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Topic:Vector-borne disease

Vector-borne diseases in horses are illnesses transmitted by vectors such as mosquitoes, ticks, and flies. These diseases can affect equine health by introducing pathogens like viruses, bacteria, or parasites into the horse's system. Common vector-borne diseases in horses include West Nile Virus, Equine Infectious Anemia, and Lyme disease. The transmission dynamics, clinical manifestations, and management strategies for these diseases vary depending on the pathogen and vector involved. Understanding these aspects is important for developing preventive measures and treatment protocols. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, and management of vector-borne diseases in equines.
Transmission of eastern equine encephalomyelitis virus in central Alabama.
The American journal of tropical medicine and hygiene    July 24, 2003   Volume 68, Issue 4 495-500 
Cupp EW, Klingler K, Hassan HK, Viguers LM, Unnasch TR.A site near Tuskegee, Alabama was examined for vector activity of eastern equine encephalomyelitis (EEE) virus in 2001. More than 23,000 mosquitoes representing 8 genera and 34 species were collected during a 21-week period, and five species, Culiseta melanura, Aedes vexans, Coquillettidia perturbans, Culex erraticus, and Uranotaenia sapphirina, were examined for the presence of virus using a nested reverse transcriptase-polymerase chain reaction for EEE virus. Each species was infected at various times of the mosquito season (May-September) with different minimum infection rates (MIRs). Culis...
Equine ehrlichiosis in Italy.
Annals of the New York Academy of Sciences    July 16, 2003   Volume 990 259-263 doi: 10.1111/j.1749-6632.2003.tb07374.x
Scarpulla M, Caristo ME, Macri G, Lillini E.The authors review equine granulocytic ehrlichiosis (EGE) in Italy from 1996 to 2002. In 1996, the first case of EGE has been observed in a horse affected with specific symptomatology (fever, lethargy, anorexia, limb edema, thrombocytopenia, and petechiae). In 1997, a seroepidemiological survey was performed in the province of Rome on 563 animals using IFAT. The authors describe the last case, which occurred on 2002 in a 15-year-old male, bay, half-breed, tick-infested horse. Clinical features included fever, lethargy, limb edema, icterus, leukocytopenia, and thrombocytopenia. Laboratory tests...
Study: West Nile virus cost equine industries in Colorado, Nebraska millions in 2002.
Journal of the American Veterinary Medical Association    July 2, 2003   Volume 222, Issue 12 1669-1672 
No abstract available
Mosquitoes captured in a horse-baited stable trap in southeast Louisiana.
Journal of the American Mosquito Control Association    June 27, 2003   Volume 19, Issue 2 139-147 
Samui KL, Gleiser RM, Hugh-Jones ME, Palmisano CT.A mosquito study based on collections from horse-baited stable traps was conducted in 1993 and 1994 at 3 sites in geographically and ecologically distinct areas of St. Tammany Parish (southeastern Louisiana) to determine the major horse-feeding mosquito species that could be possible bridging and epidemic vectors of eastern equine encephalomyelitis virus. A total of 4,535 mosquitoes in 1993 and 23,906 in 1994 involving 26 species were collected, of which, depending on the site, Culex salinarius, Cx. (Melanoconion) spp., Aedes vexans, Psophora ferox, Coquillettidia perturbans, Anopheles quadrim...
California state Mosquito-Borne Virus Surveillance and Response Plan: a retrospective evaluation using conditional simulations.
The American journal of tropical medicine and hygiene    June 19, 2003   Volume 68, Issue 5 508-518 doi: 10.4269/ajtmh.2003.68.508
Barker CM, Reisen WK, Kramer VL.The California Mosquito-Borne Virus Surveillance and Response Plan recently was developed to provide a semi-quantitative means for assessing risk for western equine encephalomyelitis (WEE) or St. Louis encephalitis (SLE) viruses and to provide intervention guidelines for mosquito control and public health agencies during periods of heightened risk for human infection. West Nile virus recently has arrived in California, and the response plan also will provide a baseline for assessing the risk for human and equine infection with this virus. In the response plan, overall risk is calculated by ave...
