Analyze Diet

Topic:Virology

Virology in horses encompasses the study of viruses that affect equine species, including their biology, transmission, and impact on horse health. This field investigates viral pathogens that can lead to a range of diseases, from respiratory infections to neurological disorders. Common viruses affecting horses include equine influenza virus, equine herpesvirus, and West Nile virus. Understanding these viruses involves examining their genetic makeup, modes of transmission, and interactions with the equine immune system. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, and control measures of viral infections in horses.
Extended phylogeny of equine arteritis virus: division into new subgroups.
Journal of veterinary medicine. B, Infectious diseases and veterinary public health    April 22, 2006   Volume 53, Issue 2 55-58 doi: 10.1111/j.1439-0450.2006.00916.x
Mittelholzer C, Stadejek T, Johansson I, Baule C, Ciabatti I, Hannant D, Paton D, Autorino GL, Nowotny N, Belák S.To determine a conclusive phylogeny, equine arteritis viruses from Italy, Austria, Hungary, Sweden, South Africa and other parts of the world were analysed by reverse-transcription polymerase chain reaction amplification and direct sequencing. The nucleotide sequences corresponding to the variable part of the large glycoprotein GP5, specified by open reading frame 5, were compared and added to a previously published phylogenetic tree in which a clear division between 'European' and 'American' type viruses had been established. Adding the sequences determined in this study and new sequences ret...
Antibody and IFN-gamma responses induced by a recombinant canarypox vaccine and challenge infection with equine influenza virus.
Veterinary immunology and immunopathology    April 18, 2006   Volume 112, Issue 3-4 225-233 doi: 10.1016/j.vetimm.2006.02.007
Paillot R, Kydd JH, Sindle T, Hannant D, Edlund Toulemonde C, Audonnet JC, Minke JM, Daly JM.In horses, equine influenza virus (EIV) is a leading cause of respiratory disease. Conventional inactivated vaccines induce a short-lived immune response. By comparison, natural infection confers a long-term immunity to re-infection. An aim of new equine influenza vaccines is to more closely mimic natural infection in order to achieve a better quality of immunity. A new live recombinant vaccine derived from the canarypox virus vector and expressing haemagglutinin genes of EIV (subtype H3N8) has been developed. Stimulation of the immune system was studied after immunisation with this canarypox-...
Isolation and genetic analysis of Japanese encephalitis virus from a diseased horse in Japan.
The Journal of veterinary medical science    April 7, 2006   Volume 68, Issue 3 293-295 doi: 10.1292/jvms.68.293
Yamanaka T, Tsujimura K, Kondo T, Yasuda W, Okada A, Noda K, Okumura T, Matsumura T.Japanese encephalitis (JE) developed in an unvaccinated half-bred horse kept in Tottori Prefecture, Japan. The animal showed ataxia with pyrexia and low appetite, and ultimately died. A viral strain was isolated from the cerebrum of the horse and was identified as JE virus (JEV) by RT-PCR using JEV specific primers. The isolated JEV was classified into genotype I by nucleotide sequence analysis of the viral envelope gene. We believe that this is the first report of the genotype I strain being isolated from a horse.
Equine viral arteritis.
The Veterinary record    April 4, 2006   Volume 158, Issue 13 455 doi: 10.1136/vr.158.13.455-a
Campbell ML.No abstract available
Use of DNA and recombinant canarypox viral (ALVAC) vectors for equine herpes virus vaccination.
Veterinary immunology and immunopathology    March 31, 2006   Volume 111, Issue 1-2 47-57 doi: 10.1016/j.vetimm.2006.01.008
Minke JM, Fischer L, Baudu P, Guigal PM, Sindle T, Mumford JA, Audonnet JC.In this study, experimental canarypox virus (ALVAC) and plasmid DNA recombinant vaccines expressing the gB, gC and gD glycoproteins of EHV-1 were assessed for their ability to protect conventional ponies against a respiratory challenge with EHV-1. In addition, potential means of enhancing serological responses in horses to ALVAC and DNA vaccination were explored. These included co-administration of the antigen with conventional adjuvants, complexation with DMRIE-DOPE and co-expression of the antigen along with equine GM-CSF. Groups of EHV primed ponies were vaccinated twice intra-muscularly wi...
