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Topic:Disease Outbreaks

Disease outbreaks in horses refer to the occurrence and spread of infectious diseases within equine populations. These outbreaks can be caused by various pathogens, including bacteria, viruses, and parasites, and can lead to significant health issues in affected horses. Common diseases that may result in outbreaks include equine influenza, equine herpesvirus, strangles, and equine infectious anemia. The transmission of these diseases can occur through direct contact, environmental exposure, or vectors such as insects. Disease outbreaks can have substantial impacts on horse health, welfare, and the equine industry as a whole. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, transmission dynamics, and management strategies associated with disease outbreaks in equine populations.
Notes from the Field: Fatal Infection Associated with Equine Exposure – King County, Washington, 2016.
MMWR. Morbidity and mortality weekly report    August 5, 2016   Volume 65, Issue 30 788 doi: 10.15585/mmwr.mm6530a5
Kawakami V, Rietberg K, Lipton B, Eckmann K, Watkins M, Oltean H, Kay M, Rothschild C, Kobayashi M, Van Beneden C, Duchin J.On March 17, 2016, Public Health-Seattle & King County in Washington was notified of two persons who received a diagnosis of Streptococcus equi subspecies zooepidemicus (S. zooepidemicus) infections. S. zooepidemicus is a zoonotic pathogen that rarely causes human illness and is usually associated with consuming unpasteurized dairy products or with direct horse contact (1). In horses, S. zooepidemicus is a commensal bacterium that can cause respiratory, wound, and uterine infections (2). The health department investigated to determine the magnitude of the outbreak, identify risk factors, and o...
Pigment retinopathy in warmblood horses with equine degenerative myeloencephalopathy and equine motor neuron disease.
Veterinary ophthalmology    August 5, 2016   Volume 20, Issue 4 304-309 doi: 10.1111/vop.12417
Finno CJ, Kaese HJ, Miller AD, Gianino G, Divers T, Valberg SJ.A pigment retinopathy has been reported in adult horses with equine motor neuron disease (EMND) arising from chronic α-tocopherol (α-TP) deficiency. A pigment retinopathy has not been identified in horses with neuroaxonal dystrophy/equine degenerative myeloencephalopathy (NAD/EDM) that affects genetically susceptible young horses with α-TP deficiency. The objective of this report is to describe, for the first time, a pigment retinopathy in a family of α-TP-deficient Warmbloods (WB) with clinically apparent NAD/EDM or EMND. Unassigned: Twenty-five WB horses from one farm underwent complete ...
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...
Influenza virus vaccine for neglected hosts: horses and dogs.
Clinical and experimental vaccine research    July 29, 2016   Volume 5, Issue 2 117-124 doi: 10.7774/cevr.2016.5.2.117
Na W, Yeom M, Yuk H, Moon H, Kang B, Song D.This study provides information regarding vaccine research and the epidemiology of influenza virus in neglected hosts (horses and dogs). Equine influenza virus (EIV) causes a highly contagious disease in horses and other equids, and outbreaks have occurred worldwide. EIV has resulted in costly damage to the horse industry and has the ability of cross the host species barrier from horses to dogs. Canine influenza is a virus of equine or avian origin and infects companion animals that live in close contact with humans; this results in possible exposure to the seasonal epizootic influenza virus. ...
Full-Genome Sequence of a Neuroinvasive West Nile Virus Lineage 2 Strain from a Fatal Horse Infection in South Africa.
Genome announcements    July 28, 2016   Volume 4, Issue 4 e00740-16 doi: 10.1128/genomeA.00740-16
Mentoor JL, Lubisi AB, Gerdes T, Human S, Williams JH, Venter M.We report here the complete genome sequence of a lineage 2 West Nile virus (WNV) strain that resulted in fatal neurological disease in a horse in South Africa. Several recent reports exist of neurological disease associated with lineage 2 WNV in humans and horses in South Africa and Europe; however, there are a lack of sequencing data from recent fatal cases in Southern Africa, where these strains likely originate. A better understanding of the genetic composition of highly neuroinvasive lineage 2 strains may facilitate the identification of putative genetic factors associated with increased v...
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...
African horse sickness: The potential for an outbreak in disease-free regions and current disease control and elimination techniques.
