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Topic:Infection

Infections in horses encompass a range of diseases caused by various pathogens, including bacteria, viruses, fungi, and parasites. These infections can affect different systems within the horse, such as the respiratory, gastrointestinal, and integumentary systems, leading to a variety of clinical signs depending on the pathogen and the severity of the infection. Common infectious diseases in horses include equine influenza, strangles, and equine herpesvirus. Diagnosis often involves clinical examination, laboratory testing, and sometimes imaging, to identify the causative agent and assess the extent of the disease. Treatment strategies may include antimicrobial therapy, supportive care, and preventive measures such as vaccination and biosecurity practices. This page aggregates peer-reviewed research studies and scholarly articles that explore the pathogenesis, diagnosis, treatment, and prevention of infectious diseases in equine populations.
Prevalence and diagnosis of parasites of the stomach and small intestine in horses in south-west England.
The Veterinary record    May 10, 2005   Volume 156, Issue 19 597-600 doi: 10.1136/vr.156.19.597
Morgan ER, Hetzel N, Povah C, Coles GC.Parasites were extracted from the stomach and small intestine of 118 horses at slaughter. The most abundant species was the tapeworm Anoplocephala perfoliata. Maximum likelihood analysis was used to investigate the relationship between the number of worms and their total weight, and the ability of an antibody-based elisa to diagnose the level of infection. The total weight of tapeworms increased towards a maximum as the number of worms increased, suggesting a population density-dependent constraint on the weight. The number of A perfoliata present could be predicted approximately from the resu...
[Perforation of the cecum in the horse, coincidental or not?].
Tijdschrift voor diergeneeskunde    May 6, 2005   Volume 130, Issue 8 248 
Breukink HJ.No abstract available
Isolation of Brucella suis biovar 3 from horses in Croatia.
The Veterinary record    May 4, 2005   Volume 156, Issue 18 584-585 doi: 10.1136/vr.156.18.584
Cvetnic Z, Spicic S, Curic S, Jukic B, Lojkic M, Albert D, Thiébaud M, Garin-Bastuji B.No abstract available
Antibiotic treatment of experimentally Borrelia burgdorferi-infected ponies.
Veterinary microbiology    May 3, 2005   Volume 107, Issue 3-4 285-294 doi: 10.1016/j.vetmic.2005.02.006
Chang YF, Ku YW, Chang CF, Chang CD, McDonough SP, Divers T, Pough M, Torres A.The objective of this study is to determine whether doxycycline, ceftiofur or tetracycline could be effectively used to treat equine Lyme disease. Ponies experimentally infected with Borrelia burgdorferi by tick exposure were treated with doxycycline, ceftiofur or tetracycline for 4 weeks (28 days). Doxycyline and ceftiofur treatment were inconsistent in eliminating persistent infection in this experimental model. However, tetracycline treatment seems to eliminate persistent infection. Although serum antibody levels to B. burgdorferi in all ponies declined gradually after antibiotic treatment,...
Fungal isolation and identification in 21 cases of guttural pouch mycosis in horses (1998-2002).
Veterinary journal (London, England : 1997)    April 26, 2005   Volume 169, Issue 3 457-461 doi: 10.1016/j.tvjl.2004.06.005
Ludwig A, Gatineau S, Reynaud MC, Cadoré JL, Bourdoiseau G.This aetiological study of guttural pouch mycosis (GPM) in the horse was based on the retrospective study of 21 horses brought into the National Veterinary School of Lyon (France) between 1998 and 2002. Biopsies were taken from the lesions caused by GPM during endoscopic examination. In 87% of the cases, direct examination gave positive results, whereas 43% of the cultures were found to be negative. The main fungi observed were Aspergillus fumigatus (in three cases), A. versicolor (in two cases, together with other fungi), and A. nidulans and A. niger (one case each). In six cases, the Aspergi...
