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Topic:Immunology

The equine immune system is a complex network of cells, tissues, and organs that work collaboratively to defend against pathogens and maintain homeostasis. It consists of innate and adaptive components, each with distinct functions and mechanisms. The innate immune system provides the first line of defense through physical barriers, phagocytic cells, and the complement system. The adaptive immune system involves lymphocytes, such as B cells and T cells, which generate specific responses to antigens and provide immunological memory. Research in equine immunology explores the interactions between these components, the impact of genetic and environmental factors on immune function, and the development of vaccines and therapeutics. This page gathers peer-reviewed studies and scholarly articles focusing on the mechanisms, regulation, and clinical applications of the equine immune system in health and disease.
Cytokine and chemokine profiles of aqueous humor and serum in horses with uveitis measured using multiplex bead immunoassay analysis.
Veterinary immunology and immunopathology    September 27, 2016   Volume 182 43-51 doi: 10.1016/j.vetimm.2016.09.008
Curto E, Messenger KM, Salmon JH, Gilger BC.To determine whether horses with clinically diagnosed Equine Recurrent Uveitis (ERU) and those with Leptospirosis infection have a specific cytokine profile in their aqueous humor (AH) and serum that differs from horses with uveitis secondary to other ocular inflammatory processes and from horses with normal eyes. Methods: Twenty-five client-owned horses with uveitis that were presented to the North Carolina State University Ophthalmology Service, and four University-owned horses without history or clinical signs of ocular disease. Methods: Samples of AH and serum were obtained from horses wit...
Identification and characterization of a common B-cell epitope on EIAV capsid proteins.
Applied microbiology and biotechnology    September 23, 2016   Volume 100, Issue 24 10531-10542 doi: 10.1007/s00253-016-7817-9
Hu Z, Chang H, Chu X, Li S, Wang M, Wang X.The equine infectious anemia virus (EIAV) capsid protein (p26) is one of the major immunogenic proteins during EIAV infection and is widely used for the detection of EIAV antibodies in horses. However, few reports have described the use of EIAV-specific monoclonal antibodies (MAbs) in etiological and immunological detection. Previously, we developed an antigen capture enzyme-linked immunosorbent assay (AC-ELISA) for the quantification of the EIAV p26 protein level. However, the epitopes recognized by the MAbs were not identified, and the utilization of the MAbs needs to be evaluated. In this ...
Acute and chronic infections with nonprimate hepacivirus in young horses.
Veterinary research    September 22, 2016   Volume 47, Issue 1 97 doi: 10.1186/s13567-016-0381-6
Gather T, Walter S, Pfaender S, Todt D, Feige K, Steinmann E, Cavalleri JM.The recently discovered nonprimate hepacivirus (NPHV) naturally infects horses and is the closest known homolog of hepatitis C virus to date. Within a follow-up study acute field infections were monitored in four young Thoroughbred horses until the ages of 12-13 months. Serum samples were analyzed for the presence of NPHV RNA and anti-NPHV NS3 antibodies and liver specific parameters were evaluated. The four young horses were not able to clear infection, but remained chronically infected for the entire monitored time period despite the presence of NPHV specific antibodies.
Preliminary evaluation of a dual antigen ELISA to distinguish vaccinated from Leptospira infected horses.
The Veterinary record    September 20, 2016   Volume 179, Issue 22 574 doi: 10.1136/vr.103686
Velineni S, Timoney JF.Immunogenic proteins of Leptospira interrogans serovar Pomona type kennewicki (Lk) including Sph1, LigA, Hsp15 and LipL45 (Qlp42) are up-regulated in infected horses but are undetectable or expressed in trace amounts on cultured organisms. In contrast, LipL32 is abundant on cultured Lk and elicits infection antibody responses. The aim of this study was to develop an ELISA based on LipL32 or Lk sonicate and host-induced proteins to differentiate vaccine from infection serum antibody. IgG specific for recombinant Sph1, LigA, Lk90 (LigA; 379-1225 a.a), Hsp15, LipL45 and LipL32 of Lk were assayed ...