Analysis of equid herpesvirus 1 strain variation reveals a point mutation of the DNA polymerase strongly associated with neuropathogenic versus nonneuropathogenic disease outbreaks.
Journal of virology    March 31, 2006   Volume 80, Issue 8 4047-4060 doi: 10.1128/JVI.80.8.4047-4060.2006
Nugent J, Birch-Machin I, Smith KC, Mumford JA, Swann Z, Newton JR, Bowden RJ, Allen GP, Davis-Poynter N.Equid herpesvirus 1 (EHV-1) can cause a wide spectrum of diseases ranging from inapparent respiratory infection to the induction of abortion and, in extreme cases, neurological disease resulting in paralysis and ultimately death. It has been suggested that distinct strains of EHV-1 that differ in pathogenic capacity circulate in the field. In order to investigate this hypothesis, it was necessary to identify genetic markers that allow subgroups of related strains to be identified. We have determined all of the genetic differences between a neuropathogenic strain (Ab4) and a nonneuropathogenic ...
Antibody and cellular immune responses following DNA vaccination and EHV-1 infection of ponies.
Veterinary immunology and immunopathology    March 23, 2006   Volume 111, Issue 1-2 81-95 doi: 10.1016/j.vetimm.2006.01.011
Soboll G, Hussey SB, Whalley JM, Allen GP, Koen MT, Santucci N, Fraser DG, Macklin MD, Swain WF, Lunn DP.Equine herpesvirus-1 (EHV-1) is the cause of serious disease with high economic impact on the horse industry, as outbreaks of EHV-1 disease occur every year despite the frequent use of vaccines. Cytotoxic T-lymphocytes (CTLs) are important for protection from primary and reactivating latent EHV-1 infection. DNA vaccination is a powerful technique for stimulating CTLs, and the aim of this study was to assess antibody and cellular immune responses and protection resulting from DNA vaccination of ponies with combinations of EHV-1 genes. Fifteen ponies were divided into three groups of five ponies...
Inoculation of mares and very young foals with EHV-1 glycoproteins D and B reduces virus shedding following respiratory challenge with EHV-1.
Veterinary immunology and immunopathology    February 28, 2006   Volume 111, Issue 1-2 97-108 doi: 10.1016/j.vetimm.2006.01.012
Foote CE, Raidal SL, Pecenpetelovska G, Wellington JE, Whalley JM.We have previously demonstrated that intramuscular inoculation of EHV-1 glycoprotein D (gD) and glycoprotein B (gB) produced by a recombinant baculovirus and formulated with the adjuvant Iscomatrix elicited virus-neutralizing antibody and gD- and gB-specific ELISA antibody in adult horses. In this study, 14 mares and their very young foals were inoculated with a combination of baculovirus-expressed EHV-1 gD and EHV-1 gB (EHV-1 gDBr) and challenged with a respiratory strain of EHV-1. Following experimental challenge, inoculated mares and foals shed virus in nasal secretions on significantly few...
The S2 accessory gene of equine infectious anemia virus is essential for expression of disease in ponies.
Virology    February 28, 2006   Volume 349, Issue 1 22-30 doi: 10.1016/j.virol.2005.12.041
Fagerness AJ, Flaherty MT, Perry ST, Jia B, Payne SL, Fuller FJ.Equine infectious anemia virus (EIAV) is a macrophage-tropic lentivirus that persistently infects horses and causes a disease that is characterized by periodic episodes of fever, thrombocytopenia, and viremia. EIAV encodes only four regulatory/accessory genes, (tat, rev, ttm, and S2) and is the least genetically complex of all known lentiviruses. We sought to determine the role of the EIAV S2 accessory gene of EIAV by introducing mutations that would prevent S2 expression on the p19/wenv17 infectious molecular clone. Virus derived from the p19/wenv17 molecular clone is highly virulent and rout...
Mucosal and systemic adjuvant activity of alphavirus replicon particles.