Equine infectious anemia virus-infected dendritic cells retain antigen presentation capability.
Virology    April 21, 2005   Volume 335, Issue 2 145-154 doi: 10.1016/j.virol.2005.02.013
Rivera JA, McGuire TC.To determine if equine monocyte-derived dendritic cells (DC) were susceptible to equine infectious anemia virus (EIAV) infection, ex vivo-generated DC were infected with virus in vitro. EIAV antigen was detected by immunofluorescence 3 days post-infection with maximum antigen being detected on day 4, whereas there was no antigen detected in DC incubated with the same amount of heat-inactivated EIAV. No cytolytic activity was observed after EIAV(WSU5) infection of DC. These monocyte-derived DC were more effective than macrophages and B cells in stimulating allogenic T lymphocytes. Both infected...
Disseminated acute concomitant aspergillosis and mucormycosis in a pony.
Journal of veterinary medicine. A, Physiology, pathology, clinical medicine    April 20, 2005   Volume 52, Issue 3 121-124 doi: 10.1111/j.1439-0442.2005.00700.x
Thirion-Delalande C, Guillot J, Jensen HE, Crespeau FL, Bernex F.A 6-year-old female pony died after 2 days of prostration. Clinical signs included hyperthermia and abnormal pulmonary auscultation sounds. Necropsy revealed diffuse severe necrohaemorrhagic colitis and splenitis, multiple visceral ecchymoses, petechial haemorrhages in the brain and lungs. Microscopical examination showed acute necrohaemorrhagic colitis, encephalitis, pneumonia and splenitis associated with fibrinoid vasculitis, thrombosis and fungal hyphae within and around vessels. Immunohistologically, concomitant aspergillosis (caused by Aspergillus fumigatus) and mucormycosis (causde by A...
Molecular characterization of Thelazia lacrymalis (Nematoda, Spirurida) affecting equids: a tool for vector identification.
Molecular and cellular probes    April 18, 2005   Volume 19, Issue 4 245-249 doi: 10.1016/j.mcp.2005.01.005
Traversa D, Otranto D, Iorio R, Giangaspero A.Equine thelaziosis caused by the eyeworm Thelazia lacrymalis is a parasitic disease transmitted by muscid flies. Although equine thelaziosis is known to have worldwide distribution, information on the epidemiology and presence of the intermediate hosts of T. lacrymalis is lacking. In the present work, a PCR-RFLP based assay on the first and/or second internal transcribed spacer (ITS1 and ITS2) of ribosomal DNA was developed for the detection of T. lacrymalis DNA in its putative vector(s). The sensitivity of the technique was also assessed. The restriction patterns obtained readily differentiat...
Susceptibility of 7 freshwater gastropod species in Zimbabwe to infection with Gastrodiscus aegyptiacus (Cobbold, 1876) Looss, 1896.
Journal of the South African Veterinary Association    April 16, 2005   Volume 75, Issue 4 186-188 doi: 10.4102/jsava.v75i4.481
Mukaratirwa S, Munjere IF, Takawira M, Chingwena G.Gastrodiscosis outbreaks due to Gastrodiscus aegyptiacus were recorded in horses in the vicinity of Harare, Zimbabwe, in the absence of Bulinus forskalii, B. senegalensis and Cleopatra sp. which are considered to be the only intermediate host snails. This suggested the possibility of other snail species acting as intermediate hosts in the life cycle of the trematode. A study was carried out to determine the susceptibility of 7 freshwater snail species to infection with G. aegyptiacus. First generation (F-1) of 5 freshwater pulmonate snail species, Bulinus tropicus, Bulinus globosus, Biomphalar...
