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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.
The economic impact of Bluetongue and other orbiviruses in sub-Saharan Africa, with special reference to Southern Africa.
Veterinaria italiana    October 11, 2016   Volume 52, Issue 3-4 375-381 doi: 10.12834/VetIt.503.2427.3
Grewar JD.Bluetongue (BT) and African horse sickness (AHS) are considered the most important orbiviral diseases in Southern Africans countries. The general endemic status makes these diseases challenging to be quanti ed in terms of their economic impact. Using country reported data from BT and AHS outbreaks and cases, as well as international trade data, the economic impact of BT and AHS is evaluated on local, regional, and global scales. Local scale impact in the Southern African region is underestimated as shown by the underreporting of BT and AHS. Exceptions occur during epidemic cycles of the diseas...
Brazilian borreliosis with special emphasis on humans and horses.
Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology]    October 4, 2016   Volume 48, Issue 1 167-172 doi: 10.1016/j.bjm.2016.09.005
Basile RC, Yoshinari NH, Mantovani E, Bonoldi VN, Macoris DD, Queiroz-Neto A.Borreliosis caused by Borrelia burgdorferi sensu lato is a cosmopolitan zoonosis studied worldwide; it is called Lyme disease in many countries of the Northern Hemisphere and Lyme-like or Baggio-Yoshinari Syndrome in Brazil. However, despite the increasing number of suspect cases, this disease is still neglected in Brazil by the medical and veterinary communities. Brazilian Lyme-like borreliosis likely involves capybaras as reservoirs and Amblyomma and Rhipicephalus ticks as vectors. Thus, domestic animals can serve as key carriers in pathogen dissemination. This zoonosis has been little studi...
West Nile virus transmission: results from the integrated surveillance system in Italy, 2008 to 2015.
Euro surveillance : bulletin Europeen sur les maladies transmissibles = European communicable disease bulletin    September 30, 2016   Volume 21, Issue 37 30340 doi: 10.2807/1560-7917.ES.2016.21.37.30340
Rizzo C, Napoli C, Venturi G, Pupella S, Lombardini L, Calistri P, Monaco F, Cagarelli R, Angelini P, Bellini R, Tamba M, Piatti A, Russo F, Palù G....In Italy a national Plan for the surveillance of imported and autochthonous human vector-borne diseases (chikungunya, dengue, Zika virus disease and West Nile virus (WNV) disease) that integrates human and veterinary (animals and vectors) surveillance, is issued and revised annually according with the observed epidemiological changes. Here we describe results of the WNV integrated veterinary and human surveillance systems in Italy from 2008 to 2015. A real time data exchange protocol is in place between the surveillance systems to rapidly identify occurrence of human and animal cases and to de...
Comparative Risk Analysis of Two Culicoides-Borne Diseases in Horses: Equine Encephalosis More Likely to Enter France than African Horse Sickness.
Transboundary and emerging diseases    September 23, 2016   Volume 64, Issue 6 1825-1836 doi: 10.1111/tbed.12577
Faverjon C, Leblond A, Lecollinet S, Bødker R, de Koeijer AA, Fischer EAJ.African horse sickness (AHS) and equine encephalosis (EE) are Culicoides-borne viral diseases that could have the potential to spread across Europe if introduced, thus being potential threats for the European equine industry. Both share similar epidemiology, transmission patterns and geographical distribution. Using stochastic spatiotemporal models of virus entry, we assessed and compared the probabilities of both viruses entering France via two pathways: importation of live-infected animals or importation of infected vectors. Analyses were performed for three consecutive years (2010-2012). Se...
Experimental infection of horses with Rickettsia rickettsii.
Parasites & vectors    September 13, 2016   Volume 9, Issue 1 499 doi: 10.1186/s13071-016-1784-y
Ueno TE, Costa FB, Moraes-Filho J, Agostinho WC, Fernandes WR, Labruna MB.Rickettsia rickettsii is vectored by ticks, and some vertebrate hosts can be sources of infection to ticks during bacteremic periods. In Brazil, the main vector for R. rickettsii is the tick Amblyomma sculptum, a member of the A. cajennense complex. Horses, in turn, are one of the major hosts for A. sculptum. In this study, horses experimentally infected with R. rickettsii were assessed for clinical changes and their capability to transmit the infection to A. sculptum ticks. Four horses were infected with R. rickettsii through either intraperitoneal injection or infestation with R. rickettsii-...
