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Topic:Infectious Disease

Infectious diseases in horses encompass a range of illnesses caused by bacteria, viruses, fungi, or parasites. These diseases can affect various systems within the equine body, leading to symptoms that range from mild discomfort to severe systemic illness. Common infectious diseases in horses include equine influenza, strangles, equine herpesvirus, and West Nile virus. These diseases can be transmitted through direct contact with infected animals, contaminated surfaces, or vectors such as insects. Understanding the mechanisms of transmission, pathogenesis, and immune response is essential for effective prevention and control. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, diagnosis, treatment, and management of infectious diseases in horses.
Molecular evidence of Anaplasma phagocytophilum and Theileria equi coinfection in horses from Rio de Janeiro, Brazil.
Veterinary and animal science    March 20, 2019   Volume 7 100055 doi: 10.1016/j.vas.2019.100055
Dos Santos TM, Roier ECR, Pires MS, Santos HA, Vilela JAR, Peckle M, Paulino PG, Baldani CD, Massard CL.The present study aims to determine the frequencies of Theileria equi and Anaplasma phagocytophilum antibodies among horses from the state of Rio de Janeiro, Brazil, and to detect the presence of DNA of these pathogens through molecular methods. A total of 98 serum samples of horses from the municipality of Seropedica were tested by indirect immunofluorescence antibody (IFA) to detect anti-A. phagocytophilum and anti-T. equi IgG antibodies. In addition, quantitative real-time PCR (qPCR) was used to detect these pathogens in the DNA extracted from the whole blood and buffy coat of horses. Bivar...
TLR-5 agonist Salmonella abortus equi flagellin FliC enhances FliC-gD-based DNA vaccination against equine herpesvirus 1 infection.
Archives of virology    March 19, 2019   Volume 164, Issue 5 1371-1382 doi: 10.1007/s00705-019-04201-4
Zhao Y, Chang J, Zhang B, Tong P, Wang C, Ran D, Su Y.Equine herpesvirus 1 (EHV-1) induces serious respiratory infections, viral abortion, neurological signs, and neonatal mortality in horses. Despite the use of vaccines, EHV-1 infection also causes a high annual economic burden to the equine industry. The poor immunogenicity of and protection conferred by EHV-1 vaccines are the major factors responsible for the spread of EHV-1 infection. The present study examined the immunogenicity of a novel DNA vaccine co-expressing FliC, a flagellin protein, in Salmonella abortus equi and the gD protein of EHV-1. Mice and horses were immunized intramuscularl...
Toxoplasma gondii Seroprevalence in Horses from Ukraine: an Investigation Using Two Serological Methods.
Acta parasitologica    March 18, 2019   Volume 64, Issue 4 687-692 doi: 10.2478/s11686-019-00040-0
Rissanen K, Galat M, Kovalenko G, Rodnina O, Mikharovskyi G, Must K, Jokelainen P.Horses are recognized as important hosts for the zoonotic parasite Toxoplasma gondii, mainly because meat of infected horses can be a source of human T. gondii infections. However, the baseline knowledge on equine T. gondii infections is limited and lacking from many countries. This seroepidemiological study was set in Ukraine, a country where little is known about T. gondii prevalence in any host species. Methods: We investigated 78 serum samples from horses, collected from Kyiv and Lviv regions of Ukraine, using a commercial enzyme-linked immunosorbent assay (ELISA) and a commercial modified...
Equine disease surveillance: quarterly update.
The Veterinary record    March 16, 2019   Volume 184, Issue 11 338-342 doi: 10.1136/vr.l1187
No abstract available
Surveillance of equine strangles: a new initiative.
The Veterinary record    March 16, 2019   Volume 184, Issue 11 342-344 doi: 10.1136/vr.l1188
from the Animal Health Trust introduces a new project to gather information on cases of strangles in horses throughout the UK.
Middle East respiratory syndrome coronavirus infection in non-camelid domestic mammals.