Immunohistochemical and ultrastructural detection of intestinal spirochetes in Thoroughbred horses. Shibahara T, Kuwano A, Ueno T, Katayama Y, Ohya T, Taharaguchi S, Yamamoto S, Umemura T, Ishikawa Y, Kadota K.Studies of equine intestinal spirochetes have long focused on intestinal contents alone, but intestinal spirochetosis has been reported recently in a 21-month-old Thoroughbred colt in Japan. To define the clinical and pathological significances of intestinal spirochetosis in several horses, an epizootiologic survey with histologic, immunohistochemical, and ultrastructural methods was conducted for Brachyspira antigen-containing intestinal spirochetes in 12 diseased or injured Thoroughbred horses, aged from 35 days to 17 years. Brachyspira antigen-containing spirochetes were found in 7 of 12 ho...
Evaluation of a PCR to detect Salmonella in fecal samples of horses admitted to a veterinary teaching hospital. Ward MP, Alinovi CA, Couëtil LL, Wu CC.The diagnostic accuracy of a PCR used to identify horses shedding Salmonella spp. in their feces during hospitalization was estimated, relative to bacterial culture of serially collected fecal samples, using longitudinal data. Five or more fecal samples were collected from each of 116 horses admitted as inpatients, for reasons other than gastrointestinal disease, between July 26, 2001 and October 25, 2002. All 873 fecal samples collected were tested with a PCR based on oligonucleotide primers defining a highly conserved segment of the histidine transport operon gene of Salmonella typhimurium, ...
Potential of equine herpesvirus 1 as a vector for immunization.
Journal of virology    April 14, 2005   Volume 79, Issue 9 5445-5454 doi: 10.1128/JVI.79.9.5445-5454.2005
Trapp S, von Einem J, Hofmann H, Köstler J, Wild J, Wagner R, Beer M, Osterrieder N.Key problems using viral vectors for vaccination and gene therapy are antivector immunity, low transduction efficiencies, acute toxicity, and limited capacity to package foreign genetic information. It could be demonstrated that animal and human cells were efficiently transduced with equine herpesvirus 1 (EHV-1) reconstituted from viral DNA maintained and manipulated in Escherichia coli. Between 13 and 23% of primary human CD3+, CD4+, CD8+, CD11b+, and CD19+ cells and more than 70% of CD4+ MT4 cells or various human tumor cell lines (MeWo, Huh7, HeLa, 293T, or H1299) could be transduced with o...
Acute clinical, hematologic, serologic, and polymerase chain reaction findings in horses experimentally infected with a European strain of Anaplasma phagocytophilum.
Journal of veterinary internal medicine    April 13, 2005   Volume 19, Issue 2 232-239 doi: 10.1892/0891-6640(2005)192.0.co;2
Franzén P, Aspan A, Egenvall A, Gunnarsson A, Aberg L, Pringle J.Six horses were experimentally infected by administration of horse blood containing a Swedish strain of Anaplasma phagocytophilum. The polymerase chain reaction (PCR) signal was consistently detected 2-3 days before appearance of clinical signs and persisted 4-9 days beyond abatement of clinical signs, whereas diagnostic inclusion bodies were 1st noted on average 2.6 +/- 1.5 (SD) days after onset of fever. Clinical signs and hematologic changes were largely indistinguishable from those previously reported for diseases caused by A phagocytophilum (formerly Ehrlichia equi--"Californian agent") a...
Development of a single-round and multiplex PCR method for the simultaneous detection of Babesia caballi and Babesia equi in horse blood.
Veterinary parasitology    April 9, 2005   Volume 129, Issue 1-2 43-49 doi: 10.1016/j.vetpar.2004.12.018
Alhassan A, Pumidonming W, Okamura M, Hirata H, Battsetseg B, Fujisaki K, Yokoyama N, Igarashi I.With the aim of developing more simple diagnostic alternatives, a differential single-round and multiplex polymerase chain reaction (PCR) method was designed for the simultaneous detection of Babesia caballi and Babesia equi, by targeting 18S ribosomal RNA genes. The multiplex PCR amplified DNA fragments of 540 and 392 bp from B. caballi and B. equi, respectively, in one reaction. The PCR method evaluated on 39 blood samples collected from domestic horses in Mongolia yielded similar results to those obtained from confirmative PCR methods that had been established earlier. Thus, the single-roun...
