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Topic:Infectious Disease

Infectious diseases in horses encompass a range of illnesses caused by bacteria, viruses, fungi, or parasites. These diseases can affect various systems within the equine body, leading to symptoms that range from mild discomfort to severe systemic illness. Common infectious diseases in horses include equine influenza, strangles, equine herpesvirus, and West Nile virus. These diseases can be transmitted through direct contact with infected animals, contaminated surfaces, or vectors such as insects. Understanding the mechanisms of transmission, pathogenesis, and immune response is essential for effective prevention and control. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, diagnosis, treatment, and management of infectious diseases in horses.
Ehrlichia equi infection of horses from Minnesota and Wisconsin: detection of seroconversion and acute disease investigation.
Journal of veterinary internal medicine    June 1, 2000   Volume 14, Issue 3 252-257 doi: 10.1892/0891-6640(2000)014<0252:eiohfm>2.3.co;2
Bullock PM, Ames TR, Robinson RA, Greig B, Mellencamp MA, Dumler JS.Equine granulocytic ehrlichiosis (EGE) is caused by infection with Ehrlichia equi. EGE has been reported primarily in northern California, where E equi is transmitted by the tick Ixodes pacificus. Reports of EGE and the emergence of human granulocytic ehrlichia in Minnesota prompted a seroprevalence study of E equi in horses of Minnesota and Wisconsin. Tick (Ixodes scapularis) endemic areas of Minnesota and Wisconsin were compared to nonendemic regions of Minnesota. Indirect fluorescent antibody was used to detect the presence of serum antibodies to E equi. Serum samples from healthy horses, 3...
Toxigenic Corynebacterium diphtheriae associated with an equine wound infection. Henricson B, Segarra M, Garvin J, Burns J, Jenkins S, Kim C, Popovic T, Golaz A, Akey B.No abstract available
Equine influenza vaccine efficacy: the significance of antigenic variation.
Veterinary microbiology    May 9, 2000   Volume 74, Issue 1-2 173-177 doi: 10.1016/s0378-1135(00)00177-2
Yates P, Mumford JA.To investigate the level of cross-protection induced by equine influenza H3N8 vaccines derived from different lineages, two studies have been carried out with ponies vaccinated with 'American-like' and 'European-like' vaccines and experimentally challenged with a European-like strain. The results demonstrated that equine influenza vaccines clearly protect against challenge with homologous virus if serum antibody titres are sufficiently high. On the other hand, protection is incomplete even when animals vaccinated with heterologous strains have comparative antibody levels. Nevertheless, the pro...
DNA vaccination against influenza viruses: a review with emphasis on equine and swine influenza.
Veterinary microbiology    May 9, 2000   Volume 74, Issue 1-2 149-164 doi: 10.1016/s0378-1135(00)00175-9
Olsen CW.The influenza virus vaccines that are commercially-available for humans, horses and pigs in the United States are inactivated, whole-virus or subunit vaccines. While these vaccines may decrease the incidence and severity of clinical disease, they do not consistently provide complete protection from virus infection. DNA vaccines are a novel alternative to conventional vaccination strategies, and offer many of the potential benefits of live virus vaccines without their risks. In particular, because immunogens are synthesized de novo within DNA transfected cells, antigen can be presented by MHC c...
Identification and phylogenetic comparison of Salem virus, a novel paramyxovirus of horses.
Virology    May 4, 2000   Volume 270, Issue 2 417-429 doi: 10.1006/viro.2000.0305
Renshaw RW, Glaser AL, Van Campen H, Weiland F, Dubovi EJ.A virus that could not be identified as a previously known equine virus was isolated from the mononuclear cells of a horse. Electron microscopy revealed enveloped virions with nucleocapsid structures characteristic of viruses in the Paramyxoviridae family. The virus failed to hemabsorb chicken or guinea pig red blood cells and lacked neuraminidase activity. Two viral genes were isolated from a cDNA expression library. Multiple sequence alignments of one gene indicated an average identity of 45% as compared to Morbillivirus N protein sequences. A weaker relationship was found with Tupaia paramy...
An equine herpesvirus 1 (EHV1) abortion storm at a riding school.
