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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.
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...
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
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...
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...
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.
Laminitis in the 21st century.
The Veterinary record    January 20, 2015   Volume 176, Issue 3 70-71 doi: 10.1136/vr.h53
Wells-Smith L.No abstract available
Biology of Trypanosoma (Trypanozoon) evansi in experimental heterologous mammalian hosts.
Journal of parasitic diseases : official organ of the Indian Society for Parasitology    January 20, 2015   Volume 40, Issue 3 1047-1061 doi: 10.1007/s12639-014-0633-1
Misra KK, Roy S, Choudhury A.Trypanosoma (Trypanozoon) evansi is a causative agent of the dreadful mammalian disease trypanosomiasis or 'Surra' and carried as a latent parasite in domestic cattle but occasionally proves fatal when transmitted to horses and camel. Sporadic outbreak of 'Surra' to different animals (beside their natural hosts) reminds that T. evansi may be zoonotic, as their close relative cause sleeping sickness to human being. This haemoflagellate is mechanically transmitted by horse fly and its effect on different host varies depending on certain factors including the effectiveness of transmission by mech...
Demographics of natural oral infection of mosquitos by Venezuelan equine encephalitis virus.
Journal of virology    January 14, 2015   Volume 89, Issue 7 4020-4022 doi: 10.1128/JVI.03265-14
Gutiérrez S, Thébaud G, Smith DR, Kenney JL, Weaver SC.The within-host diversity of virus populations can be drastically limited during between-host transmission, with primary infection of hosts representing a major constraint to diversity maintenance. However, there is an extreme paucity of quantitative data on the demographic changes experienced by virus populations during primary infection. Here, the multiplicity of cellular infection (MOI) and population bottlenecks were quantified during primary mosquito infection by Venezuelan equine encephalitis virus, an arbovirus causing neurological disease in humans and equids.
Pathways for entry of livestock arboviruses into Great Britain: assessing the strength of evidence.
Transboundary and emerging diseases    January 12, 2015   Volume 62, Issue 2 115-123 doi: 10.1111/tbed.12317
Gale P, Kelly L, Snary EL.The emergence of bluetongue virus and Schmallenberg virus in Great Britain (GB) during the last decade has highlighted the need for understanding the relative importance of the various pathways of the entry of livestock arboviruses so as to help focus surveillance and mitigation. This study summarizes what is known for the main routes of entry and assesses the strength of the current evidence for and against. Entry through infected arthropod vectors is considered at the level of each life cycle stage for tick-, biting midge- and mosquito-borne viruses, and while there is evidence that this cou...
Vector ecology of equine piroplasmosis.
Annual review of entomology    January 8, 2015   Volume 60 561-580 doi: 10.1146/annurev-ento-010814-021110
Scoles GA, Ueti MW.Equine piroplasmosis is a disease of Equidae, including horses, donkeys, mules, and zebras, caused by either of two protozoan parasites, Theileria equi or Babesia caballi. These parasites are biologically transmitted between hosts via tick vectors, and although they have inherent differences they are categorized together because they cause similar pathology and have similar morphologies, life cycles, and vector relationships. To complete their life cycle, these parasites must undergo a complex series of developmental events, including sexual-stage development in their tick vectors. Consequentl...
Risk factors associated with the transmission of Brazilian spotted fever in the Piracicaba river basin, State of São Paulo, Brazil.
Revista da Sociedade Brasileira de Medicina Tropical    January 1, 2015   Volume 48, Issue 1 11-17 doi: 10.1590/0037-8682-0281-2014
Souza CE, Pinter A, Donalisio MR.Brazilian spotted fever (BSF) is a disease transmitted by ticks for which the etiological agent is Rickettsia rickettsii. The present essay evaluates the risk factors associated with the transmission of cases of BSF in the time period between 2003 and 2013 in the Piracicaba river basin, state of São Paulo. Methods: This essay presents a retrospective study to identify the factors associated with the transmission of cases of BSF among all suspected cases identified by the System for Epidemiological Surveillance of São Paulo (CVE). After the description of temporal distribution (onset of sympt...
Elimination of schistosomiasis japonica from formerly endemic areas in mountainous regions of southern China using a praziquantel regimen.
Veterinary parasitology    December 31, 2014   Volume 208, Issue 3-4 254-258 doi: 10.1016/j.vetpar.2014.12.031
Li H, Dong GD, Liu JM, Gao JX, Shi YJ, Zhang YG, Jin YM, Lu K, Cheng GF, Lin JJ.Schistosomiasis japonica is a major public health problem in China. Domestic animals play a major role in the transmission of Schistosoma japonicum to humans. To better understand the epidemiology of schistosomiasis japonica in domestic animals in the mountainous areas of China, we performed a 5-year longitudinal study of schistosomiasis in cattle and horses in Yunnan Province from 2009 to 2013. We also performed a concurrent drug-based intervention study in three settlement groups in Yunnan Province aimed at developing an effective means of controlling transmission in this region. The prevale...
