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Topic:Virology

Virology in horses encompasses the study of viruses that affect equine species, including their biology, transmission, and impact on horse health. This field investigates viral pathogens that can lead to a range of diseases, from respiratory infections to neurological disorders. Common viruses affecting horses include equine influenza virus, equine herpesvirus, and West Nile virus. Understanding these viruses involves examining their genetic makeup, modes of transmission, and interactions with the equine immune system. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, and control measures of viral infections in horses.
[Occurrence of viral abortion in mares. (Contribution to diagnosis)].
Schweizer Archiv fur Tierheilkunde    July 1, 1975   Volume 117, Issue 7 393-395 
Hartmann H, Götze U.No abstract available
Isolation of equine herpesvirus type 1 from a horse with an acute paralytic disease. Thorsen J, Little PB.A Standardbred mare became paralyzed shortly after showing signs of an upper respiratory infection. The mare was euthanized and equine herpesvirus type 1 was isolated from the brain and spinal cord.
Adenoviral pneumonia in a foal.
The Cornell veterinarian    July 1, 1975   Volume 65, Issue 3 393-401 
Whitlock RH, Dellers RW, Shively JN.A three-week-old Arabian filly was admitted to the Large Animal Hospital with a respiratory disorder and died despite symptomatic treatment. The necropsy lesions were suggestive of viral pneumonia. An equine adenovirus were isolated from nasal and pharyngeal swabs and from several tissues after death. Typical adenovirus virions were demonstrated by electron microscopy.
The prevalence of equid herpes virus 2 infections.
The Veterinary record    May 3, 1975   Volume 96, Issue 18 404-405 doi: 10.1136/vr.96.18.404
Roeder PL, Scott GR.No abstract available
Mechanism of viral persistence in equine infectious anemia.
The Cornell veterinarian    April 1, 1975   Volume 65, Issue 2 143-151 
Coggins L.No abstract available
Isolation and characterization of an adenovirus and isolation of its adenovirus-associated virus in cell culture from foals with respiratory tract disease.
American journal of veterinary research    March 1, 1975   Volume 36, Issue 3 247-250 
Dutta SK.An adenovirus was isolated from a foal with respiratory tract disease. The virus produced cytopathic effects (CPE) in equine embryo kidney (EEK) cell culture, contained deoxyribonucleic acid (DNA), was resistant to chloroform and pH 3, and was moderately resistant to heat. The virus caused hemagglutination of human (type O) erythrocytes. Viral density was 1.34 g/cm,3 and diameter was 75 nm. An adenovirus-associated virus (AAV) isolated from the infected cell culture was 22 nm in diameter. These viruses are classified as equine adenovirus and equine AAV.
Comparative analyses of members of the Venezuelan equine encephalomyelitis virus complex.
American journal of epidemiology    March 1, 1975   Volume 101, Issue 3 245-252 doi: 10.1093/oxfordjournals.aje.a112092
Pedersen CE, Eddy GA.Polyacrylamide gel electrophoretic examination of viruses selected from the Venezuelan equine encephalomyelitis (VEE) complex revealed distinct strain to strain differences in profiles of the two virion envelope proteins. The core protein was identical in all viruses tested. We detected five electrophoretic patterns into which the virus strains could be classified and these were designated alpha (alpha), beta (beta), gamma (gamma), delta (delta), and episolon (episolon). Isolates representing variant E of subtype I exhibited a profile characterized by only one apparent envelope band. The epizo...
Transformation of horse skin cells by type-C sarcoma viruses.
International journal of cancer    February 15, 1975   Volume 15, Issue 2 171-179 doi: 10.1002/ijc.2910150202
Rhim JS, Ro HS, Kim EB, Gilden RV, Huebner RJ.A horse skin cell line (E. Derm, NBL-6, CCL-57) was susceptible to focus formation by the Kirsten mouse sarcoma virus, feline sarcoma virus (ST stain) and the MSV pseudotypes with woolly monkey, gibbon monkey, RD-114, AT-124, baboon placenta and murine xenotropic (BALB/c 3T3 and C57L/JD) type-C viruses. Foci were detected within 5 days after infection and the transformed cells continued to produce infectious virus and group-specific antigen of their respective type-C leukemia viruses. The transformation efficiency of various type-C sarcoma viruses in horse cells was also very high.
Rapid diagnosis of Venezuelan equine encephalomyelitis by fluorescence microscopy.
