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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.
The diversity of coliphages and coliforms in horse feces reveals a complex pattern of ecological interactions.
Applied and environmental microbiology    August 17, 2007   Volume 73, Issue 19 5975-5981 doi: 10.1128/AEM.01145-07
Golomidova A, Kulikov E, Isaeva A, Manykin A, Letarov A.The diversity of coliphages and indigenous coliform strains (ICSs) simultaneously present in horse feces was investigated by culture-based and molecular methods. The richness of coliforms (as estimated by the Chao1 method) is about 1,000 individual ICSs distinguishable by genomic fingerprinting present in a single sample of feces. This unexpectedly high value indicates that some factor limits the competition of coliform bacteria in the horse gut microbial system. In contrast, the diversity of phages active against any selected ICS is generally limited to one to three viral genotypes present in...
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
Experimental Rhodococcus equi and equine infectious anemia virus DNA vaccination in adult and neonatal horses: effect of IL-12, dose, and route.
Vaccine    August 15, 2007   Volume 25, Issue 43 7582-7597 doi: 10.1016/j.vaccine.2007.07.055
Mealey RH, Stone DM, Hines MT, Alperin DC, Littke MH, Leib SR, Leach SE, Hines SA.Improving the ability of DNA-based vaccines to induce potent Type1/Th1 responses against intracellular pathogens in large outbred species is essential. Rhodoccocus equi and equine infectious anemia virus (EIAV) are two naturally occurring equine pathogens that also serve as important large animal models of neonatal immunity and lentiviral immune control. Neonates present a unique challenge for immunization due to their diminished immunologic capabilities and apparent Th2 bias. In an effort to augment R. equi- and EIAV-specific Th1 responses induced by DNA vaccination, we hypothesized that a du...
Detection and semi-quantification of Strongylus vulgaris DNA in equine faeces by real-time quantitative PCR.
International journal for parasitology    August 14, 2007   Volume 38, Issue 3-4 443-453 doi: 10.1016/j.ijpara.2007.07.014
Nielsen MK, Peterson DS, Monrad J, Thamsborg SM, Olsen SN, Kaplan RM.Strongylus vulgaris is an important strongyle nematode with high pathogenic potential infecting horses world-wide. Several decades of intensive anthelmintic use has virtually eliminated clinical disease caused by S. vulgaris, but has also caused high levels of anthelmintic resistance in equine small strongyle (cyathostomin) nematodes. Recommendations aimed at limiting the development of anthelmintic resistance by reducing treatment intensity raises a simultaneous demand for reliable and accurate diagnostic tools for detecting important parasitic pathogens. Presently, the only means available t...
Delivery of health and husbandry improvements to working animals in Africa.
Tropical animal health and production    August 9, 2007   Volume 38, Issue 2 93-101 doi: 10.1007/s11250-006-4363-y
Pearson RA, Krecek RC.Problems have been identified in the delivery of extension messages about the maintenance of healthy and well-fed working animals. The different factors that need to be considered in developing effective disease control and prevention programmes for working oxen and equids including vector-borne diseases, helminth disease, and vaccination programmes have been reported and discussed and experiences in improving husbandry including footcare, harness, and worm management reported. Most draught animals are owned by people who lack the financial means to pay for or to access the information needed ...
Lentzea kentuckyensis sp. nov., of equine origin.
International journal of systematic and evolutionary microbiology    August 9, 2007   Volume 57, Issue Pt 8 1780-1783 doi: 10.1099/ijs.0.64245-0
Labeda DP, Donahue JM, Sells SF, Kroppenstedt RM.A novel actinomycete, designated strain LDDC 2876-05(T), was isolated from an equine placenta during the course of routine diagnostic tests for nocardioform placentitis. In a preliminary study, the strain was observed to be phylogenetically distinct from the genera Crossiella and Amycolatopsis and probably a member of the genus Lentzea. A polyphasic study of strain LDDC 2876-05(T) confirmed its identification as a member of Lentzea on the basis of its chemotaxonomic and morphological similarity to all of the known species of the genus. Moreover, the strain could be distinguished from other spe...
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...
Could we eradicate strangles in equids?
Journal of the American Veterinary Medical Association    August 3, 2007   Volume 231, Issue 3 377-378 doi: 10.2460/javma.231.3.377
Prescott JF, Timoney JF.No abstract available
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
VanA-type vancomycin-resistant enterococci in equine and swine rectal swabs and in human clinical samples.
