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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.
Biochemical characterization of equine herpesvirus type 3-induced deoxythymidine kinase purified from lytically infected horse embryo dermal fibroblasts.
Journal of virology    May 1, 1980   Volume 34, Issue 2 474-483 doi: 10.1128/JVI.34.2.474-483.1980
McGowan JJ, Allen GP, Barnett JM, Gentry GA.Infection of horse KyED cells with equine herpesvirus type 3 (EHV-3) resulted in a sevenfold increase in cytosol deoxythymidine kinase (dTK) activity. The EHV-3 dTK was purified from KyED cytosol dTK by affinity chromatography on deoxythymidine-Sepharose and characterized with respect to its electrophoretic mobility, molecular weight, substrate specificity, phosphate donor specificity, and immunological specificity. The purified EHV-3 dTK migrated in polyacrylamide gels with an Rf of 0.30 and sedimented in glycerol gradients with an S value of 5.13, corresponding to a molecular weight of 83,00...
Significant antigenic drift within the influenza equi 2 subtype in Sweden.
The Veterinary record    April 19, 1980   Volume 106, Issue 16 363-364 doi: 10.1136/vr.106.16.363
Klingeborn B, Rockborn G, Dinter Z.No abstract available
Negative contrast electron microscopic techniques for diagnosis of viruses of veterinary importance.
The Cornell veterinarian    April 1, 1980   Volume 70, Issue 2 125-135 
England JJ, Reed DE.Negative contrast electron microscopy (NCEM) was utilized as a routine tool in the diagnosis of viral infections of domestic and wild animals. Viruses identified by this technique were observed in infected culture systems or clinical specimens from several species including horses, cattle, sheep, dogs, cats, pigs, deer, Rocky Mountain bighorn sheep, antelope, and several avian species. Viruses were identified by NCEM based on their size, morphology, and symmetry and consisted of adenoviruses, herpesviruses, paramyxoviruses, myxoviruses, picornaviruses, parvoviruses, coronaviruses, reoviruses, ...
EHV1 and equine paresis.
The Veterinary record    March 22, 1980   Volume 106, Issue 12 277 doi: 10.1136/vr.106.12.277-a
Mumford JA, Edington N.No abstract available
Evaluation of the double immunodiffusion test for the diagnosis of louping ill infection.
Research in veterinary science    March 1, 1980   Volume 28, Issue 2 195-198 
Timoney PJ.The usefulness of the double immunodiffusion test for the diagnosis of louping ill infection was investigated. Whereas louping ill viral antigen was not detected in brain material from field cases of the infection, its presence was readily confirmed in suckling mouse brain isolates of the virus. The double immunodiffusion test was found to be unreliable as a serological test for the retrospective diagnosis of louping ill infection in the horse.
Deoxythymidine kinase metabolism in equine herpesvirus type 3 infected horse embryo dermal fibroblasts.
Virology    March 1, 1980   Volume 101, Issue 2 516-519 doi: 10.1016/0042-6822(80)90465-1
McGowan JJ, Allen GP, Barnett JM, Gentry GA.No abstract available
The role of stable flies and mosquitoes in the transmission of equine infectious anemia virus. Cupp EW, Kemen MJ.No abstract available.
Epidemiology of equine influenza, risk by age, breed and sex.
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 67-73 doi: 10.1016/0147-9571(80)90040-5
Nyaga PN, Wiggins AD, Priester WA.Three hundred and sixty cases of diagnosed equine influenza reported to the Veterinary Medical Data Program (VMDP) of the National Cancer Institute, U.S.A., were tested for the independent effects of age, breed and sex, relative to a reference clinic-hospital population of 84,562 equine patients. Horses of age category 2-6 months showed a significant risk above unity for infection with equine influenza virus whereas, horses in age category 7-10 yr showed a significant, low and sparing risk. Horses under two months or over 10 years, as well as those in ages from 6 months to 7 yr had non-s...
Susceptibility of the horse to experimental inoculation with louping ill virus.
Journal of comparative pathology    January 1, 1980   Volume 90, Issue 1 73-86 doi: 10.1016/0021-9975(80)90030-4
Timoney PJ.No abstract available
[Simple, simultaneous or combined vaccinations of horses against equine influenza, rabies and tetanus (author’s transl)].
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 93-99 doi: 10.1016/0147-9571(80)90043-0
Brun A, Duret C, Devaux B, Calmels D.No abstract available
Humoral and cell-mediated immune response of foals vaccinated with attenuated equine herpesvirus type 1 (EHV-1).
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    January 1, 1980   Volume 27, Issue 9-10 742-758 doi: 10.1111/j.1439-0450.1980.tb02029.x
Frymus T.No abstract available
[World-wide circulation of information concerning equine influenza. (Note FROM AN O.I.E. working party on horse diseases) (author’s transl)].
