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Topic:Vaccination

Vaccination in horses involves the administration of antigenic material to stimulate an immune response, providing protection against specific infectious diseases. This process is a key component of preventive equine healthcare, aiming to reduce the incidence and severity of illnesses such as equine influenza, tetanus, and West Nile virus. Vaccines can be administered via various routes and may contain live attenuated, inactivated, or subunit components. The immune response elicited by vaccination helps in the development of immunological memory, enabling horses to respond more effectively upon exposure to the actual pathogen. This page compiles peer-reviewed research studies and scholarly articles that explore the development, efficacy, and safety of vaccines in equine populations.
Application of a chemically inactivated, adjuvanted vaccine to control abortigenic infection of mares by equine herpesvirus I.
Developments in biological standardization    January 1, 1982   Volume 52 493-498 
Bryans JT, Allen GP.A chemically inactivated, adjuvanted vaccine prepared from a virulent strain of Equine herpesvirus I (EHV-I) was used to immunize pregnant Thoroughbred broodmares during a five-year field test designed to determine its safety and efficacy. Each mare in the vaccinated groups received 3 intramuscular injections of vaccine beginning immediately prior to and during the last half of pregnancy. Vaccine was injected at approximately 60-day intervals. The accumulated incidence of EHV-I abortions among vaccinated mares during the field trial period was 1.6/1000 as compared with an incidence of 6.8/1000...
Antibody responses of horses to equine influenza viruses during a postepizootic period in Japan.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    January 1, 1982   Volume 46, Issue 1 27-32 
Goto H, Shimizu K, Taya Y, Noda H, Tokunaga T.The antibody responses to equine influenza viruses were investigated during a postepizootic period of the disease. Serum samples were collected from a total of 128 horses on three occasions during the years 1967-77. No significant increase of hemagglutination-inhibition antibody titers to subtypes 1 and 2 of equine influenza virus were detected in any of the sera tested. The maternal hemagglutination-inhibition antibody titers of foals decreased over a four month interval. A marked increase of the titers was recognized in only the equine influenza virus vaccinated horses. These findings sugges...
Enzyme-linked immunosorbent assay for detection of antibody to Pseudomonas aeruginosa and measurement of antibody titer in horse serum.
American journal of veterinary research    January 1, 1982   Volume 43, Issue 1 55-60 
Ueda Y, Sanai Y, Homma JY.Enzyme-linked immunosorbent assay (ELISA) was used for detection of immunoglobulin (Ig) M and IgG antibodies against a serologically common antigen (original endotoxin protein), protease, and elastase of Pseudomonas aeruginosa. The P aeruginosa antibody in horse sera was measured, using ELISA. Horseradish peroxidase-labeled rabbit anti-horse IgM and IgG antibodies were used for enzyme-labeled antibody conjugate. 5-Aminosalicylic acid and H2O2 were used for substrate. Sera collected from a vaccinated horse, a newborn foal, and 72 healthy racehorses were investigated for antibodies against P aer...
Active immunisation of horses against tetanus including the booster dose and its application.
Australian veterinary journal    February 1, 1981   Volume 57, Issue 2 57-60 doi: 10.1111/j.1751-0813.1981.tb00444.x
Liefman CE.Successful active immunisation of horses against tetanus is dependent on a number of factors of which the toxoid preparation used, its method of application and the ability of the individual horse to respond are fundamental. Two immunisation schedules using an aluminium-based toxoid preparation were examined and the protection determined by monitoring the level of antitoxin afforded by each schedule. The results obtained demonstrated that 2 doses of this toxoid are necessary to ensure 12 months protection in all horses. These results are discussed in relation to the factors involved in active ...
[The contamination of western Europe in 1979 with influenza virus A/equi-2. Vaccination protection of various contingents of horses and vaccination directives for the future].
Tierarztliche Praxis    January 1, 1981   Volume 9, Issue 1 87-98 
Bürki F.No abstract available
[Inactivated vaccines against rhinopneumonitis in horses].
Veterinarno-meditsinski nauki    January 1, 1981   Volume 18, Issue 4 3-9 
Tatarov G, Khristov S, Martinov S, Gergov P, Khristova V.Attempts were made to produce inactivated vaccines against horse Herpes virus 1, using various inactivating agents and adjuvants, Best results were obtained with vaccine No 3 (glutaraldehide inactivator and "CTC" adjuvant). Used were two strains of the virus (St. Karaja and Varna). isolated in this country in cell cultures of a sucking pig kidney. Vaccine No 3 showed good immunogenic properties. Its application resulted in the full cease of abortions and respiratory diseases on the base of infection with the horse Herpes virus 1. The vaccination protects newborn colts from rhinopneumonitis if ...