Serologic survey of domestic animals for zoonotic arbovirus infections in the Lacandón Forest region of Chiapas, Mexico.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    June 14, 2003   Volume 3, Issue 1 3-9 doi: 10.1089/153036603765627406
Ulloa A, Langevin SA, Mendez-Sanchez JD, Arredondo-Jimenez JI, Raetz JL, Powers AM, Villarreal-Treviño C, Gubler DJ, Komar N.A serologic survey in domestic animals (birds and mammals) was conducted in four communities located in the Lacandón Forest region of northeastern Chiapas, Mexico, during June 29 to July 1, 2001, with the objective to identify zoonotic arboviruses circulating in this area. We collected 202 serum samples from healthy domestic chickens, geese, ducks, turkeys, horses and cattle. The samples were tested by plaque-reduction neutralization test for antibodies to selected mosquito-borne flaviviruses (family Flaviviridae), including St. Louis encephalitis (SLE), Rocio (ROC), Ilheus (ILH), Bussuquara ...
Guidelines for surveillance, prevention and control of West Nile virus.
Epidemiological bulletin    May 21, 2003   Volume 23, Issue 4 12-14 
No abstract available
Initiating arbovirus surveillance in Arkansas, 2001.
Journal of medical entomology    April 16, 2003   Volume 40, Issue 2 223-229 doi: 10.1603/0022-2585-40.2.223
Kent RJ, Lacer LD, Meisch MV.Migratory birds could introduce West Nile (WN) virus to Arkansas. The purpose of this study was to establish a cooperative arbovirus surveillance program to monitor mosquitoes and birds in Arkansas for arboviruses. Our objectives were to: 1) perform routine, multicounty collections of mosquitoes and test them for eastern equine encephalitis, St. Louis encephalitis, and WN viruses; and 2) conduct passive surveillance by testing dead wild birds for WN virus. Arbovirus surveillance was organized by the Arkansas Department of Health, University of Arkansas, and Vector Disease Control Incorporated....
Characterization of enzootic foci of Venezuelan equine encephalitis virus in western Venezuela.
Vector borne and zoonotic diseases (Larchmont, N.Y.)    March 26, 2003   Volume 1, Issue 3 219-230 doi: 10.1089/153036601753552585
Barrera R, Torres N, Freier JE, Navarro JC, García CZ, Salas R, Vasquez C, Weaver SC.The distribution of the sylvatic subtype ID Venezuelan equine encephalitis (VEE) viruses in the lowland tropical forests of western Venezuela was investigated using remote sensing and geographic information system technologies. Landsat 5 Thematic Mapper satellite imagery was used to study the reflectance patterns of VEE endemic foci and to identify other locations with similar reflectance patterns. Enzootic VEE virus variants isolated during this study are the closest genetic relatives of the epizootic viruses that emerged in western Venezuela during 1992-1993. VEE virus surveillance was condu...
Limited potential for mosquito transmission of genetically engineered, live-attenuated western equine encephalitis virus vaccine candidates.
The American journal of tropical medicine and hygiene    March 19, 2003   Volume 68, Issue 2 218-221 
Turell MJ, O'Guinn ML, Parker MD.Specific mutations associated with attenuation of Venezuelan equine encephalitis (VEE) virus in rodent models were identified during efforts to develop an improved VEE vaccine. Analogous mutations were produced in full-length cDNA clones of the Cba 87 strain of western equine encephalitis (WEE) virus by site-directed mutagenesis in an attempt to develop an improved WEE vaccine. Isogenic viral strains with these mutations were recovered after transfection of baby hamster kidney cells with infectious RNA. We evaluated two of these strains (WE2102 and WE2130) for their ability to replicate in and...
The Australian paralysis tick may be the missing link in the transmission of Hendra virus from bats to horses to humans.
