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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.
West Nile Virus Infection in Horses: Detection by Immunohistochemistry, In Situ Hybridization, and ELISA.
Veterinary pathology    February 12, 2015   Volume 52, Issue 6 1073-1076 doi: 10.1177/0300985815570067
Toplu N, Oğuzoğlu TÇ, Ural K, Albayrak H, Ozan E, Ertürk A, Epikmen ET.This study describes the clinicopathologic findings in naturally occurring West Nile virus (WNV) infection in horses. WNV was diagnosed in a foal by immunohistochemical and in situ hybridization methods, and the presence of WNV antibodies was detected in 5 other horses with clinical signs suggestive of WNV infection. At necropsy of the foal, lymph nodes were edematous and enlarged, and the intestines showed diffuse congestion and focal hemorrhages. The most significant histologic lesions in this case were nonsuppurative meningoencephalomyelitis, particularly in the brainstem and spinal cord. I...
Rapid detection of equine coronavirus by reverse transcription loop-mediated isothermal amplification.
Journal of virological methods    February 12, 2015   Volume 215-216 13-16 doi: 10.1016/j.jviromet.2015.02.001
Nemoto M, Morita Y, Niwa H, Bannai H, Tsujimura K, Yamanaka T, Kondo T.A reverse transcription loop-mediated isothermal amplification (RT-LAMP) assay was developed for the rapid detection of equine coronavirus (ECoV). This assay was conducted at 60 °C for 40 min. Specificity of the RT-LAMP assay was confirmed using several equine intestinal and respiratory pathogens in addition to ECoV. The novel assay failed to cross-react with the other pathogens tested, suggesting it is highly specific for ECoV. Using artificially synthesized ECoV RNA, the 50% detection limit of the RT-LAMP assay was 10(1.8)copies/reaction. This is a 50-fold greater sensitivity than conventio...
Mycobacterium bovis infection in a horse with granulomatous enterocolitis. Sarradell JE, Alvarez J, Biscia M, Zumarraga M, Wunschmann A, Armien AG, Perez AM.A 2-year-old dappled Percheron horse had a wasting condition that did not respond to antibiotic treatments and ultimately resulted in death. Thickening of the wall of the large colon and enlargement of the mesenteric lymph nodes were observed at postmortem examination, along with the presence of pinpoint whitish foci in the liver. Microscopic examination of affected tissues revealed diffuse chronic granulomatous enterocolitis, granulomatous mesenteric lymphadenitis, and multifocal granulomatous hepatitis. The DNA extracted from paraffin-embedded intestinal and lymph node samples was analyzed u...
Inactivation of Burkholderia mallei in Equine Serum for Laboratory Use.
Journal of clinical microbiology    February 11, 2015   Volume 53, Issue 4 1456-1457 doi: 10.1128/JCM.03141-14
Perrett L, Mawhinney I.No abstract available
An outbreak of Arthroderma vanbreuseghemii dermatophytosis at a veterinary school associated with an infected horse.
Mycoses    February 10, 2015   Volume 58, Issue 4 233-238 doi: 10.1111/myc.12301
Chollet A, Wespi B, Roosje P, Unger L, Venner M, Goepfert C, Monod M.We report a case of an outbreak of inflammatory dermatophytoses caused by Arthroderma vanbreuseghemii (formally Trichophyton mentagrophytes pro parte) that involved an infected horse, the owner and at least 20 students, staff and stablemen at a veterinary school in Bern (Switzerland) that presented highly inflammatory dermatitis of the body and the face. Transmission from human to human was also recorded as one patient was the partner of an infected person. Both the phenotypic characteristics and ITS sequence of the dermatophytes isolated from the horse and patients were identical, consistent ...
Hendra virus survival does not explain spillover patterns and implicates relatively direct transmission routes from flying foxes to horses.