Candida tropicalis isolates obtained from veterinary sources show resistance to azoles and produce virulence factors.
Medical mycology    December 30, 2014   Volume 53, Issue 2 145-152 doi: 10.1093/mmy/myu081
Cordeiro Rde A, de Oliveira JS, Castelo-Branco Dde S, Teixeira CE, Marques FJ, Bittencourt PV, Carvalho VL, Bandeira Tde J, Brilhante RS, Moreira JL....Candida tropicalis has been associated with invasive candidiasis, being the first or second most common non-Candida albicans Candida species isolated in humans with candidemia and candiduria, as well as being frequently isolated from healthy animals. This study aimed to characterize C. tropicalis isolates (n = 64) obtained from several animal species regarding antifungal susceptibility and production of virulence factors. The isolates were obtained from the microbiota of healthy animals (goats, n = 25; sheep, n = 6; psittacines, n = 14; rheas, n = 6; horses, n = 2; sirenians, n = 5; shrimp, n ...
[Surveillance of West Nile fever in horses in the Czech Republic from 2011 to 2013]. Sedlák K, Zelená H, Křivda V, Šatrán P.The West Nile virus (WNV) is an important mosquito-borne flavivirus occurring around the world. Occasionally found in Central Europe, the virus spread massively through whole Hungary between 2008 and 2009. The aim of our study was to determine the recent prevalence of the WNV infection in horses in the Czech Republic. Methods: Overall, 2349 serum samples, collected from healthy unvaccinated adult horses in the Czech Republic between 2011 and 2013, were tested. A commercially available competitive ELISA kit (cELISA) was used for this purpose and positive samples were confirmed by virus neutrali...
Role of enhanced vector transmission of a new West Nile virus strain in an outbreak of equine disease in Australia in 2011.
Parasites & vectors    December 12, 2014   Volume 7 586 doi: 10.1186/s13071-014-0586-3
van den Hurk AF, Hall-Mendelin S, Webb CE, Tan CS, Frentiu FD, Prow NA, Hall RA.In 2011, a variant of West Nile virus Kunjin strain (WNVKUN) caused an unprecedented epidemic of neurological disease in horses in southeast Australia, resulting in almost 1,000 cases and a 9% fatality rate. We investigated whether increased fitness of the virus in the primary vector, Culex annulirostris, and another potential vector, Culex australicus, contributed to the widespread nature of the outbreak. Methods: Mosquitoes were exposed to infectious blood meals containing either the virus strain responsible for the outbreak, designated WNVKUN2011, or WNVKUN2009, a strain of low virulence th...
Spatial and temporal distribution of West Nile virus in horses in Israel (1997-2013)–from endemic to epidemics.
PloS one    November 17, 2014   Volume 9, Issue 11 e113149 doi: 10.1371/journal.pone.0113149
Aharonson-Raz K, Lichter-Peled A, Tal S, Gelman B, Cohen D, Klement E, Steinman A.With the rapid global spread of West Nile virus (WNV) and the endemic state it has acquired in new geographical areas, we hereby bring a thorough serological investigation of WNV in horses in a longstanding endemic region, such as Israel. This study evaluates the environmental and demographic risk factors for WNV infection in horses and suggests possible factors associated with the transition from endemic to epidemic state. West Nile virus seroprevalence in horses in Israel was determined throughout a period of more than a decade, before (1997) and after (2002 and 2013) the massive West Nile f...
Spatial and temporal distribution of incidence of acquired equine polyneuropathy in Norway and Sweden, 1995-2012.
BMC veterinary research    November 15, 2014   Volume 10 265 doi: 10.1186/s12917-014-0265-9
Wolff C, Egenvall A, Hanche-Olsen S, Gröndahl G.Acquired equine polyneuropathy (AEP) is an emerging disease in horses in Sweden, Norway and Finland since 1995. Affected horses show bilateral pelvic limb knuckling and weakness, sometimes progressing to recumbency and euthanasia. The aetiology is unknown but is thought to be non-infectious and non-genetic, though possibly toxic or toxico-infectious. The objectives of this study were to describe the spatial, temporal and spatio-temporal features of AEP in Norway and Sweden for the period of 1995 to 2012. Data from all documented case farms (n = 136) were used. Space-time interaction cluste...
Equine infectious anemia in 2014: live with it or eradicate it?
