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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.
Western blot assay using recombinant p26 antigen for detection of equine infectious anemia virus-specific antibodies.
Clinical and vaccine immunology : CVI    October 24, 2007   Volume 14, Issue 12 1646-1648 doi: 10.1128/CVI.00293-07
Alvarez I, Gutierrez G, Ostlund E, Barrandeguy M, Trono K.We analyzed the performance of a single-band Western blot (WB) test using recombinant p26 (rp26) capsid protein of equine infectious anemia virus. According to the results obtained, the rp26 WB test is a reliable confirmatory diagnostic tool to be used as a complementary test after an enzyme-linked immunosorbent assay or agar gel immunodiffusion test yielding doubtful results.
Complete nucleotide sequence of Middelburg virus, isolated from the spleen of a horse with severe clinical disease in Zimbabwe.
The Journal of general virology    October 20, 2007   Volume 88, Issue Pt 11 3078-3088 doi: 10.1099/vir.0.83076-0
Attoui H, Sailleau C, Mohd Jaafar F, Belhouchet M, Biagini P, Cantaloube JF, de Micco P, Mertens P, Zientara S.The complete nucleotide sequence of Middelburg virus (MIDV) was determined for strain MIDV-857 from Zimbabwe. The isolation of this virus in 1993 from a horse that died showing severe clinical signs represents the first indication that MIDV can cause severe disease in equids. Full-length cDNA copies of the viral genome were successfully synthesized by an innovative RT-PCR amplification approach using an 'anchor primer' combined with the SMART methodology described previously for the synthesis of full-length cDNA copies from genome segments of dsRNA viruses. The MIDV-857 genome is 11,674 nt, ex...
Suspension of bone marrow-derived undifferentiated mesenchymal stromal cells for repair of superficial digital flexor tendon in race horses.
Tissue engineering    October 9, 2007   Volume 13, Issue 12 2949-2955 doi: 10.1089/ten.2007.0108
Pacini S, Spinabella S, Trombi L, Fazzi R, Galimberti S, Dini F, Carlucci F, Petrini M.It has been proven that mesenchymal stromal cells (MSCs) can differentiate into tenocytes. Attempts to repair tendon lesions have been performed, mainly using scaffold carriers in experimental settings. In this article, we describe the clinical use of undifferentiated MSCs in racehorses. Significant clinical recovery was achieved in 9 of 11 horses evaluated using ultrasound analysis and their ability to return to racing. Our results show that the suspension of a small number of undifferentiated MSCs may be sufficient to repair damaged tendons without the use of scaffold support. Ultrasound sca...
Establishment of a novel equine cell line for isolation and propagation of equine herpesviruses.
The Journal of veterinary medical science    October 6, 2007   Volume 69, Issue 9 989-991 doi: 10.1292/jvms.69.989
Maeda K, Yasumoto S, Tsuruda A, Andoh K, Kai K, Otoi T, Matsumura T.In the present study, an equine-derived cell line was established by transfecting primary fetal horse kidney (FHK) cells with expression plasmid encoding simian virus 40 (SV40) large T antigen and then cloning them by limiting dilution. The cloned cell line, named FHK-Tcl3, grew well and could be propagated over 30 times by splitting them 1:3. Equine herpesvirus (EHV)-1 and EHV-4 replicated well in FHK-Tcl3. EHV-2 and EHV-4 were isolated from samples collected from horses in the field using FHK-Tcl3, and EHV-3 also propagated in FHK-Tcl3. These results indicated that this novel cell line, FHK-...
Equine influenza vaccine containing older H3N8 strains offers protection against A/eq/South Africa/4/03 (H3N8) strain in a short-term vaccine efficacy study.
Equine veterinary journal    October 4, 2007   Volume 39, Issue 5 446-450 doi: 10.2746/042516407x180327
Daly JM, Sindle T, Tearle J, Barquero N, Newton JR, Corning S.Surveillance of equine influenza viruses has suggested that strains included in currently licensed vaccines are a poor match for those predominantly circulating in the field. Objective: To assess the ability of Duvaxyn IE-T Plus to provide cross protection against the newly evolved South Africa/4/03 (H3N8) strain of equine influenza virus. Methods: The vaccine efficacy was evaluated by challenge infection with influenza strain A/eq/South Africa/4/03 (H3N8) 2 weeks after a primary course of 2 vaccinations with Duvaxyn IE-T Plus given at a 4-week interval. The outcome of challenge in vaccinated ...