Medical hypotheses    March 5, 2003   Volume 60, Issue 4 481-483 doi: 10.1016/s0306-9877(02)00377-8
Barker SC.Hendra virus is a new virus of the family Paramyxoviridae. This virus was first detected in Queensland, Australia, in 1994; although, it seems that the virus has infected fruit-eating bats (flying-foxes) for a very long time. At least 2 humans and 15 horses have been killed by this virus since it first emerged as a virus that may infect mammals other than flying-foxes. Hendra virus is thought to have moved from flying-foxes to horses, and then from horses to people. There is a reasonably strong hypothesis for horse-to-human transmission: transmission of virus via nasal discharge, saliva and/or...
A comparison of the vector competence of the biting midges, Culicoides (Avaritia) bolitinos and C. (A.) imicola, for the Bryanston serotype of equine encephalosis virus.
Medical and veterinary entomology    January 4, 2003   Volume 16, Issue 4 372-377 doi: 10.1046/j.1365-2915.2002.00385.x
Venter GJ, Groenewald D, Venter E, Hermanides KG, Howell PG.Equine encephalosis virus (EEV) is widespread and prevalent in southern Africa. In this study, the oral susceptibility of Culicoides (Avaritia) imicola Kieffer (Diptera: Ceratopogonidae) to EEV was confirmed. In addition, C. (A.) bolitinos Meiswinkel, collected in the high-lying eastern Free State, South Africa, was systemically infected with the Bryanston serotype of EEV after feeding through a membrane on artificially infected equine blood containing 4.7 log10 PFU/mL of EEV. The mean infectivity of Bryanston virus in C. bolitinos increased from 1.2 log10 PFU/midge, in midges assayed for viru...
Transmission of Anaplasma phagocytophila (human granulocytic ehrlichiosis agent) in horses using experimentally infected ticks (Ixodes scapularis).
Journal of veterinary medicine. B, Infectious diseases and veterinary public health    December 18, 2002   Volume 49, Issue 10 484-488 doi: 10.1046/j.1439-0450.2002.00598.x
Pusterla N, Chae JS, Kimsey RB, Berger Pusterla J, DeRock E, Dumler JS, Madigan JE.Most human granulocytic ehrlichiosis (HGE) studies carried out in horses use needle inoculation of infected leucocytes or cell cultures. This route of inoculation does not accurately reflect natural infection of the tick-borne agent. To investigate whether tick transmission influences the course of granulocytic ehrlichiosis in the horse model, experimental transmission through infected laboratory-reared Ixodes scapularis ticks was attempted into two healthy horses. One additional horse served as negative control and was exposed to uninfected ticks. Eleven days after exposure to nymphal or adul...
Cytokine gene expression by peripheral blood leukocytes in horses experimentally infected with Anaplasma phagocytophila.
Clinical and diagnostic laboratory immunology    September 3, 2002   Volume 9, Issue 5 1079-1084 doi: 10.1128/cdli.9.5.1079-1084.2002
Kim HY, Mott J, Zhi N, Tajima T, Rikihisa Y.Human granulocytic ehrlichiosis (HGE), a tick-borne zoonosis, is caused by an obligatory intragranulocytic bacterium, the HGE agent, a strain of Anaplasma phagocytophila. The equine model of HGE is considered valuable in understanding pathogenic and immune mechanisms of HGE. In the present study, cytokine mRNA expression by peripheral blood leukocytes (PBLs) in horses was examined during the course of infection by intravenous inoculation of A. phagocytophila or by allowing feeding by infected ticks. The p44 genes encoding the major outer membrane protein P44s of A. phagocytophila were detected...
Cattle tick (Boophilus microplus) in Victoria on horses from Queensland.
Australian veterinary journal    August 16, 2002   Volume 80, Issue 1-2 92-93 doi: 10.1111/j.1751-0813.2002.tb12847.x
Jubb TF, Campbell NJ.No abstract available
Granulocytic ehrlichiosis in Swedish dogs and horses.
