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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.
Serum interleukin-6 (IL-6) and IL-10 concentrations in normal and septic neonatal foals.
Veterinary immunology and immunopathology    May 18, 2009   Volume 132, Issue 2-4 122-128 doi: 10.1016/j.vetimm.2009.05.006
Burton AB, Wagner B, Erb HN, Ainsworth DM.Previously it was reported that compared to surviving septic foals, non-surviving foals had a 35-fold increase in interleukin-10 (IL-10) and 15-fold increase in IL-6 gene expression in their peripheral blood mononuclear cells (PBMC). As gene expression profiles can be time-consuming, we sought to determine if serum IL-6 and IL-10 in foals would aid in the diagnosis and prognosis of septicemia. A prospective study of septic neonatal foals admitted to the Cornell University Equine Hospital during 2007 and 2008 was performed. Septicemia was confirmed in 15 foals using blood culture results and se...
Biological control of horse cyathostomin (Nematoda: Cyathostominae) using the nematophagous fungus Duddingtonia flagrans in tropical southeastern Brazil.
Veterinary parasitology    May 15, 2009   Volume 163, Issue 4 335-340 doi: 10.1016/j.vetpar.2009.05.003
Braga FR, Araújo JV, Silva AR, Araujo JM, Carvalho RO, Tavela AO, Campos AK, Carvalho GR.The viability of a fungal formulation using the nematode-trapping fungus Duddingtonia flagrans was assessed for the biological control of horse cyathostomin. Two groups (fungus-treated and control without fungus treatment), consisting of eight crossbred mares (3-18 years of age) were fed on Cynodon sp. pasture naturally infected with equine cyathostome larvae. Each animal of the treated group received oral doses of sodium alginate mycelial pellets (1g/(10 kg live weight week)), during 6 months. Significant reduction (p<0.01) in the number of eggs per gram of feces and coprocultures was foun...
Equine herpesvirus-1, non-neurogenic pathotype, in a 9-year-old American Saddlebred with neurological signs.
The Canadian veterinary journal = La revue veterinaire canadienne    May 14, 2009   Volume 50, Issue 3 297-300 
Heerkens TM.Equine herpesvirus 1 (EHV-1) causes rhinopneumonitis, abortion, and rarely, myeloencephalopathy. The neurovirulence of this virus is due to a point mutation in the DNA polymerase gene. Diagnosis by virus isolation has been replaced by real-time polymerase chain reaction (RT-PCR) assays that can detect strains, viral loads, and states; this may aid in control and management of the disease. L’herpèsvirus équin de type-1 (EHV-1) cause la rhinopneumonie, l’avortement et rarement la myéloencéphalopathie. La neurovirulence de ce virus est attribuable à une mutation ponctuelle à l’intér...
Outbreak of salivary syndrome on several horse farms in the Netherlands.
The Veterinary record    May 12, 2009   Volume 164, Issue 19 595-596 doi: 10.1136/vr.164.19.595
Wijnberg ID, van der Ven PJ, Gehrmann JF.No abstract available
Diseases in neonatal foals. Part 1: the 30 day incidence of disease and the effect of prophylactic antimicrobial drug treatment during the first three days post partum.
Equine veterinary journal    May 8, 2009   Volume 41, Issue 2 179-185 doi: 10.2746/042516408x345116
Wohlfender FD, Barrelet FE, Doherr MG, Straub R, Meier HP.Neonatal diseases have been grouped and analysed but up-to-date statistically significant information about the incidence and prevalence of diseases in foals is limited. Since the 1950s it has been a common management practice to administer a 3 day course of antimicrobial drugs to neonatal foals. This was shown to significantly reduce the incidence of infections (Platt 1977). Since then management practices have improved and it is widely believed that prophylactic antimicrobial drugs are no longer necessary in foal rearing. Objective: To determine the 30 day incidences or prevalences (dependin...
Diseases in neonatal foals. Part 2: potential risk factors for a higher incidence of infectious diseases during the first 30 days post partum.
Equine veterinary journal    May 8, 2009   Volume 41, Issue 2 186-191 doi: 10.2746/042516408x345143
Wohlfender FD, Barrelet FE, Doherr MG, Straub R, Meier HP.The development of clinical illness in foals is usually predetermined by perinatal history, management or stressful environmental conditions. Objective: To determine potential risk factors for an increased incidence of infectious diseases during the first 30 days post partum. Methods: The population consisted of Thoroughbred foals born on stud farms in the Newmarket (UK) area in 2005 (n = 1031). They were followed for their first 30 days. Factors suspected to influence the incidence of infectious neonatal diseases were examined in a logistic regression approach for each of the 3 outcomes (tota...