Equine veterinary journal    July 21, 2016   Volume 48, Issue 5 659-669 doi: 10.1111/evj.12600
Robin M, Page P, Archer D, Baylis M.African horse sickness (AHS) is an arboviral disease of equids transmitted by Culicoides biting midges. The virus is endemic in parts of sub-Saharan Africa and official AHS disease-free status can be obtained from the World Organization for Animal Health on fulfilment of a number of criteria. AHS is associated with case fatality rates of up to 95%, making an outbreak among naïve horses both a welfare and economic disaster. The worldwide distributions of similar vector-borne diseases (particularly bluetongue disease of ruminants) are changing rapidly, probably due to a combination of globalisa...
Interaction of Trypanosoma evansi with the plasminogen-plasmin system.
Veterinary parasitology    July 14, 2016   Volume 226 189-197 doi: 10.1016/j.vetpar.2016.07.016
Acosta H, Rondón-Mercado R, Avilán L, Concepción JL.Trypanosoma evansi is a widely-distributed haemoflagellated parasite of veterinary importance that infects a variety of mammals including horses, mules, camels, buffalos, cattle and deer. It is the causal agent of a trypanosomiasis known as Surra which produces epidemics of great economic importance in Africa, Asia and South America. The main pathology includes an enlarged spleen with hypertrophy of lymphoid follicles, congested lungs, neuronal degeneration and meningoencephalitis, where migration of the parasites from the blood to the tissues is essential. Most cells, including pathogenic cel...
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...
Twenty years of Hendra virus: laboratory submission trends and risk factors for infection in horses.
Epidemiology and infection    June 30, 2016   Volume 144, Issue 15 3176-3183 doi: 10.1017/S0950268816001400
Smith CS, McLAUGHLIN A, Field HE, Edson D, Mayer D, Ossedryver S, Barrett J, Waltisbuhl D.Hendra virus (HeV) was first described in 1994 in an outbreak of acute and highly lethal disease in horses and humans in Australia. Equine cases continue to be diagnosed periodically, yet the predisposing factors for infection remain unclear. We undertook an analysis of equine submissions tested for HeV by the Queensland government veterinary reference laboratory over a 20-year period to identify and investigate any patterns. We found a marked increase in testing from July 2008, primarily reflecting a broadening of the HeV clinical case definition. Peaks in submissions for testing, and visitat...
Estimating the incidence of equine viral arteritis and the sensitivity of its surveillance in the French breeding stock.
Veterinary microbiology    June 22, 2016   Volume 192 34-42 doi: 10.1016/j.vetmic.2016.06.010
Amat JP, Vergne T, Tapprest J, Ferry B, Hans A, Hendrikx P, Dufour B, Leblond A.Equine viral arteritis (EVA) may have serious economic impact on the equine industry. For this reason, it is monitored in many countries, especially in breeding stock, to avoid its spread during breeding activities. In France, surveillance is mainly based on serological tests, since mares are not vaccinated, but difficulties in interpreting certain series of results may impair the estimation of the number of outbreaks. In this study, we propose specific rules for identifying seroconversion in order to estimate the number of outbreaks that were detected by the breeding stock surveillance compon...
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
A 2015 outbreak of Getah virus infection occurring among Japanese racehorses sequentially to an outbreak in 2014 at the same site.
BMC veterinary research    June 10, 2016   Volume 12 98 doi: 10.1186/s12917-016-0741-5
Bannai H, Ochi A, Nemoto M, Tsujimura K, Yamanaka T, Kondo T.As we reported previously, Getah virus infection occurred in horses at the Miho training center of the Japan Racing Association in 2014. This was the first outbreak after a 31-year absence in Japan. Here, we report a recurrent outbreak of Getah virus infection in 2015, sequential to the 2014 one at the same site, and we summarize its epizootiological aspects to estimate the risk of further outbreaks in upcoming years. Results: The outbreak occurred from mid-August to late October 2015, affecting 30 racehorses with a prevalence of 1.5% of the whole population (1992 horses). Twenty-seven (90.0%)...
The Use of a Recombinant Canarypox-Based Equine Influenza Vaccine during the 2007 Australian Outbreak: A Systematic Review and Summary.
Pathogens (Basel, Switzerland)    June 10, 2016   Volume 5, Issue 2 42 doi: 10.3390/pathogens5020042
Paillot R, El-Hage CM.In 2007, Australia experienced the most extensive equine influenza outbreak observed in recent years. Extraordinary measures were rapidly implemented in order to control and prevent the spread of this highly contagious disease. The control strategy involved stringent movement restriction and disease surveillance, seconded by emergency post-outbreak vaccination strategies. Sixteen months after the first case and 12 months following the last reported case, Australia regained its equine influenza-free OIE status. This systematic review reports and summarises information relating to the implementa...
