Analyze Diet

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.
Use of indirect and competitive ELISAs to compare isolates of equine influenza A virus.
Journal of virological methods    November 1, 1986   Volume 14, Issue 3-4 253-265 doi: 10.1016/0166-0934(86)90027-3
Denyer MS, Crowther JR.Antigenic differences within equine-1 and equine-2 isolates of influenza were studied by haemagglutination inhibition tests, indirect ELISA and competition ELISA, using the same antisera. Better differentiation was obtained with the competition ELISA than with the other two tests. All three methods produced similar relationships within the equine-1 isolates but differed in their ability to differentiate the equine-2 isolates where the competition ELISA was superior and produced epidemiologically sensible results. In all three tests, post-infection ferret and horse sera were more useful in disc...
Mortality of captive whooping cranes caused by eastern equine encephalitis virus.
Journal of the American Veterinary Medical Association    November 1, 1986   Volume 189, Issue 9 1006-1010 
Dein FJ, Carpenter JW, Clark GG, Montali RJ, Crabbs CL, Tsai TF, Docherty DE.Of 39 captive whooping cranes (Grus americana), 7 died during a 7-week period (Sept 17 through Nov 4, 1984) at the Patuxent Wildlife Research Center, Laurel, Md. Before their deaths, 4 cranes did not develop clinical signs, whereas the other 3 cranes were lethargic and ataxic, with high aspartate transaminase, gamma-glutamyl transferase, and lactic acid dehydrogenase activities, and high uric acid concentrations. Necropsies indicated that the birds had ascites, intestinal mucosal discoloration, fat depletion, hepatomegaly, splenomegaly, and visceral gout. Microscopically, extensive necrosis an...
Molecular cloning and physical characterization of integrated equine infectious anemia virus: molecular and immunologic evidence of its close relationship to ovine and caprine lentiviruses.
Virology    October 15, 1986   Volume 154, Issue 1 1-8 doi: 10.1016/0042-6822(86)90424-1
Yaniv A, Dahlberg J, Gazit A, Sherman L, Chiu IM, Tronick SR, Aaronson SA.Molecular clones of the integrated form of the genome of equine infectious anemia virus (EIAV), the etiologic agent of a naturally occurring, worldwide disease of horses, were obtained. The restriction map of a full-length genome was determined. Additional evidence for the close evolutionary relationship between EIAV and a prototype lentivirus (caprine arthritis encephalitis virus) was acquired by Southern blotting and immunological analyses. An interspecies radioimmunoassay was developed in which EIAV and ovine and caprine lentiviruses could be detected equally well. These studies make availa...
Enzyme-linked immunosorbent assay for the detection of antibodies to equid herpesvirus type 1 (EHV-1).
Nihon juigaku zasshi. The Japanese journal of veterinary science    October 1, 1986   Volume 48, Issue 5 1045-1048 doi: 10.1292/jvms1939.48.1045
Hohdatsu T, Eiki T, Ide S, Yamagishi H.No abstract available
Transmissibility and abortogenic effect of equine viral arteritis in mares.
Journal of the American Veterinary Medical Association    October 1, 1986   Volume 189, Issue 7 769-771 
Cole JR, Hall RF, Gosser HS, Hendricks JB, Pursell AR, Senne DA, Pearson JE, Gipson CA.A group of 14 pregnant mares was exposed via contact to 4 mares bred to stallions infected with equine viral arteritis virus. There was a demonstrable febrile response in each donor mare and in 12 of the pregnant mares. All 18 mares became seropositive after exposure. Equine viral arteritis virus was isolated from the nasopharynx of 5 pregnant mares, but not from the donor mares. Ten of the pregnant mares aborted, and virus was isolated from fetal specimens or placenta of 8.
Hemagglutination-inhibiting antibodies to equine influenza viruses in Japanese horses and antigenic variation of the viruses.
The Kitasato archives of experimental medicine    September 1, 1986   Volume 59, Issue 3 49-55 
Kudo H, Ohde H, Yamanaka T, Ohtsuka Y, Matumoto M.No abstract available
Respiratory disease in foals and the epizootiology of equine herpesvirus type 2 infection.