Emerging microbes & infections    March 15, 2019   Volume 8, Issue 1 103-108 doi: 10.1080/22221751.2018.1560235
Kandeil A, Gomaa M, Shehata M, El-Taweel A, Kayed AE, Abiadh A, Jrijer J, Moatasim Y, Kutkat O, Bagato O, Mahmoud S, Mostafa A, El-Shesheny R....Dromedary camels are natural host of the Middle East respiratory syndrome coronavirus (MERS-CoV). However, there are limited studies of MERS-CoV infection of other domestic mammals exposed to infected dromedaries. We expanded our surveillance among camels in Egypt, Tunisia, and Senegal to include other domestic mammalian species in contact with infected camels. A total of 820 sera and 823 nasal swabs from cattle, sheep, goats, donkeys, buffaloes, mules, and horses were collected. Swabs were tested using RT-PCR and virus RNA-positive samples were genetically sequenced and phylogenetically analy...
First report of antibodies to Neospora spp. in horses from Portugal. Cruz I, Vinhas AR, Dubey JP, Cardoso L, Cotovio M, Lopes AP.Neospora spp. are intracellular protozoa with worldwide distribution and closely related to Toxoplasma gondii, which can infect a variety of mammals including horses. From September 2013 to June 2014, 185 horses from northern, central and southern parts of mainland Portugal were randomly sampled and tested for detection of immunoglobulin (Ig) G antibodies to Neospora spp. using an indirect multi-species enzyme-linked immunosorbent assay (ELISA) commercial test (ID Screen® Neospora caninum Indirect Multi-species; ID.vet Innovative Diagnostics, Grabels, France). Two horses (1.1%; CI: 0.1-3.8%),...
Sarcocystis bertrami in skeletal muscles of donkeys (Equus africanus asinus) from Southern Italy.
Veterinary parasitology, regional studies and reports    March 14, 2019   Volume 16 100283 doi: 10.1016/j.vprsr.2019.100283
Among the protozoa of the genus Sarcocystis (Apicomplexa; Sarcocystidae), Sarcocystis bertrami (syn. Sarcocystis fayeri) is an obligate intracellular parasite of donkeys and horses with worldwide distribution. Here, we report the detection of S. bertrami in naturally infected donkeys from southern Italy and describe their structure by light microscopy (LM) and transmission electron microscopy (TEM). Protozoal cysts were detected both morphologically and molecularly in skeletal muscles of 28.57% (40/140) donkeys. Mature cysts of S. bertrami were found in skeletal muscle measuring 31-102 μm l...
Exogenous Expression of Equine MHC Class I Molecules in Mice Increases Susceptibility to Equine Herpesvirus 1 Pulmonary Infection.
Veterinary pathology    March 13, 2019   Volume 56, Issue 5 703-710 doi: 10.1177/0300985819834616
Minato E, Aoshima K, Kobayashi A, Ohnishi N, Sasaki N, Kimura T.Equine herpesvirus 1 (EHV-1) uses equine major histocompatibility complex class I (MHC class I) as an entry receptor. Exogenous expression of equine MHC class I genes in murine cell lines confers susceptibility to EHV-1 infection. To examine the in vivo role of equine MHC class I as an entry receptor for EHV-1, we generated transgenic (Tg) mice expressing equine MHC class I under the control of the CAG promoter. Equine MHC class I protein was expressed in the liver, spleen, lung, and brain of Tg mice, which was confirmed by Western blot. However, equine MHC class I antigen was only detected in...
Equine Rhinitis A Virus Infection at a Standardbred Training Facility: Incidence, Clinical Signs, and Risk Factors for Clinical Disease.
Frontiers in veterinary science    March 13, 2019   Volume 6 71 doi: 10.3389/fvets.2019.00071
Rossi TM, Moore A, O'Sullivan TL, Greer AL.Respiratory disease is a common morbidity of young racehorses. Infections can lead to compromised welfare, and economic loss. Identification of risk factors for infection through clinical signs monitoring and collection of demographic, serologic, and contact network data can aid in the development of prevention and control strategies. The study objectives were to: (1) describe the transmission and clinical course of infectious respiratory disease in standardbred racehorses in a multi-barn training facility and, (2) identify demographic, serological, and contact network risk factors associated ...