Proceedings of the National Academy of Sciences of the United States of America    February 27, 2006   Volume 103, Issue 10 3722-3727 doi: 10.1073/pnas.0600287103
Thompson JM, Whitmore AC, Konopka JL, Collier ML, Richmond EM, Davis NL, Staats HF, Johnston RE.Vaccination represents the most effective control measure in the fight against infectious diseases. Local mucosal immune responses are critical for protection from, and resolution of, infection by numerous mucosal pathogens. Antigen processing across mucosal surfaces is the natural route by which mucosal immunity is generated, as peripheral antigen delivery typically fails to induce mucosal immune responses. However, we demonstrate in this article that mucosal immune responses are evident at multiple mucosal surfaces after parenteral delivery of Venezuelan equine encephalitis virus replicon pa...
Combined amino acid mutations occurring in the envelope closely correlate with pathogenicity of EIAV.
Archives of virology    February 26, 2006   Volume 151, Issue 7 1387-1403 doi: 10.1007/s00705-005-0718-3
Liang H, He X, Shen RX, Shen T, Tong X, Ma Y, Xiang WH, Zhang XY, Shao YM.The Chinese equine infectious anemia virus (EIAV) donkey-leukocyte attenuated vaccine (DLV) provides a unique natural model system to study the attenuation mechanism and immunological control of lentivirus replication. Critical consensus mutations were identified between virulent Chinese EIAV strains and vaccine strains. Based on a full-length infectious clone of EIAV vaccine strain pLGFD3, two molecular clones, mFD5-4-7 and mFD7-2-11, were successfully constructed, in which 4 and 6 critical consensus mutations in the env gene of the vaccine strain were point-mutated to the wild-type sequence,...
Postepizootic persistence of Venezuelan equine encephalitis virus, Venezuela.
Emerging infectious diseases    February 21, 2006   Volume 11, Issue 12 1907-1915 doi: 10.3201/eid1112.050533
Navarro JC, Medina G, Vasquez C, Coffey LL, Wang E, Suárez A, Biord H, Salas M, Weaver SC.Five years after the apparent end of the major 1995 Venezuelan equine encephalitis (VEE) epizootic/epidemic, focal outbreaks of equine encephalitis occurred in Carabobo and Barinas States of western Venezuela. Virus isolates from horses in each location were nearly identical in sequence to 1995 isolates, which suggests natural persistence of subtype IC VEE virus (VEEV) strains in a genetically stable mode. Serologic evidence indicated that additional outbreaks occurred in Barinas State in 2003. Field studies identified known Culex (Melanoconion) spp. vectors and reservoir hosts of enzootic VEE...
Equine herpesvirus 1 glycoprotein D expressed in E. coli provides partial protection against equine herpesvirus infection in mice and elicits virus-neutralizing antibodies in the horse.
Veterinary immunology and immunopathology    February 13, 2006   Volume 111, Issue 1-2 59-66 doi: 10.1016/j.vetimm.2006.01.009
Weerasinghe CU, Learmonth GS, Gilkerson JR, Foote CE, Wellington JE, Whalley JM.The envelope glycoprotein D of EHV-1 (EHV-1 gD) is essential for virus infectivity and entry of virus into cells and is a potent inducer of virus-neutralizing antibody. In this study, truncated EHV-1 gD (gDt) was expressed with a C-terminal hexahistidine tag in E. coli using a pET vector. Western blot analysis using an anti-gD monoclonal antibody demonstrated the presence of gDt bands at 37.5, 36, 29.5 and 28 kDa. The immunogenicity and protective efficacy of partially purified gDt was compared with gD expressed in insect cells by a recombinant baculovirus (Bac gD) using a BALB/c mouse model o...
Immune escape of equine herpesvirus 1 and other herpesviruses of veterinary importance.
Veterinary immunology and immunopathology    February 10, 2006   Volume 111, Issue 1-2 31-40 doi: 10.1016/j.vetimm.2006.01.006
van der Meulen KM, Favoreel HW, Pensaert MB, Nauwynck HJ.Equine herpesvirus (EHV)-1 is a pathogen of horses, well known for its ability to induce abortion and nervous system disorders. Clinical signs may occur despite the presence of a virus-specific immune response in the horse. The current review will summarize the research, on how, EHV-1-infected cells can hide from recognition by the immune system. Research findings on immune evasion of EHV-1 will be compared with those of other herpesviruses of veterinary importance.