Evaluation of the safety, immunogenicity and pharmacokinetics of equine anti-SARS-CoV F(ab’)(2) in macaque.
International immunopharmacology    October 4, 2007   Volume 7, Issue 13 1834-1840 doi: 10.1016/j.intimp.2007.09.011
Xu Y, Jia Z, Zhou L, Wang L, Li J, Liang Y, Zhao T, Ni B, Wu Y.To warrant potential clinical testing, the equine anti-SARS-CoV F(ab')(2) requires evaluation in as many animal models as possible and a safety test in a primate model. In this study, we evaluated the pharmacokinetics, tolerance and immunity of this kind of antibody in macaques and rats. Results showed that the F(ab')(2) fragments had a normal metabolism in injected animals. The general physiological indexes did not differ between animals injected with anti-SARS-CoV F(ab')(2) or saline. However, a mild inflammatory response in local injection site and a moderate immune response against this an...
Analysis of Venezuelan equine encephalitis virus capsid protein function in the inhibition of cellular transcription.
Journal of virology    October 3, 2007   Volume 81, Issue 24 13552-13565 doi: 10.1128/JVI.01576-07
Garmashova N, Atasheva S, Kang W, Weaver SC, Frolova E, Frolov I.The encephalitogenic New World alphaviruses, including Venezuelan (VEEV), eastern (EEEV), and western equine encephalitis viruses, constitute a continuing public health threat in the United States. They circulate in Central, South, and North America and have the ability to cause fatal disease in humans and in horses and other domestic animals. We recently demonstrated that these viruses have developed the ability to interfere with cellular transcription and use it as a means of downregulating a cellular antiviral response. The results of the present study suggest that the N-terminal, approxima...
Genetic characterization of equine influenza viruses isolated in Italy between 1999 and 2005.
Virus research    September 24, 2007   Volume 131, Issue 1 100-105 doi: 10.1016/j.virusres.2007.08.001
Damiani AM, Scicluna MT, Ciabatti I, Cardeti G, Sala M, Vulcano G, Cordioli P, Martella V, Amaddeo D, Autorino GL.During local respiratory disease outbreaks, occurring in 2003 and 2004 in horse training stables within race-tracks in Rome, and on a stud horse farm in Bari in 2005, four strains of equine influenza (EI) virus were isolated. All outbreaks occurred in flu-vaccinated horses. Here, we are reporting the results of the genetic characterization of these isolates, together with that of another EI virus strain isolated in 1999 from a dead foal presenting pulmonary lesions. Alignment and phylogenetic analyses were carried out using the haemagglutinin amino acid sequences. The Rome and Bari isolates we...
Detection of antibodies to equine arteritis virus in horse sera using recombinant chimaeric N/G(L) protein.
The Veterinary record    September 11, 2007   Volume 161, Issue 10 352-354 doi: 10.1136/vr.161.10.352
Turan N, Ekici H, Yilmaz H, Kondo T, Hasoksuz M, Sato I, Tuchiya K, Fukunaga Y.No abstract available
New assays to measure equine influenza virus-specific Type 1 immunity in horses.
Vaccine    September 4, 2007   Volume 25, Issue 42 7385-7398 doi: 10.1016/j.vaccine.2007.08.033
Paillot R, Kydd JH, MacRae S, Minke JM, Hannant D, Daly JM.Equine influenza virus (EIV) is a leading cause of respiratory disease in horses. Equine influenza infection induces a long-term immunity to re-infection. Recent strategies of vaccination aim to mimic this immunity by stimulating both antibody and cellular immune responses. Cell-mediated immunity (CMI) to influenza is well defined in man, but little has been done to characterise the responses in the horse. Additionally, the development of reliable assays for the measurement of equine CMI has lagged behind serological methods and vaccine development. In this study, two methods of measuring EIV-...
Gag genetic heterogeneity of equine infectious anemia virus (EIAV) in naturally infected horses in Canada.
Virus research    September 4, 2007   Volume 129, Issue 2 228-235 doi: 10.1016/j.virusres.2007.07.013
Nagarajan MM, Simard C.Gag genetic heterogeneity of equine infectious anemia virus (EIAV) variants in naturally infected horses in Canada was studied since very limited information is available on the variability of EIAV Gag sequences in public database. A phylogenetic analysis based on 414nts of Gag gene sequences amplified by a nested polymerase chain reaction (PCR) revealed the distinct divergence of these variants compared to other published strains in a corresponding region. Significant predicted amino acid sequence variations were also identified in an immunorelevant region within this fragment which correspon...