The Journal of general virology    February 9, 2015   Volume 96, Issue Pt 6 1229-1237 doi: 10.1099/vir.0.000073
Martin G, Plowright R, Chen C, Kault D, Selleck P, Skerratt LF.Hendra virus (HeV) is lethal to humans and horses, and little is known about its epidemiology. Biosecurity restrictions impede advances, particularly on understanding pathways of transmission. Quantifying the environmental survival of HeV can be used for making decisions and to infer transmission pathways. We estimated HeV survival with a Weibull distribution and calculated parameters from data generated in laboratory experiments. HeV survival rates based on air temperatures 24 h after excretion ranged from 2 to 10 % in summer and from 12 to 33 % in winter. Simulated survival across the distri...
Structural characterisation of the virulence-associated protein VapG from the horse pathogen Rhodococcus equi.
Veterinary microbiology    February 9, 2015   Volume 179, Issue 1-2 42-52 doi: 10.1016/j.vetmic.2015.01.027
Okoko T, Blagova EV, Whittingham JL, Dover LG, Wilkinson AJ.Virulence and host range in Rhodococcus equi depends on the variable pathogenicity island of their virulence plasmids. Notable gene products are a family of small secreted virulence-associated proteins (Vaps) that are critical to intramacrophagic proliferation. Equine-adapted strains, which cause severe pyogranulomatous pneumonia in foals, produce a cell-associated VapA that is necessary for virulence, alongside five other secreted homologues. In the absence of biochemical insight, attention has turned to the structures of these proteins to develop a functional hypothesis. Recent studies have ...
Freedom from equine infectious anaemia virus infection in Spanish Purebred horses.
Veterinary record open    February 7, 2015   Volume 2, Issue 1 e000074 doi: 10.1136/vetreco-2014-000074
Cruz F, Fores P, Ireland J, Moreno MA, Newton R.No cases of equine infectious anaemia (EIA) have been reported in Spain since 1983. Factors that could increase the risk of reintroducing equine infectious anaemia virus (EIAV) into Spain include the recent occurrence of the disease in Europe and the absence of compulsory serological testing before importation into Spain. Objective: Given the importance of the Spanish Purebred (SP) horse breeding industry in Spain, the aim of this cross-sectional study was to provide evidence of freedom from EIAV in SP stud farms in Central Spain. Methods: Serum samples from 555 SP horses, collected between Se...
An update on Sarcocystis neurona infections in animals and equine protozoal myeloencephalitis (EPM).
Veterinary parasitology    February 7, 2015   Volume 209, Issue 1-2 1-42 doi: 10.1016/j.vetpar.2015.01.026
Dubey JP, Howe DK, Furr M, Saville WJ, Marsh AE, Reed SM, Grigg ME.Equine protozoal myeloencephalitis (EPM) is a serious disease of horses, and its management continues to be a challenge for veterinarians. The protozoan Sarcocystis neurona is most commonly associated with EPM. S. neurona has emerged as a common cause of mortality in marine mammals, especially sea otters (Enhydra lutris). EPM-like illness has also been recorded in several other mammals, including domestic dogs and cats. This paper updates S. neurona and EPM information from the last 15 years on the advances regarding life cycle, molecular biology, epidemiology, clinical signs, diagnosis, treat...
Emergence of Equine West Nile Encephalitis in Central Macedonia, Greece, 2010.
Transboundary and emerging diseases    February 7, 2015   Volume 63, Issue 6 e219-e227 doi: 10.1111/tbed.12334
Bouzalas IG, Diakakis N, Chaintoutis SC, Brellou GD, Papanastassopoulou M, Danis K, Vlemmas I, Seuberlich T, Dovas CI.During the summer of 2010, an outbreak of West Nile virus (WNV) infections attributed to a lineage 2 WNV strain was reported among humans and horses in Central Macedonia, Northern Greece. Here, the clinical and laboratory investigation of horses that showed severe neurological signs due to WNV infection is being described. Specifically, between August and September 2010, 17 horses with neurological signs were detected. WNV infection was confirmed in all 17 clinical cases by applying laboratory testing. The duration of WNV-specific IgM antibodies in sera obtained from seven of the clinically af...