New Zealand veterinary journal    September 1, 1986   Volume 34, Issue 9 152-155 doi: 10.1080/00480169.1986.35331
Fu ZF, Robinson AJ, Horner GW, Dickinson LG, Grimmett JB, Marshall RB.The epizootiology of equine herpesvirus type 2 (EHV-2) infection was investigated in Thoroughbred foals on a stud farm which in previous years had suffered economic loss due to respiratory disease. Sixteen pairs of foals and their dams were selected for this study and all of the foals became infected with EHV-2 by two to four months of age. These animals responded serologically to the virus infection as detected by an enzyme-linked immunosorbent assay (ELISA). EHV-2 infection persisted in these foals for two to six months with constant or intermittent virus recovery. This persistent infection ...
Preliminary characterisation of torovirus-like particles of humans: comparison with Berne virus of horses and Breda virus of calves.
Journal of medical virology    September 1, 1986   Volume 20, Issue 1 67-78 doi: 10.1002/jmv.1890200109
Beards GM, Brown DW, Green J, Flewett TH.Pleomorphic virus-like particles have been observed by electron microscopy in the faeces of children and adults with diarrhoea. Some of these particles were approximately 100 nm in diameter and had a "fringe" of closely applied peplomers approximately 10 nm long; they closely resembled Berne virus of horses and Breda virus of calves, the two representatives of a newly proposed family called the Toroviridae. In one sample a toroidal nucleoprotein-like structure was observed within the particles. For two samples a buoyant density of 1.14 g/ml was determined by centrifugation through a sucrose de...
Cloning and fine mapping the DNA of equine herpesvirus type one defective interfering particles.
Virology    September 1, 1986   Volume 153, Issue 2 188-200 doi: 10.1016/0042-6822(86)90022-x
Baumann RP, Staczek J, O'Callaghan DJ.Equine herpesvirus type one (EHV-1) defective interfering (DI) particle DNA fragments were inserted into the XbaI site of the plasmid vector pACYC184. Five DI XbaI fragments, which ranged in molecular weight from 4.5 to 6.7 MDa, were selected for detailed analysis. Each DI DNA clone was labeled with 32P-deoxynucleotides by nick translation and hybridized to genomic digests of EHV-1 standard (STD) DNA bound to nitrocellulose. All five clones were shown to hybridize to DNA sequences derived from the left terminus (0.0-0.04 map units) of the long (L) region and from the short (S) region inverted ...
Responses of horses vaccinated with avirulent modified-live equine arteritis virus propagated in the E. Derm (NBL-6) cell line to nasal inoculation with virulent virus.
American journal of veterinary research    September 1, 1986   Volume 47, Issue 9 1931-1934 
McCollum WH.Nineteen horses with no prior experience with equine arteritis virus (EAV) were inoculated IM with an avirulent live-virus vaccine against equine viral arteritis; the vaccinal virus had been passaged serially 131 times in primary cell cultures of equine kidney, 111 times in primary cell cultures of rabbit kidney, and 16 times in an equine dermis cell line (EAV HK-131/RK-111/ED-16). Three or 4 of the vaccinated horses each, along with appropriate nonvaccinated controls, were inoculated nasally with virulent EAV at each of months 3, 6, 9, 12, 18, and 24 after they were vaccinated. The following ...
Demonstration of the carrier state in naturally acquired equine arteritis virus infection in the stallion.
Research in veterinary science    September 1, 1986   Volume 41, Issue 2 279-280 
Timoney PJ, McCollum WH, Roberts AW, Murphy TW.The chronic carrier state was virologically confirmed in 15 thoroughbred stallions naturally infected with equine arteritis virus based on the results of test matings and, or, isolations of the virus from semen. Carrier stallions were shown to shed equine arteritis virus in the semen for at least one to two years. Existence of a short-term or convalescent carrier state was also demonstrated in five additional stallions. The frequency of the long-term carrier state in stallions naturally infected with equine arteritis virus was 35 per cent; it varied considerably between groups of stallions on ...
