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Topic:Disease Transmission

Disease transmission in horses refers to the spread of infectious agents such as bacteria, viruses, fungi, and parasites among equine populations. These pathogens can be transmitted through various routes, including direct contact, vector-borne transmission, or environmental exposure. Factors influencing disease transmission include horse density, management practices, and biosecurity measures. Understanding the mechanisms and conditions that facilitate the spread of diseases is essential for developing effective prevention and control strategies. This page compiles peer-reviewed research studies and scholarly articles that investigate the modes of transmission, risk factors, and management practices related to infectious diseases in horses.
West Nile viral infection of equids.
Veterinary microbiology    August 28, 2013   Volume 167, Issue 1-2 168-180 doi: 10.1016/j.vetmic.2013.08.013
Angenvoort J, Brault AC, Bowen RA, Groschup MH.West Nile virus (WNV) is a flavivirus transmitted between certain species of birds and mosquito vectors. Tangential infections of equids and subsequent equine epizootics have occurred historically. Although the attack rate has been estimated to be below 10%, mortality rates can approach 50% in horses that present clinical disease. Symptoms are most commonly presenting in the form of encephalitis with ataxia as well as limb weakness, recumbency and muscle fasciculation. The most effective strategy for prevention of equine disease is proper vaccination with one of the numerous commercially avail...
Eastern equine encephalitis in Latin America.
The New England journal of medicine    August 24, 2013   Volume 369, Issue 8 732-744 doi: 10.1056/NEJMoa1212628
Carrera JP, Forrester N, Wang E, Vittor AY, Haddow AD, López-Vergès S, Abadía I, Castaño E, Sosa N, Báez C, Estripeaut D, Díaz Y, Beltrán D....The eastern equine encephalitis (EEE) and Venezuelan equine encephalitis (VEE) viruses are pathogens that infect humans and horses in the Americas. Outbreaks of neurologic disease in humans and horses were reported in Panama from May through early August 2010. Methods: We performed antibody assays and tests to detect viral RNA and isolate the viruses in serum samples from hospitalized patients. Additional cases were identified with enhanced surveillance. Results: A total of 19 patients were hospitalized for encephalitis. Among them, 7 had confirmed EEE, 3 had VEE, and 1 was infected with both ...
Mosquito bites and eastern equine encephalitis.
QJM : monthly journal of the Association of Physicians    August 22, 2013   Volume 107, Issue 5 397-398 doi: 10.1093/qjmed/hct168
Min Z, Gnann JW.No abstract available
Trypanosoma evansi and surra: a review and perspectives on origin, history, distribution, taxonomy, morphology, hosts, and pathogenic effects.
BioMed research international    August 19, 2013   Volume 2013 194176 doi: 10.1155/2013/194176
Desquesnes M, Holzmuller P, Lai DH, Dargantes A, Lun ZR, Jittaplapong S.Trypanosoma evansi, the agent of "surra," is a salivarian trypanosome, originating from Africa. It is thought to derive from Trypanosoma brucei by deletion of the maxicircle kinetoplastic DNA (genetic material required for cyclical development in tsetse flies). It is mostly mechanically transmitted by tabanids and stomoxes, initially to camels, in sub-Saharan area. The disease spread from North Africa towards the Middle East, Turkey, India, up to 53° North in Russia, across all South-East Asia, down to Indonesia and the Philippines, and it was also introduced by the conquistadores into Latin ...
How humans handle the Hendra virus risk.
Australian veterinary journal    July 31, 2013   Volume 91, Issue 8 N2 doi: 10.1111/j.1751-0813.2013.000105.GRP.x
Richmond R.No abstract available
Perceptions of vulnerability to a future outbreak: a study of horse managers affected by the first Australian equine influenza outbreak.
BMC veterinary research    July 31, 2013   Volume 9 152 doi: 10.1186/1746-6148-9-152
Schemann K, Firestone SM, Taylor MR, Toribio JA, Ward MP, Dhand NK.A growing body of work shows the benefits of applying social cognitive behavioural theory to investigate infection control and biosecurity practices. Protection motivation theory has been used to predict protective health behaviours. The theory outlines that a perception of a lack of vulnerability to a disease contributes to a reduced threat appraisal, which results in poorer motivation, and is linked to poorer compliance with advised health protective behaviours. This study, conducted following the first-ever outbreak of equine influenza in Australia in 2007, identified factors associated wit...
