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Topic:Virus

The study of viral infections that affect equine species assesses the relationship between viruses and horses. Infections can lead to a range of clinical symptoms and may impact the health and performance of horses. Common equine viruses include Equine Influenza Virus, Equine Herpesvirus, and West Nile Virus, among others. Understanding the mechanisms of viral transmission, pathogenesis, and host immune responses is essential for developing effective prevention and treatment strategies. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, molecular biology, and clinical management of viral infections in horses.
Free-virus and cell-to-cell transmission in models of equine infectious anemia virus infection.
Mathematical biosciences    April 10, 2015   Volume 270, Issue Pt B 237-248 doi: 10.1016/j.mbs.2015.04.001
Allen LJ, Schwartz EJ.Equine infectious anemia virus (EIAV) is a lentivirus in the retrovirus family that infects horses and ponies. Two strains, referred to as the sensitive strain and the resistant strain, have been isolated from an experimentally-infected pony. The sensitive strain is vulnerable to neutralization by antibodies whereas the resistant strain is neutralization-insensitive. The sensitive strain mutates to the resistant strain. EIAV may infect healthy target cells via free virus or alternatively, directly from an infected target cell through cell-to-cell transfer. The proportion of transmission from f...
Serological evidence of equine influenza infections among persons with horse exposure, Iowa.
Journal of clinical virology : the official publication of the Pan American Society for Clinical Virology    April 9, 2015   Volume 67 78-83 doi: 10.1016/j.jcv.2015.04.009
Larson KR, Heil GL, Chambers TM, Capuano A, White SK, Gray GC.Equine influenza virus (EIV) is considered enzootic in North America and experimental studies have documented human EIV infections. Methods: This cross-sectional study examined 94 horse-exposed and 34 non-exposed controls for serological evidence of EIV infection. Sera were evaluated for antibodies against three EIV and two human H3N2 viruses using microneutralization (MN), neuraminidase inhibition (NI), enzyme-linked lectin (ELLA), and hemagglutination inhibition (HI) serological assays. Risk factor analyses were conducted using logistic regression and proportional odds modeling. Results: The...
Gammaherpesvirus infections in equids: a review.
Veterinary medicine (Auckland, N.Z.)    April 1, 2015   Volume 6 91-101 doi: 10.2147/VMRR.S39473
Marenzoni ML, Stefanetti V, Danzetta ML, Timoney PJ.Although the first equine gammaherpesvirus was identified over 50 years ago, the isolation and characterization of other members of this virus group has been relatively recent. Even so, numerous clinical syndromes have been identified in equid species in association with these viruses. Equid gammaherpesviruses are a genetically heterogeneous viral subfamily, the function of which in host immune modulation and disease pathogenesis has not yet been elucidated. While they share similarities with gammaherpesviruses in humans, the role they play in their relationship with the host is the subject of...
Prevalence of equine viral arteritis in Algeria.
Revue scientifique et technique (International Office of Epizootics)    March 31, 2015   Volume 33, Issue 3 967-974 doi: 10.20506/rst.33.3.2334
Laabassi F, Amelot G, Laugier C, Zientara S, Nasri AM, Hans A.In order to determine the prevalence of equine viral arteritis in Algeria, 268 sera from non-vaccinated horses were collected from the western and eastern regions. Serological analysis of the sera, which were collected from 2009 to 2011, was performed using the virus neutralisation test, as described by the World Organisation for Animal Health. Overall, 20 sera (7.46%) were seropositive, 152 (56.71%) were negative and 96 sera (35.82%) were cytotoxic. Equine arteritis virus (EAV) seroprevalence was significantly higher in the western region (Tiaret) than in the eastern region (Barika and El-Eul...
The equine arteritis virus isolate from the 2010 Argentinian outbreak.
Revue scientifique et technique (International Office of Epizootics)    March 31, 2015   Volume 33, Issue 3 937-946 doi: 10.20506/rst.33.3.2331
Metz GE, Serena MS, Panei CJ, Nosetto EO, Echeverria MG.A semen sample from a stallion infected during the 2010 equine arteritis virus (EAV) outbreak was received for viral isolation prior to castration of the animal. The virus was identified using a polyclonal antibody immunofluorescence test. Reverse-transcription polymerase chain reaction (RT-PCR) was used to amplify a region of the GP5 gene with primers GL105F and GL673R. The PCR products were purified and sequences of both strands were determined in a MegaBACE™1000 with inner primers CR2 and EAV32. A phylogenetic dataset was built with the previously reported sequences of five strains isolat...