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 61-66 doi: 10.1016/0147-9571(80)90039-9
Virat J, Benazet P, Santucci J.No abstract available
Eastern equine encephalomyelitis in Panama: the epidemiology of the 1973 epizootic.
The American journal of tropical medicine and hygiene    January 1, 1980   Volume 29, Issue 1 133-140 doi: 10.4269/ajtmh.1980.29.133
Dietz WH, Galindo P, Johnson KM.In late June 1973, a small outbreak of equine encephalitis caused by eastern equine encephalomyelitis (EEE) virus occurred in the Republic of Panama. At least 100 horses were affected by the disease and 40 died. More than 1,700 human sera were obtained from areas of virus activity but no serological evidence for infection was found. Four isolates of EEE virus were recovered, one of which was from a small pool of Culex taeniopus mosquitoes. Serologic studies of infected horses and classification by the short incubation hemagglutination-inhibition tests revealed that these isolates were South Am...
Equine influenza–a segment in influenza virus ecology.
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 45-59 doi: 10.1016/0147-9571(80)90038-7
Tůmová B.No abstract available
Survey on antibody to Getah virus in horses in Japan.
National Institute of Animal Health quarterly    January 1, 1980   Volume 20, Issue 2 39-43 
Sentsui H, Kono Y.A seroepidemiological survey was performed on antibody against Getah virus in horses in Japan by the complement fixation test. The positive rate was 35 and 53% in two areas where an outbreak of the infectious disease was reported, whereas it was in a range of 3.3 to 24.2% in other areas, except in certain prefectures of the Kyushu district where a high positive rate was observed. In the Hokkaido district, the northernmost part of Japan, no reactors were found in horses under 6 years old, unlike in any other district. It was also suggested that Getah virus infection might have already been prev...
Virus and its relationship to the “poor performance” syndrome.
Equine veterinary journal    January 1, 1980   Volume 12, Issue 1 3-9 doi: 10.1111/j.2042-3306.1980.tb02285.x
Mumford JA, Rossdale PD.Racehorses perform badly for many different reasons. Trainers often expect clinicians to determine the cause in individual cases and, more especially, where most of the immates of the stable are apparently affected by loss of form. Clinical examinations may reveal signs including fever, serous nasal discharge and the occasional cough. Haematology and blood biochemistry are commonly used aids to diagnosis in the field and may be helpful, but there is a need for facilities for virological investigations to be made readily available for use by clinicans as an adjunct to more commonplace laborator...
Persistence in nature of influenza virus A/eq/Praha/56 (Heq1Neq1).
Acta virologica    January 1, 1980   Volume 24, Issue 1 63-67 
Tåmová B, Stumpa A, Zakopal J, Vĕzníková D, Mensík J.Equine influenza occurred in Czechoslovakia 14 years after the last epizootic in horses that had returned from abroad. Six strains A (Heq1Neq1) antigenically related to, but not identical with, strain A/eq/Praha/56 were isolated from 10 washings. Seroconversion was demonstrated with paired sera, but the antibody increase was more marked against the newly isolated strain.
Development and preliminary testing of an inactivated equine adenovirus vaccine.
American journal of veterinary research    December 1, 1979   Volume 40, Issue 12 1707-1712 
Lew AM, Smith HV, Studdert MJ.No abstract available
Viruses isolated from Culicoides midges in South Africa during unsuccessful attempts to isolate bovine ephemeral fever virus.
The Onderstepoort journal of veterinary research    December 1, 1979   Volume 46, Issue 4 191-198 
Theodoridis A, Nevill EM, Els HJ, Boshoff ST.Five viruses, unrelated to bovine ephemeral fever virus (BEFV), were isolated from Culicoides biting-midges collected during the summer months of the years 1968-69 and 1969-70 near a cattle herd in which cases of BEF occurred and at an open horse stable at Onderstepoort. These viruses were investigated by means of serological, electron-microscopical and physicochemical tests. It was established that 2 isolates, Cul. 1/69 and Cul. 2/69, were related to each other and belonged to the Palyam subgroup of the genus Orbivirus, that isolate Cul. 3/69 belonged to the equine encephalosis subgroup of th...
Incidence of bluetongue virus precipitating antibodies in sera of some domestic animals in the Sudan.
The Journal of hygiene    December 1, 1979   Volume 83, Issue 3 539-545 doi: 10.1017/s0022172400026395
Eisa M, Karrar AE, Abd Elrahim AH.To determine the presence and prevalence of bluetongue (BT) infection in a variety of domestic animal species in different geographical regions of the Sudan, a serological study using the agar gel precipitation technique was initiated. A total of 2142 serum samples were examined. Of the numbers tested approximately 28% of sheep, 11.2% of goats, 8% of cattle and 4.9% of camels were positive for group-specific antibodies to BT virus antigen, indicating previous exposure to BT infection. None of the samples tested from horses or donkeys were positive. The findings suggest that the disease is wide...