Whole genomic analyses of equine group A rotaviruses from Japan: evidence for bovine-to-equine interspecies transmission and reassortment events.
Veterinary microbiology    July 26, 2013   Volume 166, Issue 3-4 474-485 doi: 10.1016/j.vetmic.2013.07.016
Ghosh S, Taniguchi K, Aida S, Ganesh B, Kobayashi N.Equine group A rotaviruses (RVA) are a major cause of severe diarrhea in foals. The whole genomes of only six common and three unusual equine RVA strains have been analyzed so far. To date, there are no reports on whole genomic analyses of equine RVAs from Asian countries. We report here the whole genomic analyses of three common (strains RVA/Horse-tc/JPN/BI/1981/G3P[12], RVA/Horse-tc/JPN/HH-22/1989/G3P[12] and RVA/Horse-tc/JPN/CH-3/1987/G14P[12]) and an unusual (RVA/Horse-tc/JPN/OH-4/1982/G6P[5]) equine RVA strains isolated from diarrheic foals in Japan. Strains BI, HH-22 and CH-3 shared a la...
3-D technology used to accurately understand equine ileocolonic aganglionosis.
Cells, tissues, organs    July 25, 2013   Volume 198, Issue 2 160-168 doi: 10.1159/000353218
Muniz E, Lobo Ladd AA, Lobo Ladd FV, da Silva AA, Kmit FV, Borges AS, Teixeira R, da Mota LS, Belli CB, de Zoppa AL, da Silva LC, de Melo MP, Coppi AA.Ileocolonic aganglionosis (ICA) is the congenital and hereditary absence of neurons that constitute the enteric nervous system and has been described in various species including humans - Hirschsprung's disease - and horses - overo lethal white syndrome (OLWS). Hirschsprung's disease affects circa 1 in 5,000 live births. At best, this disease means an inability to absorb nutrients from food (humans). At worse, in horses, it always means death. Despite our general understanding of the functional mechanisms underlying ICA, there is a paucity of reliable quantitative information about the structu...
Vesicular stomatitis outbreak in the southwestern United States, 2012. McCluskey BJ, Pelzel-McCluskey AM, Creekmore L, Schiltz J.Vesicular stomatitis is a viral disease primarily affecting horses and cattle when it occurs in the United States. Outbreaks in the southwestern United States occur sporadically, with initial cases typically occurring in Texas, New Mexico, or Arizona and subsequent cases occurring in a northward progression. The viruses causing vesicular stomatitis can be transmitted by direct contact of lesioned animals with other susceptible animals, but transmission is primarily through arthropod vectors. In 2012, an outbreak of vesicular stomatitis in the United States occurred that was caused by Vesicular...
Identification of hotspots in the European union for the introduction of four zoonotic arboviroses by live animal trade.
PloS one    July 23, 2013   Volume 8, Issue 7 e70000 doi: 10.1371/journal.pone.0070000
Durand B, Lecollinet S, Beck C, Martínez-López B, Balenghien T, Chevalier V.Live animal trade is considered a major mode of introduction of viruses from enzootic foci into disease-free areas. Due to societal and behavioural changes, some wild animal species may nowadays be considered as pet species. The species diversity of animals involved in international trade is thus increasing. This could benefit pathogens that have a broad host range such as arboviruses. The objective of this study was to analyze the risk posed by live animal imports for the introduction, in the European Union (EU), of four arboviruses that affect human and horses: Eastern and Western equine enc...
Sero-surveillance of equine infectious anemia virus in equines in India during more than a decade (1999-2012).
Indian journal of virology : an official organ of Indian Virological Society    July 16, 2013   Volume 24, Issue 3 386-390 doi: 10.1007/s13337-013-0142-3
Malik P, Singha H, Goyal SK, Khurana SK, Kumar R, Virmani N, Shanmugasundaram K, Pandey SB, Kant R, Singh BK, Singh RK.Equine infectious anemia (EIA) is a retroviral infection of horses. Horses infected by EIA virus (EIAV) become inapparent carriers that remain asymptomatic for the remainder of their life span and serve as infection source to other horses. In this study, agar gel immunodiffusion test and ELISA were used to investigate the presence of antibodies to EIAV in equines. A total of 67,042 equine serum samples from 19 states and two union territories were tested during April 1999 to September 2012. The results revealed that none of the animals were positive for antibodies to EIAV from 1999 to December...