The veterinary quarterly    May 2, 2000   Volume 22, Issue 2 83-87 doi: 10.1080/01652176.2000.9695030
van Maanen C, Willink DL, Smeenk LA, Brinkhof J, Terpstra C.An outbreak of EHV1 abortions occurred at a riding school in The Netherlands in 1991. Seven of twelve pregnant mares aborted, and another foal died at 8 days of age. Six abortions occurred within 12 days in March after an initial abortion on 8 February. Four mares delivered live foals. Virological examination of four aborted foals revealed an EHV1 infection. Serological results for paired sera from 17 horses suggested, that the initial abortion on 8 February was the index case, and probably caused the other six abortions. The index case could well have been caused by reactivation of latent vir...
Development of a fluorescence polarization-based diagnostic assay for equine infectious anemia virus.
Journal of clinical microbiology    May 2, 2000   Volume 38, Issue 5 1854-1859 doi: 10.1128/JCM.38.5.1854-1859.2000
Tencza SB, Islam KR, Kalia V, Nasir MS, Jolley ME, Montelaro RC.The control of equine infectious anemia virus (EIAV) infections of horses has been over the past 20 years based primarily on the identification and elimination of seropositive horses, predominantly by a standardized agar gel immunodiffusion (AGID) assay in centralized reference laboratories. This screening for EIAV-seropositive horses has been to date hindered by the lack of a rapid diagnostic format that can be easily employed in the field. We describe here the development of a rapid solution-phase assay for the presence of serum antibodies to EIAV based on fluorescence polarization (FP) (pat...
Differentiation and genomic and antigenic variation among fetal, respiratory, and neurological isolates from EHV1 and EHV4 infections in The Netherlands.
The veterinary quarterly    May 2, 2000   Volume 22, Issue 2 88-93 doi: 10.1080/01652176.2000.9695031
van Maanen C, Vreeswijk J, Moonen P, Brinkhof J, de Boer-Luijtze E, Terpstra C.Ten monoclonal antibodies (MAbs) were produced against equine herpes virus type 1 (EHV1). Two appeared type-specific, while the other eight were directed against epitopes common to both EHV1 and EHV4. Two MAbs directed against the glycoprotein gp2 recognized linear epitopes, as demonstrated by Western blotting. With pools of type-specific MAbs, 282 field isolates were typed in an immunoperoxidase monolayer assay (IPMA). From a total of 254 fetal or neonatal isolates, 244 (96%) were typed as EHV1, whereas 14 out of 15 (93%) respiratory tract isolates were typed as EHV4. Surprisingly, 3 out of 1...
Binding of equine infectious anemia virus rev to an exon splicing enhancer mediates alternative splicing and nuclear export of viral mRNAs.
Molecular and cellular biology    April 25, 2000   Volume 20, Issue 10 3550-3557 doi: 10.1128/MCB.20.10.3550-3557.2000
Belshan M, Park GS, Bilodeau P, Stoltzfus CM, Carpenter S.In addition to facilitating the nuclear export of incompletely spliced viral mRNAs, equine infectious anemia virus (EIAV) Rev regulates alternative splicing of the third exon of the tat/rev mRNA. In the presence of Rev, this exon of the bicistronic RNA is skipped in a fraction of the spliced mRNAs. In this report, the cis-acting requirements for exon 3 usage were correlated with sequences necessary for Rev binding and transport of incompletely spliced RNA. The presence of a purine-rich exon splicing enhancer (ESE) was required for exon 3 recognition, and the addition of Rev inhibited exon 3 sp...
Genetic manipulation of equine arteritis virus using full-length cDNA clones: separation of overlapping genes and expression of a foreign epitope.
Virology    April 25, 2000   Volume 270, Issue 1 84-97 doi: 10.1006/viro.2000.0245
de Vries AA, Glaser AL, Raamsman MJ, de Haan CA, Sarnataro S, Godeke GJ, Rottier PJ.Equine arteritis virus (EAV) is an enveloped, positive-stranded RNA virus belonging to the family Arteriviridae of the order Nidovirales. The unsegmented, infectious genome of EAV is 12,704 nt in length [exclusive of the poly(A) tail] and contains eight overlapping genes that are expressed from a 3'-coterminal nested set of seven leader-containing mRNAs. To investigate the importance of the overlapping gene arrangement in the viral life-cycle and to facilitate the genetic manipulation of the viral genome, a series of mutant full-length cDNA clones was constructed in which either EAV open readi...
