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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.
Duration of equine influenza virus shedding and infectivity in immunised horses after experimental infection with EIV A/eq2/Richmond/1/07.
Veterinary microbiology    May 9, 2013   Volume 166, Issue 1-2 22-34 doi: 10.1016/j.vetmic.2013.04.027
Paillot R, Prowse L, Montesso F, Stewart B, Jordon L, Newton JR, Gilkerson JR.Equine influenza (EI) is a major respiratory disease of horses. Recent outbreaks of EI have demonstrated the ease with which EI virus (EIV) can be transmitted internationally. This study aimed to improve our understanding of EIV shedding after infection of vaccinated horses, which would inform possible changes to current quarantine requirements. Our objectives were to compare commonly used diagnostic tests and to evaluate the relative merits of nasal and nasopharyngeal swabs for detection of EIV in vaccinated and unvaccinated ponies following EIV infection and to use these data to inform optim...
Species of Candida as a component of the nasal microbiota of healthy horses.
Medical mycology    May 8, 2013   Volume 51, Issue 7 731-736 doi: 10.3109/13693786.2013.777858
Cordeiro Rde A, Bittencourt PV, Brilhante RS, Teixeira CE, Castelo-Branco Dde S, Silva ST, De Alencar LP, Souza ER, Bandeira Tde J, Monteiro AJ....Respiratory infections are a common problem among equines and occur with variable rates of morbidity and mortality. Although some fungal species are considered primary agents of respiratory tract infections in several mammals, their relevance in respiratory diseases of equines is frequently neglected. In the present study, we performed an active search for Candida spp. in the nasal cavity of horses. The presence of Candida spp. was investigated through the use of nasal swabs that were streaked on culture media. These yeasts were identified through physiological testing and their in vitro antif...
Leptospirosis in horses.
The Veterinary record    May 7, 2013   Volume 172, Issue 18 479-480 doi: 10.1136/vr.f2824
Loureiro AP, Hamond C, Lilenbaum W.No abstract available
Tick-borne encephalitis virus in horses, Austria, 2011.
Emerging infectious diseases    May 2, 2013   Volume 19, Issue 4 635-637 doi: 10.3201/eid1904.121450
Rushton JO, Lecollinet S, Hubálek Z, Svobodová P, Lussy H, Nowotny N.An unexpectedly high infection rate (26.1%) of tick-borne encephalitis virus (TBEV) was identified in a herd of 257 horses of the same breed distributed among 3 federal states in Austria. Young age (p<0.001) and male sex (p=0.001) were positively associated with infection.
Bovine papillomavirus type 13 DNA in equine sarcoids.
Journal of clinical microbiology    May 1, 2013   Volume 51, Issue 7 2167-2171 doi: 10.1128/JCM.00371-13
Lunardi M, de Alcântara BK, Otonel RA, Rodrigues WB, Alfieri AF, Alfieri AA.Equine sarcoids are locally aggressive fibroblastic neoplasms considered to be the most common skin tumors of horses worldwide. Bovine papillomavirus types 1 and 2 have typically been associated with sarcoids in equids. Investigations aiming to identify papillomavirus strains, aside from bovine papillomaviruses 1 and 2, which might be associated with sarcoid lesions, have been lacking. The aim of this article is to report the identification of a third bovine papillomavirus type, bovine papillomavirus 13, associated with equine sarcoids. Six sarcoid lesions were collected from diverse anatomica...
Equine leptospirosis in tropical Northern Queensland.
Australian veterinary journal    April 26, 2013   Volume 91, Issue 5 190-197 doi: 10.1111/avj.12038
Wangdi C, Picard J, Tan R, Condon F, Dowling B, Gummow B.Determine leptospiral serodiversity, serodominant serovars and prevalence in the horse population of Northern Queensland (NQ), Australia, with special focus on the Atherton Tableland and Townsville-Burdekin regions. Methods: Cross-sectional survey. Methods: Serum samples from 429 horses originating from 172 horse-owning properties in NQ were collected at regional horse shows and veterinary clinics. Samples were analysed using a microscopic agglutination test. Owners were interviewed on potential risk factors associated with leptospirosis. Results: Of the 172 properties that submitted samples, ...