Localization of the equine IgG-binding domain in the fibrinogen-binding protein (FgBP) of Streptococcus equi subsp. equi.
Microbiology (Reading, England)    May 7, 2009   Volume 155, Issue Pt 8 2583-2592 doi: 10.1099/mic.0.028845-0
Meehan M, Lewis MJ, Byrne C, O'Hare D, Woof JM, Owen P.Fibrinogen-binding protein (FgBP, also termed SeM) is a cell-wall-associated anti-phagocytic M-like protein of the equine pathogen Streptococcus equi subsp. equi, and binds fibrinogen (Fg) and IgG. FgBP binds Fg avidly through residues located at the extreme N terminus of the molecule, whereas the IgG-binding site is more centrally located between the A and B repeats. FgBP binds equine IgG4 and IgG7 subclasses through interaction with the CH2-CH3 interdomain region of IgG-Fc, and possesses overlapping Fc-binding sites with protein A and protein G. In this study, FgBP truncates containing defin...
Equine colitis X associated with infection by Clostridium difficile NAP1/027. Songer JG, Trinh HT, Dial SM, Brazier JS, Glock RD.A 14-year-old Quarter Horse with a 48-hr history of colic was euthanized after failure to respond to treatment. At necropsy, cecal and colonic mucosae were congested throughout, and there was segmental edema and significant thickening of the intestinal wall. Excessive numbers of mononuclear cells were found in mucosal lamina propria. Submucosal hemorrhage was diffuse and extensive, and Clostridium difficile toxins A and B were detected. Large numbers of C. difficile were isolated, and genetic characterization revealed them to be North American pulsed-field gel electrophoresis type 1, polymeras...
Ovine herpesvirus 2 infection in Foal, Brazil.
Emerging infectious diseases    May 1, 2009   Volume 15, Issue 5 844-845 doi: 10.3201/eid1505.081664
Costa EA, Bomfim MR, da Fonseca FG, Drumond BP, Coelho FM, Vasconcelos AC, Furtini R, Paixão TA, Tsolis RM, Santos RL, Resende M.No abstract available
Distinct ecologically relevant strains of Anaplasma phagocytophilum.
Emerging infectious diseases    May 1, 2009   Volume 15, Issue 5 842-843 doi: 10.3201/eid1505.081502
Foley JE, Nieto NC, Massung R, Barbet A, Madigan J, Brown RN.No abstract available
Immunoprophylaxis against important virus disease of horses, farm animals and birds.
Vaccine    April 30, 2009   Volume 27, Issue 12 1797-1810 doi: 10.1016/j.vaccine.2008.12.063
Patel JR, Heldens JG.Since the refinement of tissue culture techniques for virus isolation and propagation from the mid 1960s onwards, veterinary virology has received much academic and industrial interest, and has now become a major global industry largely centred on vaccine development against economically important virus diseases of food animals. Bio-tech approaches have been widely used for improved vaccines development. While many viral diseases are controlled through vaccination, many still lack safe and efficacious vaccines. Additional challenges faced by academia, industry and governments are likely to com...
Prevalence and diagnosis of Babesia and Theileria infections in horses in Italy: a preliminary study.
Veterinary journal (London, England : 1997)    April 24, 2009   Volume 184, Issue 3 346-350 doi: 10.1016/j.tvjl.2009.03.021
Moretti A, Mangili V, Salvatori R, Maresca C, Scoccia E, Torina A, Moretta I, Gabrielli S, Tampieri MP, Pietrobelli M.Babesia caballi and Theileria equi are the causative agents of equine piroplasmosis. In this preliminary epidemiological study, 412 horses reared in central and northern Italy were sampled and three diagnostic methods compared, namely, the microscopy, the indirect fluorescent antibody test (IFAT) and a PCR. Possible risk factors (such as area, season, breed, activity, sex, age, and grazing) associated with serological positivity were evaluated. A seroprevalence of 68.4% was found: 12.4% of the animals had anti-T. equi antibodies, 17.9% anti-B. caballi antibodies and 38.1% had antibodies agains...
Molecular and infection biology of the horse pathogen Rhodococcus equi.