Equine vaccination.
Journal of veterinary internal medicine    April 20, 2000   Volume 14, Issue 2 221-222 
Horohov DW, Lunn DP, Townsend HG, Wilson D.No abstract available
Ataxia and paresis with equine herpesvirus type 1 infection in a herd of riding school horses.
Journal of veterinary internal medicine    April 20, 2000   Volume 14, Issue 2 197-201 doi: 10.1892/0891-6640(2000)014<0197:aapweh>2.3.co;2
Friday PA, Scarratt WK, Elvinger F, Timoney PJ, Bonda A.An outbreak of neurologic disease associated with serologic evidence of equine herpesvirus type 1 (EHV-1) infection occurred in a herd of 46 riding school horses. Ataxia and paresis were observed in 14 geldings and 5 barren mares. Eight affected horses had distal limb edema, 1 horse had a head tilt, and 3 others had urinary incontinence. Other clinical signs included fever, depression, and inappetance in 30 horses. Seven horses with neurologic signs were treated with acyclovir. Serum neutralizing antibody titers against EHV-1 increased 4-fold between acute and convalescent samples or exceeded ...
Protein analysis of Babesia caballi merozoites by two-dimensional polyacrylamide gel electrophoresis and western blotting.
The Journal of veterinary medical science    April 19, 2000   Volume 62, Issue 3 323-327 doi: 10.1292/jvms.62.323
Ikadai H, Kabamoto S, Xuan X, Igarashi I, Nagasawa H, Fujisaki K, Suzuki N, Mikami T.Babesia caballi merozoites were prepared by combining two improved methods of cultivation and purification of merozoites using Percoll-gradiation, and the protein compositions of merozoites were analyzed by two-dimensional sodium dodecyl sulfate-polyacrylamide gel electrophoresis and Western blotting. The relative molecular masses of the major proteins and protein masses separated by electrophoresis were >94, 80-70, 50-45, 34-30, 30-28 and 18 kDa. By Western blotting, twelve proteins or protein groups were recognized by pooled sera from two horses experimentally infected with B. caballi. Among...
Characterization of trypanosome isolates from naturally infected horses on a farm in Kenya.
Veterinary parasitology    April 13, 2000   Volume 89, Issue 3 173-185 doi: 10.1016/s0304-4017(00)00195-3
Kihurani DO, Masake RA, Nantulya VM, Mbiuki SM.Following an outbreak of trypanosomosis in horses on a farm in Kenya, 18 trypanosome isolates were collected from the infected animals over a period of one and a half years and cryopreserved for characterization. The characterization was done on the basis of morphology using Giemsa-stained blood and buffy coat smears, infectivity to mice, recombinant DNA hybridization, and chromosome separation by orthogonal field alternation gel electrophoresis (OFAGE). Morphologically, all the trypanosome isolates were identified as belonging to the subgenus Nannomonas, and a total of 16 out of the 18 isolat...
Equine vaccination.
The Veterinary clinics of North America. Equine practice    April 7, 2000   Volume 16, Issue 1 199-viii doi: 10.1016/s0749-0739(17)30127-x
Lunn DP, Townsend HG.Equine infectious disease remains a constant and important threat to the health of domesticated horses. Vaccination plays a critical role in protecting against such disease, but at the present time the efficacy of some equine vaccination strategies is in doubt. The best strategy for resolving these concerns is an improved knowledge of the immunologic basis of successful vaccination, combined with the appropriate integration of effective vaccines into well-designed disease control policies.
Immunomodulation in horses.
The Veterinary clinics of North America. Equine practice    April 7, 2000   Volume 16, Issue 1 183-viii doi: 10.1016/s0749-0739(17)30126-8
Rush BR, Flaminio MJ.Nonspecific immunomodulators are substances that induce non-antigen-specific enhancement of the body's native or acquired defense mechanisms. Immunomodulant preparations are most often used for treatment of chronic, viral, or bacterial infection with evidence of secondary immunosuppression. The proposed mechanism of action of these products is macrophage activation and subsequent release of cytokines that enhance humoral and cell-mediated immunity. In equine medicine, nonspecific immunostimulant products are used for prevention and treatment of infectious respiratory disease and treatment of s...