Development and evaluation of a new lateral flow assay for simultaneous detection of antibodies against African Horse Sickness and Equine Infectious Anemia viruses.
Journal of virological methods    September 9, 2016   Volume 237 127-131 doi: 10.1016/j.jviromet.2016.09.009
Costa S, Sastre P, Pérez T, Tapia I, Barrandeguy M, Sánchez-Vizcaíno JM, Sánchez-Matamoros A, Wigdorovitz A, Sanz A, Rueda P.African horse sickness (AHS) and equine infectious anemia (EIA) are both notifiable equid specific diseases that may present similar clinical signs. Considering the increased global movement of horses and equine products over the past decades, together with the socio-economic impact of previous AHS and EIA outbreaks, there is a clear demand for an early discrimination and a strict control of their transmission between enzootic and AHS/EIA-free regions. Currently, the individual control and prevention of AHS or EIA relies on a series of measures, including the restriction of animal movements, v...
Host associations of mosquitoes at eastern equine encephalitis virus foci in Connecticut, USA.
Parasites & vectors    August 30, 2016   Volume 9, Issue 1 474 doi: 10.1186/s13071-016-1765-1
Shepard JJ, Andreadis TG, Thomas MC, Molaei G.Eastern equine encephalitis virus (EEEV) is a highly pathogenic mosquito-borne arbovirus, with active transmission foci in freshwater hardwood swamps in eastern North America, where enzootic transmission is maintained between the ornithophilic mosquito, Culiseta melanura, and wild passerine birds. The role of other locally abundant mosquito species in virus transmission and their associations with vertebrate hosts as sources of blood meals within these foci are largely unknown but are of importance in clarifying the dynamics of enzootic and epidemic/epizootic transmission. Blood-engorged mosqu...
Inoculation of Goats, Sheep, and Horses with MERS-CoV Does Not Result in Productive Viral Shedding.
Viruses    August 19, 2016   Volume 8, Issue 8 230 doi: 10.3390/v8080230
Adney DR, Brown VR, Porter SM, Bielefeldt-Ohmann H, Hartwig AE, Bowen RA.The Middle East respiratory syndrome coronavirus (MERS-CoV) was first recognized in 2012 and can cause severe disease in infected humans. Dromedary camels are the reservoir for the virus, although, other than nasal discharge, these animals do not display any overt clinical disease. Data from in vitro experiments suggest that other livestock such as sheep, goats, and horses might also contribute to viral transmission, although field data has not identified any seropositive animals. In order to understand if these animals could be infected, we challenged young goats and horses and adult sheep wi...
Beta-hemolytic Streptococcus dysgalactiae strains isolated from horses are a genetically distinct population within the Streptococcus dysgalactiae taxon.
Scientific reports    August 17, 2016   Volume 6 31736 doi: 10.1038/srep31736
Pinho MD, Erol E, Ribeiro-Gonçalves B, Mendes CI, Carriço JA, Matos SC, Preziuso S, Luebke-Becker A, Wieler LH, Melo-Cristino J, Ramirez M.The pathogenic role of beta-hemolytic Streptococcus dysgalactiae in the equine host is increasingly recognized. A collection of 108 Lancefield group C (n = 96) or L (n = 12) horse isolates recovered in the United States and in three European countries presented multilocus sequence typing (MLST) alleles, sequence types and emm types (only 56% of the isolates could be emm typed) that were, with few exceptions, distinct from those previously found in human Streptococcus dysgalactiae subsp. equisimilis. Characterization of a subset of horse isolates by multilocus sequence analysis (MLSA) a...
Vesicular stomatitis.