FEMS microbiology reviews    April 23, 2009   Volume 33, Issue 5 870-891 doi: 10.1111/j.1574-6976.2009.00181.x
von Bargen K, Haas A.The soil actinomycete Rhodococcus equi is a pulmonary pathogen of young horses and AIDS patients. As a facultative intracellular bacterium, R. equi survives and multiplies in macrophages and establishes its specific niche inside the host cell. Recent research into chromosomal virulence factors and into the role of virulence plasmids in infection and host tropism has presented novel aspects of R. equi infection biology and pathogenicity. This review will focus on new findings in R. equi biology, the trafficking of R. equi-containing vacuoles inside host cells, factors involved in virulence and ...
Microarray identification of Clostridium difficile core components and divergent regions associated with host origin.
Journal of bacteriology    April 17, 2009   Volume 191, Issue 12 3881-3891 doi: 10.1128/JB.00222-09
Janvilisri T, Scaria J, Thompson AD, Nicholson A, Limbago BM, Arroyo LG, Songer JG, Gröhn YT, Chang YF.Clostridium difficile is a gram-positive, spore-forming enteric anaerobe which can infect humans and a wide variety of animal species. Recently, the incidence and severity of human C. difficile infection has markedly increased. In this study, we evaluated the genomic content of 73 C. difficile strains isolated from humans, horses, cattle, and pigs by comparative genomic hybridization with microarrays containing coding sequences from C. difficile strains 630 and QCD-32g58. The sequenced genome of C. difficile strain 630 was used as a reference to define a candidate core genome of C. difficile a...
Detection of Trypanosoma evansi infection in clinically ill cattle, buffaloes and horses using various diagnostic tests.
Epidemiology and infection    April 15, 2009   Volume 137, Issue 11 1583-1585 doi: 10.1017/S095026880900260X
Laha R, Sasmal NK.This study was undertaken to detect Trypanosoma evansi infection in clinically ill cattle, buffaloes and horses that were suspected of 'surra' infection. Various diagnostic tests were utilized in order to assess the prevalence of infection in the clinically ill and 'suspected' animals. Animals in the Eastern Region of India were systematically studied for T. evansi infection, which had not been tested for previously. Examination of Giemsa-stained blood smears detected 5.3%, 9.4% and 40.6% infections; the mouse inoculation test detected 18.4%, 15.6% and 46.9% infections whereas an in-house ELIS...
Equine disease surveillance, October to December 2008.
The Veterinary record    April 14, 2009   Volume 164, Issue 15 451-454 doi: 10.1136/vr.164.15.451
No abstract available
Intrinsic Factors Influencing the Infection by Helminth Parasites in Horses under an Oceanic Climate Area (NW Spain).
Journal of parasitology research    April 8, 2009   Volume 2009 616173 doi: 10.1155/2009/616173
Francisco I, Arias M, Cortiñas FJ, Francisco R, Mochales E, Dacal V, Suárez JL, Uriarte J, Morrondo P, Sánchez-Andrade R, Díez-Baños P....A coprological survey to determine the influence of some intrinsic factors (breed, age, and sex) on the infection by helminth parasites in equine livestock (n = 418) under an oceanic climate area (NW Spain) was conducted. Faecal samples were individually collected and analyzed by the coprological techniques. The main strongylid genera identified were Trichonema and Cyalocephalus spp (small strongyles) and Strongylus and Triodontophorus (large strongyles). The prevalence of gastrointestinal nematode was 89% (95% CI 86, 92) and 1% cestoda (0, 2). The percentage of horses with strongyloid parasit...
Testing for antibodies to equine arteritis virus.
The Veterinary record    April 7, 2009   Volume 164, Issue 14 437 doi: 10.1136/vr.164.14.437-a
Legrand L, Pitel PH, Fortier G, Pronost S, Cullinane A.No abstract available
[Equine Infectious Anemia (EIA)].
Schweizer Archiv fur Tierheilkunde    April 1, 2009   Volume 151, Issue 4 159-164 doi: 10.1024/0036-7281.151.4.159
Kaiser A, Meier HP, Straub R, Gerber V.Equine Infectious Anemia (EIA) is a reportable, eradicable epizootic disease caused by the equine lentivirus of the retrovirus family which affects equids only and occurs worldwide. The virus is transmitted by blood, mainly by sanguivorous insects. The main symptoms of the disease are pyrexia, apathy, loss of body condition and weight, anemia, edema and petechia. However, infected horses can also be inapparent carriers without any overt signs. The disease is diagnosed by serological tests like the Coggins test and ELISA tests. Presently, Switzerland is offi cially free from EIA. However, Switz...