The serological response of foals to vaccination against strangles.
Canadian journal of comparative medicine : Revue canadienne de medecine comparee    January 1, 1981   Volume 45, Issue 1 20-25 
Srivastava SK, Barnum DA.A group of 100 foals was given either a commercial bacterin or an autogenous vaccine consisting of whole cells and an acid extract of Streptococcus equi. During the study, some of the foals developed clinical strangles. Various sets of sera were collected from these foals prevaccination, during vaccination, postvaccination and postinfection. The serological response of these foals was measured by passive haemagglutination and long chain tests. In foals which remained healthy, the highest titres were reached within one to two months postvaccination with a passive haemagglutination 10 x log2 mea...
Equine influenza vaccine shortage.
The Veterinary record    April 19, 1980   Volume 106, Issue 16 376 doi: 10.1136/vr.106.16.376
Pound BH.No abstract available
[European Pharmacopoeia and the test of equine influenza vaccines (author’s transl)].
Comparative immunology, microbiology and infectious diseases    January 1, 1980   Volume 3, Issue 1-2 101-104 doi: 10.1016/0147-9571(80)90044-2
Pilet C, Poirier J.No abstract available
Case report: An outbreak of herpesvirus myeloencephalitis in vaccinated horses.
The Canadian veterinary journal = La revue veterinaire canadienne    January 1, 1979   Volume 20, Issue 1 22-25 
Thomson GW, McCready R, Sanford E, Gagnon A.In the foaling season of 1977, five vaccinated horses in a Standardbred breeding stable were affected with herpesvirus myeloencephalitis. Respiratory and abortigenic forms also occurred in other individuals on the premises. Equine herpesvirus type 1 was isolated from the brain of one case of myeloencephalitis and from lungs of two aborted fetuses. Twelve of 16 horses demonstrated fourfold or greater increases in titres to equine herpesvirus type 1.
Venezuelan equine encephalomyelitis vaccine (strain TC-83): a field study.
American journal of veterinary research    October 1, 1978   Volume 39, Issue 10 1627-1631 
Baker EF, Sasso DR, Maness K, Prichard WD, Parker RL.In 1971, more than 370 horses in south Texas were studied with respect to their clinical, virologic, and neutralizing antibody responses to vaccination with Venezuelan equine encephalomyelitis (VEE) strain TC-83. This study confirms reported findings that the vaccine used in the 1971 epizootic in the lower Rio Grande Valley of Texas was safe and efficacious. Vaccinal virus viremia titers were generally below the postulated infection threshold of epizootic vectors. In general, reactions to the vaccine were minimal and transient, with no observed abortions or deaths attributable to use of the va...
Equine rhinopneumonitis vaccine: immunogenicity and safety in foals.
American journal of veterinary research    May 1, 1978   Volume 39, Issue 5 745-752 
Purdy CW, Porter RC, Ford SJ.Immunogenicity and safety of an equine herpesvirus 1 (ehv-1) vaccine were studied in 111 foals varying in age from 1 to 122 days. Each of 88 principals was given 1 im injection of vaccine. Five of the 88 foals were revaccinated; 69 of the vaccinated principals and 23 nonvaccinated foals (serving as controls) were challenge exposed intranasally with virulent ehv-1. The vaccine failed to cause adverse local or systemic reaction in 88 principals with serunirneutralization (sn) titers against ehv-1 varying between 0 to 1:256 at time of vaccination. After vaccination, the foals' body temperature...
Eastern equine encephalitis in Massachusetts, 1957-1976. A prospective study centered upon analyses of mosquitoes.
American journal of epidemiology    February 1, 1978   Volume 107, Issue 2 170-178 doi: 10.1093/oxfordjournals.aje.a112519
Grady GF, Maxfield HK, Hildreth SW, Timperi RJ, Gilfillan RF, Rosenau BJ, Francy DB, Calisher CH, Marcus LC, Madoff MA.Reappearance of eastern equine encephalitis (EEE) in Massachusetts residents in the 1970's provided an opportunity to assess the predictive value of data on rainfall, EEE in horses, and carriage of EEE virus (EEEV) by mosquitoes, factors which had been studied annually since the last EEE outbreak in 1955-1956. The cycle of multiple cases during 1973-1975 started in a second consecutive year of rainfall that exceeded the annual mean by more than 20 cm, conditions recapitulating the 1955-1956 experience. In 1973, widespread EEE fatalities in horses presaged human cases, another recapitulation of...
