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Topic:Infectious Disease

Infectious diseases in horses encompass a range of illnesses caused by bacteria, viruses, fungi, or parasites. These diseases can affect various systems within the equine body, leading to symptoms that range from mild discomfort to severe systemic illness. Common infectious diseases in horses include equine influenza, strangles, equine herpesvirus, and West Nile virus. These diseases can be transmitted through direct contact with infected animals, contaminated surfaces, or vectors such as insects. Understanding the mechanisms of transmission, pathogenesis, and immune response is essential for effective prevention and control. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, diagnosis, treatment, and management of infectious diseases in horses.
Amebic meningoencephalitis caused by Balamuthia mandrillaris (leptomyxid ameba) in a horse. Kinde H, Visvesvara GS, Barr BC, Nordhausen RW, Chiu PH.No abstract available
The 1996 outbreak of African horse sickness in South Africa–the entomological perspective.
Archives of virology. Supplementum    October 24, 1998   Volume 14 69-83 doi: 10.1007/978-3-7091-6823-3_8
Meiswinkel R.During the 1996 summer season (January-April) in South Africa an estimated 500 horses died of African horse sickness (AHS); 80% of deaths were due to AHS virus serotypes 2 and 4. Nearly all cases occurred in the northern, north-eastern and central parts of South Africa. This study reports the first attempt to verify the involvement of the biting midge Culicoides imicola in a field outbreak of AHS in southern Africa. In light-trap collections made at 47 sites over 12 weeks, C. imicola comprised 94.2% of 4.78 million Culicoides. Culicoides imicola was the most prevalent of 34 species captured an...
Application of an indirect fluorescent antibody assay for the detection of African horse sickness virus antibodies.
Archives of virology. Supplementum    October 24, 1998   Volume 14 305-310 doi: 10.1007/978-3-7091-6823-3_26
el Hasnaoui H, el Harrak M, Tber A, Fikri A, Laghzaoui K, Bikour MH.An indirect fluorescent antibody (IFA) technique was used to screen and quantify antibodies against African horse sickness virus (AHSV) in equine sera. Results obtained with the IFA assay were compared directly with those obtained with standard complement fixation (CF) and virus neutralisation (VN) tests using horse sera from experimental studies and samples from the field. Positive fluorescent antibody titres were detected from as early as 7 days after primary vaccination and persisted for at least six months. The IFA technique offers a clear advantage over CF tests, where the antibodies are ...
Epidemiology of African horse sickness and the role of the zebra in South Africa.
Archives of virology. Supplementum    October 24, 1998   Volume 14 13-19 doi: 10.1007/978-3-7091-6823-3_2
Barnard BJ.Zebra are the only equine species native to South Africa. These animals roamed over much of the country in the 17th century when horses and donkeys were first imported. The first cases of African horse sickness (AHS) then occurred in the horses of hunters who entered zebra territory. AHS continued to occur on a country-wide basis until the beginning of the 20th century, though the number of outbreaks decreased as the populations of zebra collapsed through overhunting. For most of the 20th century almost all free-living zebra have been confined to the north-eastern parts of South Africa which a...
Validation of ELISA for the detection of African horse sickness virus antigens and antibodies.
Archives of virology. Supplementum    October 24, 1998   Volume 14 311-315 doi: 10.1007/978-3-7091-6823-3_27
Rubio C, Cubillo MA, Hooghuis H, Sanchez-Vizcaino JM, Diaz-Laviada M, Plateau E, Zientara S, Crucière C, Hamblin C.The mortality rate in susceptible populations of horses during an epizootic of African horse sickness (AHS) may be in excess of 90%. Rapid and reliable assays are therefore essential for the confirmation of clinical diagnoses and to enable control strategies to be implemented without undue delay. One of the major objectives of a recent European Union funded project was the validation of newly developed diagnostic assays which are rapid, sensitive, highly reproducible and inexpensive, for the detection of African horse sickness virus (AHSV) antigens and antibodies. The Laboratorio de Sanidad y ...
Future international management of African horse sickness vaccines.
Archives of virology. Supplementum    October 24, 1998   Volume 14 297-304 doi: 10.1007/978-3-7091-6823-3_25
House JA.Three types of African horse sickness (AHS) vaccine, namely adult mouse brain, modified live vaccine and inactivated viral vaccine (IVV) are reviewed. The results of efficacy trials carried out with each vaccine type highlight the advantages of the IVV. Vaccination with African horse sickness virus serotype 4 IVV, given as 2 separate doses, provided full protection against subsequent, homologous challenge. The absence of any detectable viraemia after challenge would also prevent infection of insect vectors. The advantages of establishing international vaccine banks for AHS are discussed.