Identification of Equine Lactadherin-derived Peptides That Inhibit Rotavirus Infection via Integrin Receptor Competition.
The Journal of biological chemistry    March 26, 2015   Volume 290, Issue 19 12403-12414 doi: 10.1074/jbc.M114.620500
Human rotavirus is the leading cause of severe gastroenteritis in infants and children under the age of 5 years in both developed and developing countries. Human lactadherin, a milk fat globule membrane glycoprotein, inhibits human rotavirus infection in vitro, whereas bovine lactadherin is not active. Moreover, it protects breastfed infants against symptomatic rotavirus infections. To explore the potential antiviral activity of lactadherin sourced by equines, we undertook a proteomic analysis of milk fat globule membrane proteins from donkey milk and elucidated its amino acid sequence. Alignm...
Proteomic alteration of equine monocyte-derived macrophages infected with equine infectious anemia virus.
Proteomics    March 21, 2015   Volume 15, Issue 11 1843-1858 doi: 10.1002/pmic.201400279
Du C, Liu HF, Lin YZ, Wang XF, Ma J, Li YJ, Wang X, Zhou JH.Similar to the well-studied viruses human immunodeficiency virus (HIV)-1 and simian immunodeficiency virus (SIV), equine infectious anemia virus (EIAV) is another member of the Lentivirus genus in the family Retroviridae. Previous studies revealed that interactions between EIAV and the host resulted in viral evolution in pathogenicity and immunogenicity, as well as adaptation to the host. Proteomic analysis has been performed to examine changes in protein expression and/or modification in host cells infected with viruses and has revealed useful information for virus-host interactions. In this ...
Occurrence of West Nile virus antibodies in wild birds, horses, and humans in Poland.
BioMed research international    March 19, 2015   Volume 2015 234181 doi: 10.1155/2015/234181
Niczyporuk JS, Samorek-Salamonowicz E, Lecollinet S, Pancewicz SA, Kozdruń W, Czekaj H.Serum samples of 474 wild birds, 378 horses, and 42 humans with meningitis and lymphocytic meningitis were collected between 2010 and 2014 from different areas of Poland. West Nile virus (WNV) antibodies were detected using competition enzyme linked immunosorbent assays: ELISA-1 ID Screen West Nile Competition, IDvet, ELISA-2 ID Screen West Nile IgM Capture, and ELISA-3 Ingezim West Nile Compac. The antibodies were found in 63 (13.29%) out of 474 wild bird serum samples and in one (0.26%) out of 378 horse serum samples. Fourteen (33.33%) out of 42 sera from patients were positive against WNV a...
Using epidemics to map H3 equine influenza virus determinants of antigenicity.
Virology    March 19, 2015   Volume 481 187-198 doi: 10.1016/j.virol.2015.02.027
Woodward A, Rash AS, Medcalf E, Bryant NA, Elton DM.Equine influenza is a major cause of respiratory infections in horses and causes widespread epidemics, despite the availability of commercial vaccines. Antigenic drift within the haemagglutinin (HA) glycoprotein is thought to play a part in vaccination breakdown. Here, we carried out a detailed investigation of the 1989 UK outbreak, using reverse genetics and site-directed mutagenesis, to determine the individual contribution of amino acid substitutions within HA. Mutations at positions 159, 189 and 227 all altered antigenicity, as measured by haemagglutination-inhibition assays. We also compa...
Genetic evolution of equine influenza strains isolated in France from 2005 to 2010.
