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Topic:Tick-Borne Diseases

Tick-borne diseases in horses refer to illnesses transmitted by tick vectors, affecting equine health through various pathogens. These diseases can lead to a range of clinical symptoms, including fever, lethargy, and lameness, depending on the specific pathogen involved. Common tick-borne diseases affecting horses include Lyme disease, equine piroplasmosis, and anaplasmosis. Diagnosis often involves serological tests, PCR assays, and clinical evaluation. Understanding the ecology of ticks and their interaction with horses is essential for managing and preventing these diseases. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, diagnosis, and management of tick-borne diseases in horses.
[HPLC separation and characterization of tick-borne encephalitis and equine Venezuela encephalomyelitis viral proteins].
Bioorganicheskaia khimiia    July 28, 1999   Volume 25, Issue 4 253-256 
Akimenko ZA, Ofitserov VI, Shaprov VV, Iastrebov SI.Homogeneous (according to PAGE) capsid and surface viral proteins were isolated from concentrated purified suspensions of tick-borne encephalitis and Venezuelan equine encephalomyelitis viruses by one-stage reversed-phase HPLC. The amino acid composition and the sequences of their N-terminal parts were determined.
Arboviral infections of the central nervous system–United States, 1996-1997.
MMWR. Morbidity and mortality weekly report    July 17, 1998   Volume 47, Issue 25 517-522 
Arboviruses include mosquitoborne and tickborne agents that persist in nature in complex cycles involving birds or mammals, including humans. Arboviral infection can cause fever, headache, meningitis, encephalitis, and sometimes death. During 1996-1997, health departments in 19 states reported to CDC 286 confirmed or probable cases (eight fatal) of arboviral encephalitis in humans (132 cases in 1996 and 154 provisionally in 1997). Surveillance programs in 18 states detected enzootic arboviral activity in mosquito or sentinel or wild bird populations, and cases of arboviral disease were recogni...
Dermatophilosis and abscessation of lymph nodes in a group of tick-infested horses in Uganda.
Tropical animal health and production    May 1, 1997   Volume 29, Issue 2 102-104 doi: 10.1007/BF02632328
Shannon D.No abstract available
Nested polymerase chain reaction for detection of Ehrlichia risticii genomic DNA in infected horses.
Veterinary parasitology    March 1, 1997   Volume 68, Issue 4 367-373 doi: 10.1016/s0304-4017(96)01083-7
Barlough JE, Rikihisa Y, Madigan JE.A nested polymerase chain reaction was developed for amplifying a 529-bp segment of the 16S ribosomal RNA gene of Ehrlichia risticii from equine buffy coat cells. Confirmation of identity of the amplified bands was accomplished by Southern hybridization and DNA sequencing. The study indicated a detection limit of > 10 copies of the target gene, and specificity for E. risticii as based on a panel of test rickettsiae. Ticks (Ixodes pacificus) collected in an area of northern California enzootic for equine monocytic ehrlichiosis were found to be negative for E. risticii DNA.
Serologic diagnosis of canine and equine borreliosis: use of recombinant antigens in enzyme-linked immunosorbent assays.
Journal of clinical microbiology    January 1, 1997   Volume 35, Issue 1 169-173 doi: 10.1128/jcm.35.1.169-173.1997
Magnarelli LA, Flavell RA, Padula SJ, Anderson JF, Fikrig E.Serum samples from dogs and equids suspected of having canine or equine borreliosis, respectively, were analyzed in polyvalent enzyme-linked immunosorbent assays (ELISAs) with whole-cell or recombinant antigens of Borrelia burgdorferi sensu stricto. Purified preparations of recombinant antigens included outer surface protein A (OspA), OspB, OspC, OspE, OspF, and p41-G (a fragment of flagellin). Of the 36 dog sera that reacted positively to whole-cell antigen, 32 (88.9%) contained antibodies to one or more recombinant antigens. Reactivities to OspF (88.9% positive) and p41-G (75% positive) were...
A sero-epidemiological survey of equine piroplasmosis in the northern and eastern Cape Provinces of South Africa.