The Veterinary record    July 31, 2016   Volume 179, Issue 5 119-120 doi: 10.1136/vr.i4075
Timoney P.More than 800 premises in eight states in the USA have recently reported cases of vesicular stomatitis in their horses. Here, Peter Timoney, of the Gluck Equine Research Center in Kentucky, discusses this zoonotic disease in more detail.
Climatic suitability influences species specific abundance patterns of Australian flying foxes and risk of Hendra virus spillover.
One health (Amsterdam, Netherlands)    July 29, 2016   Volume 2 115-121 doi: 10.1016/j.onehlt.2016.07.004
Martin GA, Yanez-Arenas C, Roberts BJ, Chen C, Plowright RK, Webb RJ, Skerratt LF.Hendra virus is a paramyxovirus of Australian flying fox bats. It was first detected in August 1994, after the death of 20 horses and one human. Since then it has occurred regularly within a portion of the geographical distribution of all Australian flying fox (fruit bat) species. There is, however, little understanding about which species are most likely responsible for spillover, or why spillover does not occur in other areas occupied by reservoir and spillover hosts. Using ecological niche models of the four flying fox species we were able to identify which species are most likely linked to...
Vertical transmission of hepatitis C virus-like non-primate hepacivirus in horses.
The Journal of general virology    July 26, 2016   Volume 97, Issue 10 2540-2551 doi: 10.1099/jgv.0.000561
Gather T, Walter S, Todt D, Pfaender S, Brown RJP, Postel A, Becher P, Moritz A, Hansmann F, Baumgaertner W, Feige K, Steinmann E, Cavalleri JV.Non-primate hepacivirus (NPHV), a recently discovered hepatotropic virus infecting horses, is phylogenetically the closest known homologue of hepatitis C virus (HCV). The main route for acquiring HCV infection in childhood is vertical transmission. However, nothing is known about the natural mode of transmission for NPHV. To investigate the possibility of vertically transmitted NPHV infection in horses, 20 Thoroughbred broodmares and their foals were monitored during foaling season 2015 until 6 months post-partum. Prepartal serum was taken from the mares, and during foaling umbilical cord bloo...
Glanders and the risk for its introduction through the international movement of horses.
Equine veterinary journal    July 22, 2016   Volume 48, Issue 5 654-658 doi: 10.1111/evj.12599
Kettle AN, Wernery U.Glanders is the contagious zoonotic disease caused by infection with Burkholderia mallei. It affects primarily horses, donkeys and mules. The disease was eradicated from large areas of the Western world in the early 20th century, but, over the last 10-20 years, has emerged and re-emerged in areas in which it was previously unknown or had been eradicated. Although glanders was previously thought to manifest in only acute or chronic presentations, it now appears that B. mallei can produce latent infections similar to those caused by Burkholderia pseudomallei. These latent infections may or may...
Antimicrobial resistance and virulence profiles of Enterococcus spp. isolated from horses in korea.
Comparative immunology, microbiology and infectious diseases    July 12, 2016   Volume 48 6-13 doi: 10.1016/j.cimid.2016.07.001
Kim DH, Chung YS, Park YK, Yang SJ, Lim SK, Park YH, Park KT.Antimicrobial-resistant (AR) enterococci have emerged as leading nosocomial pathogens. Transmission of AR Enterococci from animals to humans has been demonstrated. However, there is limited information on the transmission of enterococci from horses to humans. To address this issue, we characterized 260 enterococci isolated from horse-associated samples in Korea in 2013 based on their AR profiles and virulence traits. AR profiling revealed an average ratio of AR enterococci of 23.8%. Seven isolates (2.7%) were multidrug-resistant Enterococcus faecalis. Most tetracycline-resistant enterococci ha...
Prospective study investigating transplacental transmission of equine piroplasmosis in thoroughbred foals in Trinidad.