Current microbiology    July 25, 2007   Volume 55, Issue 3 240-246 doi: 10.1007/s00284-007-0115-0
de Niederhäusern S, Sabia C, Messi P, Guerrieri E, Manicardi G, Bondi M.Vancomycin-resistant enterococci (VRE) in healthy people and in food-producing animals seems to be quite common in Europe. The existence of this community reservoir of VRE has been associated with the massive use of avoparcin in animal husbandry. Eight years after the avoparcin ban in Europe, we investigated the incidence of VanA enterococci, their resistance patterns, and the mobility of their glycopeptide-resistance determinants in a sampling of animal rectal swabs and clinical specimens. A total of 259 enterococci isolated from equine, swine, and clinical samples were subcultured on KF-stre...
[Role of IgE-dependent reactions in atopic dermatitis].
Medycyna wieku rozwojowego    July 13, 2007   Volume 11, Issue 2 Pt 1 135-138 
Dynowski J, Wasowska-Królikowska K, Modzelewska-Hołyńska M, Tomaszewska M, Funkowicz M.Atopic dermatitis is a disease of multifactorial pathogenesis. Objective: of the study was to establish the most common allergens responsible for development of atopic symptoms in children with atopic dermatitis. Methods: the study complied 36 children aged 4 months - 3 years treated in the Department of Children Allergology, Gastroenterology and Nutrition because of atopic dermatitis. With each case the patient and family history of atopy was collected and basic laboratory tests were conducted (including total IgE and specific IgE using Polly Check system). Results: eosinophilia was found in ...
Validation of the indirect fluorescent antibody and the complement fixation tests for the diagnosis of Theileria equi.
Veterinary parasitology    July 13, 2007   Volume 148, Issue 2 102-108 doi: 10.1016/j.vetpar.2007.06.006
Ogunremi O, Georgiadis MP, Halbert G, Benjamin J, Pfister K, Lopez-Rebollar L.The indirect fluorescent antibody (IFA) test for Theileria equi was evaluated to assess test's suitability for the serological diagnosis of equine piroplasmosis, to provide performance parameters for the purpose of test validation, and to compare it with the complement fixation (CF) test. Using a protocol that included Evan's blue, the specificity of the IFA test was estimated at 99.0% for T. equi by the classical method of analysis, and 96.6% by the Bayesian method. The use of Evan's blue in the test protocol increased test specificity and contributed to an excellent test agreement between tw...
Evidence-based immunization in horses.
The Veterinary clinics of North America. Equine practice    July 10, 2007   Volume 23, Issue 2 481-508 doi: 10.1016/j.cveq.2007.04.003
Barquero N, Gilkerson JR, Newton JR.Evidence of vaccine efficacy is essential for practitioners when giving advice to clients about the relative merits of different vaccines or when trying to evaluate the economic benefits of instituting a vaccine program. In equine veterinary medicine, this sort of data, which are necessary to make informed decisions about vaccine use and effectiveness, are often not available. Veterinarians need to consider the epidemiology of the disease in question, the type of vaccine that they are administering to the animal, the immunologic constraints of the vaccine technology, and the available evidence...
Community-associated MRSA SCCmec type IVd in Irish equids.
The Veterinary record    July 10, 2007   Volume 161, Issue 1 35-36 doi: 10.1136/vr.161.1.35
Maeda Y, Millar BC, Loughrey A, Goldsmith CE, Rooney PJ, Moore JE, Rao J, Buckley T, Egan C, Dooley JS, Lowery CJ, Matsuda M.No abstract available
Establishment of a panel of reference Trypanosoma evansi and Trypanosoma equiperdum strains for drug screening.
Veterinary parasitology    July 10, 2007   Volume 148, Issue 2 114-121 doi: 10.1016/j.vetpar.2007.05.020
Gillingwater K, Büscher P, Brun R.The animal pathogenic protozoan, Trypanosoma evansi, leads to a wasting disease in equines, cattle and camels, commonly known as Surra. It is extensively distributed geographically with a wide range of mammalian hosts and causes great economical loss. Trypanosoma equiperdum causes a venereal disease called Dourine in horses and donkeys. Chemotherapy appears to be the most effective form of control for T. evansi, whereas infections caused by T. equiperdum are considered incurable. Due to emerging drug resistance, efficient control of T. evansi is severely threatened, emphasising the urgent need...