Journal of the South African Veterinary Association    December 1, 1996   Volume 67, Issue 4 204-208 
Gummow B, de Wet CS, de Waal DT.Serum samples from yearling Thoroughbred horses (n = 176) in the magisterial districts of Colesberg, Venterstad, and Wodehouse in the Northern and Eastern Cape Provinces were collected between September and November 1995 to determine the prevalence of antibodies to Babesia equi and Babesia caballi in these regions. Samples were examined for specific antibodies using the indirect fluorescent antibody test. The 95% confidence intervals for the prevalence of serum antibodies in the 3 districts combined varied from 47% to 61% for B. equi and from 26% to 40% for B. caballi. Antibody prevalence did ...
Babesiosis in a foal.
The Veterinary record    October 26, 1996   Volume 139, Issue 17 428 
Silvey RE.No abstract available
Nested polymerase chain reaction for detection of Ehrlichia equi genomic DNA in horses and ticks (Ixodes pacificus).
Veterinary parasitology    June 1, 1996   Volume 63, Issue 3-4 319-329 doi: 10.1016/0304-4017(95)00904-3
Barlough JE, Madigan JE, DeRock E, Bigornia L.A nested polymerase chain reaction for detecting Ehrlichia equi in horses and ticks (Ixodes pacificus) was developed. A major second-round PCR product of 928 bp could be readily visualized in ethidium bromide-stained agarose minigels. An internal probe was used to verify the identity of the amplified product by non-radioactive (digoxigenin-based) Southern blotting; additional confirmation was provided by DNA sequence analysis. A dilution study testing the sensitivity of the PCR indicated that DNA derived from 3 infected neutrophils was sufficient to generate a PCR signal. The specificity of t...
Survey on the distribution of ticks of domestic animals in the eastern zone of Ethiopia.
Tropical animal health and production    May 1, 1996   Volume 28, Issue 2 145-146 
Tafesse B.No abstract available
A case of Ehrlichia equi in an adult horse in British Columbia.
The Canadian veterinary journal = La revue veterinaire canadienne    March 1, 1996   Volume 37, Issue 3 174-175 
Berrington A, Moats R, Lester S.No abstract available
Ixodes pacificus (Acari: Ixodidae) as a vector of Ehrlichia equi (Rickettsiales: Ehrlichieae).
Journal of medical entomology    January 1, 1996   Volume 33, Issue 1 1-5 doi: 10.1093/jmedent/33.1.1
Richter PJ, Kimsey RB, Madigan JE, Barlough JE, Dumler JS, Brooks DL.Ehrlichia equi, a rickettsia described from horses in California 30 yr ago, causes equine granulocytic ehrlichiosis throughout the Americas and possibly Europe. Here, we report experimental transmission of E. equi from infected to susceptible horses through bites of western blacklegged ticks, Ixodes pacificus (Cooley & Kohls). In preliminary field studies, only I. pacificus consistently infested horses and vegetation at 3 locations with contemporary cases of equine ehrlichosis, and in particular, I. pacificus was the only species found attached to all of the infected horses. Exposure to bites ...
Epidemiological aspects of equine babesioses in a herd of horses in Brazil.
Veterinary parasitology    May 1, 1995   Volume 58, Issue 1-2 1-8 doi: 10.1016/0304-4017(94)00704-g
Pfeifer Barbosa I, Böse R, Peymann B, Friedhoff KT.Epidemiological studies of Babesia equi and B. caballi were undertaken in a herd of 120 pastured horses in Rio de Janeiro, Brazil. The area where the horses were held was shown to be highly endemic for both Babesia spp., i.e. the prevalence of B. equi antibodies in horses aged 6 months or older ranged from 90.6% to 100% as determined by the immunofluorescence antibody (IFA) test, and the prevalence of B. caballi antibodies as determined by Western blot ranged from 59.4% to 65.5%. From the herd, 20 foals and their dams were selected to estimate the degree of tick infestation and the foals were ...
The transmission and geographical spread of African horse sickness and bluetongue viruses.