International journal of medical microbiology : IJMM    July 27, 2002   Volume 291 Suppl 33 100-103 doi: 10.1016/s1438-4221(02)80019-4
Engvall EO, Egenvall A.Granulocytic ehrlichiosis is a frequently diagnosed tick-borne disease in Swedish dogs and horses. The infection is caused by a granulocytic Ehrlichia species belonging to the Ehrlichia phagocytophila genogroup. In the acute stage, the disease is mainly characterized as a febrile illness and diagnosis can be confirmed by the demonstration of ehrlichial inclusions in blood granulocytes. Seropositivity in many healthy dogs and horses indicate that the infection also can be transient without clinical signs. The infection can persist in experimentally inoculated animals for months, but to what ext...
The role of birds in the ecology of West Nile virus in Europe and Africa.
Current topics in microbiology and immunology    June 27, 2002   Volume 267 309-322 doi: 10.1007/978-3-642-59403-8_15
Malkinson M, Banet C.Surveys on wild birds conducted during the last two decades in Europe, notably Poland and the Czech Republic, to determine their infection rate with WN virus have revealed endemic foci of infection. Some species of seropositive birds were nonmigrators while others were hatchlings of migrating species. Persistently infected avian reservoirs are potential sources of viruses for mosquitoes that multiply in the temperate European zone in hot, wet summers. In the past, evidence for geographical circulation of WN viruses was based on antigenic analysis of strains from different countries while more ...
West Nile virus in livestock and wildlife.
Current topics in microbiology and immunology    June 27, 2002   Volume 267 271-308 doi: 10.1007/978-3-642-59403-8_14
McLean RG, Ubico SR, Bourne D, Komar N.WN virus is one of the most ubiquitous arboviruses occurring over a broad geographical range and in a wide diversity of vertebrate host and vector species. The virus appears to be maintained in endemic foci on the African continent and is transported annually to temperate climates to the north in Europe and to the south in South Africa. Reports of clinical disease due to natural WN virus infection in wild or domestic animals were much less common than reports of infection (virus isolation or antibody detection). Until recently, records of morbidity and mortality in wild birds were confined to ...
Experimental infection of horses with West Nile virus and their potential to infect mosquitoes and serve as amplifying hosts.
Annals of the New York Academy of Sciences    January 19, 2002   Volume 951 338-339 doi: 10.1111/j.1749-6632.2001.tb02712.x
Bunning ML, Bowen RA, Cropp B, Sullivan K, Davis B, Komar N, Godsey M, Baker D, Hettler D, Holmes D, Mitchell CJ.No abstract available
Seasonality and relative abundance of Tabanidae (Diptera) captured on horses in the Pantanal, Brazil.
Memorias do Instituto Oswaldo Cruz    October 31, 2001   Volume 96, Issue 7 917-923 doi: 10.1590/s0074-02762001000700006
Barros AT.Once a month, from June 1992 to May 1993, collections of tabanids on horse were conducted in the Nhecolândia, Pantanal State of Mato Grosso do Sul, Brazil. Tabanid catches using hand nets were conducted from sunrise to sunset at grassland and cerradão (dense savanna) habitats. A total of 3,442 tabanids from 21 species,12 genera, and 3 subfamilies were collected. Although species abundance varied seasonally depending on habitat, no habitat specificity was observed for the most abundant species. In the grassland, 1,625 (47.2%) tabanids belonging to 19 species were collected, while 1,817 (52.8%...
West Nile virus surveillance in Connecticut in 2000: an intense epizootic without high risk for severe human disease.
Emerging infectious diseases    October 5, 2001   Volume 7, Issue 4 636-642 doi: 10.3201/eid0704.010406
Hadler J, Nelson R, McCarthy T, Andreadis T, Lis MJ, French R, Beckwith W, Mayo D, Archambault G, Cartter M.In 1999, Connecticut was one of three states in which West Nile (WN) virus actively circulated prior to its recognition. In 2000, prospective surveillance was established, including monitoring bird deaths, testing dead crows, trapping and testing mosquitoes, testing horses and hospitalized humans with neurologic illness, and conducting a human seroprevalence survey. WN virus was first detected in a dead crow found on July 5 in Fairfield County. Ultimately, 1,095 dead crows, 14 mosquito pools, 7 horses, and one mildly symptomatic person were documented with WN virus infection. None of 86 hospit...