Equine veterinary journal    March 13, 2015   Volume 47, Issue 2 207-211 doi: 10.1111/evj.12244
Legrand LJ, Pitel PH, Cullinane AA, Fortier GD, Pronost SL.REASON FOR PERFORMING THIS STUDY: Equine influenza virus (EIV) is considered the most economically important equine respiratory pathogen worldwide. The H3N8 subtype, responsible for all outbreaks of equine influenza globally, evolves perpetually. Mutations in the genome of these viruses have the potential to modify their antigenic properties and recognition by pre-existing antibodies. Objective: The aim of this study was to determine the genetic evolution of EIV strains in France and to compare it with the evolution of strains isolated globally. Analysis of the sequence data was performed to i...
Eastern equine encephalitis incubation time periods of 5 and 8 days.
The Pediatric infectious disease journal    March 12, 2015   Volume 34, Issue 4 459-460 doi: 10.1097/INF.0000000000000590
Sherwood JA, Oliver J.No abstract available
Solution structure and functional studies of the highly potent equine antimicrobial peptide DEFA1.
Biochemical and biophysical research communications    March 11, 2015   Volume 459, Issue 4 668-672 doi: 10.1016/j.bbrc.2015.02.168
Michalek M, Jung S, Shomali MR, Cauchard S, Sönnichsen FD, Grötzinger J.Defensins are small effector molecules of the innate immune system that are present in almost all organisms including plants and animals. These peptides possess antimicrobial activity against a broad range of microbes including bacteria, fungi and viruses and act as endogenous antibiotics. α-Defensins are a subfamily of the defensin family and their expression is limited to specific tissues. Equine DEFA1 is an enteric α-defensin exclusively secreted by Paneth cells and shows an activity against a broad spectrum of microbes, including typical pathogens of the horse such as Rhodococcus equi, v...
Molecular identification of Cryptosporidium spp. and Giardia duodenalis in grazing horses from Xinjiang, China.
Veterinary parasitology    March 6, 2015   Volume 209, Issue 3-4 169-172 doi: 10.1016/j.vetpar.2015.02.030
Qi M, Zhou H, Wang H, Wang R, Xiao L, Arrowood MJ, Li J, Zhang L.A total of 262 fecal specimens collected from grazing horses at five locations in Xinjiang, China were examined by PCR for Cryptosporidium spp. and Giardia duodenalis. The Cryptosporidium and G. duodenalis infection rates were 2.7% and 1.5%, respectively. Seven Cryptosporidium-positive specimens were found in foals (16.3%), and four G. duodenalis-positive specimens were found in mares (2.5%). Sequence analyses of 18S rRNA and gp60 genes revealed that seven animals were positive for the subtype VIaA15G4 of Cryptosporidium horse genotype. G. duodenalis assemblages A and B were identified by mole...
The efficacy of ELISA commercial kits for the screening of equine infectious anemia virus infection.
Revista Argentina de microbiologia    February 28, 2015   Volume 47, Issue 1 25-28 doi: 10.1016/j.ram.2014.12.001
Alvarez I, Cipolini F, Wigdorovitz A, Trono K, Barrandeguy ME.The most used and reliable indicator of Equine infectious anemia virus (EIAV) infection is the detection of its specific antibodies in horse serum. In the present study, the performance of two commercial ELISA tests for the detection of EIAV antibodies as well as the potential advantages of their use as an EIAV infection screening tool were evaluated in 302 horse serum samples. Both ELISA assays showed 100% diagnostic sensitivity, and 92.3-94.3% diagnostic specificity. Discordant results were analyzed by immunoblot. The results showed that both ELISA tests are very efficient at detecting EIAV ...
Whole-genome sequence analysis of G3 and G14 equine group A rotaviruses isolated in the late 1990s and 2009-2010.
Archives of virology    February 25, 2015   Volume 160, Issue 5 1171-1179 doi: 10.1007/s00705-015-2374-6
Nemoto M, Nagai M, Tsunemitsu H, Omatsu T, Furuya T, Shirai J, Kondo T, Fujii Y, Todaka R, Katayama K, Mizutani T.Equine group A rotavirus (RVA) G3P[12] and G14P[12] strains cause gastroenteritis in foals worldwide. Both of these strains have been co-circulating in Japan since G14P[12] strains emerged in the late 1990s. Although it is important to comprehensively understand the evolution of RVA strains, whole-genome sequence data on recent equine RVA strains in Japan are lacking. Therefore, in this study, whole-genome analysis of 23 equine RVA isolates from the late 1990s and 2009-2010 and the vaccine strain RVA/Horse-tc/JPN/HO-5/1982/G3P[12] (HO-5) was performed. The G3 strains, including strain HO-5, sh...