[Concentration of the Venezuelan equine encephalomyelitis virus in a 2-phase system of water-soluble polymers].
Voprosy virusologii    September 1, 1986   Volume 31, Issue 5 584-587 
Pomelova VG, Gaĭdamovich SIa, Demenev VA, Kadoshnikov IuP.A three-step concentration of Venezuelan equine encephalomyelitis (VEE) virus from tissue culture fluid was carried out in a two-phase system of polyethyleneglycol (PEG)--sodium dextran sulphate (SDS). The concentration method was based on the dependence of virus distribution coefficient upon NaCl content in the system which allowed alternating transfer of the virus from one phase of the system into the other. The infectious activity of the virus increased approximately 100-fold after the first step, 190-fold after the second, and 300-fold after the third step. The process of concentration was...
Identification and antigenic comparison of equine arteritis virus isolated from an outbreak of epidemic abortion of mares.
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    August 1, 1986   Volume 33, Issue 6 413-417 doi: 10.1111/j.1439-0450.1986.tb00051.x
Golnik W, Moraillon A, Golnik J.No abstract available
Equine herpesvirus type 1 infection–a reply.
New Zealand veterinary journal    August 1, 1986   Volume 34, Issue 8 136 doi: 10.1080/00480169.1986.35324
Fu ZF, Robinson AJ.No abstract available
Equine arteritis virus-induced polypeptide synthesis.
The Journal of general virology    August 1, 1986   Volume 67 ( Pt 8) 1543-1549 doi: 10.1099/0022-1317-67-8-1543
van Berlo MF, Rottier PJ, Spaan WJ, Horzinek MC.Intracellular virus-specific proteins induced by equine arteritis virus (EAV) have been compared with in vitro translation products of virion and intracellular EAV RNAs. In infected BHK-21 cells, the two major virion proteins (C and E1) and polypeptides with mol. wt. of 60,000 (p60), 42,000 (p42) and 30,000 (p30) were found. There were no indications that the viral proteins were processed from a larger precursor as shown by pulse-chase, amino acid analogue and protease inhibitor experiments. The six polyadenylated RNAs that occur in EAV-infected cells were isolated and translated in an mRNA-de...
Intracellular equine arteritis virus (EAV)-specific RNAs contain common sequences.
Virology    July 30, 1986   Volume 152, Issue 2 492-496 doi: 10.1016/0042-6822(86)90154-6
van Berlo MF, Rottier PJ, Horzinek MC, van der Zeijst BA.Equine arteritis virus (EAV) is a nonarthropod-borne togavirus. Six virus-specific RNA species have been found in EAV-infected cells having the following molecular weights: 4.3 X 10(6) (RNA1), 1.3 X 10(6) (RNA2), 0.9 X 10(6) (RNA3), 0.7 X 10(6) (RNA4), 0.3 X 10(6) (RNA5), and 0.2 X 10(6) (RNA6). RNA1 comigrates with the viral genome (M. F. Van Berlo, M. C. Horzinek, and B. A. M. Van der Zeijst, 1982, Virology 118, 345-352). All RNAs hybridized with a radio-labeled cDNA probe representing RNA6, indicating that they contain common sequences. To study this homology in more detail, RNase T1 oligon...
Nucleotide sequence of the 26 S mRNA of the virulent Trinidad donkey strain of Venezuelan equine encephalitis virus and deduced sequence of the encoded structural proteins.
Virology    July 30, 1986   Volume 152, Issue 2 400-413 doi: 10.1016/0042-6822(86)90142-x
Kinney RM, Johnson BJ, Brown VL, Trent DW.A cDNA clone containing all of the 26 S mRNA coding region of the RNA genome of Venezuelan equine encephalitis (VEE) virus, virulent strain Trinidad donkey (TRD), has been constructed and sequenced. The nucleotide and deduced amino acid sequences of the 26 S RNA of VEE virus conform to the general organization of the alphavirus subgenomic mRNA. Excluding the poly(A) tail, the VEE 26 S RNA is 3913 nucleotides long with a protein coding region of 3762 nucleotides. Codon usage in the translated region is nonrandom and correlates well with that reported for Sindbis (SIN), Semliki Forest (SF), and ...