Equine herpesviruses: on the differentiation of respiratory from foetal strains of type 1.
Australian veterinary journal    October 1, 1979   Volume 55, Issue 10 488-492 doi: 10.1111/j.1751-0813.1979.tb00377.x
Studdert MJ, Blackney MH.No abstract available
Equine herpesvirus type 3 (equine coital exanthema) in New South Wales.
Australian veterinary journal    September 1, 1979   Volume 55, Issue 9 443-444 doi: 10.1111/j.1751-0813.1979.tb05606.x
Feilen CP, Walker ST, Studdert MJ.No abstract available
Lymphosarcoma with virus-like particles in a neonatal foal.
Veterinary pathology    September 1, 1979   Volume 16, Issue 5 629-631 doi: 10.1177/030098587901600521
Tomlinson MJ, Doster AR, Wright ER.No abstract available
Effects of influenza, mumps, and western equine encephalitis viruses on fetal rhesus monkeys (Macaca mulatta).
Teratology    August 1, 1979   Volume 20, Issue 1 53-64 doi: 10.1002/tera.1420200109
Moreland AF, Gaskin JM, Schimpff RD, Woodard JC, Olson GA.Pregnant Rhesus monkeys were infected via instillation of influenza, mumps and western equine encephalomyelitis viruses respectively into the amniotic sacs at approximately 90 days gestation to determine if fetal infections would occur. Virus was recovered from fetal tissues after seven days in 100% of the exposed animals. Thus, the viruses are capable of causing fetal infection. Rhesus monkey fetuses were inoculated with influenza, mumps and WEE viruses by the direct intracerebral route at approximately 90 days gestation to determine possible teratogenicity of the viruses. influenza virus cau...
Responses in horses infected with equine infectious anemia virus adapted to tissue culture.
American journal of veterinary research    July 1, 1979   Volume 40, Issue 7 974-977 
Gutekunst DE, Becvar CS.No abstract available
Equine rhinopneumonitis: more deaths–warning issued.
The Veterinary record    June 9, 1979   Volume 104, Issue 23 514 doi: 10.1136/vr.104.23.514-b
No abstract available
Recent advances in viral zoonoses.
International journal of zoonoses    June 1, 1979   Volume 6, Issue 1 49-60 
Jerath R.No abstract available
Leukocyte cytotoxicity in a persistent virus infection: presence of direct cytotoxicity but absence of antibody-dependent cellular cytotoxicity in horses infected with equine infectious anemia virus.
Infection and immunity    June 1, 1979   Volume 24, Issue 3 628-636 doi: 10.1128/iai.24.3.628-636.1979
Fujimiya Y, Perryman LE, Crawford TB.Antibody-dependent cellular cytotoxicity and direct cytotoxicity assays were performed with equine infectious anemia virus-infected target cells, equine leukocytes, and equine anti-equine infectious anemia virus antibody to determine whether these mechanisms play a role in controlling viral replication in equine infectious anemia. Direct cytotoxicity was observed by using peripheral blood mononuclear cells from 7 of 10 infected horses. Antibody-dependent cellular cytotoxicity was not observed. The antibody-dependent cellular cytotoxicity reaction in horses was then studied by using sheep eryth...
Equine herpesvirus 1 infection in mares vaccinated with a live-virus rhinopneumonitis vaccine attenuated in cell culture.
The Canadian veterinary journal = La revue veterinaire canadienne    May 1, 1979   Volume 20, Issue 5 145-147 
Eaglesome MD, Henry JN, McKnight JD.Vaccination, in July and again in either November or December 1976, of 55 pregnant Standardbred mares with a live-virus rhinopneumonitis vaccine attenuated in cell culture failed to protect some mares from infection with equine herpesvirus 1. From 1976-12-08 to 1977-03-08, 33 mares foaled healthy foals, 16 mares foaled dead foals or live foals which died usually within 48 hours and six mares aborted. Gross and histological examinations and virus isolation studies confirmed that equine herpesvirus 1 caused 18 of the 22 neonatal deaths, stillbirths or abortions.
Persistent infection of a human lymphoblastoid cell line with equine herpesvirus 1.
Infection and immunity    May 1, 1979   Volume 24, Issue 2 539-544 doi: 10.1128/iai.24.2.539-544.1979
Roumillat LF, Feorino PM, Lukert PD.Infection of a human lymphoblastoid cell line (Jijoye line derived from a Burkitt lymphoma which contains Epstein-Barr virus) with equine herpesvirus 1, maintained and observed for 53 days, was characterized by the continuous production of infectious extracellular and intracellular virus. Maximum virus production correlated with active cell multiplication. Less than 15% of the cells possessed viral capsid antigen at any one time. Five percent of the cells in the Jijoye line possess Epstein-Barr viral capsid antigen; 80% of the Epstein-Barr viral caspid-containing cells also contained equine he...