Veterinary parasitology    July 10, 2016   Volume 226 132-137 doi: 10.1016/j.vetpar.2016.07.008
Sant C, d'Abadie R, Pargass I, Basu AK, Asgarali Z, Charles RA, Georges KC.Equine piroplasmosis caused by Theileria equi and Babesia caballi is endemic in Trinidad and Tobago. Transmission occurs by ticks of the family Ixodidae. T. equi can also be transmitted transplacentally; however transplacental transmission of B. caballi is unknown. This study aims to investigate transplacental transmission of equine piroplasmosis from thoroughbred mares naturally infected via the tick vector. Whole blood and serum samples were collected from 117 mares in the fifth month of pregnancy. Blood samples were also collected from each of their foals (89 in total) within the first 36h ...
Hard ticks (Acari: Ixodidae) of livestock in Nicaragua, with notes about distribution.
Experimental & applied acarology    July 8, 2016   Volume 70, Issue 1 125-135 doi: 10.1007/s10493-016-0059-9
Düttmann C, Flores B, Kadoch Z N, Bermúdez C S.We document the species of ticks that parasitize livestock in Nicaragua. The study was based on tick collection on cattle and horses from 437 farms in nine departments. Of 4841 animals examined (4481 cows and 360 horses), 3299 were parasitized, which represent 68 % of the bovines and 67 % of the equines in study: 59 cows and 25 horses were parasitized by more than one species. In addition, 280 specimens of the entomological museum in León were examined. The ticks found on cattle were Rhipicephalus microplus (75.2 % of the ticks collected), Amblyomma mixtum (20.8 %), A. parvum (2.6 %), A....
Quantitative analysis of the probability of introducing equine encephalosis virus (EEV) into The Netherlands.
Preventive veterinary medicine    July 7, 2016   Volume 131 48-59 doi: 10.1016/j.prevetmed.2016.07.005
Fischer EAJ, Martínez López EP, De Vos CJ, Faverjon C.Equine encephalosis is a midge-borne viral disease of equines caused by equine encephalosis virus (EEV, Orbivirus, Reoviridae), and closely related to African horse sickness virus (AHSV). EEV and AHSV share common vectors and show similar transmission patterns. Until now EEV has caused outbreaks in Africa and Israel. This study aimed to provide insight in the probability of an EEV outbreak in The Netherlands caused by infected vectors or hosts, the contribution of potential source areas (risk regions) to this probability, and the effectiveness of preventive measures (sanitary regimes). A stoch...
Double-stranded-RNA-specific adenosine deaminase 1 (ADAR1) is proposed to contribute to the adaptation of equine infectious anemia virus from horses to donkeys.
Archives of virology    July 6, 2016   Volume 161, Issue 10 2667-2672 doi: 10.1007/s00705-016-2951-3
Tang YD, Zhang X, Na L, Wang XF, Fu LH, Zhu CH, Wang X, Zhou JH.Equine infectious anemia virus (EIAV) is a member of the genus Lentivirus of the family Retroviridae. Horses are the most susceptible equids to EIAV infection and are therefore the primary hosts of this virus. In contrast, infected donkeys do not develop clinically active equine infectious anemia (EIA). This phenomenon is similar to what has been observed with HIV-1, which fails to induce AIDS in non-human primates. Interestingly, Shen et al. developed a donkey-tropic pathogenic virus strain (EIAVDV117, DV117) by serially passaging a horse-tropic pathogenic strain, EIAVLN40 (LN40), in donkeys....
Serological and molecular detection of Theileria equi in sport horses of northeastern Brazil.
Comparative immunology, microbiology and infectious diseases    June 23, 2016   Volume 47 72-76 doi: 10.1016/j.cimid.2016.06.004
Ferreira EP, Vidotto O, Almeida JC, Ribeiro LP, Borges MV, Pequeno WH, Stipp DT, de Oliveira CJ, Biondo AW, Vieira TS, Vieira RF.Theileriosis is a worldwide protozoal tick-borne disease caused by Theileria equi, which may produce a variety of clinical signs and turn infected horses into lifetime carriers. This study has aimed to perform a serological and molecular detection of T. equi and associated factors in sports horses from six areas of northeastern Brazil. In overall, 59.6% horses were positive by indirect immunofluorescence assay and 50.4% by polymerase chain reaction. No significant association was found when presence of ticks, age, gender, anemia or total plasma proteins was analyzed with seropositivity and mol...