Equine herpesvirus-1: dealing practically but effectively with an ever present threat.
Equine veterinary journal    February 4, 2015   Volume 47, Issue 2 142-144 doi: 10.1111/evj.12416
Gonzalez-Medina S, Newton JR.No abstract available
Occurrence of antibodies against Toxoplasma gondii and its isolation and genotyping in donkeys, mules, and horses in Brazil.
Veterinary parasitology    February 4, 2015   Volume 209, Issue 1-2 129-132 doi: 10.1016/j.vetpar.2015.01.023
Gennari SM, Esmerini Pde O, Lopes MG, Soares HS, Vitaliano SN, Cabral AD, Pena HF, Horta MC, Cavalcante PH, Fortes KP, Villalobos EM.The occurrence of antibodies against Toxoplasma gondii was determined in donkeys, mules, and horses from different regions of Brazil. Serum samples from 304 donkeys (67.11%), 118 horses (26.05%), and 31 mules (6.84%) were analyzed by means of the indirect fluorescent antibody test (cutoff=64). Antibodies against T. gondii were detected in 129 equids (28.47%) (82 donkeys, 32 horses, and 15 mules). Tissue samples from 19 seropositive and 50 seronegative animals were obtained in order to isolate the parasite by means of mouse bioassay, and T. gondii was isolated from a donkey. Through genotypic c...
Response to letter from Dr Freeman.
Equine veterinary journal    February 4, 2015   Volume 47, Issue 2 250 doi: 10.1111/evj.12407
Naylor R, Knowles E, Wilford S, Linnenkohl W, Taylor A, Mair T, Johns I.No abstract available
Necrotizing Enteritis and Hyperammonemic Encephalopathy Associated With Equine Coronavirus Infection in Equids.
Veterinary pathology    February 3, 2015   Volume 52, Issue 6 1148-1156 doi: 10.1177/0300985814568683
Giannitti F, Diab S, Mete A, Stanton JB, Fielding L, Crossley B, Sverlow K, Fish S, Mapes S, Scott L, Pusterla N.Equine coronavirus (ECoV) is a Betacoronavirus recently associated clinically and epidemiologically with emerging outbreaks of pyrogenic, enteric, and/or neurologic disease in horses in the United States, Japan, and Europe. We describe the pathologic, immunohistochemical, ultrastructural, and molecular findings in 2 horses and 1 donkey that succumbed to natural infection with ECoV. One horse and the donkey (case Nos. 1, 3) had severe diffuse necrotizing enteritis with marked villous attenuation, epithelial cell necrosis at the tips of the villi, neutrophilic and fibrinous extravasation into th...
Neutralising antibodies for Mayaro virus in Pantanal, Brazil.
Memorias do Instituto Oswaldo Cruz    February 3, 2015   Volume 110, Issue 1 125-133 doi: 10.1590/0074-02760140383
Pauvolid-Corrêa A, Juliano RS, Campos Z, Velez J, Nogueira RM, Komar N.The Pantanal hosts diverse wildlife species and therefore is a hotspot for arbovirus studies in South America. A serosurvey for Mayaro virus (MAYV), eastern (EEEV), western (WEEV) and Venezuelan (VEEV) equine encephalitis viruses was conducted with 237 sheep, 87 free-ranging caimans and 748 equids, including 37 collected from a ranch where a neurologic disorder outbreak had been recently reported. Sera were tested for specific viral antibodies using plaque-reduction neutralisation test. From a total of 748 equids, of which 264 were immunised with vaccine composed of EEEV and WEEV and 484 had n...
Concentrations of faecal coliforms, Escherichia coli, enterococci and Campylobacter spp. in equine faeces.