Expression of cell cycle associated proteins cyclin A, CDK-2, p27kip1 and p53 in equine sarcoids.
Cancer letters    April 6, 2005   Volume 221, Issue 2 237-245 doi: 10.1016/j.canlet.2004.08.039
Nixon C, Chambers G, Ellsmore V, Campo MS, Burr P, Argyle DJ, Reid SW, Nasir L.Equine sarcoids are benign fibroblastic skin tumours affecting equids worldwide. Whilst the pathogenesis is not entirely understood, infection with Bovine Papillomavirus (BPV) types 1 and 2 has been implicated as a major factor in the disease process, however the mechanism by which BPV infection contributes to sarcoid pathology is not clear. In this study, we show that the majority of sarcoids express the BPV-1 major transforming gene E6. Further, we demonstrate that sarcoid lesions are not associated with high levels of cellular proliferation as assessed by Ki67 expression or with expression ...
A recombinant envelope protein vaccine against West Nile virus.
Vaccine    April 6, 2005   Volume 23, Issue 30 3915-3924 doi: 10.1016/j.vaccine.2005.03.006
Ledizet M, Kar K, Foellmer HG, Wang T, Bushmich SL, Anderson JF, Fikrig E, Koski RA.West Nile (WN) virus is a flavivirus that first appeared in North America in 1999. Since then, more than 600 human deaths and 22,000 equine infections have been attributed to the virus in the United States. We expressed a truncated form of WN virus envelope (E) protein in Drosophila S2 cells. This soluble recombinant E protein was recognized by antibodies from naturally infected horses, indicating that it contains native epitopes. Mice and horses produced high-titer antibodies when immunized with recombinant E protein combined with aluminum hydroxide. Immunized mice were resistant to challenge...
[Horse Advisory Committee: ‘newborn foal’].
Tijdschrift voor diergeneeskunde    March 31, 2005   Volume 130, Issue 6 177-179 
Wesselink HG, Sloet van Oldruitenborgh-Oosterbaan MM.No abstract available
Serum antibody responses to equine herpesvirus 1 glycoprotein D in horses, pregnant mares and young foals.
Veterinary immunology and immunopathology    March 31, 2005   Volume 105, Issue 1-2 47-57 doi: 10.1016/j.vetimm.2004.12.012
Foote CE, Love DN, Gilkerson JR, Rota J, Trevor-Jones P, Ruitenberg KM, Wellington JE, Whalley JM.The envelope glycoprotein D of equine herpesvirus 1 (EHV-1 gD) has been shown in laboratory animal models to elicit protective immune responses against EHV-1 challenge, and hence is a potential vaccine antigen. Here we report that intramuscular inoculation of EHV-1 gD produced by a recombinant baculovirus and formulated with the adjuvant Iscomatrix elicited virus-neutralizing antibody and gD-specific ELISA antibody in the serum of over 90% of adult mixed breed horses. The virus-neutralizing antibody responses to EHV-1 gD were similar to those observed after inoculation with a commercially avai...
[The short- and long-term results of the “Intensive Care” of 160 sick neonatal foals].
Tijdschrift voor diergeneeskunde    March 31, 2005   Volume 130, Issue 6 168-173 
Welschen SE, de Bruijn CM, Sloet van Oldruitenborgh-Oosterbaan MM.The short- and long-term results of admission to the 'Neonatal Intensive Care Unit' (ICU) at the Department of Equine Sciences of the Utrecht University were evaluated. The patients were categorized, based on specific criteria, into different groups: 'Sepsis', 'Pneumonia', 'Enteritis', 'Asphyxia', 'Premature', 'Isoerythrolysis', and 'Equine herpes virus (EHV)'. The survival rate and mean duration of hospitalization were determined for each group. The venous blood variables at admission were compared for 'surviving' and 'non-surviving' foals within groups, between groups, and for the overall gr...