Evidence for absence of equine arteritis virus in the horse population of New Zealand.
New Zealand veterinary journal    April 24, 2013   Volume 61, Issue 5 300-304 doi: 10.1080/00480169.2012.755664
McFadden AM, Pearce PV, Orr D, Nicoll K, Rawdon TG, Pharo H, Stone M.To summarise investigation and laboratory data collected between 2001 and 2011 to provide evidence that equine arteritis virus is not present in the horse population of New Zealand. Methods: Analysis was carried out on results from laboratory tests carried out at the Ministry for Primary Industries Animal Health Laboratory (AHL) for equine arteritis virus from horses tested prior to being imported or exported, testing of stallions as part of the New Zealand equine viral arteritis (EVA) control scheme and testing as part of transboundary animal disease (TAD) investigations for exclusion of EVA....
Risk factors associated with nasopharyngeal cicatrix syndrome in horses.
Journal of the American Veterinary Medical Association    April 23, 2013   Volume 242, Issue 9 1267-1270 doi: 10.2460/javma.242.9.1267
Norman TE, Chaffin MK, Bissett WT, Thompson JA.To determine risk factors associated with the development of nasopharyngeal cicatrix syndrome (NCS) in horses. Methods: Retrospective case-control study. Methods: 242 horses referred for endoscopic evaluation of the upper portion of the respiratory tract (121 horses with NCS and 121 control horses). Methods: Medical records of horses that had an endoscopic evaluation of the upper airway performed between January 2003 and December 2008 were reviewed. Signalment, housing management, and season of evaluation were recorded and reviewed for each horse. The associations between clinical signs and en...
Clinical and molecular epidemiology of veterinary blastomycosis in Wisconsin.
BMC veterinary research    April 22, 2013   Volume 9 84 doi: 10.1186/1746-6148-9-84
Anderson JL, Sloss BL, Meece JK.Several studies have shown that Blastomyces dermatitidis, the etiologic agent of blastomycosis, is a genetically diverse pathogen. Blastomycosis is a significant health issue in humans and other mammals. Veterinary and human isolates matched with epidemiological case data from the same geographic area and time period were used to determine: (i) if differences in genetic diversity and structure exist between clinical veterinary and human isolates of B. dermatitidis and (ii) if comparable epidemiologic features differ among veterinary and human blastomycosis cases. Results: Genetic typing of 301...
Efficient propagation of equine viruses in a newly established equine cell line, FHK-13.1 cells.
The Journal of veterinary medical science    April 18, 2013   Volume 75, Issue 9 1223-1225 doi: 10.1292/jvms.12-0450
Oguma K, Ishida M, Maeda K, Sentsui H.Equine cells are required for isolation of viruses that infect the horse. However, only a few equine cell lines and cell cultures are available so far. Fetal horse kidney (FHK)-Tcl3.1 cell is a novel cell line established by introducing simian virus 40 (SV40) large T antigen. In the present study, the ability to propagate equine viruses was compared between FHK-Tcl3.1 cells and other equine cells. FHK-Tcl3.1 cells efficiently increased many viruses derived from or having pathogenicity to horses and produced high infective titers in culture fluids. These results indicate that FHK-Tcl3.1 cells w...
Streptococcus equi subsp. zooepidemicus isolates from equine infectious endometritis belong to a distinct genetic group.
Veterinary research    April 18, 2013   Volume 44, Issue 1 26 doi: 10.1186/1297-9716-44-26
Rasmussen CD, Haugaard MM, Petersen MR, Nielsen JM, Pedersen HG, Bojesen AM.Streptococcus equi subsp. zooepidemicus is the pathogen most commonly isolated from the uterus of mares. S. zooepidemicus is an opportunistic pathogen and part of the resident flora in the caudal reproductive tract. The aim of this study was to investigate whether a genotypically distinct subpopulation of S. zooepidemicus is associated with endometritis in the mare, by genotyping and comparing uterine S. zooepidemicus strains with isolates from the vagina and clitoral fossa. Mares with (n=18) or without (n=11) clinical symptoms of endometritis were included. Uterine samples were obtained using...