Immunodiagnostic testing in horses.
The Veterinary clinics of North America. Equine practice    April 7, 2000   Volume 16, Issue 1 79-103 doi: 10.1016/s0749-0739(17)30120-7
Young KM, Lunn DP.Technologic advances in immunodiagnostic testing have enhanced our understanding of the pathogenesis of a broad array of diseases, including infectious diseases, immunodeficiency disorders, and immune-mediated disorders. If applied rationally, with an understanding of the questions the tests answer as well as the limitations that constrain their use, these tests can serve as valuable aids in the diagnosis and management of equine diseases.
Equine T-cell cytokines. Protection and pathology.
The Veterinary clinics of North America. Equine practice    April 7, 2000   Volume 16, Issue 1 1-14 doi: 10.1016/s0749-0739(17)30115-3
Horohov DW.The ultimate reason for better characterizing the immune response to infectious agents is the hope that this knowledge may lead to the development of better preventative or therapeutic measures. As more information becomes available, it becomes possible to incorporate these findings into the design of better vaccines and treatments. Likewise, attempts to either enhance or suppress specific helper T-cell responses may be required to control immunopathologic reactions. Although cytokine intervention in the clinical setting remains theoretic at this time, future manipulation based on the TH1/TH2 ...
Equine immunity to bacteria.
The Veterinary clinics of North America. Equine practice    April 7, 2000   Volume 16, Issue 1 29-iv doi: 10.1016/s0749-0739(17)30117-7
Giguère S, Prescott JF.The remarkable ability of the horse and other animals to prevent infection by most bacterial pathogens encountered is the result of a complex set of distinct but overlapping defense mechanisms. This article summarizes the current state of knowledge on innate and adaptive immunity to bacterial pathogens and reviews various ways in which some bacteria have evolved in order to evade components of the host response.
Primary immunodeficiencies of horses.
The Veterinary clinics of North America. Equine practice    April 7, 2000   Volume 16, Issue 1 105-vii doi: 10.1016/s0749-0739(17)30121-9
Perryman LE.Primary immunodeficiency disorders are genetically determined failures of immune defense that increase susceptibility to infectious agents. This article reviews the salient features of equine primary immunodeficiency disorders, summarizes the molecular mechanisms of each disorder, and updates information that facilitates diagnosis and management of affected horses. The central theme is to encourage clinicians to ask, "I wonder if this horse has an underlying primary immunodeficiency disorder?" when caring for horses suffering from chronic and recurring infections and responding poorly to stand...
Equine immunity to viruses.
The Veterinary clinics of North America. Equine practice    April 7, 2000   Volume 16, Issue 1 49-68 
Slater J, Hannant D.The identification of some of the adaptive immune responses to infection with equine viruses has been the first step toward rational immunoprophylactic design. Sufficient knowledge of infection-induced immunity and informed estimates of the requirements for long-term immunity for EIV have now been obtained. Thus, the future for inactivated EIV vaccines is promising now that new adjuvants have been applied to induce cellular immunity and safe methods have been designed to stimulate virus-neutralizing (VN) antibody at mucosal surfaces. Adenoviruses induce circulating VN antibody, the presence of...
[West Nile-like virus is the cause of encephalitis in humans and horses and the death of hundreds of birds in New York].
Tijdschrift voor diergeneeskunde    April 1, 2000   Volume 124, Issue 23 704-705 
van der Poel WH.No abstract available
[Demonstration of Chlamydia from an equine abortion].
DTW. Deutsche tierarztliche Wochenschrift    April 1, 2000   Volume 107, Issue 2 49-52 
Henning K, Sachse K, Sting R.The isolation and identification of a chlamydial agent from an equine fetus is reported. The fetus was aborted by a mare with respiratory disease and fever in the 9th month of pregnancy. The serum of the mare was investigated by the compliment fixation test. Specific antibodies were detected for chlamydial antigen in a titer of > 1:40 and for equine herpes virus 1 antigen in a titer of 1:32. Pathological lesions were not found in the organs of the fetus. Chlamydiae were detected in the placenta by ELISA and subsequently isolated by cell culture. Using PCR technique the agent was identified ...