In Vitro Characterization and In Vivo Effectiveness of Ebola Virus Specific Equine Polyclonal F(ab’)2.
The Journal of infectious diseases    March 11, 2019   Volume 220, Issue 1 41-45 doi: 10.1093/infdis/jiz068
Racine T, Denizot M, Pannetier D, Nguyen L, Pasquier A, Raoul H, Saluzzo JF, Kobinger G, Veas F, Herbreteau CH.There is no vaccine or approved therapy against lethal Ebola virus (EBOV). We investigated a proven technology platform to produce polyclonal IgG fragments, F(ab')2, against EBOV. Horses immunized with nanoparticles harboring surface glycoprotein trimers of EBOV-Zaire/Makona produced anti-Ebola IgG polyclonal antibodies with high neutralization activity. Highly purified equine anti-Ebola F(ab')2 showed strong cross-neutralization of 2 Zaire EBOV strains (Gabon 2001 and Makona) and in vivo 3 or 5 daily F(ab')2 intraperitoneal injections provided 100% protection to BALB/c mice against lethal EBO...
Hyalomma rufipes on an untraveled horse: Is this the first evidence of Hyalomma nymphs successfully moulting in the United Kingdom?
Ticks and tick-borne diseases    March 9, 2019   Volume 10, Issue 3 704-708 doi: 10.1016/j.ttbdis.2019.03.003
Hansford KM, Carter D, Gillingham EL, Hernandez-Triana LM, Chamberlain J, Cull B, McGinley L, Paul Phipps L, Medlock JM.During September 2018, a tick was submitted to Public Health England's Tick Surveillance Scheme for identification. The tick was sent from a veterinarian who removed it from a horse in Dorset, England, with no history of overseas travel. The tick was identified as a male Hyalomma rufipes using morphological and molecular methods and then tested for a range of tick-borne pathogens including; Alkhurma virus, Anaplasma, Babesia, Bhanja virus, Crimean-Congo Haemorrhagic fever virus, Rickettsia and Theileria. The tick tested positive for Rickettsia aeschlimannii, a spotted fever group rickettsia li...
Frequency of molecular detection of equine coronavirus in faeces and nasal secretions in 277 horses with acute onset of fever.
The Veterinary record    March 8, 2019   Volume 184, Issue 12 385 doi: 10.1136/vr.104919
Pusterla N, James K, Mapes S, Bain F.Due to the inconsistent development of enteric signs associated with ECoV infection in adult horses, many practitioners collect nasal secretions rather than feces for the molecular diagnostic work-up of such horses. ECoV infection should be considered in horses presenting with acute onset of fever, especially when nasal discharge is absent as one of the cardinal clinical sign. A total of 277 adult horses with acute onset of fever were enrolled in this study. Feces were tested for ECoV and nasal secretions for common respiratory pathogens (equine herpesvirus (EHV)-1, EHV-4, equine influenza vir...
First Report of Acute Bilateral Hyphema in a Theileria equi-Infected Kathiawari Horse.
Journal of equine veterinary science    March 6, 2019   Volume 77 72-74 doi: 10.1016/j.jevs.2019.02.021
Prasad A, Kumar V, Kumar B.Theileria equi is a tickborne hemoparasite that can cause severe illness in equids. In this report, we are describing a condition of acute bilateral hyphema in a 4-month-old Kathiawari filly infected with T. equi. The horse showed clinical signs such as fever, lethargy, icterus, tachycardia, tachypnea, and bilateral hyphema. Laboratory diagnosis revealed anemia and thrombocytopenia. Atypical clinical manifestation of bilateral hyphema, to our knowledge, has never been reported so far in equids infected with T. equi. The diagnosis was confirmed by microscopic examination of Geimsa-stained blo...
Utility of examining fallen stock data to monitor health-related events in equids: Application to an outbreak of West Nile Virus in France in 2015.