West Nile encephalitis: an emerging disease in the United States.
Clinical infectious diseases : an official publication of the Infectious Diseases Society of America    October 5, 2001   Volume 33, Issue 10 1713-1719 doi: 10.1086/322700
Marfin AA, Gubler DJ.In 1999, an epidemic of West Nile virus (WNV) encephalitis occurred in New York City (NYC) and 2 surrounding New York counties. Simultaneously, an epizootic among American crows and other bird species occurred in 4 states. Indigenous transmission of WNV had never been documented in the western hemisphere until this epidemic. In 2000, the epizootic expanded to 12 states and the District of Columbia, and the epidemic continued in NYC, 5 New Jersey counties, and 1 Connecticut county. In addition to these outbreaks, several large epidemics of WNV have occurred in other regions of the world where t...
West Nile outbreak in horses in southern France, 2000: the return after 35 years.
Emerging infectious diseases    October 5, 2001   Volume 7, Issue 4 692-696 doi: 10.3201/eid0704.010417
Murgue B, Murri S, Zientara S, Durand B, Durand JP, Zeller H.On September 6, 2000, two cases of equine encephalitis caused by West Nile (WN) virus were reported in southern France (Hérault Province), near Camargue National Park, where a WN outbreak occurred in 1962. Through November 30, 76 cases were laboratory confirmed among 131 equines with neurologic disorders. The last confirmed case was on November 3, 2000. All but three cases were located in a region nicknamed "la petite Camargue," which has several large marshes, numerous colonies of migratory and resident birds, and large mosquito populations. No human case has been confirmed among clinically ...
Suppression of mosquito (Diptera: Culicidae) and black fly (Diptera: Simuliidae) blood feeding from Hereford cattle and ponies treated with permethrin.
Journal of medical entomology    October 3, 2001   Volume 38, Issue 5 728-734 doi: 10.1603/0022-2585-38.5.728
Schmidtmann ET, Lloyd JE, Bobian RJ, Kumar R, Waggoner JW, Tabachinick WJ, Legg D.The blood feeding of mosquitoes and black flies from Hereford cattle and ponies treated with commercial formulations of permethrin was evaluated using an animal enclosure trap sample system that allowed comparison of insect blood-feeding levels between treated and nontreated animals. Blood feeding of both Aedes dorsalis Meigen and A. melanimon Dyar from heifers treated with pour-on concentrate and whole body spray treatments was reduced significantly by 79-88% at 4 d posttreatment, with apparent but not significant reductions of 61-68% at 11 d posttreatment. Simulium bivittatum Malloch and S. ...
Arbovirus surveillance in South Carolina, 1996-98.
Journal of the American Mosquito Control Association    May 10, 2001   Volume 17, Issue 1 73-78 
Wozniak A, Dowda HE, Tolson MW, Karabatsos N, Vaughan DR, Turner PE, Ortiz DI, Wills W.Arboviruses isolated and identified from mosquitoes in South Carolina (USA) are described, including new state records for eastern equine encephalitis virus (EEE), St. Louis encephalitis virus (SLE), Flanders virus, Tensaw virus (TEN), and a variant of Jamestown Canyon virus (JC). Mosquitoes were collected at 52 locations in 30 of 46 South Carolina counties beginning in June 1996, and ending in October 1998, and tested for arboviruses. Of 1,329 mosquito pools tested by virus isolation (85,806 mosquitoes representing 34 mosquito species or complexes), 15 pools were positive. Virus isolations in...
Detection of Babesia caballi and Babesia equi in Dermacentor nuttalli adult ticks.