Annals of tropical medicine and parasitology    February 1, 1995   Volume 89, Issue 1 1-15 doi: 10.1080/00034983.1995.11812923
Mellor PS, Boorman J.African horse sickness virus (AHSV) and bluetongue virus (BTV) are dsRNA viruses within the genus Orbivirus. Both are able to cause non-contagious, infectious arthropod-borne diseases in their respective vertebrate hosts. AHSV infects equines and occasionally dogs, whereas BTV replicates in ruminants. The disease caused by AHSV is usually at its most severe in horses, whereas certain breeds of sheep are particularly sensitive to BTV infection. AHSV is endemic in sub-Saharan Africa but periodically makes brief excursions beyond this area. BTV occurs much more widely and can be found in a band a...
Nematocera (Ceratopogonidae, Psychodidae, Simuliidae and Culicidae) and control methods.
Revue scientifique et technique (International Office of Epizootics)    December 1, 1994   Volume 13, Issue 4 1175-1199 doi: 10.20506/rst.13.4.819
Braverman Y.The biology, veterinary importance and control of certain Nematocera are described and discussed. Culicoides spp. (family Ceratopogonidae) transmit the arboviruses of bluetongue (BT), African horse sickness (AHS), bovine ephemeral fever (BEF) and Akabane. Some other arboviruses have been isolated from these species, while fowl pox has been transmitted experimentally by Culicoides. These insects are vectors of the parasitic protozoans Leucocytozoon caulleryi and Haemoproteus nettionis, and the parasitic nematodes Onchocerca gutturosa, O. gibsoni and O. cervicalis. They also cause recurrent summ...
Equine granulocytic ehrlichiosis in the UK.
The Veterinary record    October 15, 1994   Volume 135, Issue 16 387-388 doi: 10.1136/vr.135.16.387
Korbutiak E, Schneiders D.No abstract available
Diseases of summer: EEE and Lyme disease.
Rhode Island medicine    September 1, 1994   Volume 77, Issue 9 330-331 
Bandy U, Donnelly E.No abstract available
Epizootiology and vectors of African horse sickness virus.
Comparative immunology, microbiology and infectious diseases    August 1, 1994   Volume 17, Issue 3-4 287-296 doi: 10.1016/0147-9571(94)90048-5
Mellor PS.African horse sickness (AHS) virus causes a non-contagious, infectious, arthropod-borne disease of equines and is enzootic in sub-Saharan Africa. The major vectors are species of Culicoides but mosquitoes and ticks may be involved. Periodically the virus makes excursions beyond its enzootic zones but until recently has not been able to maintain itself outside these areas for more than 2-3 consecutive years. This is probably due to a number of factors including the absence of a long term vertebrate reservoir, the prevalence and seasonal incidence of the vectors and the efficiency of control mea...
Lyme disease: a rare but clinically important disease in the UK.
Equine veterinary journal    May 1, 1994   Volume 26, Issue 3 175-177 doi: 10.1111/j.2042-3306.1994.tb04364.x
Rees DH, Axford JS.No abstract available
Studies on oral transmission of Potomac horse fever.
Journal of veterinary internal medicine    March 1, 1994   Volume 8, Issue 2 87-92 doi: 10.1111/j.1939-1676.1994.tb03203.x
Palmer JE, Benson CE.Eight normal ponies placed in direct contact with ponies experimentally infected with Ehrlichia risticii for 30 to 90 days did not develop signs of Potomac horse fever. They also did not seroconvert, and they remained susceptible to IV infection. One of 8 ponies that were force fed fresh feces from infected ponies while in direct contact with ponies experimentally infected with E. risticii developed Potomac horse fever and seroconverted. The other 7 remained asymptomatic, did not seroconvert, and were susceptible to IV infection. Six of 9 ponies inoculated with E. risticii via nasogastric intu...
The development of Babesia (Theileria) equi (Laveran, 1901) in the gut and the haemolymph of the vector ticks, Hyalomma species.