Evaluation of amniotic mesenchymal cell derivatives on cytokine production in equine alveolar macrophages: an in vitro approach to lung inflammation.
Stem cell research & therapy    September 20, 2016   Volume 7, Issue 1 137 doi: 10.1186/s13287-016-0398-9
Zucca E, Corsini E, Galbiati V, Lange-Consiglio A, Ferrucci F.Data obtained in both animal models and clinical trials suggest that cell-based therapies represent a potential therapeutic strategy for lung repair and remodeling. Recently, new therapeutic approaches based on the use of stem cell derivatives (e.g., conditioned medium (CM) and microvesicles (MVs)) to regenerate tissues and improve their functions were proposed. The aim of this study was to investigate the immunomodulatory effects of equine amniotic mesenchymal cell derivatives on lipopolysaccharide (LPS)-induced cytokine production in equine alveolar macrophages, which may be beneficial in lu...
A Serological Protein Microarray for Detection of Multiple Cross-Reactive Flavivirus Infections in Horses for Veterinary and Public Health Surveillance.
Transboundary and emerging diseases    September 15, 2016   Volume 64, Issue 6 1801-1812 doi: 10.1111/tbed.12569
Cleton NB, van Maanen K, Bergervoet SA, Bon N, Beck C, Godeke GJ, Lecollinet S, Bowen R, Lelli D, Nowotny N, Koopmans MPG, Reusken CBEM.The genus Flavivirus in the family Flaviviridae includes some of the most important examples of emerging zoonotic arboviruses that are rapidly spreading across the globe. Japanese encephalitis virus (JEV), West Nile virus (WNV), St. Louis encephalitis virus (SLEV) and Usutu virus (USUV) are mosquito-borne members of the JEV serological group. Although most infections in humans are asymptomatic or present with mild flu-like symptoms, clinical manifestations of JEV, WNV, SLEV, USUV and tick-borne encephalitis virus (TBEV) can include severe neurological disease and death. In horses, infection wi...
Heat-shock protein 70 expression in the equine cornea.
Veterinary ophthalmology    September 13, 2016   Volume 20, Issue 4 344-348 doi: 10.1111/vop.12432
Peterson C, Driskell E, Wilkie D, Premanandan C, Hamor R.Expression of the 70-kDa heat-shock protein (HSP70) has been demonstrated in normal canine corneal epithelium, and inducible expression has been suggested to facilitate wound resolution through organized migration, proliferation, and adhesion of the corneal epithelial cells. Diminished expression of HSP70 may therefore contribute to prolonged healing in the pathologic cornea of other companion animal species, including the horse. Methods: Normal and pathologic equine cornea was evaluated to determine whether the expression of HSP70 is correlated with appropriate corneal epithelial wound healin...
Experimental infection of horses with Rickettsia rickettsii.
Parasites & vectors    September 13, 2016   Volume 9, Issue 1 499 doi: 10.1186/s13071-016-1784-y
Ueno TE, Costa FB, Moraes-Filho J, Agostinho WC, Fernandes WR, Labruna MB.Rickettsia rickettsii is vectored by ticks, and some vertebrate hosts can be sources of infection to ticks during bacteremic periods. In Brazil, the main vector for R. rickettsii is the tick Amblyomma sculptum, a member of the A. cajennense complex. Horses, in turn, are one of the major hosts for A. sculptum. In this study, horses experimentally infected with R. rickettsii were assessed for clinical changes and their capability to transmit the infection to A. sculptum ticks. Four horses were infected with R. rickettsii through either intraperitoneal injection or infestation with R. rickettsii-...
Identification of SP110 in horse (Equus caballus): Isolation of novel splice variants and evidence of activation effects on macrophages.