International journal for parasitology    April 18, 2001   Volume 31, Issue 4 384-386 doi: 10.1016/s0020-7519(01)00120-5
Battsetseg B, Xuan X, Ikadai H, Bautista JL, Byambaa B, Boldbaatar D, Battur B, Battsetseg G, Batsukh Z, Igarashi I, Nagasawa H, Mikami T, Fujisaki K.Ticks play an important role in human and veterinary medicine particularly due to their ability to transmit protozoan pathogens. In this study we have demonstrated that polymerase chain reaction (PCR) and nested PCR methods enabled detection of Babesia caballi and Babesia equi in field isolates of Dermacentor nuttalli adult ticks from Mongolia. Primers specific for 218 bp fragment merozoite antigen 1 (EMA-1) gene of B. equi successfully amplified products from all samples of D. nuttalli adult ticks while primers for the 430 bp fragment product from BC48 gene of B. caballi amplified products fr...
West Nile viral encephalitis.
Revue scientifique et technique (International Office of Epizootics)    February 24, 2001   Volume 19, Issue 1 166-176 doi: 10.20506/rst.19.1.1201
Komar N.West Nile virus (WNV) has emerged in recent years in temperate regions of Europe and North America, presenting a threat to both public and animal health. The most serious manifestation of infection is fatal encephalitis in humans and horses, as well as mortality in certain domestic and wild birds. A recent development in the epizootiology of this mosquito-borne flavivirus was the occurrence of a severe outbreak in New York City and surrounding areas. During this outbreak, mortality was observed in humans, horses, a cat and numerous species of wild birds, particularly members of the family Corv...
Ehrlichial diseases.
The Veterinary clinics of North America. Equine practice    February 24, 2001   Volume 16, Issue 3 487-ix doi: 10.1016/s0749-0739(17)30091-3
Madigan JE, Pusterla N.Equine granulocytic and monocytic ehrlichiosis caused by Ehrlichia equi and E. risticii, respectively, are seasonal diseases in horses that occur throughout the United States E. equi is transmitted by lxodes ticks and causes high fever, depression, anorexia, limb edema, petechiation, icterus, ataxia, and stiffness in gait. E. risticii, also known as the agent of Potomac horse fever, causes a febrile illness with a colitis of variable severity. Its occurrence is associated with aquatic habitats. The natural route of transmission is oral, through the ingestion of E. risticii infected trematode s...
Laboratory vector competence of black flies (Diptera:Simuliidae) for the Indiana serotype of vesicular stomatitis virus.
Annals of the New York Academy of Sciences    February 24, 2001   Volume 916 437-443 doi: 10.1111/j.1749-6632.2000.tb05323.x
Mead DG, Ramberg FB, Maré CJ.In previous experiments we have demonstrated that colonized and wild black flies are competent laboratory vectors of different Mexican and Western USA isolates of vesicular stomatitis virus, serotype New Jersey (VSV-NJ). We have recently demonstrated biological VSV-NJ transmission by black flies using animal models. In the study described here, we tested the vector competence of colonized and wild black flies for the vesicular stomatitis virus, serotype Indiana (VSV-IN). A 1998 equine isolate was used. After a 10 day incubation period, saliva from experimentally infected Simulium vittatum and ...
Stabling and the protection of horses from Culicoides bolitinos (Diptera: Ceratopogonidae), a recently identified vector of African horse sickness.
Bulletin of entomological research    December 7, 2000   Volume 90, Issue 6 509-515 doi: 10.1017/s0007485300000626
Meiswinkel R, Baylis M, Labuschagne K.The stabling of horses at night reportedly offers protection from African horse sickness and the most significant vector of the disease, Culicoides imicola Kieffer, has been shown to be exophilic. In certain high-lying regions of South Africa, however, C. bolitinos Meiswinkel, may be the major vector of the disease but its entry behaviour into stables is unknown. Accordingly, in the eastern Free State province of South Africa, light trap catches of C. bolitinos inside stables and outside, were compared. Two horse-baited stables, one traditional, and one modern, were used and combinations of st...
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