Simulation studies of African horse sickness in Spain.
Archives of virology. Supplementum    October 24, 1998   Volume 14 103-111 doi: 10.1007/978-3-7091-6823-3_11
Lord CC, Woolhouse ME, Mellor PS.Factors affecting epidemics of African horse sickness in Spain were studied using a mathematical model. The model examined the likelihood of an epidemic after the introduction of the virus, and the effectiveness of vaccination strategies. Two host species (horses and donkeys) and one vector species (the biting midge Culicoides imicola) were included. A stratified random sampling method (Latin hypercube sampling) was used for sensitivity analysis of the likelihood of an epidemic. Systematic variation of vaccination parameters was used to consider alternative control strategies. In general, when...
Use of reverse transcriptase-polymerase chain reaction (RT-PCR) and dot-blot hybridisation for the detection and identification of African horse sickness virus nucleic acids.
Archives of virology. Supplementum    October 24, 1998   Volume 14 317-327 doi: 10.1007/978-3-7091-6823-3_28
Zientara S, Sailleau C, Moulay S, Crucière C, el-Harrak M, Laegreid WW, Hamblin C.A coupled reverse transcriptase-polymerase chain reaction assay (RT-PCR) for the detection of African horse sickness virus (AHSV) dsRNA, has been developed using genome segment 7 as the target template for primers. RNA from isolates of all nine AHSV serotypes were readily detected. The potential inhibitory effects of either ethylene diamine tetra acetic acid (EDTA) or heparin on the RT-PCR were eliminated by washing blood samples before lysis of the red blood cells and storage. There was a close agreement in the sensitivity and the specificity of the RT-PCR and an indirect sandwich ELISA. Conf...
Western immunoblotting as a method for the detection of African horse sickness virus protein-specific antibodies: differentiation between infected and vaccinated horses.
Archives of virology. Supplementum    October 24, 1998   Volume 14 329-336 doi: 10.1007/978-3-7091-6823-3_29
Bougrine SI, Fihri OF, Fehri MM.A Western immunoblotting procedure has been developed for the detection of African horse sickness virus (AHSV) protein-specific antibody responses. This assay readily identifies antibodies specific for at least 4 distinct, AHSV proteins, including VP5, NS1, NS2 and NS3/NS3a. By using the AHSV non-structural proteins as 'markers', the Western blotting procedure could be employed to provide a reliable means of discriminating between animals vaccinated with a purified, inactivated AHSV vaccine and those either naturally infected or vaccinated with a live, attenuated AHSV vaccine.
Genetic variation and phylogenetic analysis of open reading frames 3 and 4 of various equine arteritis virus isolates.
Advances in experimental medicine and biology    October 23, 1998   Volume 440 813-819 doi: 10.1007/978-1-4615-5331-1_106
Archambault D, Laganière G, St-Laurent G.The genetic variation in equine arteritis virus (EAV) nonstructural (NS) protein-encoding open reading frames (ORF) 3 and 4 genes was investigated. Nucleotide and deduced amino acid sequences from seven different EAV isolates (one European, one American and five Canadian isolates) and the Arvac vaccine strain were compared with those of the Bucyrus reference strain. ORF 3 nucleotide and amino acid sequence identities amongst these isolates (including the Arvac vaccine strain) and the Bucyrus reference strain ranged from 85.6 to 98.8%, and 85.3 to 98.2%, respectively, whereas ORF 4 nucleotide a...
Equine viral arteritis. Current status in Finland.
Advances in experimental medicine and biology    October 23, 1998   Volume 440 649-653 
Huovilainen A, Ek-Kommonen C.A serological study for antibodies against equine arteritis virus (EAV) in Finland was performed during 1996. All equine sera delivered to the Virology Unit at the National Veterinary and Food Research Institute were tested with a micro-neutralization test, using the Arvac strain as antigen. The study also included imported horses to evaluate EAV circulation in the countries of origin. Nucleocapsid gene sequences of 2 Finnish equine semen isolates were amplified with RT-PCR and sequenced. The genetic relationships of those isolates with strains isolated elsewhere in the world were analyzed. Th...
Culicoides (Diptera: Ceratopogonidae) associated with horses at Mogoditshane, Gaborone, Botswana.