Transboundary and emerging diseases    March 6, 2019   Volume 66, Issue 3 1417-1419 doi: 10.1111/tbed.13150
Cazeau G, Leblond A, Sala C, Froustey M, Beck C, Lecollinet S, Tapprest J.Few studies about the use of quantitative equine mortality data for monitoring purposes are available. Our study evaluated the utility of monitoring emerging equine diseases using mortality data collected by rendering plants. We used approaches involving modelling of historical mortality fluctuations and detection algorithm methods to analyse changes in equine mortality in connection with the West Nile Virus (WNV) outbreak that occurred between July and September 2015 along the Mediterranean coast of France. Two weeks after the first equine WNV case was detected by clinical surveillance, detec...
Histopathologic Findings Following Experimental Equine Herpesvirus 1 Infection of Horses.
Frontiers in veterinary science    March 4, 2019   Volume 6 59 doi: 10.3389/fvets.2019.00059
Holz CL, Sledge DG, Kiupel M, Nelli RK, Goehring LS, Soboll Hussey G.Histopathological differences in horses infected with equine herpesvirus type 1 (EHV-1) of differing neuropathogenic potential [wild-type (Ab4), polymerase mutant (Ab4 N752), EHV-1/4 gD mutant (Ab4 gD4)] were evaluated to examine the impact of viral factors on clinical disease, tissue tropism and pathology. Three of 8 Ab4 infected horses developed Equine Herpesvirus Myeloencephalopathy (EHM) requiring euthanasia of 2 horses on day 9 post-infection. None of the other horses showed neurologic signs and all remaining animals were sacrificed 10 weeks post-infection. EHM horses had lymphohistiocyti...
Evaluation of MALDI-TOF MS and an expanded custom reference spectra database for the identification and differentiation of Taylorella equigenitalis and Taylorella asinigenitalis.
Diagnostic microbiology and infectious disease    March 2, 2019   Volume 94, Issue 4 326-330 doi: 10.1016/j.diagmicrobio.2019.02.017
Petry S, Py JS, Wilhelm A, Duquesne F, Bäyon-Auboyer MH, Morvan H, Gassilloud B.Misidentification between Taylorella equigenitalis, the causative agent of contagious equine metritis (CEM), and Taylorella asinigenitalis is observed by the gold standard culture method. The performance of matrix-assisted laser desorption ionization-time-of-flight mass spectrometry (MALDI-TOF MS) for Taylorella species identification was evaluated using 85 T. equigenitalis and 28 T. asinigenitalis strains selected on the basis of multilocus sequence typing data. Seven of the T. equigenitalis and 9 of the T. asinigenitalis strains were used to generate in-house reference spectra to expand ...
Genetic Diversity of Theileria equi From Horses In Different Regions of Brazil Based On the 18S rRNA Gene.
The Journal of parasitology    March 1, 2019   Volume 105, Issue 1 186-194 
Vitari GLV, Costa RL, Abreu APM, Peckle M, Silva CB, Paulino PG, Pires MS, Massard CL, Santos HA.Equine piroplasmosis stands out among the diseases that affect Equidae in Brazil and the world. It is caused by the protozoa Theileria equi and Babesia caballi. The objective of the present study was to carry out the molecular characterization of T. equi using equine blood samples collected in the 5 geographic regions of Brazil. Samples from all over the country were tested for the presence of T. equi by real-time PCR. The 18S rRNA sequences (∼1,600 bp) obtained from 23 samples taken from naturally infected horses were characterized by sequencing and analyzed to identify the genotypes and th...
Comparing the effects of non-homogenous mixing patterns on epidemiological outcomes in equine populations: A mathematical modelling study.
Scientific reports    March 1, 2019   Volume 9, Issue 1 3227 doi: 10.1038/s41598-019-40151-2
Milwid RM, O'Sullivan TL, Poljak Z, Laskowski M, Greer AL.Disease transmission models often assume homogenous mixing. This assumption, however, has the potential to misrepresent the disease dynamics for populations in which contact patterns are non-random. A disease transmission model with an SEIR structure was used to compare the effect of weighted and unweighted empirical equine contact networks to weighted and unweighted theoretical networks generated using random mixing. Equine influenza was used as a case study. Incidence curves generated with the unweighted empirical networks were similar in epidemic duration (5-8 days) and peak incidence (30.8...