Cloning and characterization of an equine cutaneous papillomavirus.
Virology    July 15, 1986   Volume 152, Issue 1 100-109 doi: 10.1016/0042-6822(86)90375-2
O'Banion MK, Reichmann ME, Sundberg JP.Equine papillomaviruses (EqPV) from naturally occurring cases of cutaneous papillomatosis in several ponies and one horse were isolated, cloned, and characterized. Group specific papillomavirus structural antigens were detected in sections of the papillomas by the peroxidase-antiperoxidase technique, and virions were observed in the in the nuclei of cells in the stratum granulosum and corneum. Negatively stained virions purified from papilloma homogenates by isopycnic CsCl centrifugation were 55 nm in diameter and had typical papillomavirus morphology. The entire viral genomes of two separate ...
Equine herpesviruses causing respiratory disease.
New Zealand veterinary journal    July 1, 1986   Volume 34, Issue 7 118 doi: 10.1080/00480169.1986.35316
Studdert MJ.No abstract available
Innate immunity during Equid herpesvirus 1 (EHV-1) infection.
Clinical and experimental immunology    July 1, 1986   Volume 65, Issue 1 172-181 
Bridges CG, Edington N.Intrinsic phagocytosis and killing of C. albicans by equine monocytes and polymorphonuclear leucocytes (PMN) was examined during Equid Herpesvirus 1 (EHV-1) (subtypes 1 or 2) and Adenovirus infections. Monocyte function increased during EHV-1 subtype 2 and Adenovirus infection. Conversely, there was an impairment of monocyte ingestion during EHV-1 subtype 1 infection which was ascribed to virus replication in peripheral blood mononuclear cells. PMN phagocytosis was not decreased in any of the infections studied. The raised levels of haemolytic complement in animals which subsequently developed...
Morphogenesis of Berne virus (proposed family Toroviridae).
The Journal of general virology    July 1, 1986   Volume 67 ( Pt 7) 1305-1314 doi: 10.1099/0022-1317-67-7-1305
Weiss M, Horzinek MC.In equine dermis cells infected with Berne virus particles were first detected 10 h after infection. Virions were encountered in all parts of the Golgi system and, infrequently, in the rough endoplasmic reticulum. A unique form of budding of preassembled rigid tubular nucleocapsids was demonstrated. Masses of tubular nucleocapsids of a lesser diameter and electron density were prominent in the cytoplasm and the nucleus of infected cells. Within the Golgi system and cytoplasmic cisternae virions appeared as straight or slightly curved rods. Extremely long, aberrant virions (250 nm) were occasio...
Role of Culex pipiens L. in recovering latent African-horse-sickness virus from dogs.
Journal of the Egyptian Society of Parasitology    June 1, 1986   Volume 16, Issue 1 249-258 
el-Husseini MM, Salama SA, Abdallah SK, Abou Bakr HE, Hassanein MM.No abstract available
Rapid and specific serodiagnosis of western equine encephalitis virus infection in horses.
American journal of veterinary research    June 1, 1986   Volume 47, Issue 6 1296-1299 
Calisher CH, Mahmud MI, el-Kafrawi AO, Emerson JK, Muth DJ.Paired sera from 28 nonvaccinated horses with serologically confirmed western equine encephalitis (WEE) virus infections were evaluated for immunoglobulin (Ig)M and IgG directed against WEE virus, by use of enzyme immunoassay. Twenty-one of the horses developed greater than or equal to 4-fold increases or decreases in serum IgM titers in paired serum samples, confirming the diagnosis of WEE in these horses. Of the remaining 7 horses, 1 had stable IgM titers, 1 had a 2-fold increase in IgM titer between paired sera, 2 had 2-fold decreases in IgM titer, and for 3 horses adequate volumes were not...