The Veterinary clinics of North America. Equine practice    November 6, 2014   Volume 30, Issue 3 561-577 doi: 10.1016/j.cveq.2014.08.002
Issel CJ, Cook RF, Mealey RH, Horohov DW.In the absence of an effective vaccine, the success of the test and removal approach for the control of equine infectious anemia (EIA) cannot be overstated, at least in those areas where testing has been traditionally routine. This article addresses 4 main aspects: what has been learned about EIA virus, host control of its replication, and inapparent carriers; international status regarding the control of EIA; diagnostic and laboratory investigation; and reducing the spread of blood-borne infections by veterinarians. An attempt is made to put these issues into practical contemporary perspectiv...
Equine viral arteritis.
The Veterinary clinics of North America. Equine practice    November 6, 2014   Volume 30, Issue 3 543-560 doi: 10.1016/j.cveq.2014.08.011
Balasuriya UB.Equine arteritis virus (EAV), the causative agent of equine viral arteritis (EVA), is a respiratory and reproductive disease that occurs throughout the world. EAV infection is highly species-specific and exclusively limited to members of the family Equidae, which includes horses, donkeys, mules, and zebras. EVA is an economically important disease and outbreaks could cause significant losses to the equine industry. The primary objective of this article is to summarize current understanding of EVA, specifically the disease, pathogenesis, epidemiology, host immune response, vaccination and treat...
Prevalence of antibodies against influenza virus in non-vaccinated equines from the Brazilian Pantanal.
Revista do Instituto de Medicina Tropical de Sao Paulo    October 30, 2014   Volume 56, Issue 6 487-492 doi: 10.1590/s0036-46652014000600006
Gaíva e Silva L, Borges AM, Villalobos EM, Lara Mdo C, Cunha EM, de Oliveira AC, Braga IA, Aguiar DM.The prevalence of antibodies against Equine Influenza Virus (EIV) was determined in 529 equines living on ranches in the municipality of Poconé, Pantanal area of Brazil, by means of the hemagglutination inhibition test, using subtype H3N8 as antigen. The distribution and possible association among positive animal and ranches were evaluated by the chi-square test, spatial autoregressive and multiple linear regression models. The prevalence of antibodies against EIV was estimated at 45.2% (95% CI 30.2 - 61.1%) with titers ranging from 20 to 1,280 HAU. Seropositive equines were found on 92.0% of...
Predominance of Leptospira interrogans serovar Bratislava DNA in vaginal fluid of mares suggests sexual transmission of leptospirosis.
Animal reproduction science    October 28, 2014   Volume 151, Issue 3-4 275-279 doi: 10.1016/j.anireprosci.2014.10.019
Hamond C, Martins G, Bremont S, Medeiros MA, Bourhy P, Lilenbaum W.The purpose of the present study was to detect the presence of DNA of pathogenic Leptospira sp. in vaginal fluids of mares regarding a possible role of the sexual transmission. A total of 134 breeding mares from four troops were studied and sampling was conducted from vaginal fluids and urine for culture and PCR; and blood for serology. From the 134 serum samples tested, 59 (44%) were seroreactive, and serovar Bratislava was the most frequent (54.2%). None positive culture was obtained, but leptospiral DNA was detected by PCR (lipL32 gene) in 45 (33.5%) urine samples and 43 (32%) vaginal fluid...
Inefficient transmissibility of NS-truncated H3N8 equine influenza virus in dogs.
Journal of microbiology and biotechnology    October 16, 2014   Volume 25, Issue 3 317-320 doi: 10.4014/jmb.1409.09078
Na W, Song M, Yeom M, Park N, Kang B, Moon H, Jeong DG, Kim JK, Song D.H3N8 equine influenza virus (EIV) causes respiratory diseases in the horse population, and it has been demonstrated that EIV can transmit into dogs owing to its availability on receptors of canine respiratory epithelial cells. Recently, we isolated H3N8 EIV from an EIV-vaccinated horse that showed symptoms of respiratory disease, and which has a partially truncated nonstructural gene (NS). However, it is not clear that the NS-truncated EIV has an ability to cross the host species barrier from horses to dogs as well. Here, we experimentally infected the NS-truncated H3N8 EIV into dogs, and moni...
Discovery of Australian bat lyssavirus in horses poses further threats to human and animal health.
Australian veterinary journal    October 9, 2014   Volume 92, Issue 9 N2 doi: 10.1111/avj.133
Richmond R.No abstract available
Impact of equine herpesvirus type 1 (EHV-1) infection on the migration of monocytic cells through equine nasal mucosa.
