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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.
Equine Getah virus infection: pathological study of horses experimentally infected with the MI-110 strain.
Nihon juigaku zasshi. The Japanese journal of veterinary science    June 1, 1982   Volume 44, Issue 3 411-418 doi: 10.1292/jvms1939.44.411
Wada R, Kamada M, Fukunaga Y, Ando Y, Kumanomido T, Imagawa H, Akiyama Y, Oikawa M.No abstract available
Equine influenza infections in Great Britain, 1979.
The Veterinary record    May 22, 1982   Volume 110, Issue 21 494-497 doi: 10.1136/vr.110.21.494
Burrows R, Goodridge D, Denyer M, Hutchings G, Frank CJ.No abstract available
Factors associated with improved haemagglutination by African horse sickness virus.
Veterinary microbiology    May 1, 1982   Volume 7, Issue 2 177-181 doi: 10.1016/0378-1135(82)90029-3
Tokuhisa S, Inaba Y, Sato K.No abstract available
Isolation of two serotypes of equine adenovirus from horses in New Zealand.
New Zealand veterinary journal    May 1, 1982   Volume 30, Issue 5 62-64 doi: 10.1080/00480169.1982.34882
Horner GW, Hunter R.Two serologically unrelated adenoviruses were isolated from ill-thrifty young horses on a thoroughbred stud. The viruses differed in their cytopathic effects in cell culture and in their haemagglutination properties. A serological survey of horses in the northern half of the North Island showed the prevalence of precipitating antibodies against equine adenoviruses to be 39%.
Isolation of a retrovirus from cultured equine sarcoid tumor cells.
American journal of veterinary research    May 1, 1982   Volume 43, Issue 5 804-806 
Cheevers WP, Roberson SM, Brassfield AL, Davis WC, Crawford TB.A virus with the morphologic and biochemical properties of the family Retroviridae has been isolated from cultured cells explanted from a malignant tumor induced by intradermal inoculation of equine sarcoid cells into a combined immunodeficient Arabian foal. By electron microscopy, intracytoplasmic, extracellular, and budding particles measuring 89 to 120 nm with electron-lucent cores were seen. Virus purified from the medium of cultured cells had a buoyant density of 1.15 g/cm3 in isopycnic sucrose-gradient centrifugation, incorporated radiolabeled uridine but not thymidine, and had constitut...
Epidemiological significance of Venezuelan equine encephalomyelitis virus in vitro markers.
The American journal of tropical medicine and hygiene    May 1, 1982   Volume 31, Issue 3 Pt 1 561-568 doi: 10.4269/ajtmh.1982.31.561
Martin DH, Dietz WH, Alvaerez O, Johnson KM.One hundred and fifty-eight strains of Venezuelan equine encephalomyelitis virus were typed antigenically and classified epidemiologically as either epizootic or enzootic. Plaque sizes for 148 of these strains were determined, and the pH requirements for hemagglutination (HA) of goose erythrocytes of 131 were studied. Only antigenic variant group IABC strains could be classified epidemiologically as epizootic. In vitro these strains were characterized by the formation of small plaques in Vero cells and a relatively narrow pH range for optimum HA reactivity. Experimental studies in horses confi...
Live temperature-sensitive equine influenza virus vaccine: generation of the virus and efficacy in hamsters.
American journal of veterinary research    May 1, 1982   Volume 43, Issue 5 869-874 
Brundage-Anguish LJ, Holmes DF, Hosier NT, Murphy BR, Massicott JG, Appleyard G, Coggins L.Temperature-sensitive (ts) reassortants of an equine influenza virus, subtype A-1, were produced by mating a human influenza ts donor virus with an equine influenza A/Cornell/16/74 wild-type virus and by isolating a ts reassortant virus possessing the equine hemagglutinin and neuraminidase surface antigens. Two equine its reassortant clones, 8B1 and 71A1, were produced which had an in vitro shutoff temperature for plaque formation of 38 and 37 C, respectively. The human ts donor virus had ts mutation(s) on the polymerase 3 (P3) and nucleoprotein genes so that a ts equine reassortant virus coul...
Persistent infection by equine infectious anemia virus: asymmetry of nucleotide sequence reiteration in the integrated provirus of persistently infected cells.
Virology    April 15, 1982   Volume 118, Issue 1 246-253 doi: 10.1016/0042-6822(82)90340-3
Cheevers WP, Watson SG, Klevjer-Anderson P.No abstract available
Value and limitations of haematology in viral infections in horses.
The Veterinary record    April 10, 1982   Volume 110, Issue 15 348 doi: 10.1136/vr.110.15.348
Allen BV, Powell DG, Singleton WB.No abstract available
Haematological changes in 2 ponies before and during an infection with equine influenza.