Veterinary research communications    October 21, 1998   Volume 22, Issue 5 295-297 doi: 10.1023/a:1006152500642
Mushi EZ, Isa JF, Chabo RG, Binta MG, Kapaata RW.No abstract available
An annotated checklist by genus and species of 93 species level names for 51 recognized species of small strongyles (Nematoda: Strongyloidea: Cyathostominea) of horses, asses and zebras of the world.
Veterinary parasitology    October 20, 1998   Volume 79, Issue 1 65-79 doi: 10.1016/s0304-4017(98)00149-6
Lichtenfels JR, Kharchenko VA, Krecek RC, Gibbons LM.The results of an international collaborative effort to prepare a recommended list of scientific names for the small strongyles (Nematoda: Strongyloidea: Cyathostominea) of horses, donkeys and zebras are reported. Fifty-one valid species are recognized in 13 genera, including Cyathostomum, Coronocyclus, Cylicodontophorus, Cylicocyclus, Cylicostephanus, Skrjabinodentus, Tridentoinfundibulum, Petrovinema, Poteriostomum, Parapoteriostomum, Hsiungia, Cylindropharynx and Caballonema. In addition, 42 other species level names are listed as synonyms of the 51 recognized species or as species inquiren...
Serum antibody in equine neonatal septicaemia due to Actinobacillus equuli.
The Veterinary record    October 17, 1998   Volume 143, Issue 9 254-255 doi: 10.1136/vr.143.9.254
Rycroft AN, Woldeselassie A, Gordon PJ, Bjornson A.No abstract available
Halicephalobus gingivalis (Stefanski, 1954) from a fatal infection in a horse in Ontario, Canada with comments on the validity of H. deletrix and a review of the genus.
Parasite (Paris, France)    October 17, 1998   Volume 5, Issue 3 255-261 doi: 10.1051/parasite/1998053255
Anderson RC, Linder KE, Peregrine AS.Although the original description given by Stefanski (1954) was satisfactory, Anderson & Bemrick (1965), in describing H. deletrix (= Micronema deletrix), claimed Stefanski's description was "inadequate" and the species a "species inquirenda". Thus, infections in horses and humans have been assigned to H. deletrix. We believe the species reported in horses and humans is H. gingivalis and that H. deletrix is its synonym. H. gingivalis is separated herein from forms found free-living. The genital tract in the advanced fourth stage of H. gingivalis is didelphic and amphidelphic and terminal e...
Use of a PCR assay for Taylorella equigenitalis applied to samples from the United Kingdom.
The Veterinary record    October 15, 1998   Volume 143, Issue 8 225-227 doi: 10.1136/vr.143.8.225
Chanter N, Vigano F, Collin NC, Mumford JA.No abstract available
Equine endothelial cells support productive infection of equine infectious anemia virus.
Journal of virology    October 10, 1998   Volume 72, Issue 11 9291-9297 doi: 10.1128/JVI.72.11.9291-9297.1998
Maury W, Oaks JL, Bradley S.Previous cell infectivity studies have demonstrated that the lentivirus equine infectious anemia virus (EIAV) infects tissue macrophages in vivo and in vitro. In addition, some strains of EIAV replicate to high titer in vitro in equine fibroblasts and fibroblast cell lines. Here we report a new cell type, macrovascular endothelial cells, that is infectible with EIAV. We tested the ability of EIAV to infect purified endothelial cells isolated from equine umbilical cords and renal arteries. Infectivity was detected by cell supernatant reverse transcriptase positivity, EIAV antigen positivity wit...
Screening of horse polyclonal antibodies with a random peptide library displayed on phage: identification of ligands used as antigens in an ELISA test to detect the presence of antibodies to equine arteritis virus.
Journal of virological methods    October 10, 1998   Volume 73, Issue 2 175-183 doi: 10.1016/s0166-0934(98)00057-3
Iniguez P, Zientara S, Marault M, Machin IB, Hannant D, Cruciere C.A random hexapeptide fusion-phage library was screened to isolate phages that bind to antibodies present in horse sera positive for equine arteritis virus (EAV). Analysis of the peptide sequences displayed by isolated phages identified seven groups. 25% of the isolated phages used as antigens in an ELISA test were specifically recognised by a pool of sera which was positive for EAV in virus neutralisation test (VN). Five of these, when used as antigen in ELISA, detected greater than 50% of sera (n = 30) containing antibodies to EAV as detected by VN. When these five phages were pooled together...
Getah virus infection of Indian horses.