Systematic epitope analysis of the p26 EIAV core protein.
Journal of molecular recognition : JMR    August 21, 2007   Volume 20, Issue 4 227-237 doi: 10.1002/jmr.825
Soutullo A, Santi MN, Perin JC, Beltramini LM, Borel IM, Frank R, Tonarelli GG.The major core protein of equine infectious anemia virus (EIAV), p26, is one of the primary immunogenic structural proteins during a persistent infection of horses and is highly conserved among antigenically variants of viral isolates. In order to investigate its immune profile in more detail for a better diagnostic, an epitope mapping was carried out by means of two libraries of overlapping peptide fragments prepared by simultaneous and parallel SPPS on derivatized cellulose membranes (SPOT synthesis). Polyclonal equine sera from infected horses were used for the biological assay. Particularl...
Serosurvey of West Nile virus in equids and bovids in Spain.
The Veterinary record    August 19, 2007   Volume 161, Issue 6 212 doi: 10.1136/vr.161.6.212
Jiménez-Clavero MA, Tejedor CG, Rojo G, Soriguer R, Figuerola J.No abstract available
Sequence analysis of the equid herpesvirus 2 chemokine receptor homologues E1, ORF74 and E6 demonstrates high sequence divergence between field isolates.
The Journal of general virology    August 19, 2007   Volume 88, Issue Pt 9 2450-2462 doi: 10.1099/vir.0.82942-0
Sharp EL, Farrell HE, Borchers K, Holmes EC, Davis-Poynter NJ.Equid herpesvirus 2 (EHV-2), in common with other members of the subfamily Gammaherpesvirinae, encodes homologues of cellular seven-transmembrane receptors (7TMR), namely open reading frames (ORFs) E1, 74 and E6, which each show some similarity to cellular chemokine receptors. Whereas ORF74 and E6 are members of gammaherpesvirus-conserved 7TMR gene families, E1 is currently unique to EHV-2. To investigate their genetic variability, EHV-2 7TMRs from a panel of equine gammaherpesvirus isolates were sequenced. A region of gB was sequenced to provide comparative sequence data. Phylogenetic analysi...
Pro-inflammatory and antiviral cytokine expression in vaccinated and unvaccinated horses exposed to equine influenza virus.
Vaccine    August 17, 2007   Volume 25, Issue 41 7056-7064 doi: 10.1016/j.vaccine.2007.07.059
Quinlivan M, Nelly M, Prendergast M, Breathnach C, Horohov D, Arkins S, Chiang YW, Chu HJ, Ng T, Cullinane A.Most studies of the cytokine response to influenza virus infection have been carried out in human, porcine and murine models, however the data available on equine cytokines is limited. An experimental challenge study was undertaken in unvaccinated naïve horses and horses vaccinated with a commercial inactivated influenza vaccine. The humoral antibody response to vaccination and virus challenge was measured by single radial haemolysis (SRH) assay and clinical signs of influenza and viral shedding were monitored post-challenge. Levels of three equine pro-inflammatory cytokines interleukin (IL)-...
Boosting in equine influenza vaccination schedules: timing and time for a re-evaluation of requirements of national and international authorities.
Veterinary journal (London, England : 1997)    August 16, 2007   Volume 174, Issue 3 449-450 doi: 10.1016/j.tvjl.2007.06.012
Wood JL, Mumford JA, Mair TS, Slater J.No abstract available
Comparative efficacies of three commercially available vaccines against West Nile Virus (WNV) in a short-duration challenge trial involving an equine WNV encephalitis model.
Clinical and vaccine immunology : CVI    August 8, 2007   Volume 14, Issue 11 1465-1471 doi: 10.1128/CVI.00249-07
Seino KK, Long MT, Gibbs EP, Bowen RA, Beachboard SE, Humphrey PP, Dixon MA, Bourgeois MA.We used a severe challenge model that produces clinical West Nile virus (WNV) disease to test the efficacy of three commercially available equine WNV vaccines in horses. Twenty-four healthy, WNV-seronegative horses of varying ages and genders were placed, in random and blind manner, into three trial groups consisting of eight horses each; two horses in each group received (i) an inactivated WNV vaccine (K-WN), (ii) a modified-live vaccine (CP-WN) containing the WNV prM and E proteins expressed by a canarypox vector, (iii) a live-chimera vaccine (WN-FV) containing WNV prM and E proteins express...
Genetic variation and phylogenetic analysis of 22 French isolates of equine arteritis virus.
