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Topic:Equine Infectious Anemia

Equine Infectious Anemia (EIA) is a viral disease affecting horses, caused by the Equine Infectious Anemia Virus (EIAV), a member of the Lentivirus genus. The disease is characterized by intermittent fever, anemia, edema, and weight loss, though some horses may remain asymptomatic carriers. Transmission occurs primarily through blood-feeding insects such as horseflies and deerflies, or through contaminated instruments. EIA is diagnosed using serological tests, with the Coggins test being a commonly used method for detection. There is no vaccine or cure for EIA, and management primarily focuses on prevention and control measures to limit transmission. This page assembles peer-reviewed studies and scholarly articles that explore the pathogenesis, epidemiology, diagnostic methods, and management strategies related to Equine Infectious Anemia.
In vitro host range of equine infectious anemia virus.
Intervirology    January 1, 1981   Volume 16, Issue 4 225-232 doi: 10.1159/000149271
Benton CV, Brown BL, Harshman JS, Gilden RV.Equine infectious anemia virus (EIAV) was successfully inoculated onto cell cultures of canine and feline origin, resulting in chronic infections in these cultures. Infection of equine cell cultures, which were the previous sole in vitro source demonstrated for virus production, was also performed for comparative purposes. Determination of the nature of the virus produced in the heterologous as well as the equine cells was accomplished in several ways. SDS-PAGE of purified virus from the different cell lines indicated very similar protein composition. Immunological identity was observed in gel...
Equine infectious anemia virus, a putative lentivirus, contains polypeptides analogous to prototype-C oncornaviruses.
Virology    December 1, 1980   Volume 107, Issue 2 520-525 doi: 10.1016/0042-6822(80)90319-0
Parekh B, Issel CJ, Montelaro RC.No abstract available
Absence of equine infectious anaemia in the Kimberley region of western Australia.
Australian veterinary journal    May 1, 1980   Volume 56, Issue 5 255 doi: 10.1111/j.1751-0813.1980.tb15993.x
Smith VW, Coackley W, Maker D.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.
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
[The agargel-immunodiffusion test for diagnosis of equine infectious anemia. II. Comparative assay of different agar concentrations for standardisation of the ID test (author’s transl)].
DTW. Deutsche tierarztliche Wochenschrift    June 5, 1979   Volume 86, Issue 6 228-231 
Böhm HO.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...
Viral respiratory disease.
The Veterinary clinics of North America. Large animal practice    May 1, 1979   Volume 1, Issue 1 59-72 doi: 10.1016/s0196-9846(17)30198-2
Coggins L.No abstract available
Prevalence of antibodies to equine viruses in the Netherlands.
Tijdschrift voor diergeneeskunde    April 15, 1979   Volume 104, Issue 8 65-74 
de Boer GF, Osterhaus AD, van Oirschot JT, Wemmenhove R.The prevalence of antibodies to various viruses was investigated in a series of serum samples collected from horses in the Netherlands between 1963 and 1966 and from 1972 onwards. Neutralizing antibodies to equine rhinopneumonitis virus, equine arteritis virus and to equine rhinovirus types 1 and 2 were detected in respectively 76%, 14%, 66% and 59% of the equine serum samples tested. The observed incidence of serum samples positive to equine adenovirus in the complement fixation test was 39%. Precipitating antibodies to equine infectious anaemia virus were detected only in serum samples from ...
Prevalence of antibodies to equine viruses in the Netherlands.
Tijdschrift voor diergeneeskunde    April 15, 1979   Volume 104, Issue 8 65-74 
de Boer GF, Osterhaus AD, van Oirschot JT, Wemmenhove R.The prevalence of antibodies to various viruses was investigated in a series of serum samples collected from horses in the Netherlands between 1963 and 1966 and from 1972 onwards. Neutralizing antibodies to equine rhinopneumonitis virus, equine arteritis virus and to equine rhinovirus types 1 and 2 were detected in respectively 76%, 14%, 66% and 59% of the equine serum samples tested. The observed incidence of serum samples positive to equine adenovirus in the complement fixation test was 39%. Precipitating antibodies to equine infectious anaemia virus were detected only in serum samples from ...
Equine infectious anemia: current knowledge.
Journal of the American Veterinary Medical Association    April 1, 1979   Volume 174, Issue 7 727-733 
Issel CJ, Coggins L.No abstract available
Synthesis of long complementary DNA in the endogenous reaction by equine infectious anemia virus.