Tropical animal health and production    October 7, 1998   Volume 30, Issue 4 241-252 doi: 10.1023/a:1005079229232
Brown CM, Timoney PJ.An outbreak of disease, characterized by depression, anorexia, fever, limb oedema and lymphocytopenia, occurred on a farm for thoroughbreds in India in 1990. Twenty-six of the 88 horses on the farm were affected, predominantly adults. Signs were present in affected horses for 7-10 days, and the outbreak lasted 21 days. Seven of the 26 affected horses were tested for exposure to Getah virus using paired serum samples, acute and convalescent. Four of the 7 horses seroconverted to Getah virus, and the other three showed a 4-fold or greater rise in titre. The clinical and laboratory findings were ...
[Prevalence of infections caused by Salmonella spp. in cattle and horses at the Veterinary Teaching Hospital of the Faculty of Veterinary Medicine of the University of Montreal].
The Canadian veterinary journal = La revue veterinaire canadienne    September 30, 1998   Volume 39, Issue 9 566-572 
Ravary B, Fecteau G, Higgins R, Paré J, Lavoie JP.Bacteriologic detection of Salmonella spp. from feces of animals admitted to Veterinary Teaching Hospital of the Faculty of Veterinary Medicine, University of Montréal, in Saint-Hyacinthe was carried out during a 1-year period to estimate the prevalence of bovine and equine salmonellosis. Prevalence at the time of hospitalization was quite low: 1.4% in cattle and 1.7% in horses. Incidence was 15.1 cases/100 animal/year in cattle and 38.7 cases/100 animal/year in horses. Serotype typhimurium was the most prevalent in both species. In cattle, cases were evenly distributed over the year. In hors...
Human onychomycosis caused by Trichophyton equinum transmitted from a racehorse.
The British journal of dermatology    September 25, 1998   Volume 138, Issue 6 1082-1084 doi: 10.1046/j.1365-2133.1998.02286.x
Huovinen S, Tunnela E, Huovinen P, Kuijpers AF, Suhonen R.We report fingernail onychomycosis caused by Trichophyton equinum in a farmer who breeds racehorses. In addition to the thumbnail, T. equinum had infected one of the racehorses. Oral terbinafine cured the infection in the farmer.
Gasterophilus intestinalis infections in horses in Belgium.
Veterinary parasitology    September 24, 1998   Volume 77, Issue 2-3 199-204 doi: 10.1016/s0304-4017(98)00106-x
Agneessens J, Engelen S, Debever P, Vercruysse J.Over a period of one year, from December 1995 to November 1996, larvae of Gasterophilus intestinalis were found in 193 horse stomachs (58%) of 330 that were examined in two Belgian slaughter houses. When August is excluded, 62% of the stomachs had bot larvae. No other Gasterophilus species were identified. The monthly prevalence ranged from 9% in August to 75% in November and December. The mean intensity of bot larvae varied from 8 in August to 29 in March, and the majority of the horses (67%) harboured less than 50 larvae. Prevalences and intensities were not affected by age, but mares were m...
Passive transfer, rate of decay, and protein specificity of antibodies against equine arteritis virus in horses from a Standardbred herd with high seroprevalence.
Journal of the American Veterinary Medical Association    September 23, 1998   Volume 213, Issue 6 839-842 
Hullinger PJ, Wilson WD, Rossitto PV, Patton JF, Thurmond MC, MacLachlan NJ.To determine rate of decay of passively acquired antibodies in Standardbred foals on a farm with a high seroprevalence to equine arteritis virus (EAV) and to determine whether vertical or horizontal transmission of the virus was responsible for infection on the farm. Methods: Repeated-measures study. Methods: 46 Standardbred horses (15 brood mares and their foals, 5 stallions, and 11 young horses). Methods: Serum samples obtained from horses on the farm were evaluated by serum neutralization and western immunoblot analysis to detect EAV-specific antibodies. The half-life of passively acquired ...
Endocarditis caused by Pasteurella caballi in a horse.
Australian veterinary journal    September 19, 1998   Volume 76, Issue 8 528-530 doi: 10.1111/j.1751-0813.1998.tb10207.x
Church S, Harrigan KE, Irving AE, Peel MM.No abstract available
Experimental infection of the human granulocytic ehrlichiosis agent in horses.