American journal of veterinary research    February 1, 1975   Volume 36, Issue 2 167-170 
Erickson GA, Maré CJ.Goat Venezuelan equine encephalomyelitis (VEE) antiserum and normal serum were conjugated and evaluated for staining sensitivity and specificity. Cross-staining with either eastern or western equine encephalomyelitis virus-infected cells did not occur. The baby hamster kidney (BHK-21) cell line when combined with highly specific VEE conjugate detected 100 medium suckling mouse intracerebral lethal doses (suckling mouse LD-50/IC) of the 1B subtype of VEE virus per milliliter of equine tissue suspension. Conjugated goat antiserum was assayed for sensitivity for detection of VEE virus-infected eq...
A microprecipitation test for rapid detection and identification of Venezuelan, eastern and western equine encephalomyelitis viruses.
The American journal of tropical medicine and hygiene    January 1, 1975   Volume 24, Issue 1 127-130 doi: 10.4269/ajtmh.1975.24.127
Levitt NH, Miller HV, Pedersen CE, Eddy GA.The development of a new diagnostic procedure for the identification of Venezvelan, eastern and western equine encephalomyelitis (VEE, EEE, WEE) viruses is described. The procedure utilizes virus precipitation with reference fluorescein-conjugated gamma globulin, followed by cellulose acetate electrophoresis. Clinical specimens containing varying concentrations of virus yielded, in primary duck embryo cell culture, sufficient virus for detection within 22 to 44 hours. Identification of VEE, EEE and WEE virus in specimens was accomplished by microprecipitation within this time. In contrast to c...
[Contribution to the antigenic study of influenza viruses in animals. I.–Neuraminidase of the equine influenza viruses (author’s transl)].
Annales de recherches veterinaires. Annals of veterinary research    January 1, 1975   Volume 6, Issue 4 397-410 
Fontaine M, Aymard-Henry M.From the Revised Nomenclature of WHO, the fowl influenza virus A/Duck/Ukraine/63 (Hav7 Neq2) has the same neuraminidase as the equine virus A/equi 2/Miami/63 (Heq2 Neq2); the A/Chicken Germany "N"/49 virus has the same neuraminidase as the equine virus A/equi 1/Prague/56. A comparative study of the antigenic specificities confirms that the Neq2 neuraminidases are closely connected, whatever their animal origin, and that the fowl strain Hav7 Neq2 can be used for the titration of anti Neq2 antibodies in the serums of animals immunized with the equine virus Heq2 Neq2. The Neqi neuraminidases of v...
Viral respiratory infections of horses: pathogenesis.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 77-78 
McChesney AE.No abstract available
The first isolations of eastern encephalitis, group C, and Guama group arboviruses from the Peruvian Amazon region of western South America.
Bulletin of the Pan American Health Organization    January 1, 1975   Volume 9, Issue 1 19-26 
Scherer WF, Madalengoitia J, Flores W, Acosta M.Two strains of eastern encephalitis (EE) virus were isolated in the Amazon region of Peru near Pucallpa, Loreto Department, using sentinel hamsters. EE virus antibodies were found in healthy horses at both Pucallpa and Iquitos in the same Department. Fourteen group C and four Guama group arboviruses were recovered from sentenel hamsters and mosquitoes near Iquitos. The group C agents were Caraparu-Ossa, Marituba, and Oriboca-Itaqui viruses, and the Guama group agents were Bimiti virus. Besides providing a detailed account of these investigations, this article includes a current list of known a...
Viral respiratory infections of horses: host resistance and immunity.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 78-80 
Coggins L.No abstract available
Viral respiratory infections of horses: structure and function of lungs in relation to viral infection.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 76-77 
McChesney AE.Since the advent of cell culture techniques, numerous viruses have been shown to be related to respiratory diseases in horses. Although the viruses differ in many ways, they cause disease with some common characteristics. This report is a summary of some of the available material from written sources and from personal observations. It is intended to help explain some of the changes observed in viral-induced respiratory disease.
Viral respiratory infections of horses: some specific viruses affecting the horse.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 80-83 
Coggins L, Kemen MJ.No abstract available
Clinical aspects of viral respiratory infections of horses.
Journal of the American Veterinary Medical Association    January 1, 1975   Volume 166, Issue 1 85-88 
Kemen MJ.No abstract available
The growth of African horse-sickness virus in embryonated hen eggs and the transmission of virus by Culicoides variipennis Coquillett (Diptera, Ceratopogonidae).
Archives of virology    January 1, 1975   Volume 47, Issue 4 343-349 doi: 10.1007/BF01347975
Boorman J, Mellor PS, Penn M, Jennings M.Seven-day-old embryonated hen eggs were infected with African Horse Sickness virus by the yolk sac and intravenous routes. Virus reached a high titre in the blood of infected embryos. Culicoides variipennis midges which took a blood meal from infected eggs became infected with virus, and after 7 days at 26 degrees - 27 degrees C transmitted African Horse Sickness virus to uninfected eggs. C. variipennis may therefore be considered a biological vector of African Horse Sickness virus in the laboratory.