Journal of virology    March 1, 1979   Volume 29, Issue 3 907-914 doi: 10.1128/JVI.29.3.907-914.1979
Rice NR, Coggins L.In the endogenous reverse transcriptase reaction, equine infectious anemia virus is able to synthesize complementary DNA (cDNA) of 8,000 nucleotides in high yield. After 2 h in 50 muM dNTP, about 2.8 mug of cDNA per mg of protein is produced, almost 30% of which is long cDNA. The system thus compares favorably with the other two well-characterized endogenous reaction systems, Moloney murine leukemia virus and avian sarcoma virus. Elongation rates of 100 to 150 nucleotides per min have been observed; these rates are comparable to those seen with purified avian myeloblastosis virus reverse trans...
Specificity of response to viral proteins in horses infected with equine infectious anemia virus.
Infection and immunity    February 1, 1979   Volume 23, Issue 2 472-478 doi: 10.1128/iai.23.2.472-478.1979
Charman H, Long C, Coggins L.Three structural proteins of equine infectious anemia virus were purified, labeled with 125I, and utilized in radioimmunoassays with horse sera and antisera to heterologous retroviruses. Whereas radioimmunoassay titers for the major protein, p25, were 500- to 1,000-fold higher than titers in immunodiffusion, for clinical purposes these two procedures were equivalent. Antibodies to two low-molecular-weight proteins, p12 and p10, were also found in infected horses, but with a lower frequency and lower titers. As a rule, only sera positive for p25 also contained antibody to p12 and p10. Antisera ...
Serologic survey for equine infectious anemia virus in Louisiana.
Journal of the American Veterinary Medical Association    February 1, 1979   Volume 174, Issue 3 286-288 
Issel CJ, Adams WV.In 1975, a survey was conducted in East Baton Rouge Parish, Louisiana, to determine the prevalence of equine infectious anemia. Using the agar gel immunodiffusion test, 94 of 1,398 horses (6.7%) were found to be infected. Infection rates were especially high in areas where clinical cases of equine infectious anemia had been diagnosed. Clinical signs compatible with the disease were noted in 1 of the 94 seropositive horses. The sample set of 1,398 horses represented 22% of the census population obtained during the 1971 Venezuelan equine encephalomyelitis vaccination campaign.
Immunology of a persistent retrovirus infection–equine infectious anemia.
Advances in veterinary science and comparative medicine    January 1, 1979   Volume 23 137-159 
McGuire TC, Crawford TB.No abstract available
Improvement of the equine infectious anemia agar gel immunodiffusion test. Pearson JE, Black JW.No abstract available
Characterization of the infection of equine fibroblasts by equine infectious anemia virus.
Archives of virology    January 1, 1979   Volume 60, Issue 3-4 279-289 doi: 10.1007/BF01317499
Klevjer-Anderson P, Cheevers WP, Crawford TB.Equine dermal fibroblasts persistently infected with equine infectious anemia virus (EIAV) show no alterations in cell morphology or growth kinetics when compared to uninfected cells. The percentage of cells immunofluorescent positive for viral proteins fluctuated, depending upon the stage of the cell cycle, while production of extracellular virus was uniform throughout the cell cycle, increasing only as the cell number increased. This was shown in log versus stationary phase cultures as well as in cultures synchronized by sterum starvation. The establishment of productive infection did not re...
Equine infectious anaemia in Victoria.
Australian veterinary journal    December 1, 1978   Volume 54, Issue 12 597 doi: 10.1111/j.1751-0813.1978.tb02430.x
Harrison MJ.No abstract available
A suspected case of equine infectious anaemia in Victoria.
Australian veterinary journal    December 1, 1978   Volume 54, Issue 12 597-598 doi: 10.1111/j.1751-0813.1978.tb02431.x
McIntyre GJ.No abstract available
Equine infectious anaemia in Queensland.
Australian veterinary journal    September 1, 1978   Volume 54, Issue 9 456-457 doi: 10.1111/j.1751-0813.1978.tb05585.x
Thomas RJ, Elder JK.No abstract available
Equine infectious anaemia in Paraguay.
Tropical animal health and production    August 1, 1978   Volume 10, Issue 3 165-166 doi: 10.1007/BF02235331
Gray D.No abstract available
Detection of proviral DNA in horse cells infected with equine infectious anemia virus.
Journal of virology    June 1, 1978   Volume 26, Issue 3 577-583 doi: 10.1128/JVI.26.3.577-583.1978
Rice NR, Simek S, Ryder OA, Coggins L.Equine infectious anemia virus (EIAV) recently has been shown to possess a high-molecular-weight RNA genome and a virion reverse transcriptase. We completed the demonstration that EIAV is a retrovirus by showing the presence of proviral DNA in equine cells infected in vitro, but not in normal horse DNA. These studies were performed by using a highly representative cDNA probe synthesized by the virion polymerase. It was found that this cDNA reassociated extensively, and with high thermal stability, with either viral RNA or DNA extracted from infected cells, but showed no detectable reassociatio...