Control of equine influenza: scenario testing using a realistic metapopulation model of spread.
Journal of the Royal Society, Interface    April 1, 2009   Volume 7, Issue 42 67-79 doi: 10.1098/rsif.2009.0030
Baguelin M, Newton JR, Demiris N, Daly J, Mumford JA, Wood JL.We present a metapopulation model of the spread of equine influenza among thoroughbred horses parametrized with data from a 2003 outbreak in Newmarket, UK. The number of horses initially susceptible is derived from a threshold theorem and a published statistical model. Two simulated likelihood-based methods are used to find the within- and between-yard transmissions using both exponential and empirical latent and infectious periods. We demonstrate that the 2003 outbreak was largely locally driven and use the parametrized model to address important questions of control. The chance of a large ep...
Novel approach for detection of enteric viruses to enable syndrome surveillance of acute viral gastroenteritis.
Journal of clinical microbiology    April 1, 2009   Volume 47, Issue 6 1674-1679 doi: 10.1128/JCM.00307-09
Svraka S, van der Veer B, Duizer E, Dekkers J, Koopmans M, Vennema H.Acute gastroenteritis is one of the most common diseases worldwide, with viruses, particularly noroviruses, being the leading cause in developed countries. In The Netherlands, systematic surveillance of gastroenteritis outbreaks of suspected viral etiology was established by the National Institute for Public Health and the Environment in 1994. Since 2002, the total number of outbreaks reported has been increasing, and with that comes the need for sensitive assays that can be performed quickly. In addition, the diagnostic demand changed so that now the proportion of samples from hospitals is hi...
[Serological and clinical proof of freedom from Equine Infectious Anemia (EIA) in imported and domestic horses in Switzerland].
Schweizer Archiv fur Tierheilkunde    April 1, 2009   Volume 151, Issue 4 165-170 doi: 10.1024/0036-7281.151.4.165
Kaiser A, Meier HP, Doherr MG, Perler L, Zanoni R, Gerber V.Since 1991, no cases of Equine Infectious Anemia (EIA) have been reported in Switzerland. Risk factors for introduction of the virus into Switzerland are still present or have even increased as frequent inapparent infections, large numbers of imported horses, (since 2003) absence of compulsory testing prior to importation, EIA cases in surrounding Europe, possible illegal importation of horses, frequent short-term stays, poor knowledge of the disease among horse owners and even veterinarians. The aim of this study was to provide evidence of freedom from EIA in imported and domestic horses in S...
Rhodococcus equi comes of age.
Equine veterinary journal    March 24, 2009   Volume 41, Issue 1 93-95 doi: 10.2746/042516409x383564
Vazquez-Boland JA, Prescott JF, Meijer WG, Leadon DP, Hines SA.No abstract available
Feeding patterns of biting midges of the Culicoides obsoletus and Culicoides pulicaris groups on selected farms in Brandenburg, Germany.
Parasitology research    March 24, 2009   Volume 105, Issue 2 373-380 doi: 10.1007/s00436-009-1408-y
Bartsch S, Bauer B, Wiemann A, Clausen PH, Steuber S.Host feeding patterns of engorged sibling species of the Culicoides obsoletus and Culicoides pulicaris groups captured during three nights on two selected farms maintaining either cattle, sheep, horses, and pigs (Seedorf, Brandenburg) or cattle, sheep, moufflons, and red and fallow deer (Paulinenaue, Brandenburg) were determined by polymerase chain reaction amplification using conserved primers and sets of species-specific primers derived from vertebrates mitochondrial cytochrome b. Out of a total of 177 blood meals analysed, 115 (65%) tested positive for a blood meal from vertebrates. 63.5% (...
Influenza A viruses with truncated NS1 as modified live virus vaccines: pilot studies of safety and efficacy in horses.
Equine veterinary journal    March 24, 2009   Volume 41, Issue 1 87-92 doi: 10.2746/042516408x371937
Chambers TM, Quinlivan M, Sturgill T, Cullinane A, Horohov DW, Zamarin D, Arkins S, García-Sastre A, Palese P.Three previously described NS1 mutant equine influenza viruses encoding carboxy-terminally truncated NS1 proteins are impaired in their ability to inhibit type I IFN production in vitro and are replication attenuated, and thus are candidates for use as a modified live influenza virus vaccine in the horse. Objective: One or more of these mutant viruses is safe when administered to horses, and recipient horses when challenged with wild-type influenza have reduced physiological and virological correlates of disease. Methods: Vaccination and challenge studies were done in horses, with measurement ...