New Zealand veterinary journal    February 2, 2015   Volume 63, Issue 2 104-109 doi: 10.1080/00480169.2014.952789
Moriarty EM, Downing M, Bellamy J, Gilpin BJ.To determine the concentration of Campylobacter spp. as well as faecal indicator bacteria; faecal coliforms, Escherichia coli and enterococci in the faeces of healthy adult horses in a sample of properties in the Canterbury region of New Zealand. Methods: The faeces of healthy adult horses (n=59), including ponies, pleasure horses and Thoroughbreds, were collected from eight properties around Christchurch, New Zealand. The faeces were analysed for concentrations of Campylobacter spp and faecal indicator bacteria; faecal coliforms, Escherichia coli and enterococci. The presence of other animals...
Characterization of nonprimate hepacivirus and construction of a functional molecular clone.
Proceedings of the National Academy of Sciences of the United States of America    February 2, 2015   Volume 112, Issue 7 2192-2197 doi: 10.1073/pnas.1500265112
Scheel TK, Kapoor A, Nishiuchi E, Brock KV, Yu Y, Andrus L, Gu M, Renshaw RW, Dubovi EJ, McDonough SP, Van de Walle GR, Lipkin WI, Divers TJ....Nonprimate hepacivirus (NPHV) is the closest known relative of hepatitis C virus (HCV) and its study could enrich our understanding of HCV evolution, immunity, and pathogenesis. High seropositivity is found in horses worldwide with ∼ 3% viremic. NPHV natural history and molecular virology remain largely unexplored, however. Here, we show that NPHV, like HCV, can cause persistent infection for over a decade, with high titers and negative strand RNA in the liver. NPHV is a near-universal contaminant of commercial horse sera for cell culture. The complete NPHV 3'-UTR was determined and consists...
Le virus de l’artérite virale équine : de l’épidémiologie moléculaire à l’émergence de variants pathogènes.
Virologie (Montrouge, France)    February 1, 2015   Volume 19, Issue 1 7-18 doi: 10.1684/vir.2015.0588
Miszczak F, Pronost S, Vabret A.Equine arteritis virus (EAV) is the causative agent of equine viral arteritis, a disease observed only in equids. EAV is the prototype of the family Arteriviridæ within the order Nidovirales. EAV is an enveloped, positive-sense, single-stranded RNA virus with a considerable variation in the genome as observed in other RNA viruses. During natural infections, EAV may cause abortion and persistent subclinical infections in stallions which can shed the virus in the semen for years, or even lifetime. Chronically infected stallions represent the natural reservoir of the virus. They ensure the persi...
Pathology in practice. A equuli infection.
Journal of the American Veterinary Medical Association    January 31, 2015   Volume 246, Issue 4 415-417 doi: 10.2460/javma.246.4.415
Schumacher LL, Beard LA, Nietfeld JC.No abstract available
Skin malformations in a neonatal foal tested homozygous positive for Warmblood Fragile Foal Syndrome.
BMC veterinary research    January 31, 2015   Volume 11 12 doi: 10.1186/s12917-015-0318-8
Monthoux C, de Brot S, Jackson M, Bleul U, Walter J.Skin malformations that resembled manifestations of Ehlers-Danlos-Syndrome were described in a variety of domestic animals during the last century as cutis hyperelastica, hyperelastosis cutis, dermatosparaxis, dermal/collagen dysplasia, dermal/cutaneous asthenia or Ehlers-Danlos-like syndrome/s. In 2007, the mutation responsible for Hereditary Equine Regional Dermal Asthenia (HERDA) in Quarter Horses was discovered. Several case reports are available for similar malformations in other breeds than Quarter Horses (Draught Horses, Arabians, and Thoroughbreds) including four case reports for Warmb...
Update on viral diseases of the equine respiratory tract.
The Veterinary clinics of North America. Equine practice    January 31, 2015   Volume 31, Issue 1 91-104 doi: 10.1016/j.cveq.2014.11.007
Gilkerson JR, Bailey KE, Diaz-Méndez A, Hartley CA.Many viral agents have been associated with respiratory disease of the horse. The most important viral causes of respiratory disease in horses are equine influenza and the equine alphaherpesviruses. Agents such as equine viral arteritis virus, African horse sickness virus, and Hendra virus establish systemic infections. Clinical signs of disease resulting from infection with these agents can manifest as respiratory disease, but the respiratory tract is not the major body system affected by these viruses. Treatment of viral respiratory disease is generally limited to supportive therapies, where...