Equine veterinary journal    April 1, 1982   Volume 14, Issue 2 171-172 doi: 10.1111/j.2042-3306.1982.tb02382.x
Allen BV, Frank CJ.MOST viral infections in animals, including man, have been shown to alter the absolute and relative numbers of circulating leucocytes. This usually causes a lymphopenia or neutropenia but, occasionally, a lymphocytosis occurs (Gresser and Lang 1966). Several studies and reviews of respiratory viral infections in horses have noted changes in the blood pictures of infected animals, particularly during the early stages of the disease (Steck and Gerber 1965; Gerber 1966, 1969; Bryans and Gerber 1972; Hofer, Steck and Gerber 1978). The transient nature of the leucocyte response is, probabl...
[The use of internal protein of equine influenza virus in fluorescence antibody test for rapid diagnosis of influenza (author’s transl)].
Zhonghua yi xue za zhi    April 1, 1982   Volume 62, Issue 4 218-220 
Wang HM.No abstract available
Antigenic stimulation of T lymphocytes in chronic nononcogenic retrovirus infection: equine infectious anemia.
Infection and immunity    April 1, 1982   Volume 36, Issue 1 38-46 doi: 10.1128/iai.36.1.38-46.1982
Shively MA, Banks KL, Greenlee A, Klevjer-Anderson P.Equine infectious anemia is a chronic disease of horses caused by a nononcogenic retrovirus. Studies were undertaken to determine the types of cells involved in the in vitro lymphoproliferative response to viral antigens and the dynamics of this reaction. It was observed that reactive lymphocytes were present at unpredictable times in the peripheral blood of infected horses. This reaction was shown to be specific for the interaction of equine infectious anemia virus and T lymphocytes. Enriched B-lymphocyte populations did not divide when exposed to equine infectious anemia virus. Macrophages w...
Isolation of an adenovirus antigenically distinct from equine adenovirus type 1 from diarrheic foal feces.
American journal of veterinary research    March 1, 1982   Volume 43, Issue 3 543-544 
Studdert MJ, Blackney MH.Adenovirus was isolated in equine fetal kidney cell cultures from the feces of 2 foals with diarrhea that also had large numbers (greater than 10(6)/g) of rotavirus particles in their feces. Unlike equine adenovirus type 1 (EAdV1), the fecal EAdV did not hemagglutinate human O, rhesus macaque, or equine RBC. By serum neutralization, the fecal viruses were identical with each other, but showed no relationship to EAdV1. Antiserum prepared against the fecal viruses did not contain hemagglutination-inhibiting antibody to EAdV1. It is proposed that the fecal viruses be considered prototypic of EAdV...
Detection of equine infectious anemia virus in a horse with an equivocal agar gel immunodiffusion test reaction.
Journal of the American Veterinary Medical Association    February 1, 1982   Volume 180, Issue 3 276-278 
Issel CJ, Adams WV.A horse whose serum reacted equivocally in the agar gel immunodiffusion (AGID) test for equine infectious anemia was studied over a 3-year period. The horse remained afebrile and virus was detected in only 1 of 6 horse inoculation tests. The intensity of AGID test reactions increased temporarily following this evidence for virus. Although the AGID test reaction was equivocal and 5 of the 6 transmission attempts failed, the 1 successful transmission proved the horse was infected.
Teratological effects of western equine encephalitis virus on the fetal nervous system of Macaca mulatta.
Teratology    February 1, 1982   Volume 25, Issue 1 71-79 doi: 10.1002/tera.1420250110
London WT, Levitt NH, Altshuler G, Curfman BL, Kent SG, Palmer AE, Sever JL, Houff SA.Fetal rhesus monkeys were inoculated intracerebrally with an attenuated strain of western equine encephalitis virus. All animals developed microcephaly. Twelve of sixteen monkeys developed ex vacuo hydrocephalus. All virus inoculated fetuses developed WEE virus antibody. Virus could not be recovered at the time of delivery. Monkeys with the highest WEE antibody titers showed the greatest degree of hydrocephalus.
Transmission of equine infectious anemia virus from horses without clinical signs of disease.
Journal of the American Veterinary Medical Association    February 1, 1982   Volume 180, Issue 3 272-275 
Issel CJ, Adams WV, Meek L, Ochoa R.Twenty seven adult horses positive to the agar gel immunodiffusion (AGID) test for equine infectious anemia (EIA), but with no history of clinical EIA, were used in transfusion studies to determine whether infectious EIA virus was present in 1 to 5 ml of their blood. Of 27 recipients, 21 (78%) became AGID test-positive at an average of 24 days after inoculation. Two horses that were initially negative when screened were retested and found to carry infectious virus in 5-300 ml of whole blood; the other 4 horses were not retested. Horse flies (Tabanus fuscicostatus Hine) were unable to transmit ...