Rhodococcus equi-specific cytotoxic T lymphocytes in immune horses and development in asymptomatic foals.
Infection and immunity    March 24, 2005   Volume 73, Issue 4 2083-2093 doi: 10.1128/IAI.73.4.2083-2093.2005
Patton KM, McGuire TC, Hines MT, Mealey RH, Hines SA.Rhodococcus equi is an important cause of pneumonia in young horses; however, adult horses are immune due to their ability to mount protective recall responses. In this study, the hypothesis that R. equi-specific cytotoxic T lymphocytes (CTL) are present in the lung of immune horses was tested. Bronchoalveolar lavage (BAL)-derived pulmonary T lymphocytes stimulated with R. equi lysed infected alveolar macrophages and peripheral blood adherent cells (PBAC). As with CTL obtained from the blood, killing of R. equi-infected targets by pulmonary effectors was not restricted by equine lymphocyte all...
Ribotyping of Burkholderia mallei isolates.
FEMS immunology and medical microbiology    March 23, 2005   Volume 44, Issue 1 91-97 doi: 10.1016/j.femsim.2004.12.002
Harvey SP, Minter JM.In this study, the subspecies differentiation of 25 isolates of Burkholderia mallei was attempted based on their ribotype polymorphisms. The isolates were from human and equine infections that occurred at various times around the world. DNA samples from each isolate were digested separately with PstI and EcoRI enzymes and probed with an Escherichia coli-derived 18-mer rDNA sequence to identify diagnostic fragments. Seventeen distinct ribotypes were identified from the combined data obtained with the two restriction enzymes. The results demonstrate the general utility of ribotyping for the subs...
Prevalence of neutralizing antibodies to Equine rhinitis A and B virus in horses and man.
Veterinary microbiology    March 22, 2005   Volume 106, Issue 3-4 293-296 doi: 10.1016/j.vetmic.2004.12.029
Kriegshäuser G, Deutz A, Kuechler E, Skern T, Lussy H, Nowotny N.Equine rhinitis viruses (ERVs) are the causative agents of mild to severe upper respiratory infections in horses worldwide. Immunologically, four serotypes of ERVs have been identified. Equine rhinitis A virus (ERAV) and Equine rhinitis B virus 1 (ERBV1) are the most frequent serotypes in Europe. Both viruses have a broad host range in cultured cells with ERAV being able to infect humans. Since there is neither information on the seroprevalence of ERAV and ERBV1 in Austria nor on the zoonotic potential of ERBV1, we investigated 200 horse and 137 veterinary sera for the presence of neutralizing...
Gasterophilus pecorum in the soft palate of a British pony.
The Veterinary record    March 16, 2005   Volume 156, Issue 9 283-284 doi: 10.1136/vr.156.9.283
Smith MA, McGarry JW, Kelly DF, Proudman CJ.No abstract available
Investigation of suspected adverse reactions following strangles vaccination in horses.
The Veterinary record    March 16, 2005   Volume 156, Issue 9 291-292 doi: 10.1136/vr.156.9.291
Newton R, Waller A, King A.No abstract available
Equine viral arteritis control scheme: a brief review with emphasis on laboratory aspects of the scheme in New Zealand.
New Zealand veterinary journal    March 16, 2005   Volume 52, Issue 2 82-84 doi: 10.1080/00480169.2004.36409
Horner GW.To review laboratory aspects of the equine viral arteritis (EVA) control scheme in New Zealand between 1989 and 2002. Methods: The optimisation and performance of the virus neutralisation test (VNT) for equine arteritis virus (EAV) antibody, and the cell culture test to detect EAV in semen were analysed. Laboratory data and control scheme results were reviewed. Results: Using optimised tests, it has been shown that antibody prevalence in Standardbred horses has steadily declined from 54% to <20%. Prevalences in Thoroughbred horses have remained at a low level of around 3%. The number of horses...