Development of an antibody-ELISA for seroprevalence of Trypanosoma evansi in equids of North and North-western regions of India.
Veterinary parasitology    April 18, 2013   Volume 196, Issue 3-4 251-257 doi: 10.1016/j.vetpar.2013.04.018
Kumar R, Kumar S, Khurana SK, Yadav SC.The importance of Trypanosoma evansi as the etiological agent for surra is often overlooked due to difficulty in accurate diagnosis of the disease. In the present study, an antibody-ELISA was developed using whole cell lysate antigen prepared from purified trypanosomes and used for seroprevalence study of T. evansi in equids. A total of 3695 equids were surveyed and blood samples were collected from each animal during September 2009 to August 2011. Out of these, 420 serum samples were found positive for presence of antibodies against T. evansi collected from equids of six agro-climatic zones o...
Prevalence of Theileria equi, Babesia caballi, and Anaplasma phagocytophilum in horses from the north of Portugal.
Parasitology research    April 17, 2013   Volume 112, Issue 7 2611-2617 doi: 10.1007/s00436-013-3429-9
Ribeiro AJ, Cardoso L, Maia JM, Coutinho T, Cotovio M.Piroplasmid protozoa Theileria equi and Babesia caballi and zoonotic rickettsial bacterium Anaplasma phagocytophilum are important agents of equine vector-borne diseases (EVBD). This study aimed at investigating the prevalence of infections with or exposure to these pathogens in horses from the north of Portugal. Blood was randomly collected from 162 horses, living in 72 different stables, to prepare Giemsa-stained slide smears. Additionally, plasma samples were tested for antibodies to T. equi and B. caballi by two competitive enzyme-linked immunosorbent assays and to A. phagocytophilum by an...
Identification of a pegivirus (GB virus-like virus) that infects horses.
Journal of virology    April 17, 2013   Volume 87, Issue 12 7185-7190 doi: 10.1128/JVI.00324-13
Kapoor A, Simmonds P, Cullen JM, Scheel TK, Medina JL, Giannitti F, Nishiuchi E, Brock KV, Burbelo PD, Rice CM, Lipkin WI.The recent identification of nonprimate hepaciviruses in dogs and then in horses prompted us to look for pegiviruses (GB virus-like viruses) in these species. Although none were detected in canines, we found widespread natural infection of horses by a novel pegivirus. Unique genomic features and phylogenetic analyses confirmed that the tentatively named equine pegivirus (EPgV) represents a novel species within the Pegivirus genus. We also determined that EPgV causes persistent viremia whereas its clinical significance is undetermined.
Where are the horses? With the sheep or cows? Uncertain host location, vector-feeding preferences and the risk of African horse sickness transmission in Great Britain.
Journal of the Royal Society, Interface    April 17, 2013   Volume 10, Issue 83 20130194 doi: 10.1098/rsif.2013.0194
Lo Iacono G, Robin CA, Newton JR, Gubbins S, Wood JL.Understanding the influence of non-susceptible hosts on vector-borne disease transmission is an important epidemiological problem. However, investigation of its impact can be complicated by uncertainty in the location of the hosts. Estimating the risk of transmission of African horse sickness (AHS) in Great Britain (GB), a virus transmitted by Culicoides biting midges, provides an insightful example because: (i) the patterns of risk are expected to be influenced by the presence of non-susceptible vertebrate hosts (cattle and sheep) and (ii) incomplete information on the spatial distribution of...
Ecological surveillance for West Nile in Catalonia (Spain), learning from a five-year period of follow-up.