Antiserum from mice vaccinated with modified vaccinia Ankara virus expressing African horse sickness virus (AHSV) VP2 provides protection when it is administered 48h before, or 48h after challenge.
Antiviral research    January 30, 2015   Volume 116 27-33 doi: 10.1016/j.antiviral.2015.01.009
Calvo-Pinilla E, de la Poza F, Gubbins S, Mertens PP, Ortego J, Castillo-Olivares J.Previous studies show that a recombinant modified vaccinia Ankara (MVA) virus expressing VP2 of AHSV serotype 4 (MVA-VP2) induced virus neutralising antibodies in horses and protected interferon alpha receptor gene knock-out mice (IFNAR -/-) against challenge. Follow up experiments indicated that passive transfer of antiserum, from MVA-VP2 immune donors to recipient mice 1h before challenge, conferred complete clinical protection and significantly reduced viraemia. These studies have been extended to determine the protective effect of MVA-VP2 vaccine-induced antiserum, when administered 48h be...
Potentially novel Ehrlichia species in horses, Nicaragua.
Emerging infectious diseases    January 28, 2015   Volume 21, Issue 2 335-338 doi: 10.3201/eid2102.140290
O'Nion VL, Montilla HJ, Qurollo BA, Maggi RG, Hegarty BC, Tornquist SJ, Breitschwerdt EB.Ehrlichia sp. DNA was amplified from 4 Ehrlichia-seroreactive horses from Mérida, Nicaragua. Sequencing of 16S rDNA, sodB, and groEL genes indicated that the bacterium is most likely a novel Ehrlichia species. The tick vector and the potential for canine and human infection remain unknown.
Outbreak of henipavirus infection, Philippines, 2014.
Emerging infectious diseases    January 28, 2015   Volume 21, Issue 2 328-331 doi: 10.3201/eid2102.141433
Ching PK, de los Reyes VC, Sucaldito MN, Tayag E, Columna-Vingno AB, Malbas FF, Bolo GC, Sejvar JJ, Eagles D, Playford G, Dueger E, Kaku Y....During 2014, henipavirus infection caused severe illness among humans and horses in southern Philippines; fatality rates among humans were high. Horse-to-human and human-to-human transmission occurred. The most likely source of horse infection was fruit bats. Ongoing surveillance is needed for rapid diagnosis, risk factor investigation, control measure implementation, and further virus characterization.
Trends in antimicrobial resistance in equine bacterial isolates: 1999-2012.
The Veterinary record    January 27, 2015   Volume 176, Issue 13 334 doi: 10.1136/vr.102708
Johns IC, Adams EL.This study aimed to identify changing antimicrobial resistance patterns in isolates commonly obtained from equine clinical submissions. Laboratory records from 1999 to 2012 were searched for equine samples from which Escherichia coli or Streptococcus species was isolated. Susceptibility to enrofloxacin, ceftiofur, gentamicin, penicillin G, trimethoprim sulfamethoxazole (TMPS) and tetracyclines was noted. Isolates were divided into those identified between 1999 and 2004 (Early) and between 2007 and 2012 (Late). The proportion of isolates resistant to each antimicrobial and multiple drug-resista...
Validation and evaluation of VapA-specific IgG and IgG subclass enzyme-linked immunosorbent assays (ELISAs) to identify foals with Rhodococcus equi pneumonia.