Gene expression profiling of human promyelocytic cells in response to infection with Anaplasma phagocytophilum.
Cellular microbiology    March 12, 2005   Volume 7, Issue 4 549-559 doi: 10.1111/j.1462-5822.2004.00485.x
de la Fuente J, Ayoubi P, Blouin EF, Almazán C, Naranjo V, Kocan KM.Anaplasma phagocytophilum (Rickettsiales: Anaplasmataceae) causes human, equine and canine granulocytic anaplasmosis and tick-borne fever of ruminants. The rickettsia parasitizes granulocytes and bone marrow progenitor cells, and can be propagated in human promyelocytic and tick cell lines. In this study, microarrays of synthetic polynucleotides of 21,329 human genes were used to identify genes that are differentially expressed in HL-60 human promyelocytic cells in response to infection with A. phagocytophilum. Semi-quantitative reverse transcription polymerase chain reaction (RT-PCR) of selec...
Characterization of equine intestinal fatty acid binding protein and its use in managing horses with colic.
American journal of veterinary research    March 11, 2005   Volume 66, Issue 2 223-232 doi: 10.2460/ajvr.2005.66.223
Nieto JE, Aldridge BM, Beldomenico PM, Aleman M, Snyder JR.To determine the nucleotide sequence of the equine intestinal fatty acid binding protein (I-FABP) gene, its expression in various regions of the gastrointestinal tract, and the use of measuring I-FABP in horses with colic. Animals-86 horses with colic. Methods: The mRNA sequence for the I-FABP gene was obtained by use of a rapid amplification of complementary DNA ends technique. Comparative I-FABP gene expression was quantitated by use of a real-time reverse transcription-polymerase chain reaction assay. Amounts of I-FABP in abdominal fluid and plasma were measured by use of an ELISA kit. Asso...
Methicillin-resistant Staphylococcus aureus in horses and horse personnel, 2000-2002.
Emerging infectious diseases    March 11, 2005   Volume 11, Issue 3 430-435 doi: 10.3201/eid1103.040481
Weese JS, Archambault M, Willey BM, Hearn P, Kreiswirth BN, Said-Salim B, McGeer A, Likhoshvay Y, Prescott JF, Low DE.Methicillin-resistant Staphylococcus aureus (MRSA) infection was identified in 2 horses treated at a veterinary hospital in 2000, prompting a study of colonization rates of horses and associated persons. Seventy-nine horses and 27 persons colonized or infected with MRSA were identified from October 2000 to November 2002; most isolations occurred in a 3-month period in 2002. Twenty-seven (34%) of the equine isolates were from the veterinary hospital, while 41 (51%) were from 1 thoroughbred farm in Ontario. Seventeen (63%) of 27 human isolates were from the veterinary hospital, and 8 (30%) were ...
Postdosing colic and diarrhoea in horses with serological evidence of tapeworm infection.
The Veterinary record    March 9, 2005   Volume 156, Issue 8 252-253 doi: 10.1136/vr.156.8.252
Barrett EJ, Blair CW, Farlam J, Proudman CJ.No abstract available
West Nile virus in Morocco, 2003.
Emerging infectious diseases    March 9, 2005   Volume 11, Issue 2 306-309 doi: 10.3201/eid1102.040817
Schuffenecker I, Peyrefitte CN, el Harrak M, Murri S, Leblond A, Zeller HG.West Nile virus (WNV) reemerged in Morocco in September 2003, causing an equine outbreak. A WNV strain isolated from a brain biopsy was completely sequenced. On the basis of phylogenetic analyses, Moroccan WNV strains isolated during the 1996 and 2003 outbreaks were closely related to other strains responsible for equine outbreaks in the western Mediterranean basin.