Japanese B encephalitis virus infection of horses during the first epidemic season following entry into an infected area.
Chinese medical journal    January 1, 1982   Volume 95, Issue 1 63-66 
Wang YJ, Gu PW, Liu PS.No abstract available
Antigenic properties of some equine influenza viruses.
Archives of virology    January 1, 1982   Volume 73, Issue 1 15-24 doi: 10.1007/BF01341723
Burrows R, Denyer M.The antigenic relationships between the haemagglutinins of five A/equine-1 viruses and between six A/equine-2 viruses were examined using post-infection ferret and immunized pony sera. Similar results were obtained with sera from both species for the A/equine-1 viruses and these confirmed minor antigenic differences between the prototype A/Prague 1/56 virus and viruses isolated in England in 1973 and 1977. Considerable antigenic differences were found between five of the A/equine-2 viruses, using ferret sera, but these differences were less evident using pony sera. The response of ponies to th...
Antibody responses of horses to equine influenza viruses during a postepizootic period in Japan.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    January 1, 1982   Volume 46, Issue 1 27-32 
Goto H, Shimizu K, Taya Y, Noda H, Tokunaga T.The antibody responses to equine influenza viruses were investigated during a postepizootic period of the disease. Serum samples were collected from a total of 128 horses on three occasions during the years 1967-77. No significant increase of hemagglutination-inhibition antibody titers to subtypes 1 and 2 of equine influenza virus were detected in any of the sera tested. The maternal hemagglutination-inhibition antibody titers of foals decreased over a four month interval. A marked increase of the titers was recognized in only the equine influenza virus vaccinated horses. These findings sugges...
Variation in cellular tropism between isolates of equine herpesvirus-1 in foals.
Archives of virology    January 1, 1982   Volume 74, Issue 1 41-51 doi: 10.1007/BF01320781
Patel JR, Edington N, Mumford JA.Subtype-1 isolates of Equine herpesvirus-1 (EHV-1) from a quadriplegic horse and from an aborted foetus were compared with each other and with a subtype-2 respiratory isolate. All 3 isolates were detected in the epithelium and macrophages of the respiratory tract. Both the paresis and foetal subtype-1 isolates replicated in the epithelium of the ileum and this correlated with the recovery of virus from faeces in vivo. The paresis subtype-1 isolate also had a predelection for vascular endothelial cells, particularly in the nasal mucosa, but also in the lungs, central nervous system, adrenal and...
[Effect of low pH values on the infectivity and neuraminidase activity of human and animal strains of influenza virus type A].
Acta biologica et medica Germanica    January 1, 1982   Volume 41, Issue 11 1075-1078 
Glathe H, Strittmatter HU, Kunze M, Sinnecker H.The influence of acidic pH on the infectivity and neuraminidase activity of human, equine and avian type A influenza virus strains has been studied. Following exposure to pH 3 human and equine strains lost their infectivity completely, whereas all investigated strains of the subtypes Hav6N2 and Hav7Neq2 retained a certain amount of infectivity. In contrast to human and equine strains the avian strains retained also 38% of their original neuraminidase activity after acidic treatment. Partial retention of infectivity and the relative stability of the neuraminidase following exposure to acidic pH...
An outbreak of paresis in mares and geldings associated with equid herpesvirus 1.
The Veterinary record    December 12, 1981   Volume 109, Issue 24 527-528 
Crowhurst FA, Dickinson G, Burrows R.An outbreak of paresis occurred on a small isolated stud farm in July 1980. Of the 42 horses on the stud, infection was confined to a group of nine in-foal mares and their foals and eight other horses which were either housed together at night or grazed adjacent pastures. Eight mares and two geldings developed ataxia or paresis and one mare died. Equid herpesvirus 1 was isolated from 17 animals and serological studies confirmed that 24 of 26 animals sampled had experienced infection.
Sero-epizootiological survey on Getah virus infection in light horses in Japan.
Nihon juigaku zasshi. The Japanese journal of veterinary science    December 1, 1981   Volume 43, Issue 6 797-802 doi: 10.1292/jvms1939.43.797
Imagawa H, Ando Y, Kamada M, Sugiura T, Kumanomido T, Fukunaga Y, Wada R, Hirasawa K, Akiyama Y.No abstract available
Serologic and molecular comparisons of several equine herpesvirus type 1 strains.