Veterinary parasitology    September 15, 1998   Volume 78, Issue 2 137-145 doi: 10.1016/s0304-4017(98)00133-2
Chang YF, Novosel V, Dubovi E, Wong SJ, Chu FK, Chang CF, Del Piero F, Shin S, Lein DH.Human blood collected from two patients from Westchester County, New York with human granulocytic ehrlichia (HGE) infection was inoculated into two ponies. Inoculated ponies developed clinical signs similar to a previous report (Madigan et al., 1995). Histopathological changes involved follicular hyperplasia of lymphoid tissues. HGE DNA was detected by PCR in muscle, fascia, peritoneum, and adrenal gland after the ponies produced a high level of antibodies to HGE. We suggest that HGE may reside in poorly vascularized connective tissues, where the antibodies may have some difficulties to penetr...
The S2 gene of equine infectious anemia virus is dispensable for viral replication in vitro.
Journal of virology    September 12, 1998   Volume 72, Issue 10 8344-8348 doi: 10.1128/JVI.72.10.8344-8348.1998
Li F, Puffer BA, Montelaro RC.Equine infectious anemia virus (EIAV) contains the simplest genome among lentiviruses in that it encodes only three putative regulatory genes (S1, S2, S3) in addition to the canonical gag, pol, and env genes, presumably reflecting its limited tropism to cells of monocyte/macrophage lineage. Tat and Rev functions have been assigned to S1 and S3, respectively, but the specific function for the S2 gene has yet to be determined. Thus, the function of S2 in virus replication in vitro was investigated by using an infectious molecular viral clone, EIAVUK. Various EIAVUK mutants lacking S2 were constr...
Herpesvirus myeloencephalopathy in horses: 11 cases (1982-1996).
Journal of the American Veterinary Medical Association    September 10, 1998   Volume 213, Issue 5 671-675 
Donaldson MT, Sweeney CR.To determine results of CSF analysis in horses with equid herpesvirus myeloencephalopathy (EHM) and to determine whether results of CSF analysis were associated with outcome. Methods: Retrospective study. Methods: 11 horses. Methods: Medical records of all horses admitted to the veterinary teaching hospital between February 1982 and March 1996 in which EHM was diagnosed were reviewed. Results: 7 horses were < or = 4 years old; 8 were admitted during January, February, or March. Six horses were febrile prior to admission, but none was febrile on the day of admission. Five horses had been sta...
Rabies prophylaxis following the feeding of a rabid pony.
Clinical pediatrics    September 8, 1998   Volume 37, Issue 8 477-481 doi: 10.1177/000992289803700803
Feder HM, Nelson RS, Cartter ML, Sadre I.A survey was performed to identify people who were exposed to a rabid pony and determine whether or not they received rabies postexposure prophylaxis (PEP). Sixty-one visitors who came in contact with the rabid pony were identified. These visitors heard about the rabid pony via the news media. Forty-five visitors were exposed during the 2 weeks before the pony died. Thirty-two of these 45 visitors received PEP. Thirty-one visitors had or may have had saliva contact to an open wound or mucosa and all 31 received PEP. Fourteen visitors had no saliva contact to a wound or mucosa and one received ...
Virological and molecular biological investigations into equine herpes virus type 2 (EHV-2) experimental infections.
Virus research    August 26, 1998   Volume 55, Issue 1 101-106 doi: 10.1016/s0168-1702(98)00028-8
Borchers K, Wolfinger U, Ludwig H, Thein P, Baxi S, Field HJ, Slater JD.Two 18-month-old naturally reared ponies were used to investigate the pathogenicity of EHV-2. After dexamethasone treatment, pony 1 was inoculated intranasally with EHV-2 strain T16, which has been isolated from a foal with keratoconjunctivitis superficialis and pony 2 was similarly inoculated with strain LK4 which was originally isolated from a horse with upper respiratory tract disease. Following virus inoculation, pyrexia was not detected in either pony but both developed conjunctivitis, lymphadenopathy, and coughing. EHV-2 was detected in nasal mucus samples up to day 12 post infection (p....
Babesia equi field isolates cultured from horse blood using a microcentrifuge method.
The Journal of parasitology    August 26, 1998   Volume 84, Issue 4 696-699 
Holman PJ, Becu T, Bakos E, Polledo G, Cruz D, Wagner GG.Babesia equi, a causative agent of equine piroplasmosis, was isolated from horses in the Chaco Province of Argentina, a known piroplasmosis endemic region. Fifteen B. equi field isolates were acquired by culture from 23 actively working horses from 2 ranches. The horses appeared healthy with no clinical signs or histories indicative of equine piroplasmosis. All 23 horses had B. equi-specific antibody activity by the indirect fluorescent antibody test and 18 were also complement fixation test positive for B. equi. Equine erythrocytes were prepared for parasite culture using a microcentrifuge tu...