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...
Aneurysm of the cranial mesenteric artery as a site of carriage of Salmonella enterica subsp. enterica serovar Abortusequi in the horse. Niwa H, Hobo S, Kinoshita Y, Muranaka M, Ochi A, Ueno T, Oku K, Hariu K, Katayama Y.Salmonella enterica subsp. enterica serovar Abortusequi is a pathogen restricted to horses. Our investigation targeted 4 draft horses (9-10 months old) kept on a Japanese farm that had suffered an outbreak of S. Abortusequi abortion. The 4 horses were suspected to be carriers of the bacterium owing to their high agglutination titers (≥1:2,560) in tube agglutination testing. The owners' on-farm observations confirmed that the horses had no apparent abnormalities, and S. Abortusequi was not isolated from their blood, rectal swabs, or sternal bone marrow fluid at antemortem investigation. Howev...
Confirmation of Elsey virus infection in a Queensland horse with mild neurologic signs. Agnihotri K, Pease B, Oakey J, Campbell G.In 2011, a 2-year-old horse in northern Queensland, Australia, was reported to have developed mild neurologic signs, and a blood sample was submitted for laboratory investigation. Virus isolation was performed using the blood sample, and an orbivirus was isolated. This was confirmed to be a strain of Elsey virus (ELSV) after transmission electron microscopy and nucleotide sequencing. The nucleotide sequence was compared with those in GenBank, and had 100% identity with ELSV previously reported from the Northern Territory, Australia. ELSV is taxonomically closely related to Peruvian horse sickn...
Continuity of care.
The Veterinary record    May 29, 2016   Volume 178, Issue 22 566 doi: 10.1136/vr.i2990
Turner S.No abstract available
Development of an equine coronavirus-specific enzyme-linked immunosorbent assay to determine serologic responses in naturally infected horses. Kooijman LJ, Mapes SM, Pusterla N.Equine coronavirus (EqCoV) infection has been documented in most reports through quantitative qPCR analysis of feces and viral genome sequencing. Although qPCR is used to detect antigen during the acute disease phase, there is no equine-specific antibody test available to study EqCoV seroprevalence in various horse populations. We developed an enzyme-linked immunosorbent assay (ELISA) targeting antibodies to the spike (S) protein of EqCoV and validated its use, using acute and convalescent sera from 83 adult horses involved in 6 outbreaks. The EqCoV S protein-based ELISA was able to reliably d...
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...
First Description of Hepacivirus and Pegivirus Infection in Domestic Horses in China: A Study in Guangdong Province, Heilongjiang Province and Hong Kong District.
PloS one    May 16, 2016   Volume 11, Issue 5 e0155662 doi: 10.1371/journal.pone.0155662
Lu G, Sun L, Xu T, He D, Wang Z, Ou S, Jia K, Yuan L, Li S.Since 2012, three viruses, known as equine hepacivirus (EqHV), equine pegivirus (EPgV) and Theiler's disease-associated virus (TDAV), have been discovered in equines. Given that these viruses are the newest members of the Flaviviridae family, genomic information concerning circulating EqHV, EPgV and TDAV strains around the world is limited. To date, no genetic surveillance studies have been performed on these three viruses in the equine population of China. Here, a total of 177 serum samples were collected from equines across China between 2014 and 2015. Using PCR, we detected viral RNA in the...
Responses to Commentary on Paper: “Controlling the misuse of cobalt in horses”.
Drug testing and analysis    May 11, 2016   Volume 8, Issue 8 882-884 doi: 10.1002/dta.1982
Ho EN, Curl P, Sykes D, Wan TS.No abstract available
Serosurvey Reveals Exposure to West Nile Virus in Asymptomatic Horse Populations in Central Spain Prior to Recent Disease Foci.