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
Comparative evaluation of Rose Bengal plate agglutination test, mallein test, and some conventional serological tests for diagnosis of equine glanders. Naureen A, Saqib M, Muhammad G, Hussain MH, Asi MN.The Rose Bengal plate agglutination test (RBT) was evaluated for the diagnosis of equine glanders, and its diagnostic efficiency was compared with that of mallein and other serological tests, including indirect hemagglutination test (IHAT), complement fixation test (CFT), and modified counter immunoelectrophoresis test (mCIET). Sera from 70 naturally infected culture-positive, 96 potentially exposed cohorts, and 110 healthy equines were tested. All tests but mCIET showed 100% specificity when testing the sera from glanders-negative equines. The calculated sensitivities of RBT, IHAT, CFT, mCIET...
Seroprevalence of Neospora spp. among asymptomatic horses, aborted mares and horses demonstrating neurological signs in Israel.
Veterinary parasitology    July 5, 2007   Volume 148, Issue 2 109-113 doi: 10.1016/j.vetpar.2007.06.002
Kligler EB, Shkap V, Baneth G, Mildenberg Z, Steinman A.Sera from 800 asymptomatic horses were examined for the presence of antibodies to Neospora caninum by immunofluorescence antibody test (IFAT). The presence of antibodies to N. caninum was also tested in sera from 52 mares that had aborted and 40 horses exhibiting neurological signs. A total of 95 (11.9%) of the 800 sera had antibodies for Neospora. Significantly higher seropositivity was obtained from horses that had neurological signs (21.2%) and from aborted mares (37.5%). There was significant linear-by-linear association between age and seropositivity. This is the first serologic survey fo...
What is your diagnosis? Onchocerciasis.
Journal of the American Veterinary Medical Association    July 4, 2007   Volume 231, Issue 1 39-40 doi: 10.2460/javma.231.1.39
Metry CA, Beard DM, Simon E.No abstract available
The comparative morphology of three equine habronematid nematodes: SEM observations.
Parasitology research    July 4, 2007   Volume 101, Issue 5 1303-1310 doi: 10.1007/s00436-007-0637-1
Naem S.Drashia megastoma Rudolphi, 1819, Habronema muscae Carter, 1861 and Habronema microstoma Schneider, 1866 are found in the stomach of equine definitive hosts and are known to cause pathogenic effects in the stomach wall, skin, eye and occasionally other sites. These nematodes utilise either house flies or stable flies as their intermediate hosts. Apart from molecular findings that have demonstrated some of the differences between H. muscae and H. microstoma, no detailed morphological description of equine habronematid nematodes has been presented. This article describes most surface features of...
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...
[Detection of Babesia caballi (Nuttall, 1910) and Theileria equi (Syn. Babesia equi , Laveran, 1901) by the polymerase chain reaction (PCR) in show and sport horses in the region of Ankara].
Turkiye parazitolojii dergisi    June 28, 2007   Volume 31, Issue 2 89-93 
Güçlü HZ, Karaer KZ.The aim of this study was to compare the diagnosis of Babesia caballi and Theileria equi by the polymerase chain reaction (PCR) and microscopic examination of blood specimens collected from show and sport horses in the region of Ankara in 2004. The blood specimens were collected from randomly selected 200 show and sport horses in the region of Ankara during the tick season as well as before and after the tick season for PCR testing. At the same time, Giemsa stained peripheral blood smears were examined for the presence of Babesia spp. and also the horses were examined for the presence of ticks...
[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...
Equine rhinosporidiosis.
The Veterinary record    June 26, 2007   Volume 160, Issue 25 883 doi: 10.1136/vr.160.25.883-c
Peaty M.No abstract available
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
Is there a benefit from an early booster vaccination in the control of equine influenza?
Veterinary journal (London, England : 1997)    June 7, 2007   Volume 174, Issue 3 592-598 doi: 10.1016/j.tvjl.2007.03.004
Heldens JG, van Loon AA, van de Zande S.Conventional equine influenza vaccination schedules consist of a primary course of two vaccinations given 4-6 weeks apart followed by a third vaccination (booster) given approximately 5 months later. In between the primary course and the third vaccination, horses are generally considered not to be adequately protected against influenza. This study aimed to investigate whether Thoroughbred foals would benefit from a vaccination schedule in which the third vaccination was given earlier than in conventional vaccination schedules. The vaccines used were an inactivated whole virus equine influenza ...