Comparative immunology, microbiology and infectious diseases    October 8, 2014   Volume 37, Issue 5-6 321-329 doi: 10.1016/j.cimid.2014.09.004
Baghi HB, Nauwynck HJ.The mucosal surfaces are important sites of entry for a majority of pathogens, and viruses in particular. The migration of antigen presenting cells (APCs) from the apical side of the mucosal epithelium to the lymph node is a key event in the development of mucosal immunity during viral infections. However, the mechanism by which viruses utilize the transmigration of these cells to invade the mucosa is largely unexplored. Here, we establish an ex vivo explant model of monocytic cell transmigration across the nasal mucosal epithelium and lamina propria. Equine nasal mucosal CD172a(+) cells (nmCD...
Equine herpesvirus 1 myeloencephalopathy.
The Veterinary clinics of North America. Equine practice    October 7, 2014   Volume 30, Issue 3 489-506 doi: 10.1016/j.cveq.2014.08.006
Pusterla N, Hussey GS.Equine myeloencephalopathy (EHM), an uncommon manifestation of equine herpesvirus 1 (EHV-1) infection, can cause devastating losses on individual farms, boarding stables, veterinary hospitals, and show and racing venues. An improved understanding of EHM has emerged from experimental studies and from data collected during field outbreaks at riding schools, racetracks, horse shows, and veterinary hospitals throughout North America and Europe. These outbreaks have highlighted the contagious nature of EHV-1 and have prompted a reevaluation of diagnostic procedures, treatment modalities, preventati...
Quantitative PCR detection of Theileria equi using laboratory workflows to detect asymptomatic persistently infected horses.
Veterinary parasitology    October 7, 2014   Volume 206, Issue 3-4 138-145 doi: 10.1016/j.vetpar.2014.09.019
Alanazi AD, Said AE, Morin-Adeline V, Alyousif MS, Slapeta J.Equine piroplasmosis is the most important tick-borne disease of horses. Regulations on movement of horses into disease-free countries are in place to preserve international trade. Introduction of infectious disease, such as equine piroplasmosis, into non-endemic countries remains a substantial risk owing to the wide-spread distribution of vectors. Identification and restriction of movement of Theileria equi persistently infected horses is an integral part of control strategies, because persistently infected horses with low parasitaemia are an important reservoir. We used real-time PCR for dia...
New perspectives for the diagnosis, control, treatment, and prevention of strangles in horses.
The Veterinary clinics of North America. Equine practice    October 6, 2014   Volume 30, Issue 3 591-607 doi: 10.1016/j.cveq.2014.08.007
Waller AS.Strangles, characterized by abscessation of the lymph nodes of the head and neck, is the most frequently diagnosed infectious disease of horses worldwide. The persistence of the causative agent, Streptococcus equi, in a proportion of convalescent horses plays a critical role in the recurrence and spread of disease. Recent research has led to the development of effective diagnostic tests that assist the eradication of S equi from local horse populations. This article describes how these advances have been made and provides advice to assist the resolution and prevention of outbreaks. New perspec...
Piroplasmosis in an endemic area: analysis of the risk factors and their implications in the control of Theileriosis and Babesiosis in horses.
Parasitology research    October 4, 2014   Volume 114, Issue 1 71-83 doi: 10.1007/s00436-014-4161-9
Guidi E, Pradier S, Lebert I, Leblond A.Theileria equi (Laveran 1901) and Babesia caballi (Nuttall and Strickland 1910) are the causative agents of Equine Piroplasmosis (EP), a severe and problematic disease compromising international movement of horses. Infected horses usually become asymptomatic carriers and, for this reason, their movement across borders may become restricted. The aim of this study was to assess the seroprevalence of EP in Southern France and to evaluate risk factors associated with these parasites. In 2002, we performed a complement fixation test (CF) with blood samples from 443 horses stabled at 95 different fa...
[Horse importation from developing countries and the risk of importing zoonoses].
Tijdschrift voor diergeneeskunde    October 3, 2014   Volume 139, Issue 9 28-34 
Tafro N, Spierenburg MA, Valkenburgh SM.No abstract available
Managing Salmonella in equine populations.
The Veterinary clinics of North America. Equine practice    October 3, 2014   Volume 30, Issue 3 623-640 doi: 10.1016/j.cveq.2014.08.005
Burgess BA, Morley PS.Infection control is achieved through all efforts used to prevent the introduction and limit the spread of contagious pathogens within a facility or population, with the goal of eliminating sources of potentially pathogenic microorganisms and to disrupt infectious disease transmission. Congregating animals from multiple sources, as occurs at veterinary hospitals, racetracks, equestrian events, and boarding and training facilities, increases the risk for transmission of infectious diseases such as salmonella. There is a recognizable standard of practice for infection control and due effort must...
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