High genetic diversity of equine infectious anaemia virus strains from Slovenia revealed upon phylogenetic analysis of the p15 gag gene region.
Equine veterinary journal    February 25, 2015   Volume 48, Issue 2 205-210 doi: 10.1111/evj.12404
Kuhar U, Malovrh T.The equine infectious anaemia virus (EIAV), which belongs to the Retroviridae family, infects equids almost worldwide. Every year, sporadic EIAV cases are detected in Slovenia. Objective: To characterise the Slovenian EIAV strains in the p15 gag gene region phylogenetically in order to compare the Slovenian EIAV strains with EIAV strains from abroad, especially with the recently published European strains. Methods: Cross-sectional study using material derived from post mortem examination. Methods: In total, 29 EIAV serologically positive horses from 18 different farms were examined in this stu...
A case of Murray Valley encephalitis in a 2-year-old Australian Stock Horse in south-east Queensland.
Australian veterinary journal    February 25, 2015   Volume 93, Issue 3 53-57 doi: 10.1111/avj.12294
Barton AJ, Prow NA, Hall RA, Kidd L, Bielefeldt-Ohmann H.This report summarises the findings from a case of naturally-occurring Murray Valley encephalitis in a 2-year-old filly presenting with acute onset of depression and weakness. Serum samples tested at the onset of clinical signs were negative for Hendra and Kunjin virus antibodies, but positive for Murray Valley encephalitis virus (MVEV) using IgM-capture ELISA (1 : 300 dilution). A virus neutralisation assay performed 4 weeks later confirmed a titre of 1 : 160. Sera collected in the weeks preceding neurological signs returned a negative titre for MVEV 2 weeks prior followed by a titre ...
Experimental transmission of equine hepacivirus in horses as a model for hepatitis C virus.
Hepatology (Baltimore, Md.)    February 24, 2015   Volume 61, Issue 5 1533-1546 doi: 10.1002/hep.27689
Ramsay JD, Evanoff R, Wilkinson TE, Divers TJ, Knowles DP, Mealey RH.Equine hepacivirus (EHCV; nonprimate hepacivirus) is a hepatotropic member of the Flaviviridae family that infects horses. Although EHCV is the closest known relative to hepatitis C virus (HCV), its complete replication kinetics in vivo have not been described, and direct evidence that it causes hepatitis has been lacking. In this study, we detected EHCV in 2 horses that developed post-transfusion hepatitis. Plasma and serum from these horses were used to experimentally transmit EHCV to 4 young adult Arabian horses, two 1-month-old foals (1 Arabian and 1 Arabian-pony cross), and 2 foals (1 Ara...
West Nile Virus Infection in Horses: Detection by Immunohistochemistry, In Situ Hybridization, and ELISA.
Veterinary pathology    February 12, 2015   Volume 52, Issue 6 1073-1076 doi: 10.1177/0300985815570067
Toplu N, Oğuzoğlu TÇ, Ural K, Albayrak H, Ozan E, Ertürk A, Epikmen ET.This study describes the clinicopathologic findings in naturally occurring West Nile virus (WNV) infection in horses. WNV was diagnosed in a foal by immunohistochemical and in situ hybridization methods, and the presence of WNV antibodies was detected in 5 other horses with clinical signs suggestive of WNV infection. At necropsy of the foal, lymph nodes were edematous and enlarged, and the intestines showed diffuse congestion and focal hemorrhages. The most significant histologic lesions in this case were nonsuppurative meningoencephalomyelitis, particularly in the brainstem and spinal cord. I...
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...
Freedom from equine infectious anaemia virus infection in Spanish Purebred horses.