Immune responses in mice, cattle and horses to a DNA vaccine for vesicular stomatitis.
Vaccine    March 30, 2000   Volume 18, Issue 22 2368-2374 doi: 10.1016/s0264-410x(00)00007-4
Cantlon JD, Gordy PW, Bowen RA.Vesicular stomatitis (VS) virus causes an important clinical disease of cattle and horses in North America. In order for a vaccine to be useful in the control of VS, it must not only protect against disease, but allow ready differentiation of infected and vaccinated animals. In these studies, we evaluated neutralizing antibody responses in outbred mice, calves, and horses that received a DNA vaccine that expressed the glycoprotein (G) gene of VS New Jersey virus. The vaccine elicited antibody titers in individuals from each species, especially when two doses were administered, but the level of...
Diarrhoea associated with cryptosporidial oocyst shedding in a quarterhorse stallion.
Australian veterinary journal    March 29, 2000   Volume 78, Issue 1 27-28 doi: 10.1111/j.1751-0813.2000.tb10351.x
McKenzie DM, Diffay BC.Cryptosporidial oocyst shedding was detected in a 2.5-year-old Quarterhorse stallion with diarrhoea. Based on the detection of cryptosporidial oocysts, and the absence of other aetiological agents or enteropathogens, cryptosporidiosis was presumptively diagnosed. This case was unusual because cryptosporidial oocyst shedding is primarily found in some immunocompromised or immature horses, and has not been reported in healthy mature horses.
Detection of heterogeneous genotypes among Australian strains of Taylorella equigenitalis.
Australian veterinary journal    March 29, 2000   Volume 78, Issue 1 56-57 doi: 10.1111/j.1751-0813.2000.tb10362.x
Matsuda M, Kagawa S, Sakamoto Y, Miyajima M, Barton M, Moore JE.No abstract available
Neonatal enterocolitis associated with coronavirus infection in a foal: a case report. Davis E, Rush BR, Cox J, DeBey B, Kapil S.No abstract available
Listeria monocytogenes septicemia in a Thoroughbred foal. Wilkins PA, Marsh PS, Acland H, Del Piero F.Listeria monocytogenes septicemia was diagnosed in a 6-day-old Thoroughbred foal. Primary clinical signs included fever, depression, diarrhea, and respiratory distress. Hematologic abnormalities included leukopenia, neutropenia, degenerative left shift, and hyperfibrinogenemia. Clinical chemistry and blood gas abnormalities included metabolic acidosis, hypoxemia, hypocapnia, hypoglycemia, and hyponatremia. Despite aggressive therapeutic intervention and intensive care, the foal died within 12 hours of admission. A postmortem examination was performed, and the primary gross lesion was bilateral...
Halicephalobus gingivalis (H. deletrix) infection in two horses in southern California. Kinde H, Mathews M, Ash L, St Leger J.Two horses, a 16-year-old male Holsteiner and a 5-year-old male miniature horse, were diagnosed with halicephalobiasis at the California Veterinary Diagnostic Laboratory System, San Bernardino Branch, in April and June of 1998. Over a period of 4 weeks, the Holsteiner horse developed renal dysfunction, blepharospasm, and blindness in the right eye. A 15-cm-diameter mass was detected on ultrasound examination in the right kidney. Terminally, the animal developed seizures and was euthanized. The miniature horse had a 6-week-long illness characterized by testicular enlargement and uveitis. This a...
Detection of Borna disease virus in a pregnant mare and her fetus.
Veterinary microbiology    March 23, 2000   Volume 72, Issue 3-4 207-216 doi: 10.1016/s0378-1135(99)00206-0
Hagiwara K, Kamitani W, Takamura S, Taniyama H, Nakaya T, Tanaka H, Kirisawa R, Iwai H, Ikuta K.A pregnant mare showing pyrexia, reduced appetite, ataxia and paresis was euthanized and examined for the presence of Borna disease virus (BDV). Her brain, showing multiple neuronal degeneration and necrosis with hemorrhage, and the histologically normal brain of the fetus were both positive for BDV RNA. The BDV nucleotide sequences were identical in the mare and fetus in the second open reading frame (ORF). This is the first report of the possible vertical transmission of BDV in a horse.