Parasitology research    January 1, 1994   Volume 80, Issue 4 297-302 doi: 10.1007/BF02351869
Zapf F, Schein E.The development of the piroplasm Babesia equi was studied by light microscopy in the gut and the haemolymph of three different Hyalomma species during and after the nymphs had engorged on parasitaemic horses. The stock of B. equi used was isolated from a horse imported from Turkmenistan (CIS) in 1991. The existence of gamogony was identified by the occurrence of gamonts and gametes in the gut contents of the nymphs at between 3 and 4 days after infestation of the nymphs, before the ticks dropped off the experimentally infected horses. Zygotes and kinetes were observed in the intestinal cells f...
Medically important arboviruses of the United States and Canada.
Clinical microbiology reviews    January 1, 1994   Volume 7, Issue 1 89-116 doi: 10.1128/CMR.7.1.89
Calisher CH.Of more than 500 arboviruses recognized worldwide, 5 were first isolated in Canada and 58 were first isolated in the United States. Six of these viruses are human pathogens: western equine encephalitis (WEE) and eastern equine encephalitis (EEE) viruses (family Togaviridae, genus Alphavirus), St. Louis encephalitis (SLE) and Powassan (POW) viruses (Flaviviridae, Flavivirus), LaCrosse (LAC) virus (Bunyaviridae, Bunyavirus), and Colorado tick fever (CTF) virus (Reoviridae, Coltivirus). Their scientific histories, geographic distributions, virology, epidemiology, vectors, vertebrate hosts, transm...
Serologic evidence of canine and equine ehrlichiosis in northeastern United States.
Journal of clinical microbiology    November 1, 1993   Volume 31, Issue 11 2857-2860 doi: 10.1128/jcm.31.11.2857-2860.1993
Magnarelli LA, Anderson JF.In a retrospective study, indirect fluorescent-antibody staining methods were used to detect immunoglobulins to Ehrlichia canis and Ehrlichia risticii in canine and equine sera that had originally been analyzed for antibodies to Borrelia burgdorferi. Analyses of 60 dog serum specimens collected in Connecticut and New York State during 1986 revealed antibodies to E. canis in 7 (11.7%) specimens; titration endpoints ranged from 1:40 to 1:320. Three of these dogs had anemia. Of the 187 equine serum specimens obtained in Connecticut during 1985 and analyzed by indirect fluorescent-antibody stainin...
Potomac horse fever.
The Veterinary clinics of North America. Equine practice    August 1, 1993   Volume 9, Issue 2 399-410 doi: 10.1016/s0749-0739(17)30406-6
Palmer JE.E. risticii, the cause of classic Potomac horse fever, is now known to produce two disease syndromes: EEC and EEA. The pathogen appears to commonly infect horses based on seroepidemiologic studies; however, the method of transmission remains unknown. The most common clinical disease is EEC, commonly called Potomac horse fever, which presents a wide spectrum of clinical signs. Diagnosis is currently dependent on serology, which frequently does not lead to a definitive diagnosis and at best results in a retrospective diagnosis. A new diagnostic approach, polymerase chain reaction, may offer a ra...
[Selected ectoparasitoses in animals].
Schweizerische medizinische Wochenschrift    June 19, 1993   Volume 123, Issue 24 1256-1267 
Eckert J.Selected ectoparasitoses of animals are reviewed with special reference to the situation in Switzerland. The review contains information on the parasitoses leishmaniasis of dogs, parafilariasis of equines and cattle, onchocercosis of cattle and horses, ixodiosis, demodicosis of dogs and scabies of domestic animals, fly infestation, myiasis, and infestation with fleas and black flies (simuliidiosis). In addition to information on prevalence, biology and pathogenic effects of ectoparasites, the review provides indications on diagnosis and control.
African horse sickness: transmission and epidemiology.