Tuberculosis (Edinburgh, Scotland)    September 12, 2016   Volume 101 85-94 doi: 10.1016/j.tube.2016.08.007
Chen Q, Tong Q, Ge H, Li W, Liu J, Wang Y, Guo Z, Quan F, Zhang Y.SP110 has previously shown to be a genetic determinant of host resistance to the intracellular pathogen infection in mouse and human. However, its relevant biological information in large non-primate animals still remains unknown. Here we report the novel discovery and characterization of three transcript variants of horse SP110. The transcript variant 1 (Tv1) of horse SP110 with the longest open reading frame has four domains (Sp100, SAND, PHD and Bromo domain). Tv2 and Tv3 share the same N-terminal sequence as Tv1, which contains Sp100 and SAND. We show that Tv2 is generated from alternative...
Actinomyces denticolens colonisation identified in equine tonsillar crypts.
Veterinary record open    September 8, 2016   Volume 3, Issue 1 e000161 doi: 10.1136/vetreco-2015-000161
Murakami S, Otaki M, Hayashi Y, Higuchi K, Kobayashi T, Torii Y, Yokoyama E, Azuma R.Recently, submandibular abscesses associated with Actinomyces denticolens have been reported in horses. The actinomycotic clumps have been observed in the tonsillar crypts. The aim of this study was to demonstrate colonisation of A denticolens in equine tonsils. Twelve equine tonsils obtained from a slaughterhouse were divided into two parts for histopathological examination and for isolation of A denticolens. When actinomycotic clumps were found in these tonsillar crypts, immunohistochemistry using hyperimmune serum against A denticolens (DMS 20671) was performed on the serial sections. To de...
Identification, characterization and bioactivity of tumor necrosis factor (TNF)-related apoptosis-inducing ligand from Equus caballus.
Developmental and comparative immunology    August 31, 2016   Volume 67 340-349 doi: 10.1016/j.dci.2016.08.018
Ma L, Sang M, Zhang J, Zhang S.Tumor necrosis factor (TNF)-related apoptosis-inducing ligand (TRAIL) is a member of the TNF superfamily and plays multifunctional roles in the immune system. In the present study, a homolog of TRAIL from the Mongolian horse (named ecTRAIL) was identified and characterized. The 870-bp open reading frame encodes a polypeptide of 289 amino acid residues with a predicted molecular weight of 33.47 kDa and pI of 8.47. The genomic structure of ecTRAIL shares a five-exon/six-intron arrangement similar to its orthologs. Multiple alignments show that ecTRAIL is a type II transmembrane protein with a t...
The Influenza NS1 Protein: What Do We Know in Equine Influenza Virus Pathogenesis?
Pathogens (Basel, Switzerland)    August 31, 2016   Volume 5, Issue 3 57 doi: 10.3390/pathogens5030057
Barba M, Daly JM.Equine influenza virus remains a serious health and potential economic problem throughout most parts of the world, despite intensive vaccination programs in some horse populations. The influenza non-structural protein 1 (NS1) has multiple functions involved in the regulation of several cellular and viral processes during influenza infection. We review the strategies that NS1 uses to facilitate virus replication and inhibit antiviral responses in the host, including sequestering of double-stranded RNA, direct modulation of protein kinase R activity and inhibition of transcription and translatio...
Immunological Characterization of Intraocular Lymphoid Follicles in a Spontaneous Recurrent Uveitis Model.
Investigative ophthalmology & visual science    August 30, 2016   Volume 57, Issue 10 4504-4511 doi: 10.1167/iovs.16-19787
Kleinwort KJ, Amann B, Hauck SM, Feederle R, Sekundo W, Deeg CA.Recently, formation of tertiary lymphoid structures was demonstrated and further characterized in the R161H mouse model of spontaneous autoimmune uveitis. In the horse model of spontaneous recurrent uveitis, intraocular lymphoid follicle formation is highly characteristic, and found in all stages and scores of disease, but in depth analyses of immunologic features of these structures are lacking to date. Paraffin-embedded eye sections of cases with equine spontaneous recurrent uveitis (ERU) were characterized with immunohistochemistry to gain insight into the distribution, localization, and si...