Veterinary record open    February 7, 2015   Volume 2, Issue 1 e000074 doi: 10.1136/vetreco-2014-000074
Cruz F, Fores P, Ireland J, Moreno MA, Newton R.No cases of equine infectious anaemia (EIA) have been reported in Spain since 1983. Factors that could increase the risk of reintroducing equine infectious anaemia virus (EIAV) into Spain include the recent occurrence of the disease in Europe and the absence of compulsory serological testing before importation into Spain. Objective: Given the importance of the Spanish Purebred (SP) horse breeding industry in Spain, the aim of this cross-sectional study was to provide evidence of freedom from EIAV in SP stud farms in Central Spain. Methods: Serum samples from 555 SP horses, collected between Se...
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
Response to letter from Dr Freeman.
Equine veterinary journal    February 4, 2015   Volume 47, Issue 2 250 doi: 10.1111/evj.12407
Naylor R, Knowles E, Wilford S, Linnenkohl W, Taylor A, Mair T, Johns I.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...
Characterization of nonprimate hepacivirus and construction of a functional molecular clone.
Proceedings of the National Academy of Sciences of the United States of America    February 2, 2015   Volume 112, Issue 7 2192-2197 doi: 10.1073/pnas.1500265112
Scheel TK, Kapoor A, Nishiuchi E, Brock KV, Yu Y, Andrus L, Gu M, Renshaw RW, Dubovi EJ, McDonough SP, Van de Walle GR, Lipkin WI, Divers TJ....Nonprimate hepacivirus (NPHV) is the closest known relative of hepatitis C virus (HCV) and its study could enrich our understanding of HCV evolution, immunity, and pathogenesis. High seropositivity is found in horses worldwide with ∼ 3% viremic. NPHV natural history and molecular virology remain largely unexplored, however. Here, we show that NPHV, like HCV, can cause persistent infection for over a decade, with high titers and negative strand RNA in the liver. NPHV is a near-universal contaminant of commercial horse sera for cell culture. The complete NPHV 3'-UTR was determined and consists...
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...
Update on viral diseases of the equine respiratory tract.
The Veterinary clinics of North America. Equine practice    January 31, 2015   Volume 31, Issue 1 91-104 doi: 10.1016/j.cveq.2014.11.007
Gilkerson JR, Bailey KE, Diaz-Méndez A, Hartley CA.Many viral agents have been associated with respiratory disease of the horse. The most important viral causes of respiratory disease in horses are equine influenza and the equine alphaherpesviruses. Agents such as equine viral arteritis virus, African horse sickness virus, and Hendra virus establish systemic infections. Clinical signs of disease resulting from infection with these agents can manifest as respiratory disease, but the respiratory tract is not the major body system affected by these viruses. Treatment of viral respiratory disease is generally limited to supportive therapies, where...
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.
Virological and serological investigation of Equid herpesvirus 1 infection in New Zealand.
Veterinary microbiology    January 24, 2015   Volume 176, Issue 3-4 219-228 doi: 10.1016/j.vetmic.2015.01.016
Dunowska M, Gopakumar G, Perrott MR, Kendall AT, Waropastrakul S, Hartley CA, Carslake HB.Infection with equid herpesvirus 1 (EHV-1) may be asymptomatic, or may result in respiratory disease, abortion, neonatal death, or neurological disease. The aim of this study was to estimate the prevalence of EHV-1 infection, including differentiation between genotypes with aspartic acid (D) and asparagine (N) at position 752 of the DNA polymerase sequence, within a selected population of New Zealand horses. The second aim was to determine the predictive value of serology for detection of latently infected horses. Retropharyngeal lymph nodes (RLN) and trigeminal ganglia (TG) were dissected fro...
The innate immune response of equine bronchial epithelial cells is altered by training.
Veterinary research    January 17, 2015   Volume 46, Issue 1 3 doi: 10.1186/s13567-014-0126-3
Frellstedt L, Gosset P, Kervoaze G, Hans A, Desmet C, Pirottin D, Bureau F, Lekeux P, Art T.Respiratory diseases, including inflammatory airway disease (IAD), viral and bacterial infections, are common problems in exercising horses. The airway epithelium constitutes a major physical barrier against airborne infections and plays an essential role in the lung innate immune response mainly through toll-like receptor (TLR) activation. The aim of this study was to develop a model for the culture of equine bronchial epithelial cells (EBEC) in vitro and to explore EBEC innate immune responses in trained horses. Bronchial epithelial biopsies were taken from 6 adult horses during lower airway...
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