Zoonoses and public health    April 17, 2013   Volume 61, Issue 3 181-191 doi: 10.1111/zph.12048
Alba A, Allepuz A, Napp S, Soler M, Selga I, Aranda C, Casal J, Pages N, Hayes EB, Busquets N.To enhance early detection of West Nile virus (WNV) transmission, an integrated ecological surveillance system was implemented in Catalonia (north-eastern Spain) from 2007 to 2011. This system incorporated passive and active equine surveillance, periodical testing of chicken sentinels in wetland areas, serosurveillance wild birds and testing of adult mosquitoes. Samples from 298 equines, 100 sentinel chickens, 1086 wild birds and 39 599 mosquitoes were analysed. During these 5 years, no acute WNV infection was detected in humans or domestic animal populations in Catalonia. WNV was not detect...
Production of Equine Infectious Anemia Virus (EIAV) antigen in Pichia pastoris.
Journal of virological methods    April 17, 2013   Volume 191, Issue 2 95-100 doi: 10.1016/j.jviromet.2013.04.006
de Arruda Coutinho LC, de Jesus AL, de Paiva Fontes KF, Coimbra EC, Mariz FC, de Freitas AC, de Cássia Carvalho Maia R, de Castro RS.Equine Infectious Anemia (EIA) is a persistent lentivirus infection of horses which causes a chronic clinical condition with worldwide importance in veterinary medicine. The p26 protein is usually prepared for use as an antigen in serological tests for EIA diagnosis since it is a well-conserved gene sequence and very immunogenic. In view of the ability of yeast to make post-translational modifications of proteins, this study was carried out to allow Pichia pastoris to be used for the expression of a synthetic codon-optimized EIAV p26 gene. The gene was cloned into pPICZαA vector after appropr...
Comparison of cytological and histological examinations in different locations of the equine uterus-an in vitro study.
Theriogenology    April 16, 2013   Volume 79, Issue 9 1262-1268 doi: 10.1016/j.theriogenology.2013.02.007
Overbeck W, Jäger K, Schoon HA, Witte TS.Endometritis constitutes a major problem in managing broodmares. The histological occurrence of polymorphonuclear neutrophils (PMNs) in the stratum compactum of the endometrium is accepted as the reference standard to diagnose endometritis in mares. The objective of this study was to determine the distribution of PMNs within different sampling locations of the uterus by cytological examinations and to compare it with PMN numbers in endometrial biopsies of the corresponding location. Cytological and endometrial samples were obtained from 37 uteri within 2 ± 1 hours after slaughter through smal...
Development of a focus-reduction neutralizing test for detecting equine herpesvirus type-1-neutralizing antibodies.
The Journal of veterinary medical science    April 16, 2013   Volume 75, Issue 9 1209-1212 doi: 10.1292/jvms.13-0043
Bannai H, Nemoto M, Tsujimura K, Yamanaka T, Kondo T, Matsumura T.Virus-neutralizing (VN) testing is essential for evaluating virus-specific immunity in equine herpesvirus type-1 (EHV-1) infection. We developed a focus-reduction neutralization test (FRNT) for EHV-1 using 96-well plates for faster large-scale testing with sufficient sensitivity. We used an overlay medium containing Avicel (FMC Biopolymer), a microcrystalline cellulose with lower viscosity than the methylcellulose. The foci were visualized by immuno-staining with anti-EHV-1 gp14 monoclonal antibody. The FRNT successfully detected seroconversion in horses experimentally infected with EHV-1 (n =...
Strangles: taking steps towards eradication.
Veterinary microbiology    April 12, 2013   Volume 167, Issue 1-2 50-60 doi: 10.1016/j.vetmic.2013.03.033
Waller AS.Strangles, caused by the host adapted Lancefield group C bacterium Streptococcus equi sub-species equi (S. equi), is one of the oldest recognised infectious diseases of horses and continues to cause significant welfare and economic cost throughout the world. The ability of S. equi to establish sub-clinical persistent infections primarily in the guttural pouches of convalescent horses has been instrumental to its success. However, the implementation of simple control measures that permit the identification and treatment of persistently infected carriers can prevent further outbreaks of disease ...