Archives of virology    August 6, 2007   Volume 152, Issue 11 1977-1994 doi: 10.1007/s00705-007-1040-z
Zhang J, Miszczak F, Pronost S, Fortier C, Balasuriya UB, Zientara S, Fortier G, Timoney PJ.Genetic variation and phylogenetic relationships among 22 French isolates of equine arteritis virus (EAV) obtained over four breeding seasons (2001-2004) were determined by sequencing open reading frames (ORFs) 2a-7. The ORFs 2a-7 of 22 isolates differed from the prototype virulent Bucyrus strain of EAV by between 14 (99.5% identity) and 328 (88.7% identity) nucleotides, and differed from each other by between 0 (100% identity) and 346 (88.1% identity) nucleotides, confirming genetic diversity among EAV strains circulating in France. Phylogenetic analysis based on the partial ORF5 sequences (n...
An investigation of equine infectious anaemia infection in the central Anatolia region of Turkey.
Journal of the South African Veterinary Association    August 2, 2007   Volume 78, Issue 1 12-14 doi: 10.4102/jsava.v78i1.279
Yapklç O, Yavru S, Kale M, Bulut O, Simşek A, Sahna KC.In this study, 162 horses, 80 donkeys and 51 mule serum samples were collected in Konya city. Additionally, 64 horse serum samples from Ankara and 49 samples from Kayseri city were included in the study. A total of 406 serum samples were examined by agar gel immunodiffusion (AGID) and enzyme-linked immunosorbent assay (ELISA) for antibody to equine infectious anaemia virus (EIAV) and no positive result was detected.
Canine influenza virus: cross-species transmission from horses.
The Veterinary record    July 31, 2007   Volume 161, Issue 4 142-143 doi: 10.1136/vr.161.4.142-a
Newton R, Cooke A, Elton D, Bryant N, Rash A, Bowman S, Blunden T, Miller J, Hammond TA, Camm I, Day M.No abstract available
Failure of low-dose recombinant human IL-2 to support the survival of virus-specific CTL clones infused into severe combined immunodeficient foals: lack of correlation between in vitro activity and in vivo efficacy.
Veterinary immunology and immunopathology    July 25, 2007   Volume 121, Issue 1-2 8-22 doi: 10.1016/j.vetimm.2007.07.011
Mealey RH, Littke MH, Leib SR, Davis WC, McGuire TC.Although CTL are important for control of lentiviruses, including equine infectious anemia virus (EIAV), it is not known if CTL can limit lentiviral replication in the absence of CD4 help and neutralizing antibody. Adoptive transfer of EIAV-specific CTL clones into severe combined immunodeficient (SCID) foals could resolve this issue, but it is not known whether exogenous IL-2 administration is sufficient to support the engraftment and proliferation of CTL clones infused into immunodeficient horses. To address this question we adoptively transferred EIAV Rev-specific CTL clones into four EIAV-...
Bovine papillomavirus load and mRNA expression, cell proliferation and p53 expression in four clinical types of equine sarcoid.
The Journal of general virology    July 12, 2007   Volume 88, Issue Pt 8 2155-2161 doi: 10.1099/vir.0.82876-0
Bogaert L, Van Poucke M, De Baere C, Dewulf J, Peelman L, Ducatelle R, Gasthuys F, Martens A.Equine sarcoids, the most common skin tumours in horses, are induced by bovine papillomavirus (BPV). Their clinical appearance varies from small stable patches to aggressively growing masses. Differences in BPV load and mRNA expression and Ki67 and p53 immunostaining among four clinical types (fibroblastic, occult, nodular and verrucous sarcoids) were evaluated to test the hypothesis that the clinical behaviour of equine sarcoids correlates with BPV activity. Viral load and expression of the BPV E2, E5, E6 and E7 genes were determined using quantitative real-time PCR. The proliferative fractio...
A novel horse alpha-defensin: gene transcription, recombinant expression and characterization of the structure and function.
The Biochemical journal    July 11, 2007   Volume 407, Issue 2 267-276 doi: 10.1042/BJ20070747
Bruhn O, Regenhard P, Michalek M, Paul S, Gelhaus C, Jung S, Thaller G, Podschun R, Leippe M, Grötzinger J, Kalm E.Defensins are a predominant class of antimicrobial peptides, which act as endogenous antibiotics. Defensins are classified into three distinct sub-families: theta-, beta-, and alpha-defensins. Synthesis of alpha-defensin has been confirmed only in primates and glires to date and is presumably unique for a few tissues, including neutrophils and Paneth cells of the small intestine. Antimicrobial activities of these peptides were shown against a wide variety of microbes including bacteria, fungi, viruses and protozoan parasites. In the present study, we report the characterization of the equine a...