Failure to propagate equine infectious anemia virus in mosquitoes and Culicoides variipennis.
American journal of veterinary research    May 1, 1978   Volume 39, Issue 5 875-876 
Shen DT, Gorham JR, Jones RH, Crawford TB.Laboratory-colonized mosquitoes, Culex tarsalis, aedes aegypti, Culiseta inornata, and Anopheles free-borni, and the biting gnat, Culicoides variipennis, were exposed to equine infectious anemia virus. Exposure to the virus was by intrathoracic inoculation for mosquitoes and by oral ingestion of an infective blood meal through a membrane for C variipennis. After various intervals, groups of 15 to 20 insects were homogenized and inoculated into susceptible ponies. Positive immunodiffusion test results were used as criterion for equine infectious anemia infection in ponies. Virus was not detecte...
Scanning and transmission electron microscopic study of equine infectious anemia virus.
American journal of veterinary research    May 1, 1978   Volume 39, Issue 5 731-740 
Gonda MA, Charman HP, Walker JL, Coggins L.Scanning and transmission electron microscopy were used to study in detail the morphogenesis and replication of equine infectious anemia virus (EIAV) in cultured, persistently infected equine fetal kidney fibroblasts. The EIAV was shown by thin-section electron microscopy to resemble morphologically more closely the members of the genus Lenti-virus in the family Retroviridae than other genera. Scanning electron microscopy demonstrated budding virus on only about 5% of the equine fetal kidney fibroblasts; however, the entire surface of these cells was involved in viral replication. Except where...
Neurologic signs and neuropathology associated with a case of equine infectious anemia.
The Cornell veterinarian    April 1, 1978   Volume 68, Issue 2 238-249 
McIlwraith CW, Kitchen DN.Neurologic signs and neuropathologic lesions associated with a case of equine infectious anemia in a 7 year old Quarter-horse mare were studied. Clinical signs included depression, disorientation, circling, knuckling at the fetlock and hypermetria. The neuropathologic lesions were characterized by a granulomatous ependymitis, subependymal encephalitis, choroiditis and hydrocephalus. These lesions were associated with signs of neurologic dysfunction which were the cause of the prominent clinical features.
Induction of a cell membrane antigen by equine infectious anemia virus.
American journal of veterinary research    March 1, 1978   Volume 39, Issue 3 385-386 
McGuire TC, Crawford TB.Equine fibroblasts persistently infected with equine infectious anemia virus acquire a new cell membrane antigen demonstrable by indirect radioimmunoassay, using infected horse serum as an antibody source.
Role of horse flies in transmission of wquine infectious anemia from carrier ponies.
Journal of the American Veterinary Medical Association    February 1, 1978   Volume 172, Issue 3 360-362 
Kemen MJ, McClain DS, Matthysse JG.Equine infectious anemia virus was transmitted from an acutely ill and an inapparently infected pony to uninfected ponies by the interrupted feeding of horse flies (tabanids). Transmission from acutely ill ponies was not accomplished following: (1) the interrupted feeding of a single horse fly, (2) bites of horse flies that had fed on an acutely affected pony 24 hours earlier, (3) bites of horse flies that had oviposited after feeding on an acutely affected pony, or (4) the inoculation of larval material derived from horse flies that had fed to repletion. It was concluded that horse fly transm...
[Immunodiffusion serologic study of equine infectious anemia in the Province of Buenos Aires, Argentina].
Revista de la Asociacion Argentina de Microbiologia    January 1, 1978   Volume 10, Issue 1 20-23 
Etcheverrigaray ME, Oliva GA, Zabala Suárez JE.Twenty seven per cent of 238 serum samples obtained from horses with clinical diagnosis were positive for the immunodifusion test, while 17% of the 452 sera obtained from asintomatic horses were positive. Twenty one per cent of the 870 sera studied were positive.
An EIA viewpoint.
Modern veterinary practice    January 1, 1978   Volume 59, Issue 1 65 
Scoggins RD.No abstract available
Equine infectious anaemia and the Australian horse industry.
Australian veterinary journal    January 1, 1978   Volume 54, Issue 1 42-43 doi: 10.1111/j.1751-0813.1978.tb00276.x
Lepherd EE.No abstract available
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