Evaluation of the Honey-Card Technique for Detection of Transmission of Arboviruses in Florida and Comparison With Sentinel Chicken Seroconversion.
Journal of medical entomology    June 21, 2016   Volume 53, Issue 6 1449-1457 doi: 10.1093/jme/tjw106
Burkett-Cadena ND, Gibson J, Lauth M, Stenn T, Acevedo C, Xue RD, McNelly J, Northey E, Hassan HK, Fulcher A, Bingham AM, van Olphen J, van Olphen A....Zoonotic mosquito-borne viruses, such as the West Nile virus (WNV) and eastern equine encephalitis virus (EEEV), are major public health threats in the United States. Early detection of virus transmission and targeted vector management are critical to protect humans against these pathogens. Sentinel chickens and pool screening of mosquitoes, the most widely used methods of arbovirus early detection, have technical time-lags that compromise their early-detection value. The exploitation of sugar-feeding by trapped mosquitoes for arbovirus surveillance may represent a viable alternative to other ...
Infection with Possible Novel Parapoxvirus in Horse, Finland, 2013.
Emerging infectious diseases    June 18, 2016   Volume 22, Issue 7 1242-1245 doi: 10.3201/eid2207.151636
Airas N, Hautaniemi M, Syrjä P, Knuuttila A, Putkuri N, Coulter L, McInnes CJ, Vapalahti O, Huovilainen A, Kinnunen PM.A horse in Finland exhibited generalized granulomatous inflammation and severe proliferative dermatitis. After euthanization, we detected poxvirus DNA from a skin lesion sample. The virus sequence grouped with parapoxviruses, closely resembling a novel poxvirus detected in humans in the United States after horse contact. Our findings indicate horses may be a reservoir for zoonotic parapoxvirus.
Pathology in Practice.
Journal of the American Veterinary Medical Association    June 17, 2016   Volume 249, Issue 1 59-62 doi: 10.2460/javma.249.1.59
Ernst ME, Weinstein N, Boes KM, Wilson KE, Gilsenan WF.No abstract available
Prevalence and risk factors of Theileria equi infection in horses in Minas Gerais, Brazil.
Veterinary parasitology, regional studies and reports    June 11, 2016   Volume 3-4 18-22 doi: 10.1016/j.vprsr.2016.05.005
Guimarães AM, Bruhn FRP, Ribeiro MJM, Rosa MHF, de Mello Garcia A, da Rocha CMBM, de Assis Rocha I.Theileria equi, a protozoon in the phylum Apicomplexa, is the causative agent of equine theileriosis. The aim of this cross-sectional study was to determine the prevalence of IgG antibodies against T. equi, by using the indirect fluorescent antibody test (IFAT) reaction and correlating the serostatus with some epidemiological variables relating to the way in which Mangalarga Marchador horses are raised in southern Minas Gerais, Brazil. In this study, 506 horses were used, all clinically healthy, on 53 horse farms distributed across 27 municipalities in southern Minas Gerais. The statistical te...
Publication Rate and Evidence-Based Evaluation of Abstracts Presented at the American College of Veterinary Surgeon’s Annual Meeting.
Veterinary surgery : VS    June 7, 2016   Volume 45, Issue 5 679-683 doi: 10.1111/vsu.12489
Torres BT, Dover RK, Sapora JA, Sandberg GS, Budsberg SC.To document the publication rate of abstracts presented at 10 ACVS conferences and report the time required for publication and level of evidence. Methods: Literature review. Methods: All scientific abstracts published in the ACVS proceedings from 2001 to 2010 were reviewed. The level of evidence of each abstract was evaluated and scored (1-4). Publication information was determined after a broad bibliographic search through multiple online databases. Results: The overall publication rate for ACVS abstracts (n=1,395) was 66% and 11% were published before conference presentation. The majority o...
Equine rhinitis B viruses in horse fecal samples from the Middle East.