Epidemiological perspectives on Hendra virus infection in horses and flying foxes.
Australian veterinary journal    July 7, 2007   Volume 85, Issue 7 268-270 doi: 10.1111/j.1751-0813.2007.00170.x
Field HE, Breed AC, Shield J, Hedlefs RM, Pittard K, Pott B, Summers PM.No abstract available
Diversity in Indian equine rotaviruses: identification of genotype G10,P6[1] and G1 strains and a new VP7 genotype (G16) strain in specimens from diarrheic foals in India.
Journal of clinical microbiology    July 7, 2007   Volume 45, Issue 7 2354 doi: 10.1128/JCM.00900-07
Gulati BR, Deepa R, Singh BK, Rao CD.No abstract available
Detection of equine herpesviruses in aborted foetuses by consensus PCR.
Veterinary microbiology    June 28, 2007   Volume 126, Issue 1-3 20-29 doi: 10.1016/j.vetmic.2007.06.019
Léon A, Fortier G, Fortier C, Freymuth F, Tapprest J, Leclercq R, Pronost S.The major role of EHV-1 in equine abortion is widely reported in the literature but the contribution of EHV-2, EHV-3, EHV-4 or EHV-5 remains less well documented. The objective of this study is to evaluate the contribution of these five different EHVs to equine abortion in a variety of biological tissues using a consensus polymerase chain reaction (PCR). The test was validated for specificity and sensitivity in horses before screening specimens from 407 foetuses, stillbirths and premature foals collected over a 2.5-year interval. Positive results obtained with this assay were compared to other...
Epitope-blocking enzyme-linked immunosorbent assay to differentiate west nile virus from Japanese encephalitis virus infections in equine sera.
Clinical and vaccine immunology : CVI    June 27, 2007   Volume 14, Issue 8 1024-1031 doi: 10.1128/CVI.00051-07
Kitai Y, Shoda M, Kondo T, Konishi E.West Nile virus (WNV) is now widely distributed worldwide, except in most areas of Asia where Japanese encephalitis virus (JEV) is distributed. Considering the movement and migration of reservoir birds, there is concern that WNV may be introduced in Asian countries. Although manuals and guidelines for serological tests have been created in Japan in preparedness for the introduction of WNV, differential diagnosis between WNV and JEV may be complicated by antigenic cross-reactivities between these flaviviruses. Here, we generated a monoclonal antibody specific for the nonstructural protein 1 (NS...
[Presence of west Nile virus in northeast Mexico].
Salud publica de Mexico    June 26, 2007   Volume 49, Issue 3 210-217 doi: 10.1590/s0036-36342007000300006
Fernández-Salas I, de Lourdes Garza-Rodríguez M, Beaty BJ, Jiménez JR, Rivas-Estilla AM.To investigate the presence of WNV in birds, horses and humans in northeast Mexico. Methods: Serum samples from 33 birds, 24 horses and 237 humans were screened by ELISA for Anti-WNV antibodies. Human serum samples were also screened for WNV RNA using an RT-PCR assay. Results: Positive sera were found in three birds and 15 horses. Forty percent of the human serum samples were positive for IgG antibodies and 0% for IgM antibodies and viral RNA. Conclusions: The results of this study show that WNV is present in northeast Mexico and it is a new emergent infectious agent that represents a challeng...
[Diversity and dynamics of bacteriophages in horse feces].
Mikrobiologiia    June 23, 2007   Volume 76, Issue 2 271-278 
Kulikova EE, Isaeva AS, Rotkina AS, Manykin AA, Letarov AV.The complex cellulolytic microbial community of the horse intestines is a convenient model for studying the ecology of bacteriophages in natural habitats. Unlike the rumen of the ruminants, this community of the equine large intestine is not subjected to digestion. The inner conditions of the horse gut are much more stable in comparison to other mammals, due to the fact that the horse diet remains almost unchanged and the intervals between food consumption and defecation are much shorter than the whole digestive cycle. The results of preliminary analysis of the structure and dynamics of the vi...
Equine influenza in England.
The Veterinary record    June 19, 2007   Volume 160, Issue 24 851 doi: 10.1136/vr.160.24.851
Newton R, Elton D, Bryant N, Rash A, Hammond TA.No abstract available
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