[West Nile virus infection: serological investigation among horses in France and in Africa].
Medecine tropicale : revue du Corps de sante colonial    February 10, 2006   Volume 65, Issue 5 439-443 
Cabre O, Durand JP, Prangé A, Gomez J, Maurizi L, Tolou H, Davoust B.This study was carried out in 2003 to detected serological evidence of West Nile virus infection in 190 Army horses kept nearby French troops stationed in Southeast France and in Africa (Chad, Côte d'Ivoire and Senegal). Both IgG and IgM antibodies were searched for using an ELISA assay. Specifiity of IgG antibodies was determined by western blot and plaque reduction seroneutraization. Finding showed that 79% of the Army horses (n=96) tested in Africa presented specific IgG antibodies. All horses that were seropositive for IgG were seronegative for IgM. None of the Army horses (n=94) tested i...
Equine herpesvirus type 1 modified live virus vaccines: quo vaditis?
Expert review of vaccines    February 3, 2006   Volume 5, Issue 1 119-131 doi: 10.1586/14760584.5.1.119
Rosas CT, Goodman LB, von Einem J, Osterrieder N.Infections of horses with equine herpesvirus type 1 (EHV-1) have garnered new attention over the last few years. Devastating outbreaks occurring worldwide, primarily of the neurologic form of the disease, have resulted in a reassessment of the control strategies, and particularly the prophylactic measures, that are necessary to keep the infection and spread of disease in check. Most of the available EHV-1 vaccines are based on preparations of inactivated virus, which are applied monovalently for prevention of EHV-1-caused abortion in pregnant mares or as part of multivalent vaccines to prevent...
Absence of viral envelope proteins in equine herpesvirus 1-infected blood mononuclear cells during cell-associated viremia.
Veterinary microbiology    January 18, 2006   Volume 113, Issue 3-4 265-273 doi: 10.1016/j.vetmic.2005.11.048
van der Meulen K, Caij B, Pensaert M, Nauwynck H.In vitro studies demonstrated that most equine herpesvirus 1 (EHV-1)-infected peripheral blood mononuclear cells (PBMC) do not expose viral envelope proteins on their surface. This protects them against antibody-dependent lysis. We examined whether viral envelope proteins are also undetectable on infected PBMC during cell-associated viremia. Further, surface expression of major histocompatibility complex (MHC)-I was examined, since MHC-I assists in making infected cells recognizable for cytotoxic T-lymphocytes (CTL). Four ponies, previously exposed to EHV, and two ponies that had no contact wi...
A conservative domain shared by HIV gp120 and EIAV gp90: implications for HIV vaccine design.
AIDS research and human retroviruses    December 29, 2005   Volume 21, Issue 12 1057-1059 doi: 10.1089/aid.2005.21.1057
Li H, Zhang X, Fan X, Shen T, Tong X, Shen R, Shao Y.Both HIV and EIAV belong to the retroviridae family and lentivirus genus. Two variable regions (V3 and V4) of equine infectious anemia virus (EIAV) gp90 and two variable regions (V1 and V2) of HIV gp120 possibly adopt the same topology. We have studied the N-glycosylation properties and B cell linear epitope distribution profile of these two regions. Our results indicated that V3 and V4 of EIAV gp90 are very similar to V1 and V2 of HIV gp120. The differences between EIAV virulent and vaccine strains are mainly located at these two regions. Vaccine strains lose two N-glycosylation sites at thes...
Hendra and Nipah viruses: pathogenesis and therapeutics.
Current molecular medicine    December 27, 2005   Volume 5, Issue 8 805-816 doi: 10.2174/156652405774962308
Eaton BT, Broder CC, Wang LF.Within the past decade a number of new zoonotic paramyxoviruses emerged from flying foxes to cause serious disease outbreaks in man and livestock. Hendra virus was the cause of fatal infections of horses and man in Australia in 1994, 1999 and 2004. Nipah virus caused encephalitis in humans both in Malaysia in 1998/99, following silent spread of the virus in the pig population, and in Bangladesh from 2001 to 2004 probably as a result of direct bat to human transmission and spread within the human population. Hendra and Nipah viruses are highly pathogenic in humans with case fatality rates of 40...