Virology journal    June 7, 2016   Volume 13 94 doi: 10.1186/s12985-016-0547-x
Woo PC, Lau SK, Choi GK, Huang Y, Wernery R, Joseph S, Wong EY, Elizabeth SK, Patteril NA, Li T, Wernery U, Yuen KY.Among all known picornaviruses, only two species, equine rhinitis A virus and equine rhinitis B virus (ERBV) are known to infect horses, causing respiratory infections. No reports have described the detection of ERBV in fecal samples of horses and no complete genome sequences of ERBV3 are available. Methods: We performed a molecular epidemiology study to detect ERBVs in horses from Dubai and Hong Kong. Complete genome sequencing of the ERBVs as well as viral loads and genome, phylogenetic and evolutionary analysis were performed on the positive samples. Results: ERBV was detected in four (13.8...
Common occurrence of Cryptosporidium hominis in horses and donkeys. Jian F, Liu A, Wang R, Zhang S, Qi M, Zhao W, Shi Y, Wang J, Wei J, Zhang L, Xiao L.Extensive genetic variation is observed within the genus Cryptosporidium and the distribution of Cryptosporidium species/genotypes in humans and animals appears to vary by geography and host species. To better understand the genetic diversity of Cryptosporidium spp. in horses and donkeys, we characterized five horse-derived and 82 donkey-derived Cryptosporidium isolates from five provinces or autonomous regions (Sichuan, Gansu, Henan, Inner Mongolia and Shandong) in China at the species/genotype and subtype levels. Three Cryptosporidium species/genotypes were identified based on the analysis o...
Culex Tarsalis Mosquitoes as Vectors of Highlands J Virus.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    June 1, 2016   Volume 16, Issue 8 558-565 doi: 10.1089/vbz.2015.1907
Borland EM, Ledermann JP, Powers AM.Highlands J virus (HJV) is an alphavirus closely related to western equine encephalitis virus (WEEV) and eastern equine encephalitis virus (EEEV). HJV is an avian pathogen with the potential for disruption of poultry operations, but is not known to cause human or equine disease. HJV has only been identified in the eastern United States and is thought to have a transmission cycle similar to that of EEEV involving Culiseta melanura mosquitoes and birds. However, HJV is more genetically similar to WEEV and it remains unclear if it may be transmitted by Culex species mosquitoes like WEEV. Seven st...
Continuity of care.
The Veterinary record    May 29, 2016   Volume 178, Issue 22 566 doi: 10.1136/vr.i2990
Turner S.No abstract available
Epidemiological and clinical aspects on West Nile virus, a globally emerging pathogen.
Infectious diseases (London, England)    May 20, 2016   Volume 48, Issue 8 571-586 doi: 10.3109/23744235.2016.1164890
David S, Abraham AM.Since the isolation of West Nile virus (WNV) in 1937, in Uganda, it has spread globally, causing significant morbidity and mortality. While birds serve as amplifier hosts, mosquitoes of the Culex genus function as vectors. Humans and horses are dead end hosts. The clinical manifestations of West Nile infection in humans range from asymptomatic illness to West Nile encephalitis. Methods: The laboratory offers an array of tests, the preferred method being detection of RNA and serum IgM for WNV, which, if detected, confirms the clinical diagnosis. Although no definitive antiviral therapy and vacc...
Equine herpes virus type 1 (EHV-1) and 4 (EHV-4) infections in horses and donkeys in northeastern Turkey.
Iranian journal of veterinary research    May 14, 2016   Volume 16, Issue 4 341-344 
Yildirim Y, Yilmaz V, Kirmizigul AH.The herpesviruses infections in equides are caused by five different serotypes of viruses, belonging to family Herpesviridae. The goal of this study was to conduct a seroepidemiological investigation of equine herpesvirus type 1 (EHV-1) and type 4 (EHV-4) in horses and donkeys raised in two provinces and their villages in northeastern Turkey. A total of 666 samples from 423 horses and 243 donkeys that were not immunized against these infections were tested with ELISA. While 52.48% of tested horse sera was found to carry specific antibodies to EHV-1, 83.69% of these serums were found to carry s...
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