Veterinary research    January 1, 1993   Volume 24, Issue 2 199-212 
Mellor PS.African horse sickness (AHS) virus causes a non-contagious, infectious, arthropod-borne disease of equines and occasionally of dogs. The virus is widely distributed across sub-Saharan African where it is transmitted between susceptible vertebrate hosts by the vectors. These are usually considered to be species of Culicoides biting midges but mosquitoes and/or ticks may also be involved to a greater or lesser extent. Periodically the virus makes excursions beyond its sub-Saharan enzootic zones but until recently does not appear to have been able to maintain itself outside these areas for more t...
Antibody to a recombinant merozoite protein epitope identifies horses infected with Babesia equi.
Journal of clinical microbiology    December 11, 1992   Volume 30, Issue 12 3122-3126 doi: 10.1128/jcm.30.12.3122-3126.1992
Knowles DP, Kappmeyer LS, Stiller D, Hennager SG, Perryman LE.Horses infected with Babesia equi were previously identified by the presence of antibodies reactive with a merozoite surface protein epitope (D. P. Knowles, Jr., L. E. Perryman, L. S. Kappmeyer, and S. G. Hennager. J. Clin. Microbiol. 29:2056-2058, 1991). The antibodies were detected in a competitive inhibition enzyme-linked immunosorbent assay (CI ELISA) by using monoclonal antibody 36/133.97, which defines a protein epitope on the merozoite surface. The gene encoding this B. equi merozoite epitope was cloned and expressed in Escherichia coli. The recombinant merozoite protein, designated equ...
Are tick-borne diseases also horse-borne?
The New England journal of medicine    January 2, 1992   Volume 326, Issue 1 72 doi: 10.1056/NEJM199201023260122
Jerace CK.No abstract available
A monoclonal antibody defines a geographically conserved surface protein epitope of Babesia equi merozoites.
Infection and immunity    July 11, 1991   Volume 59, Issue 7 2412-2417 doi: 10.1128/iai.59.7.2412-2417.1991
Knowles DP, Perryman LE, Goff WL, Miller CD, Harrington RD, Gorham JR.Babesiosis is a tick-borne hemoparasitic disease affecting horses worldwide. To investigate mechanisms of immunity to this parasite, the antibody response of infected horses to Babesia equi merozoite proteins was evaluated. Immunoprecipitation of B. equi merozoite antigens with sera from infected horses revealed 11 major proteins of 210, 144, 108, 88, 70, 56, 44, 36, 34, 28, and 25 kDa. Monoclonal antibody (MAb) 36/133.97, which binds to live merozoites, immunoprecipitated proteins of 44, 36, 34, and 28 kDa. When immunoprecipitations were performed with in vitro translation products of merozoi...
Seroepidemiologic survey of antibodies to Ehrlichia equi in horses of northern California.
Journal of the American Veterinary Medical Association    June 15, 1990   Volume 196, Issue 12 1962-1964 
Madigan JE, Hietala S, Chalmers S, DeRock E.The prevalence of antibodies to Ehrlichia equi in horses from the foothill regions of northern California and from the Sacramento valley (non-foothill area) was determined, using an indirect fluorescent antibody test. Horses from foothill regions had a higher prevalence of seropositivity (10.4%) and higher titer (1:10 to 1:80) than did those from non-foothill regions (3.1%; titer less than or equal to 1:10). Fifty percent of healthy horses on a foothill farm enzootic for E equi had titer to E equi, suggesting that infection with E equi can be subclinical. Six veterinarians surveyed from northe...
Ehrlichiosis–a disease of animals and humans.
The Journal of infectious diseases    April 1, 1990   Volume 161, Issue 4 609-617 doi: 10.1093/infdis/161.4.609
McDade JE.Ehrlichiae are one of several kinds of obligate intracellular bacteria. Taxonomically, they are grouped with rickettsiae, but they can be distinguished by their unique tropism for circulating leukocytes. Ehrlichia canis causes a pancytopenia in dogs that becomes chronic if untreated. Certain breeds develop severe infections, characterized by fever, anorexia, dramatic weight loss, marked pancytopenia, anemia, peripheral edema, and hemorrhage. Ehrlichia risticii, a recently discovered species, is the cause of a serious diarrheal disease of horses. Other species of ehrlichiae have been documented...