Isolation of equine herpesvirus-2 from the lung of an aborted fetus. Galosi CM, de la Paz VC, Fernández LC, Martinez JP, Craig MI, Barrandeguy M, Etcheverrrigaray ME.This study describes the isolation of equine herpesvirus-2 (EHV-2) from the lung of an aborted equine fetus in Argentina. The isolated virus was confirmed as EHV-2 by indirect immunofluorescence using a rabbit anti-EHV-2 polyclonal antiserum and by virus-neutralization test using an equine polyclonal antibody against EHV-2. Restriction endonuclease DNA fingerprinting with BamHI also confirmed the identity of the virus as EHV-2. Furthermore, viral nucleic acid was detected by polymerase chain reaction from the original lung sample and from the DNA obtained from cells infected with the virus iso...
Replication of West Nile virus in equine peripheral blood mononuclear cells.
Veterinary immunology and immunopathology    November 28, 2005   Volume 110, Issue 3-4 229-244 doi: 10.1016/j.vetimm.2005.10.003
Garcia-Tapia D, Loiacono CM, Kleiboeker SB.A cell model of primary monocytes and other mononuclear cells isolated from equine blood was used to study the kinetics of West Nile virus (WNV) replication in a natural host. West Nile virus has emerged on the North American continent as a significant cause of morbidity and mortality in a wide range of avian and mammalian species. While other flaviviruses are known to infect monocytes and lymphocytes, the ability of WNV to productively replicate in specific immune cells of peripheral blood has not been assessed. In this study, enriched populations of monocytes and lymphocytes as well as purif...
Detection of equine herpesvirus type 1 by real time PCR.
Journal of virological methods    November 22, 2005   Volume 133, Issue 1 70-75 doi: 10.1016/j.jviromet.2005.10.024
Elia G, Decaro N, Martella V, Campolo M, Desario C, Lorusso E, Cirone F, Buonavoglia C.A real-time PCR assay was developed for detection and quantitation of equid herpesvirus type 1 (EHV-1). The sensitivity of the assay was compared with an established nested-PCR (n-PCR). The real-time PCR detected 1 copy of target DNA, with a sensitivity 1 log higher than gel-based n-PCR. The assay was able to detect specifically EHV-1 DNA in equine tissue samples and there was no cross-amplification of other horse herpesviruses. Real-time PCR was applied to determine EHV-1 load in tissue samples from equine aborted fetuses. The high sensitivity and reproducibility of the EHV-1-specific fluorog...
Differential susceptibility of equine and mouse brain microvascular endothelial cells to equine herpesvirus 1 infection.
Archives of virology    November 17, 2005   Volume 151, Issue 4 775-786 doi: 10.1007/s00705-005-0653-3
Hasebe R, Kimura T, Nakamura K, Ochiai K, Okazaki K, Wada R, Umemura T.Equine herpesvirus 1 (EHV-1) shows endotheliotropism in the central nervous system (CNS) of infected horses. However, infection of endothelial cells has not been observed in the CNS of infected mice. To explore the basis for this difference in endotheliotropism, we compared the susceptibility of equine brain microvascular endothelial cells (EBMECs) and mouse brain microvascular endothelial cells (MBMECs) to EHV-1 infection. The kinetics of viral growth in EBMECs was typical of a fully productive infection whereas viral infection in MBMECs seemed to be nonproductive. Immunofluorescence microsco...
Recovery of Swedish Equine arteritis viruses from semen by cell culture isolation and RNA transfection.
Journal of virological methods    November 16, 2005   Volume 133, Issue 1 48-52 doi: 10.1016/j.jviromet.2005.10.017
Mittelholzer C, Johansson I, Olsson AK, Ronéus M, Klingeborn B, Belák S.Recovery of infectious Equine arteritis virus (EAV) from the semen of persistently infected Swedish stallions was attempted by classical cell culture isolation and by transfection of extracted total RNA. Whereas virus from semen samples stored for several months at -20 degrees C or from extended semen could only be recovered by transfection of extracted RNA, isolation in cell culture was achieved readily with fresh, unextended semen stored at -70 degrees C or directly used after sampling. In parallel, the viruses were examined in the variable region of the large glycoprotein GP5 by nested RT-P...