Equine veterinary journal    January 25, 2015   Volume 48, Issue 1 103-108 doi: 10.1111/evj.12363
Sanz MG, Oliveira AF, Loynachan A, Page A, Svansson V, Giguère S, Horohov DW.Rhodococcus equi (Rhodococcus hoagii/Prescottella equi) is a common cause of foal pneumonia, but its diagnosis remains a challenge for equine veterinarians. While the VapA-specific (virulence-associated protein A) immunoglobulin G (IgG) enzyme-linked immunosorbent assay (ELISA) has low sensitivity and specificity for detecting pneumonic foals, little is known about VapA-specific IgG subclasses. Objective: To evaluate the performance of VapA-specific ELISA for IgG and its subclasses IgGa, IgGb and IgG(T) in the early diagnosis of pneumonia caused by R. equi. Methods: Assay validation follow...
Virological and serological investigation of Equid herpesvirus 1 infection in New Zealand.
Veterinary microbiology    January 24, 2015   Volume 176, Issue 3-4 219-228 doi: 10.1016/j.vetmic.2015.01.016
Dunowska M, Gopakumar G, Perrott MR, Kendall AT, Waropastrakul S, Hartley CA, Carslake HB.Infection with equid herpesvirus 1 (EHV-1) may be asymptomatic, or may result in respiratory disease, abortion, neonatal death, or neurological disease. The aim of this study was to estimate the prevalence of EHV-1 infection, including differentiation between genotypes with aspartic acid (D) and asparagine (N) at position 752 of the DNA polymerase sequence, within a selected population of New Zealand horses. The second aim was to determine the predictive value of serology for detection of latently infected horses. Retropharyngeal lymph nodes (RLN) and trigeminal ganglia (TG) were dissected fro...
Rickettsial Infection in Animals, Humans and Ticks in Paulicéia, Brazil.
Zoonoses and public health    January 22, 2015   Volume 62, Issue 7 525-533 doi: 10.1111/zph.12180
Silveira I, Martins TF, Olegário MM, Peterka C, Guedes E, Ferreira F, Labruna MB.A previous study in Paulicéia Municipality, south-eastern Brazil, reported 9.7% of the Amblyomma triste ticks to be infected by Rickettsia parkeri, a bacterial pathogen that causes spotted fever in humans. These A. triste ticks were shown to be associated with marsh areas, where the marsh deer Blastocerus dichotomus is a primary host for this tick species. During 2008-2009, blood serum samples were collected from 140 horses, 41 dogs, 5 opossums (Didelphis albiventris) and 26 humans in farms from Pauliceia Municipality. Ticks were collected from these animals, from vegetation and from addition...
Update on fungal respiratory disease in horses.
The Veterinary clinics of North America. Equine practice    January 22, 2015   Volume 31, Issue 1 43-62 doi: 10.1016/j.cveq.2014.11.005
Stewart AJ, Cuming RS.Fungal respiratory disease is a rare occurrence in horses. Fungal organisms are ubiquitous in the equine environment; however, there is a geographic predisposition for disease development, with fungal respiratory infections seen more commonly by practitioners working in tropical or subtropical environments. Diagnosis and treatment of fungal respiratory infections pose a challenge for the equine practitioner, and the prognosis for complete resolution of infection is often guarded; however, new antifungal medications are likely to improve treatment success. This article summarizes the available ...
Theileria equi isolates vary in susceptibility to imidocarb dipropionate but demonstrate uniform in vitro susceptibility to a bumped kinase inhibitor.
Parasites & vectors    January 20, 2015   Volume 8 33 doi: 10.1186/s13071-014-0611-6
Hines SA, Ramsay JD, Kappmeyer LS, Lau AO, Ojo KK, Van Voorhis WC, Knowles DP, Mealey RH.The apicomplexan hemoparasite Theileria equi is a causative agent of equine piroplasmosis, eradicated from the United States in 1988. However, recent outbreaks have sparked renewed interest in treatment options for infected horses. Imidocarb dipropionate is the current drug of choice, however variation in clinical response to therapy has been observed. Methods: We quantified the in vitro susceptibility of two T. equi isolates and a lab generated variant to both imidocarb dipropionate and a bumped kinase inhibitor compound 1294. We also evaluated the capacity of in vitro imidocarb dipropionate ...