Cryptococcosis in domestic animals in Western Australia: a retrospective study from 1995-2006.
Medical mycology    March 24, 2009   Volume 47, Issue 6 625-639 doi: 10.1080/13693780802512519
McGill S, Malik R, Saul N, Beetson S, Secombe C, Robertson I, Irwin P.A retrospective study of cryptococcosis in domestic animals residing in Western Australia was conducted over an 11-year-period (from 1995 to 2006) by searching the data base of Murdoch University Veterinary Teaching hospital and the largest private clinical pathology laboratory in Perth. Cryptococcosis was identified in 155 animals: 72 cats, 57 dogs, 20 horses, three alpacas, two ferrets and a sheep. There was no seasonal trend apparent from the dates of diagnosis. Taking into account the commonness of accessions to Murdoch University, cats were five to six times more likely to develop this di...
Aggregation-associated loss of antigenicity observed for denatured virion protein 1 of Equine rhinitis A virus in an enzyme-linked immunosorbent assay.
Virus research    March 20, 2009   Volume 143, Issue 1 130-133 doi: 10.1016/j.virusres.2009.03.003
Kriegshäuser G, Kuechler E, Skern T.Equine rhinitis A virus (ERAV) is a picornavirus which causes an acute respiratory infection in horses worldwide, and virus neutralization (VN) has been the standard method for the detection of ERAV antibody in horse serum. Previous studies have identified recombinant virion protein VP1 (rVP1) purified under native conditions to be of high potential for the development of a diagnostic ERAV enzyme-linked immunosorbent assay (ELISA). This study presents an optimized protocol for the expression and purification of native full-length rVP1. Furthermore, we demonstrate that, upon denaturation, rVP1 ...
Field evaluation of a multiplex real-time reverse transcription polymerase chain reaction assay for detection of Vesicular stomatitis virus. Wilson WC, Letchworth GJ, Jiménez C, Herrero MV, Navarro R, Paz P, Cornish TE, Smoliga G, Pauszek SJ, Dornak C, George M, Rodriguez LL.Sporadic outbreaks of vesicular stomatitis (VS) in the United States result in significant economic losses for the U.S. livestock industries because VS is a reportable disease that clinically mimics foot-and-mouth disease. Rapid and accurate differentiation of these 2 diseases is critical because their consequences and control strategies differ radically. The objective of the current study was to field validate a 1-tube multiplexed real-time reverse transcription polymerase chain reaction (real-time RT-PCR) assay for the rapid detection of Vesicular stomatitis New Jersey virus and Vesicular st...
The continuous spread of West Nile virus (WNV): seroprevalence in asymptomatic horses.
Epidemiology and infection    March 17, 2009   Volume 137, Issue 8 1163-1168 doi: 10.1017/S0950268809002325
Alonso-Padilla J, Loza-Rubio E, Escribano-Romero E, Córdoba L, Cuevas S, Mejía F, Calderón R, Milián F, Travassos Da Rosa A, Weaver SC....West Nile virus (WNV) was probably introduced in southern and northern Mexico from the USA in two independent events. Since then, WNV activity has been reported in several Mexican states bordering the USA and the Gulf of Mexico, but disease manifestations seen there in humans and equids are quite different to those observed in the USA. We have analysed WNV seroprevalence in asymptomatic, unvaccinated equids from two Mexican states where no data had been previously recorded. WNV IgG antibodies were detected in 31.6% (91/288) of equine sera from Chiapas and Puebla states (53.3% and 8.0%, respect...
Comparison of clinical, microbiologic, and clinicopathologic findings in horses positive and negative for Clostridium difficile infection.
Journal of the American Veterinary Medical Association    March 17, 2009   Volume 234, Issue 6 777-784 doi: 10.2460/javma.234.6.777
Ruby R, Magdesian KG, Kass PH.To compare clinical, microbiologic, and clinicopathologic findings among horses infected with Clostridium difficile that had toxin A in their feces, horses with evidence of C difficile infection that were negative for toxin A in their feces, and horses with diarrhea that were negative for C difficile infection. Methods: Cross-sectional study. Methods: 292 horses and foals with diarrhea. Methods: Feces were submitted for microbial culture and tested for the C difficile antigen glutamate dehydrogenase and for toxin A with a commercial ELISA. Results: Horses with toxin A in their feces had higher...