Klossiella equi Infecting Kidneys of Ontario Horses: Life Cycle Features and Multilocus Sequence-Based Genotyping Confirm the Genus Klossiella Belongs In the Adeleorina (Apicomplexa: Coccidia).
The Journal of parasitology    February 27, 2019   Volume 105, Issue 1 29-40 
Léveillé AN, Bland SK, Carlton K, Larouche CB, Kenney DG, Brouwer ER, Lillie BN, Barta JR.Species in the genus Klossiella Smith and Johnson, 1902 are unique among the suborder Adeleorina because they are monoxenous in mammals exclusively, whereas all other reported members of the Adeleorina use invertebrates as definitive hosts. Unlike other coccidia, all members of the Adeleorina undergo syzygy, the association of microgamonts and macrogamonts before maturation to gametes and syngamy. After fertilization, many members of the Adeleorina produce thin-walled polysporocystic oocysts. Despite being biologically similar to other members of the Adeleorina, the phylogenetic placement of t...
Conformational plasticity of the VEEV macro domain is important for binding of ADP-ribose.
Journal of structural biology    February 27, 2019   Volume 206, Issue 1 119-127 doi: 10.1016/j.jsb.2019.02.008
Makrynitsa GI, Ntonti D, Marousis KD, Birkou M, Matsoukas MT, Asami S, Bentrop D, Papageorgiou N, Canard B, Coutard B, Spyroulias GA.Venezuelan equine encephalitis virus (VEEV) is a new world alphavirus which can be involved in several central nervous system disorders such as encephalitis and meningitis. The VEEV genome codes for 4 non-structural proteins (nsP), of which nsP3 contains a Macro domain. Macro domains (MD) can be found as stand-alone proteins or embedded within larger proteins in viruses, bacteria and eukaryotes. Their most common feature is the binding of ADP-ribose (ADPr), while several macro domains act as ribosylation writers, erasers or readers. Alphavirus MD erase ribosylation but their precise contributi...
Validation of two multiplex real-time PCR assays based on single nucleotide polymorphisms of the HA1 gene of equine influenza A virus in order to differentiate between clade 1 and clade 2 Florida sublineage isolates. Brister H, Barnum SM, Reedy S, Chambers TM, Pusterla N.We validated 2 multiplex real-time PCR (rtPCR) assays based on single nucleotide polymorphisms (SNPs) of the hemagglutinin-1 ( HA1) gene of H3N8 equine influenza A virus (EIV) to determine clade affiliation of prototype and field isolates. Initial validation of the 2 multiplex rtPCR assays (SNP1 and SNP2) was performed using nucleic acid from 14 EIV Florida sublineage clade 1 and 2 prototype strains. We included in our study previously banked EIV rtPCR-positive nasal secretions from 341 horses collected across the United States in 2012-2017 to determine their clade affiliation. All 14 EIV prot...
Diversity of CTX-M-positive Escherichia coli recovered from animals in Canada.
Veterinary microbiology    February 23, 2019   Volume 231 71-75 doi: 10.1016/j.vetmic.2019.02.031
Cormier A, Zhang PLC, Chalmers G, Weese JS, Deckert A, Mulvey M, McAllister T, Boerlin P.Historically, extended-spectrum cephalosporin resistance in bacteria from animals in Canada has been attributed to the SHV and CMY β-lactamase families. This pattern is beginning to change with the emergence of the bla gene family among Escherichia coli recovered from various animal species. Here we analyze and compare whole genome sequences of bla-positive E. coli isolates (n = 173) from dogs, chicken, swine, horses and beef cattle in Canada. Ten bla variants were identified with bla and bla being identified in most animal species. These variants occurred across many sequence types, sugg...
Evaluation of equine coronavirus fecal shedding among hospitalized horses.