Endocytosis and a low-pH step are required for productive entry of equine infectious anemia virus.
Journal of virology    November 12, 2005   Volume 79, Issue 23 14482-14488 doi: 10.1128/JVI.79.23.14482-14488.2005
Brindley MA, Maury W.Recently, it has become evident that entry of some retroviruses into host cells is dependent upon a vesicle-localized, low-pH step. The entry mechanism of equine infectious anemia virus (EIAV) has yet to be examined. Here, we demonstrate that wild-type strains of EIAV require a low-pH step for productive entry. Lysosomotropic agents that inhibit the acidification of internal vesicles inhibited productive entry of EIAV. The presence of ammonium chloride (30 mM), monensin (30 microM), or bafilomycin A (50 nM) in the medium dramatically decreased the number of EIAV antigen-positive cells. We foun...
Equine herpesvirus 2 (EHV-2) infection in thoroughbred horses in Argentina.
BMC veterinary research    November 9, 2005   Volume 1 9 doi: 10.1186/1746-6148-1-9
Craig MI, Barrandeguy ME, Fernández FM.Equine herpesvirus 2 is a gamma-herpesvirus that infects horses worldwide. Although EHV-2 has been implicated in immunosuppression in foals, upper respiratory tract disease, conjunctivitis, general malaise and poor performance, its precise role as a pathogen remains uncertain. The purpose of the present study was to analyse the incidence of EHV-2 in an Argentinean horse population and correlate it with age and clinical status of the animals. Results: A serological study on 153 thoroughbred racing horses confirmed the presence of EHV-2 in the Argentinean equine population. A virus neutralizatio...
Real-time reverse transcription PCR for detection and quantitative analysis of equine influenza virus.
Journal of clinical microbiology    October 7, 2005   Volume 43, Issue 10 5055-5057 doi: 10.1128/JCM.43.10.5055-5057.2005
Quinlivan M, Dempsey E, Ryan F, Arkins S, Cullinane A.Equine influenza is a cause of epizootic respiratory disease of the equine. The detection of equine influenza virus using real-time Light Cycler reverse transcription (RT)-PCR technology was evaluated over two influenza seasons with the analysis of 171 samples submitted for viral respiratory disease. Increased sensitivity was found in overall viral detection with this system compared to Directigen Flu A and virus isolation, which were 40% and 23%, respectively, that of the RT-PCR. The assay was also evaluated as a viable replacement for the more traditional methods of quantifying equine influe...
Simultaneous identification of orthopoxviruses and alphaviruses by oligonucleotide macroarray with special emphasis on detection of variola and Venezuelan equine encephalitis viruses.
Journal of virological methods    September 21, 2005   Volume 131, Issue 2 160-167 doi: 10.1016/j.jviromet.2005.08.007
Fitzgibbon JE, Sagripanti JL.The development of a method in macroarray format for the identification of alphaviruses and orthopoxviruses in samples of concern in biodefense is reported. Capture oligonucleotides designed to bind generic members of the orthopox- or alphavirus families and a collection of additional oligonucleotides to bind specifically nucleic acids from five individual alphaviruses, including Venezuelan equine encephalitis, or DNA from each of four orthopoxviruses, including variola virus (VAR) were deposited onto nylon membranes. Hybridization of digoxigenin labeled PCR products to the macroarray produced...
Testing for antibodies to equine arteritis virus.
The Veterinary record    September 20, 2005   Volume 157, Issue 12 359-360 doi: 10.1136/vr.157.12.359-d
Wibberley G, Westcott DG, Drew TW.No abstract available
Polymorphic study of equine antiviral MXA gene.
Biochemical genetics    September 8, 2005   Volume 43, Issue 5-6 299-305 doi: 10.1007/s10528-005-5221-8
Ju LH, Onogi A, Ueda J, Yamada K, Nakatsu Y, Ohe M, Hata H, Sasaki K, Watanabe T.No abstract available
1 43 44 45 46 47 94