Transboundary and emerging diseases    May 8, 2016   Volume 64, Issue 5 1387-1392 doi: 10.1111/tbed.12510
Abad-Cobo A, Llorente F, Barbero MDC, Cruz-López F, Forés P, Jiménez-Clavero MÁ.West Nile fever/encephalitis (WNF) is an infectious disease affecting horses, birds and humans, with a cycle involving birds as natural reservoirs and mosquitoes as transmission vectors. It is a notifiable disease, re-emerging in Europe. In Spain, it first appeared in horses in the south (Andalusia) in 2010, where outbreaks occur every year since. However, in 2014, an outbreak was declared in horses in central Spain, approximately 200 km away from the closest foci in Andalusia. Before that, evidence of West Nile virus (WNV) circulation in central Spain had been obtained only from wildlife, bu...
Revelation of Influencing Factors in Overall Codon Usage Bias of Equine Influenza Viruses.
PloS one    April 27, 2016   Volume 11, Issue 4 e0154376 doi: 10.1371/journal.pone.0154376
Kumar N, Bera BC, Greenbaum BD, Bhatia S, Sood R, Selvaraj P, Anand T, Tripathi BN, Virmani N.Equine influenza viruses (EIVs) of H3N8 subtype are culprits of severe acute respiratory infections in horses, and are still responsible for significant outbreaks worldwide. Adaptability of influenza viruses to a particular host is significantly influenced by their codon usage preference, due to an absolute dependence on the host cellular machinery for their replication. In the present study, we analyzed genome-wide codon usage patterns in 92 EIV strains, including both H3N8 and H7N7 subtypes by computing several codon usage indices and applying multivariate statistical methods. Relative synon...
Antimicrobial resistance trends among Salmonella isolates obtained from horses in the northeastern United States (2001-2013).
American journal of veterinary research    April 26, 2016   Volume 77, Issue 5 505-513 doi: 10.2460/ajvr.77.5.505
Cummings KJ, Perkins GA, Khatibzadeh SM, Warnick LD, Aprea VA, Altier C.OBJECTIVE To describe the antimicrobial resistance patterns of Salmonella isolates obtained from horses in the northeastern United States and to identify trends in resistance to select antimicrobials over time. SAMPLE 462 Salmonella isolates from horses. PROCEDURES Retrospective data were collected for all Salmonella isolates obtained from equine specimens that were submitted to the Cornell University Animal Health Diagnostic Center between January 1, 2001, and December 31, 2013. Temporal trends in the prevalence of resistant Salmonella isolates were investigated for each of 13 antimicrobials ...
The appropriate antiparasitic treatment: Coping with emerging threats from old adversaries.
Equine veterinary journal    April 12, 2016   Volume 48, Issue 3 374-375 doi: 10.1111/evj.12550
Nielsen MK, von Samson-Himmelstjerna G, Pfister K, Reinemeyer CR, Molento MB, Peregrine AS, Hodgkinson JE, Jacobsen S, Kaplan RM, Matthews JB.No abstract available
Evolution of equine infectious anaemia in naturally infected mules with different serological reactivity patterns prior and after immune suppression.
Veterinary microbiology    April 6, 2016   Volume 189 15-23 doi: 10.1016/j.vetmic.2016.04.003
Information on equine infectious anaemia (EIA) in mules, including those with an equivocal reaction in agar gel immunodiffusion test (AGIDT), is scarce. For this, a study was conducted to evaluate the clinical, viral loads and pathological findings of two groups of naturally infected asymptomatic mules, respectively with a negative/equivocal and positive AGIDT reactivity, which were subjected to pharmacological immune suppression (IS). A non-infected control was included in the study that remained negative during the observation period. Throughout the whole study, even repeated episodes of rec...
First evidence of West Nile virus lineage 2 circulation in Turkey.
Veterinaria italiana    April 2, 2016   Volume 52, Issue 1 77-81 doi: 10.12834/VetIt.838.4169.1
Monaco F, Çizmeci Ş, Polci A, Portanti O, Barut F, Deniz A, Cosseddu GM, Pişkin Ç, Savini G.In August 2014, a West Nile virus (WNV) strain belonging to lineage 2 was detected in the brain tissues of a 9 year old mare euthanised after showing severe clinical signs in Bursa region, Turkey. Phylogenetic analyses of 290 bp of NS3 coding region clustered the Turkish strain together with the 2010-2012 Greek isolates. Either IgG and IgM or IgG only WNV antibodies were detected in 2 and 11 horses, respectively, which were in the outbreak surrounding. No WNV RNA was detected in pools of 50 individuals of Culex pipiens (n = 2), Ochlerotatus caspius (n = 2), and Culex theileri (n = 1) collected...
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