Journal of veterinary internal medicine    February 20, 2019   Volume 33, Issue 2 918-922 doi: 10.1111/jvim.15449
Sanz MG, Kwon S, Pusterla N, Gold JR, Bain F, Evermann J.Currently, diagnosis of equine coronavirus (ECoV) relies on the exclusion of other infectious causes of enteric disease along with molecular detection of ECoV in feces or tissue. Although this approach is complete, it is costly and may not always be achievable. Objective: We hypothesized that the overall fecal shedding of ECoV in hospitalized horses is low. Our objective was to determine whether systemically healthy horses and horses with gastrointestinal disorders shed ECoV in their feces at the time of admission to a referral hospital and after 48 hours of stress associated with hospitaliz...
The equine species as Trojan horse for Borna Disease Virus-1?
The veterinary quarterly    February 19, 2019   Volume 38, Issue 1 126-128 doi: 10.1080/01652176.2019.1551172
van der Kolk JH.No abstract available
Unravelling the first key steps in equine herpesvirus type 5 (EHV5) pathogenesis using ex vivo and in vitro equine models.
Veterinary research    February 18, 2019   Volume 50, Issue 1 13 doi: 10.1186/s13567-019-0630-6
Van Cleemput J, Poelaert KCK, Laval K, Nauwynck HJ.Equine herpesvirus type 5 (EHV5) is a ubiquitous, yet obscure pathogen in the horse population and is commonly associated with fatal equine multinodular pulmonary fibrosis (EMPF). To date, little is known about the precise pathogenesis of EHV5. Here, we evaluated the dynamics of EHV5 infection in representative ex vivo and in vitro equine models, using immunofluorescence staining and virus titration. EHV5 was unable to infect epithelial cells lining the mucosa of nasal and tracheal explants. Similarly, primary equine respiratory epithelial cells (EREC) were not susceptible to EHV5 following in...
Seasonal succession of tabanid species in equine infectious anaemia endemic areas of Italy.
Medical and veterinary entomology    February 18, 2019   Volume 33, Issue 3 431-436 doi: 10.1111/mve.12360
Equine infectious anaemia (EIA) is a disease with an almost worldwide distribution, with several outbreaks having been reported recently in European countries. In Italy, two regions, Lazio and Abruzzo, are considered as endemic areas for this disease. In nature, the EIA virus is mechanically transmitted by biting flies such as tabanids (Diptera: Tabanidae), although few studies have investigated the epidemiological implications. In the present study, several sites characterized by different levels of EIA prevalence were sampled. In sites with high tabanid populations, a seasonal succession of ...
Vets asked to keep swabbing for equine flu.
The Veterinary record    February 16, 2019   Volume 184, Issue 7 204 doi: 10.1136/vr.l715
No abstract available
Development of a rapid and sensitive recombinase polymerase amplification-lateral flow assay for detection of Burkholderia mallei.
Transboundary and emerging diseases    February 15, 2019   Volume 66, Issue 2 1016-1022 doi: 10.1111/tbed.13126
Saxena A, Pal V, Tripathi NK, Goel AK.Burkholderia mallei, a potential biothreat agent is the aetiological agent of glanders, a zoonotic disease primarily affecting equines. B. mallei shares close genetic proximity with B. pseudomallei, the aetiological agent of melioidosis. Hence, molecular detection of B. mallei and its differentiation from B. pseudomallei has always been challenging. Early diagnosis of glanders is critical for timely treatment in humans and disease containment in animals. In this study a recombinase polymerase amplification-lateral flow (RPA-LF) assay has been developed for early and accurate detection of B. ma...
Patterns of Rectal Temperature and Shipping Fever Incidence in Horses Transported Over Long-Distances.
Frontiers in veterinary science    February 14, 2019   Volume 6 27 doi: 10.3389/fvets.2019.00027
Maeda Y, Oikawa MA.Shipping Fever is a transport associated syndrome seen in equids and bovines transported during long distances. The microbial profile and clinical signs vary between species, and in horses it is characterized by pharyngeal commensal bacteria and aerosolized particulate matter invading the lower airway due to compromised mucocillary clearance mechanisms during transports. This leads to pyrexia, pulmonary parenchymal disease, inappetence, and in severe cases pleuropneumonia. It has been shown that the incidence of transport-related pyrexia in horses increases with travel time and distance, howev...
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