American journal of veterinary research    December 1, 1981   Volume 42, Issue 12 2099-2104 
Turtinen LW, Allen GP, Darlington RW, Bryans JT.The molecular and serologic relatedness of 2 recent respiratory tract isolates of equine herpesvirus type 1, designated T1 and T2, were compared with the Army 183, Kentucky-A hamster-adapted (KyA-ha), and L-M cell-adapted (KyA-LM) strains. Electrophoresis in polyacrylamide gels revealed differences in virion structural proteins among 4 purified strains. Seven envelope glycoproteins (molecular weight of 93,000, 65,000, 62,000, 60,000, 36,000, 20,000, and 18,000) corresponding to virion proteins 13, 16, 17, 18, 23, 25, and 26a, respectively, found in both the Army 183 and KyA-ha strains had slig...
Analysis of the genome of equine herpesvirus type 1: arrangement of cleavage sites for restriction endonucleases EcoRI, BglII and BamHI.
The Journal of general virology    December 1, 1981   Volume 57, Issue Pt 2 307-323 doi: 10.1099/0022-1317-57-2-307
Whalley JM, Robertson GR, Davison AJ.The genome of an Australian isolate of equine herpesvirus type 1 (equine abortion virus) has been analysed using the restriction endonucleases EcoRI, BglII and BamHI, and a physical map constructed. Terminal fragments were identified by exonuclease treatments, and linkage of fragments was deduced by a combination of single- and double-digest experiments and cross-blot hybridizations. The genome has a mol. wt. of 100 x 10(6) and is comprised of a short unique region bounded by repetitive sequences, which is present in both orientations in approximately equal amounts in the DNA population, and a...
Structure of the genome of equine herpesvirus type 1.
Virology    November 1, 1981   Volume 115, Issue 1 97-114 doi: 10.1016/0042-6822(81)90092-1
Henry BE, Robinson RA, Dauenhauer SA, Atherton SS, Hayward GS, O'Callaghan DJ.No abstract available
Hemagglutination-inhibition tests with different strains of equine infectious anemia virus.
American journal of veterinary research    November 1, 1981   Volume 42, Issue 11 1949-1952 
Sentsui H, Kono Y.The serologic relationships between 6 strains of equine infectious anemia (EIA) viruses were investigated by hemagglutination-inhibition (HI) tests. Cross HI tests, using sera from horses in the early stage of infection, revealed that all strains were inhibited only by homologous strain antisera and that HI antibody was always detectable before virus-neutralizing antibody. In the later stages of infection, both homologous and heterologous HI antibodies were detected in a sera of most of the horses, and the order of appearance of heterologous HI antibodies was random in 2 horses inoculated with...
Molecular cloning of equine herpesvirus type 1 DNA: analysis of standard and defective viral genomes and viral sequences in oncogenically transformed cells.
Proceedings of the National Academy of Sciences of the United States of America    November 1, 1981   Volume 78, Issue 11 6684-6688 doi: 10.1073/pnas.78.11.6684
Robinson RA, Tucker PW, Dauenhauer SA, O'Callaghan DJ.Genomic DNA sequences of equine herpesvirus type 1 (EHV-1) have been cloned as BamHI and EcoRI restriction fragments into the plasmid pBR322 and propagated in Escherichia coli. With the exception of two EcoRI restriction fragments that reside in the S region of the viral genome, all of the cloned fragments demonstrated the same electrophoretic mobilities, restriction cleavage sites, and blot-hybridization patterns as did the parent fragments produced by BamHI or EcoRI digestion of virion DNA. The EcoRI J fragment and the BamHI E fragment of the L-region terminus were cloned after the addition ...
Differentiation of respiratory and abortigenic isolates of equine herpesvirus 1 by restriction endonucleases.
Science (New York, N.Y.)    October 30, 1981   Volume 214, Issue 4520 562-564 doi: 10.1126/science.6270790
Studdert MJ, Simpson T, Roizman B.Viruses classified by immunologic criteria as equine herpesvirus 1 cause respiratory disease and abortion in horses. Restriction endonuclease analyses of the DNA's of viruses from animals with respiratory disease and from aborted fetuses show that the patterns for respiratory viruses, while similar to each other, are entirely different from the patterns for fetal viruses. It is therefore proposed that the DNA restriction endonuclease patterns of fetal and respiratory viruses analyzed in this study be designated as prototypic of equine herpesvirus 1 and 4, respectively.
Field and laboratory studies of equine influenza viruses isolated in 1979.
The Veterinary record    October 17, 1981   Volume 109, Issue 16 353-356 doi: 10.1136/vr.109.16.353
Burrows R, Denyer M, Goodridge D, Hamilton F.Experimental ponies developed signs of disease four days after the intranasal instillation of A/England 1/79 equine influenza virus and virus was recovered from the nasopharynx from the second to the ninth day. No significant antigenic difference was found between the virus and the prototype A/Miami 1/63 virus, using post infection ferret and chicken sera and post vaccination pony sera. No antigenic differences were found between four viruses isolated between January and July 1979, although some differences were found in their ability to detect haemagglutination inhibiting antibody in convales...