Equine viral arteritis: a disease of emerging significance?
Equine veterinary journal    May 1, 1986   Volume 18, Issue 3 166-168 
Timoney PJ.No abstract available
Generation of packaging-defective DNA molecules of equine adenovirus.
Virology    May 1, 1986   Volume 151, Issue 1 66-76 doi: 10.1016/0042-6822(86)90104-2
Ishiyama T, Shinagawa M, Sato G, Fujinaga K, Padmanabhan R.Equine adenovirus (EAd) DNA prepared from infected bovine kidney (MDBK) cells contained additional sequences of about 100 to 700 bp at the left-hand end of the genome. These aberrant viral genomes were produced even after the first passage of the wild type EAd in MDBK cells and their relative amounts did not change significantly during serial passage. The left terminal fragments of two defective viral DNAs were cloned into the plasmid vector pBR322 and the nucleotide sequences of their terminal regions were analyzed. The data indicate that one viral DNA contained a duplication of the inverted ...
Viruses associated with respiratory disease of horses in New Zealand: an update.
New Zealand veterinary journal    April 1, 1986   Volume 34, Issue 4 46-50 doi: 10.1080/00480169.1986.35278
Jolly PD, Fu ZF, Robinson AJ.Viruses causing or associated with respiratory disease in horses worldwide are reviewed. Results are presented from a serological survey of 121 New Zealand foals and horses that had been affected by respiratory disease, determining the prevalence of antibodies in this country to the major viruses associated with similar disease overseas. To date there is no evidence of equine influenza virus in New Zealand. Both equine herpesvirus type 1 and 2 have been frequently isolated and show high serological prevalences. Serological evidence of equine rhinovirus type 1 and type 2 is presented with a pre...
Genomic and antigenic comparison of an equine herpesvirus 1 (EHV 1) isolate from the 1983 Lippizan abortion storm with EHV 1 reference strains.
Microbiologica    April 1, 1986   Volume 9, Issue 2 221-234 
Engels M, Nowotny N, Metzler AE, Wyler R, Bürki F.An EHV 1 isolate from the Lippizan Stud at Piber, which caused the abortion and paresis outbreak in 1983, was investigated using 3 known subtype 1 and 2 subtype 2 strains for comparison. Broad-scale restriction enzyme analysis as well as cross-neutralization with hyperimmune sera produced in rabbits were performed, and SDS-PAGE of infected cell proteins was conducted on a limited scale. The Piber isolate was clearly classified as a subtype 1 strain of EHV 1, and showed closest resemblance in its restriction patterns with a British EHV 1 strain, which originated from an outbreak with paretic sy...
In vitro interference between equine herpesvirus types 1 and 2.
American journal of veterinary research    April 1, 1986   Volume 47, Issue 4 747-750 
Dutta SK, Myrup AC, Thaker SR.Interference between equine herpesvirus types 1 (EHV-1) and 2 (EHV-2) was studied in equine dermis (ED) monolayer cell cultures and equine lymphocyte cultures. Cell cultures were infected with EHV-2, and after a short incubation period, the cultures were superinfected with EHV-1. At various intervals, different measurements of EHV-1 expression in dually infected cultures, compared with those in cultures infected with EHV-1 alone, were studied. In dually infected ED cell cultures, the EHV-1 cytopathic effect, EHV-1 titer, and EHV-1 enzyme-linked immunosorbent assay antigen titer were maximally ...
Occurrence and isolation in tissue culture of equine rotaviruses.
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    March 1, 1986   Volume 33, Issue 2 155-159 doi: 10.1111/j.1439-0450.1986.tb00016.x
Eichhorn W, Bachmann PA, Werhahn H, Jacobi R.No abstract available
Rationale for the use of influenza vaccines in horses and the importance of antigenic drift.
Equine veterinary journal    March 1, 1986   Volume 18, Issue 2 93-96 doi: 10.1111/j.2042-3306.1986.tb03554.x
Baker DJ.No abstract available