Reply to Andy Durham.
Equine veterinary journal    April 10, 2013   Volume 45, Issue 3 388-389 doi: 10.1111/evj.12073
Suthers J, Proudman C, Pinchbeck G, Archer D.No abstract available
Replication and immunogenicity of swine, equine, and avian h3 subtype influenza viruses in mice and ferrets.
Journal of virology    April 10, 2013   Volume 87, Issue 12 6901-6910 doi: 10.1128/JVI.03520-12
Baz M, Paskel M, Matsuoka Y, Zengel J, Cheng X, Jin H, Subbarao K.Since it is difficult to predict which influenza virus subtype will cause an influenza pandemic, it is important to prepare influenza virus vaccines against different subtypes and evaluate the safety and immunogenicity of candidate vaccines in preclinical and clinical studies prior to a pandemic. In addition to infecting humans, H3 influenza viruses commonly infect pigs, horses, and avian species. We selected 11 swine, equine, and avian H3 influenza viruses and evaluated their kinetics of replication and ability to induce a broadly cross-reactive antibody response in mice and ferrets. The swin...
Clostridium difficile infection in horses: a review.
Veterinary microbiology    April 10, 2013   Volume 167, Issue 1-2 42-49 doi: 10.1016/j.vetmic.2013.03.032
Diab SS, Songer G, Uzal FA.Clostridium difficile is considered one of the most important causes of diarrhea and enterocolitis in horses. Foals and adult horses are equally susceptible to the infection. The highly resistant spore of C. difficile is the infectious unit of transmission, which occurs primarily via the fecal-oral route, with sources of infection including equine feces, contaminated soil, animal hospitals, and feces of other animals. Two major risk factors for the development of C. difficile associated disease (CDAD) in adult horses are hospitalization and antimicrobial treatment, although sporadically, cases...
Genetics of anti-EHV antibody responses in a horse population.
Research in veterinary science    April 10, 2013   Volume 95, Issue 1 137-142 doi: 10.1016/j.rvsc.2013.03.011
Rusek J, Klumplerova M, Molinkova D, Sedlinska M, Dusek L, Muzik J, Putnova L, Vrtkova I, Celer V, Horin P.Individual variation in immune responses to herpesviruses was observed in various species. Here, associations between polymorphic molecular markers and life-long anti-EHV-1/4 antibody immune responses were analyzed in a model EHV-infected population of the Old Kladruber horses. Two-dimensional analysis including overall mean titers and titer dynamics expressed by differences between spring and autumn titers allowed identification of low-responders. 50 randomly selected microsatellites and nine single nucleotide polymorphisms in nine immunity-related candidate genes were genotyped. Due to diffe...
Equine influenza–a global perspective.
Veterinary microbiology    April 9, 2013   Volume 167, Issue 1-2 205-214 doi: 10.1016/j.vetmic.2013.03.029
Cullinane A, Newton JR.To date, equine influenza outbreaks have been reported all over the world with the exception of a small number of island nations including New Zealand and Iceland. Influenza is endemic in Europe and North America and is considered to be of potentially major economic significance to the equine industry worldwide. The importation of subclinically infected vaccinated horses, and inadequate quarantine procedures have resulted in several major outbreaks in susceptible populations for example, in Australia (2007) when more than 76,000 horses on over 10,000 properties were reported as infected. This ...
Corynebacterium uterequi sp. nov., a non-lipophilic bacterium isolated from urogenital samples from horses.