Equine disease surveillance: quarterly summary.
The Veterinary record    July 9, 2013   Volume 173, Issue 1 11-13 doi: 10.1136/vr.f4254
No abstract available
Transmission of Streptococcus equi subspecies zooepidemicus infection from horses to humans.
Emerging infectious diseases    June 20, 2013   Volume 19, Issue 7 1041-1048 doi: 10.3201/eid1907.121365
Pelkonen S, Lindahl SB, Suomala P, Karhukorpi J, Vuorinen S, Koivula I, Väisänen T, Pentikäinen J, Autio T, Tuuminen T.Streptococcus equi subspecies zooepidemicus (S. zooepidemicus) is a zoonotic pathogen for persons in contact with horses. In horses, S. zooepidemicus is an opportunistic pathogen, but human infections associated with S. zooepidemicus are often severe. Within 6 months in 2011, 3 unrelated cases of severe, disseminated S. zooepidemicus infection occurred in men working with horses in eastern Finland. To clarify the pathogen's epidemiology, we describe the clinical features of the infection in 3 patients and compare the S. zooepidemicus isolates from the human cases with S. zooepidemicus isolates...
Amblyomma cajennense infestation on horses in two microregions of the state of Rio de Janeiro, Brazil. Pires MS, Santos TM, Santos HA, Vilela JA, Peixoto MP, Roier EC, Silva CB, Barreira JD, Lemos ER, Massard CL.The objective of this study was to evaluate factors associated with infestation by Amblyomma cajennense on horses in two microregions of the state of Rio de Janeiro. Horses on 62 farms in the municipalities of the Itaguaí and Serrana microregions were evaluated between January and May 2009. The animals were examined to determine the presence of ticks and infestation level. The animals' rearing and management were assessed on each farm property using an epidemiological questionnaire. Out of the 635 horses evaluated, 41.6% were infested with A. cajennense. It was observed that farms in low-alti...
First detection of methicillin-resistant Staphylococcus aureus ST398 and Staphylococcus pseudintermedius ST68 from hospitalized equines in Spain.
Zoonoses and public health    June 17, 2013   Volume 61, Issue 3 192-201 doi: 10.1111/zph.12059
Gómez-Sanz E, Simón C, Ortega C, Gómez P, Lozano C, Zarazaga M, Torres C.Eight coagulase-positive staphylococci from equines with different pathologies obtained between 2005 and 2011 were investigated. Isolates were characterized by different molecular techniques (spa-, agr-, MLST), and clonal relatedness of strains was investigated by ApaI and SmaI PFGE. Anti-microbial resistance and virulence profiles were determined. Six isolates were identified as Staphylococcus aureus, and two as Staphylococcus pseudintermedius. Of these, four isolates were methicillin-resistant S. aureus (MRSA) ST398 and one S. pseudintermedius was mecA positive and typed as ST68. One MRSA ...
Biosecurity at equestrian competitions: Olympic legacy?
Equine veterinary journal    June 7, 2013   Volume 45, Issue 4 396-397 doi: 10.1111/evj.12055
Slater J.No abstract available
Worms’ adaptation a critical problem: anthelmintic resistance a problem in ruminants, horses.
Journal of the American Veterinary Medical Association    June 6, 2013   Volume 242, Issue 9 1198-1200 
Cima G.No abstract available
Can Theileria equi be eliminated from carrier horses?
Veterinary journal (London, England : 1997)    June 2, 2013   Volume 196, Issue 3 279 doi: 10.1016/j.tvjl.2013.03.016
Butler C.No abstract available
Rapid, simple and sensitive detection of Q fever by loop-mediated isothermal amplification of the htpAB gene.
