubovi EJ.A virus that could not be identified as a previously known equine virus was isolated from the mononuclear cells of a horse. Electron microscopy revealed enveloped virions with nucleocapsid structures characteristic of viruses in the Paramyxoviridae family. The virus failed to hemabsorb chicken or guinea pig red blood cells and lacked neuraminidase activity. Two viral genes were isolated from a cDNA expression library. Multiple sequence alignments of one gene indicated an average identity of 45% as compared to Morbillivirus N protein sequences. A weaker relationship was found with Tupaia paramy...
Development of a fluorescence polarization-based diagnostic assay for equine infectious anemia virus.
Journal of clinical microbiology    May 2, 2000   Volume 38, Issue 5 1854-1859 doi: 10.1128/JCM.38.5.1854-1859.2000
Tencza SB, Islam KR, Kalia V, Nasir MS, Jolley ME, Montelaro RC.The control of equine infectious anemia virus (EIAV) infections of horses has been over the past 20 years based primarily on the identification and elimination of seropositive horses, predominantly by a standardized agar gel immunodiffusion (AGID) assay in centralized reference laboratories. This screening for EIAV-seropositive horses has been to date hindered by the lack of a rapid diagnostic format that can be easily employed in the field. We describe here the development of a rapid solution-phase assay for the presence of serum antibodies to EIAV based on fluorescence polarization (FP) (pat...
Differentiation and genomic and antigenic variation among fetal, respiratory, and neurological isolates from EHV1 and EHV4 infections in The Netherlands.
The veterinary quarterly    May 2, 2000   Volume 22, Issue 2 88-93 doi: 10.1080/01652176.2000.9695031
van Maanen C, Vreeswijk J, Moonen P, Brinkhof J, de Boer-Luijtze E, Terpstra C.Ten monoclonal antibodies (MAbs) were produced against equine herpes virus type 1 (EHV1). Two appeared type-specific, while the other eight were directed against epitopes common to both EHV1 and EHV4. Two MAbs directed against the glycoprotein gp2 recognized linear epitopes, as demonstrated by Western blotting. With pools of type-specific MAbs, 282 field isolates were typed in an immunoperoxidase monolayer assay (IPMA). From a total of 254 fetal or neonatal isolates, 244 (96%) were typed as EHV1, whereas 14 out of 15 (93%) respiratory tract isolates were typed as EHV4. Surprisingly, 3 out of 1...
Binding of equine infectious anemia virus rev to an exon splicing enhancer mediates alternative splicing and nuclear export of viral mRNAs.
Molecular and cellular biology    April 25, 2000   Volume 20, Issue 10 3550-3557 doi: 10.1128/MCB.20.10.3550-3557.2000
Belshan M, Park GS, Bilodeau P, Stoltzfus CM, Carpenter S.In addition to facilitating the nuclear export of incompletely spliced viral mRNAs, equine infectious anemia virus (EIAV) Rev regulates alternative splicing of the third exon of the tat/rev mRNA. In the presence of Rev, this exon of the bicistronic RNA is skipped in a fraction of the spliced mRNAs. In this report, the cis-acting requirements for exon 3 usage were correlated with sequences necessary for Rev binding and transport of incompletely spliced RNA. The presence of a purine-rich exon splicing enhancer (ESE) was required for exon 3 recognition, and the addition of Rev inhibited exon 3 sp...
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