Rabies in the horse.
The Veterinary record    January 21, 1978   Volume 102, Issue 3 69 doi: 10.1136/vr.102.3.69-a
Owen RR.No abstract available
Safety of RhinoquinTM, rhinopneumonitis vaccine in foals and pregnant mares.
Veterinary medicine, small animal clinician : VM, SAC    September 1, 1977   Volume 72, Issue 9 1478-1480 
Purdy CW.No abstract available
Studies on the antigenicity of an inactivated, aluminum hydroxide adjuvant equine influenza vaccine. Kucera CJ, Beckenhauer WH.An inactivated, aluminum hydroxide adjuvant equine influenza vaccine was tested in horses and guinea pigs to determine the levels of antigen that would elicit maximum serological responses. Vaccine containing serial twofold increments of A/Equi-1/Prague and A/Equi-2/Miami strains of equine influenza virus was administered to random groupings of both types of test animals. The hemagglutination inhibition antibody response for each group was then measured. Results in horses and guinea pigs were compared to determine if the equine serological values could be related to a potency test in laborator...
Western equine encephalomyelitis in horses in the Northern Red River Valley, 1975.
Journal of the American Veterinary Medical Association    June 15, 1977   Volume 170, Issue 12 1396-1399 
Potter ME, Currier RW, Pearson JE, Harris JC, Parker RL.In mid-July, 1975, western equine encephalomyelitis (WEE) virus was isolated from mosquitoes collected in flooded areas of eastern North Dakota and western Minnesota. Inasmuch as clinical manifestations of WEE are usually observed in horses before human cases of encephalitis are recognized, surveillance of equine disease was initiated. Sixty-one practicing veterinarians from the are under surveillance reported 281 cases of WEE in horses from June through September, with peak incidence in late July. The high percentage of sero-positive, clinically normal, unvaccinated horses in one region sugge...
A three-year evaluation of four commercial equine influenza vaccines in ponies maintained in isolation.
Developments in biological standardization    June 1, 1977   Volume 39 341-346 
Burrows R, Spooner PR, Goodridge D.Ponies held in isolation for 40 months were vaccinated and revaccinated with four commercial equine influenza vaccines. Little or no HI antibody was detected after the first inoculation; second and subsequent annual revaccinations produced peak HI antibody titres between 7 and 14 days. Titres fell quickly between 14 and 28 days and less quickly thereafter. The decline of HI antibody appeared to be related more to the initial titre attained and to the period after vaccination than to the composition of the vaccine. The response to a first annual revaccination was superior to that produced by a ...
The outbreak of equine influenza in England: January 1976.
The Veterinary record    May 28, 1977   Volume 100, Issue 22 465-468 doi: 10.1136/vr.100.22.465
Thomson GR, Mumford JA, Spooner PR, Burrows R, Powell DG.Equine influenza type 2 infections occurred in the Newmarket areas in January 1976. The disease did not spread to any extent and while this may have been due to recent vaccination it was found that not all vaccinated horses were fully protected. The virus involved showed some antigenic drift from the prototype strain A/equine/Miami/1/63 (Heq 2 Neq 2).
Antibody studies in ponies vaccinated with Venezuelan equine encephalomyelitis (strain TC-83) and other alphavirus vaccines.
American journal of veterinary research    April 1, 1977   Volume 38, Issue 4 425-430 
Ferguson JA, Reeves WC, Hardy JL.Serologic studies in 24 ponies indicated that prevaccination antibodies to Venezuelan equine encephalomyelitis (VEE) virus (strain TC-83) had no influence on hemagglutination-inhibition (HI) antibody stimulation by western equine encephalomyelitis (WEE) or eastern equine encephalomyelits (EEE)-WEE vaccines. However, studies of the effects of VEE neutralizing antibodies on neutralizing antibody stimulation by the heterologous alphavirus vaccines were inconclusive. The VEE, WEE, and EEE antibody responses were studied in 18 VEE-vaccinated (strain TC-83) animals (13 ponies and 5 horses) at 9 to 1...
IgM antibody–I. Heterogeneity of the component chains of equine anti-lactose antibody.