PLoS neglected tropical diseases    May 16, 2013   Volume 7, Issue 5 e2231 doi: 10.1371/journal.pntd.0002231
Pan L, Zhang L, Fan D, Zhang X, Liu H, Lu Q, Xu Q.Q fever is the most widespread zoonosis, and domestic animals are the most common sources of transmission. It is not only difficult to distinguish from other febrile diseases because of the lack of specific clinical manifestations in humans, but it is also difficult to identify the disease in C. burnetii-carrying animals because of the lack of identifiable features. Conventional serodiagnosis requires sera from the acute and convalescent stages of infection, which are unavailable at early diagnosis. Nested PCR and real-time PCR require equipment. In this study, we developed a Loop-Mediated Iso...
Recent circulation of West Nile virus and potentially other closely related flaviviruses in Southern France.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    May 13, 2013   Volume 13, Issue 8 610-613 doi: 10.1089/vbz.2012.1166
Vittecoq M, Lecollinet S, Jourdain E, Thomas F, Blanchon T, Arnal A, Lowenski S, Gauthier-Clerc M.In recent years, the number of West Nile virus (WNV) cases reported in horses and humans has increased dramatically throughout the Mediterranean basin. Furthermore, the emergence of Usutu virus (USUV) in Austria in 2001, and its subsequent expansion to Hungary, Spain, Italy, Switzerland, the United Kingdom, and Germany, has given added cause for concern regarding the impact of the spread of flaviviruses on human and animal health in western Europe. Despite frequent detection of WNV and USUV cases in neighboring countries, no case of WNV has been detected in France since 2006 and USUV has never...
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...
Furry pet allergens, fungal DNA and microbial volatile organic compounds (MVOCs) in the commercial aircraft cabin environment.
Environmental science. Processes & impacts    May 7, 2013   Volume 15, Issue 6 1228-1234 doi: 10.1039/c3em30928b
Fu X, Lindgren T, Guo M, Cai GH, Lundgren H, Norbäck D.There has been concern about the cabin environment in commercial aircraft. We measured cat, dog and horse allergens and fungal DNA in cabin dust and microbial volatile organic compounds (MVOCs) in cabin air. Samples were collected from two European airline companies, one with cabins having textile seats (TSC) and the other with cabins having leather seats (LSC), 9 airplanes from each company. Dust was vacuumed from seats and floors in the flight deck and different parts of the cabin. Cat (Fel d1), dog (Can f1) and horse allergens (Equ cx) were analyzed by ELISA. Five sequences of fungal DNA we...
A comparative evaluation of methicillin-resistant staphylococci isolated from harness racing-horses, breeding mares and riding-horses in Italy.
Asian Pacific journal of tropical biomedicine    April 27, 2013   Volume 3, Issue 3 169-173 doi: 10.1016/S2221-1691(13)60044-1
Mallardo K, Nizza S, Fiorito F, Pagnini U, De Martino L.To investigate the prevalence of methicillin-resistant staphylococci (MRS) which is a potencial risk factor of transmission between animals and humans in different types of horses (harness racing-horses, breeding mares and riding-horses) and to compare the antimicrobial resistance of the isolates. Methods: A total of 191 healthy horses, housed at different locations of the Campania Region (Italy), were included in the study. Nasal swab samples were collected from each nostril of the horses. The mecA gene was detected by a nested PCR technique. Antibiotic susceptibility was tested for each isol...
Equine disease surveillance: quarterly summary.
The Veterinary record    April 23, 2013   Volume 172, Issue 16 417-420 doi: 10.1136/vr.f2219
No abstract available
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...
Leptospirosis in horses.
Veterinary microbiology    April 16, 2013   Volume 167, Issue 1-2 61-66 doi: 10.1016/j.vetmic.2013.04.012
Verma A, Stevenson B, Adler B.Leptospirosis in horses has been considered a relatively uncommon infection. However, recent data suggest that the infection is widespread, with the incidence and infecting serovars varying considerably in different geographical regions. The majority of infections remain asymptomatic. Clinical signs in equine leptospirosis resemble those seen in other animal species. However, leptospirosis as a cause of acute respiratory distress is becoming more frequently recognised. A particular feature of equine leptospirosis is post infection recurrent uveitis (moon blindness or periodic ophthalmia), whic...
Science in brief: clinical highlights from the American Association of Equine Practitioners’ 58th Annual Convention and Equine Veterinary Journal supplement 43.
Equine veterinary journal    April 10, 2013   Volume 45, Issue 3 261-264 doi: 10.1111/evj.12067
Collatos C, Pearson LK.No abstract available
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...
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...
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