Arbovirus vector ecology studies in Mexico during the 1972 Venezuelan equine encephalitis outbreak.
American journal of epidemiology    January 1, 1975   Volume 101, Issue 1 51-58 doi: 10.1093/oxfordjournals.aje.a112070
Sudia WD, Fernandez L, Newhouse VF, Sanz R, Calisher CH.Virus vector studies were conducted in the States of Durango, Chihuahua, and Tamaulipas, Mexico, in June and July 1972. Apparently only a low level of Venzuelan equine encephalitis (VEE) virus transmission to equines occured at the time of the study, and the infection was restricted to areas which had not experienced overt activity during the preceding year. The low level of infection was associated with a scarcity of mosquitoes. The IB (epidemic) strain of VEE virus was isolated from two pools of Anopheles pseudopunctipennis (Theo.) and the blood of one symptomatic equine. The low mosquito po...
Studies on equine herpesviruses. 5. Isolation and characterisation of slowly cytopathic equine herpesviruses in Queensland.
Australian veterinary journal    November 1, 1974   Volume 50, Issue 11 483-488 doi: 10.1111/j.1751-0813.1974.tb14052.x
Harden TJ, Bagust TJ, Pascoe RR, Spradbrow PB.No abstract available
Equine herpesviruses. 5. Epizootiology of slowly cytopathic viruses in foals.
Australian veterinary journal    October 1, 1974   Volume 50, Issue 10 438-442 doi: 10.1111/j.1751-0813.1974.tb06866.x
Wilks CR, Studdert MJ.No abstract available
Recovery of adenoviruses and slow herpesviruses from horses having respiratory tract infection.
American journal of veterinary research    September 1, 1974   Volume 35, Issue 9 1169-1172 
Roberts AW, Whitenack DL, Carter GR.No abstract available
Equine infectious anemia virus from infected horse serum.
Infection and immunity    September 1, 1974   Volume 10, Issue 3 667-668 doi: 10.1128/iai.10.3.667-668.1974
Nakajima H, Yoshino T, Ushimi C.Equine infectious anemia virus was purified from infected horse serum samples. Electron microscope observation on negatively stained preparations of purified virus showed roughly spherical particles sized between 100 and 200 nm in diameter. In disrupted particles, an envelope was visible but no internal structure could be resolved. Since the purified virus fraction had a strong antigenic activity to antiserum in immunodiffusion reaction, these particles are thought to be the causative virus of equine infectious anemia.
[Equine rhinovirus infection].
Berliner und Munchener tierarztliche Wochenschrift    August 15, 1974   Volume 87, Issue 16 305-308 
Becker W, Heller H, Teufel P.No abstract available
Isolation, cultivation and characterization of a poxvirus from some horses in Kenya.
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    August 1, 1974   Volume 21, Issue 8 592-601 doi: 10.1111/j.1439-0450.1974.tb00534.x
Kaminjolo JS, Nyaga PN, Gicho JN.No abstract available
Letter: Experimental infection of a horse with an equine adenovirus.
Australian veterinary journal    June 1, 1974   Volume 50, Issue 6 278-279 doi: 10.1111/j.1751-0813.1974.tb05306.x
Pascoe RR, Harden TJ, Spradbrow PB.No abstract available
Equine infectious anemia.
Modern veterinary practice    June 1, 1974   Volume 55, Issue 6 471-472 
Vernon DF, Cox T.No abstract available
[Experimental genital and nasal infection of horses with the equine coital exanthema virus]. Bürki F, Lorin D, Sibalin M, Ruttner O, Arbeiter K.No abstract available
Antigenic comparisons and serologic survey of equine adenoviruses.
American journal of veterinary research    May 1, 1974   Volume 35, Issue 5 693-699 
Studdert MJ, Wilks CR, Coggins L.No abstract available
Pancreatic involvement by Venezuelan equine encephalomyelitis virus in the hamster.
The American journal of pathology    May 1, 1974   Volume 75, Issue 2 349-362 
Gorelkin L, Jahrling PB.Pancreatic tissue from hamsters inoculated with a virulent strain of Venezuelan equine encephalomyelitis virus (VEE) was studied sequentially with fluorescent antibody, light and electron microscopic technics. Progressive viral growth and cellular necrosis in the pancreas were demonstrated. Pancreatic infection resulted from both viremia and direct extension from the spleen across contaminated serosal planes. Mature viruses traversed the endothelium within endothelial vesicles and were associated with acinar as well as islet cells.
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