Immunochemistry    March 1, 1977   Volume 14, Issue 3 161-164 doi: 10.1016/0019-2791(77)90189-6
Mitchell KF, Karush F, Morgan DO.The heterogeneity of the IgM response has been studied with anti-lactose antibody purified from the sera of seven horses. The IgM antibody was induced with a bacterial vaccine and the sera were obtained during a one-year period of immunization. L and H chain preparations were derived from separate bleedings of each horse and examined by analytical isoelectric focusing. All of the L chain preparations were complex and similar and, under optimum conditions, exhibited about 45 bands. Their similarity included almost identical concentration distributions over the entire pH gradient. Isoelectric ba...
A practical health programme for prevention of parasitic and infectious diseases in horses and ponies.
Equine veterinary journal    July 1, 1976   Volume 8, Issue 3 123-125 doi: 10.1111/j.2042-3306.1976.tb03314.x
Verberne LR, Mirck MH.A scheme of combined anthelmintic treatment and vaccination is described. The seasonal veterinary activities are as follows: March (all horses); parasitological examination of faeces, anthelmintic treatment, immunization against influenza and tetanus (booster dose). June: parasitological faeces examination of foals, anthelmintic treatment of all horses, immunization of foals against tetanus (1st dose). August: anthelmintic treatment of all horses and immunization of foals against influenza (1st dose) and tetanus (2nd dose). October: parasitological faeces examination and anthelmintic treatment...
Equine viral encephalitis.
Equine veterinary journal    April 1, 1976   Volume 8, Issue 2 66-71 doi: 10.1111/j.2042-3306.1976.tb03293.x
Gibbs EP.The most important neurotropic viral infections of the horse are the arthropod-borne encephalitides. These include Venezuelan encephalitis (VE), eastern encephalitis (EE) and western encephalitis (WE), which are found in the Americas, and Japanese B encephalitis which occurs in the Far East. All the viruses cause encephalitis in man. Between 1969 and 1972 an epidemic of VE occurred in Central America. In 1971 the disease was reported in Texas, where it was brought under control by the vaccination of susceptible horses with an attenuated live virus vaccine and by the reduction of the mosquito p...
[Combined vaccination plan against influenza, equine rhinopneumonitis and tetanus for thoroughbred horses].
DTW. Deutsche tierarztliche Wochenschrift    March 5, 1976   Volume 83, Issue 3 89-92 
Bürki F.No abstract available
Immunity to Streptococcus equi.
Australian veterinary journal    December 1, 1975   Volume 51, Issue 12 554-559 doi: 10.1111/j.1751-0813.1975.tb09379.x
Woolcock JB.Using the long chain test, and in some cases the bactericidal test, to measure antibody, the development of the immune response in horses to Str. equi has been followed. Long chain indices in excess of 5.0, accompanied by strong bactericidal capacity, were recorded in serums after the full 3-dose immunisation course with a commercial vaccine. The full course elicited the most satisfactory antibody titres declined within the 12 month post-vaccination period, thus providing support for the recommendation that yearly booster doses should be administered. The immune response in horses during 2 str...
[Prevention of tetanus in the horse].
Berliner und Munchener tierarztliche Wochenschrift    May 15, 1975   Volume 88, Issue 10 181-183 
Wintzer HJ, Körber HD, Holland U.No abstract available
Recall of immunity in horses previously immunised with an aluminium based tetanus toxoid.
The Veterinary record    July 20, 1974   Volume 95, Issue 3 62-63 doi: 10.1136/vr.95.3.62
Scarnell J.No abstract available
Persistence of antibody to envelope antigens of Heq2Neq2 virus in ponies after infection and vaccination. Cameron TP, Kasel JA, Couch RB.No abstract available
[Route of inoculation and aluminium hydroxide influences in the immunological response of horses vaccinated against equine influenza (author’s transl)].
Arquivos do Instituto Biologico    October 1, 1973   Volume 40, Issue 4 357-368 
Cunha RG, da Silva Passos W, Rodrigues AF.No abstract available
Equine abortion (herpes) virus: evaluation of markers in a field vaccination trial.
Applied microbiology    October 1, 1973   Volume 26, Issue 4 566-569 doi: 10.1128/am.26.4.566-569.1973
Klingeborn B.Twelve mares were vaccinated with attenuated equine abortion virus (EAV) strain RAC-H. Two nonvaccinated mares served as controls. In at least three mares the vaccination appeared to coincide with a natural infection. This was indicated by characterization of the EAV isolated from nasal secretions of six vaccinated mares, a nonvaccinated control, and also from the lung, spleen, and liver of a fetus aborted by a vaccinated mare. The relative sensitivity of the isolated EAV to dithiothreitol was used to distinguish the RAC-H strain and wild-type virus. Of the 10 EAV isolates, four were recognize...