Veterinary microbiology    April 9, 2013   Volume 165, Issue 3-4 469-474 doi: 10.1016/j.vetmic.2013.03.025
Hoyles L, Ortman K, Cardew S, Foster G, Rogerson F, Falsen E.Three strains of a Gram-positive, catalase-positive, fermentative, non-lipophilic, previously unknown bacterium were isolated from urogenital samples taken from mares in Scotland (M401624/00/1) and Sweden (VM 2074 and VM 2298(T)). All were deposited with the CCUG with tentative identifications as Corynebacterium spp. The strains were characterized using a polyphasic taxonomic approach. Biochemically, the strains were very similar to each other, but phylogenetically distinct from Corynebacterium species with validly published names (≤95% sequence similarity). rpoB gene sequence data confirmed...
Inactivated and adjuvanted vaccine for the control of the African horse sickness virus serotype 9 infection: evaluation of efficacy in horses and guinea-pig model.
Veterinaria italiana    April 9, 2013   Volume 49, Issue 1 89-98 
Lelli R, Molini U, Ronchi GF, Rossi E, Franchi P, Ulisse S, Armillotta G, Capista S, Khaiseb S, Di Ventura M, Pini A.African horse sickness (AHS) is a non-contagious viral disease of solipeds transmitted by Culicoides. The disease is endemic in most African countries. Past experience has shown that Italy is a country exposed to emerging infectious diseases endemic to Africa; an incursion of AHS virus together with the widespread presence of Culicoides vectors could be the cause of a serious epidemic emergency. A live attenuated vaccine containing seven of the nine viral serotypes, serotype 5 and 9 are excluded, is commercially available from Onderstepoort Biological Products. However, the use of live vaccine...
Henipavirus infections: lessons from animal models.
Pathogens (Basel, Switzerland)    April 9, 2013   Volume 2, Issue 2 264-287 doi: 10.3390/pathogens2020264
Dhondt KP, Horvat B.The Henipavirus genus contains two highly lethal viruses, the Hendra and Nipah viruses and one, recently discovered, apparently nonpathogenic member; Cedar virus. These three, negative-sense single-stranded RNA viruses, are hosted by fruit bats and use EphrinB2 receptors for entry into cells. The Hendra and Nipah viruses are zoonotic pathogens that emerged in the middle of 90s and have caused severe, and often fatal, neurologic and/or respiratory diseases in both humans and different animals; including spillover into equine and porcine species. Development of relevant models is critical for a ...
Outbreak investigation and molecular characterization of African horse sickness virus circulating in selected areas of Ethiopia.
Acta tropica    April 6, 2013   Volume 127, Issue 2 91-96 doi: 10.1016/j.actatropica.2013.03.018
Ayelet G, Derso S, Jenberie S, Tigre W, Aklilu N, Gelaye E, Asmare K.The study was conducted from June 2011 to May 2012 in central, northern and western parts of Ethiopia to investigate and identify circulating serotypes of African horse sickness virus (AHSV). The indigenous knowledge of equine owners about AHS in the study areas was assessed and also the retrospective data of AHS outbreaks for 2011 were analyzed. Whole blood samples were collected for virus isolation and serotyping from diseased horses and mules showing typical signs of the AHS. Virus isolation on Vero cell and detection of AHSV genomes using conventional RT-PCR were conducted. Further molecul...
Detection of Neorickettsia risticii from various freshwater snail species collected from a district irrigation canal in Nevada County, California.
Veterinary journal (London, England : 1997)    April 6, 2013   Volume 197, Issue 2 489-491 doi: 10.1016/j.tvjl.2013.02.024
Pusterla N, Hagerty D, Mapes S, Vangeem J, Groves LT, Dinucci M, Fielding LC, Higgins JC.This study investigated the role of a district irrigation canal in Nevada County, California, USA, as the point source of infection for Neorickettsia risticii, causative agent of equine neorickettsiosis (EN). A total of 568 freshwater snails comprising Juga spp., Planorbella subcrenata (Carpenter, 1857) (Rough Rams-horn), Physella virgata (Gould, 1855) (Protean Physa) and feces from three horses with EN were collected and tested for N. risticii by real-time PCR. A total of four freshwater snails tested PCR positive for N. risticii. Phylogenetic analysis showed 99.8-100% homology between the di...