Amino acid mutations in the env gp90 protein that modify N-linked glycosylation of the Chinese EIAV vaccine strain enhance resistance to neutralizing antibodies.
Virus genes    August 29, 2016   Volume 52, Issue 6 814-822 doi: 10.1007/s11262-016-1382-2
Han X, Zhang P, Yu W, Xiang W, Li X.The Chinese EIAV vaccine is an attenuated live virus vaccine obtained by serial passage of a virulent horse isolate (EIAV) in donkeys (EIAV) and, subsequently, in donkey cells in vitro. In this study, we compare the env gene of the original horse virulent virus (EIAV) with attenuated strains serially passaged in donkey MDM (EIAV) and donkey dermal cells (EIAV). Genetic comparisons among parental and attenuated strains found that vaccine strains contained amino acid substitutions/deletions in gp90 that resulted in a loss of three potential N-linked glycosylation sites, designated g5, g9, and g1...
Allogeneic Mesenchymal Stem Cell Treatment Induces Specific Alloantibodies in Horses.
Stem cells international    August 28, 2016   Volume 2016 5830103 doi: 10.1155/2016/5830103
Owens SD, Kol A, Walker NJ, Borjesson DL.Background. It is unknown whether horses that receive allogeneic mesenchymal stem cells (MSCs) injections develop specific humoral immune response. Our goal was to develop and validate a flow cytometric MSC crossmatch procedure and to determine if horses that received allogeneic MSCs in a clinical setting developed measurable antibodies following MSC administration. Methods. Serum was collected from a total of 19 horses enrolled in 3 different research projects. Horses in the 3 studies all received unmatched allogeneic MSCs. Bone marrow (BM) or adipose tissue derived MSCs (ad-MSCs) were admini...
Macrophage effector responses of horses are influenced by expression of CD154.
Veterinary immunology and immunopathology    August 26, 2016   Volume 180 40-44 doi: 10.1016/j.vetimm.2016.08.001
Sponseller BA, Clark SK, Gilbertie J, Wong DM, Hepworth K, Wiechert S, Chandramani P, Sponseller BT, Alcott CJ, Bellaire B, Petersen AC, Jones DE.Reactive intermediates contribute to innate immunity by providing phagocytes with a mechanism of defense against bacteria, viruses and parasites. To better characterize the role of CD154 in the production of reactive intermediates, we cloned and expressed recombinant equine CD154 (reqCD154) in Chinese Hamster Ovary (CHO). In co-culture experiments, CHO cells ectopically expressing reqCD154 elicited superoxide production in monocyte-derived macrophages (MDM). Collectively, our results indicate that regulation of CD154 expression plays a role in innate host defenses.
Identification and characterization of equine blood plasmacytoid dendritic cells.
Developmental and comparative immunology    August 11, 2016   Volume 65 352-357 doi: 10.1016/j.dci.2016.08.005
Ziegler A, Marti E, Summerfield A, Baumann A.Dendritic cells (DC) are antigen-presenting cells that can be classified into three major cell subsets: conventional DC1 (cDC1), cDC2 and plasmacytoid DCs (pDC), none of which have been identified in horses. Therefore, the objective of this study was to identify and characterize DC subsets in equine peripheral blood, emphasizing on pDC. Surface marker analysis allowed distinction of putative DC subsets, according to their differential expression of CADM-1 and MHC class II. Equine pDC were found to be Flt3(+) CD4(low) CD13(-) CD14(-) CD172a(-) CADM-1(-) MHCII(low). The weak expression of CD4 on...
Retrospective Analysis of the Equine Influenza Virus A/Equine/Kirgizia/26/1974 (H7N7) Isolated in Central Asia.
Pathogens (Basel, Switzerland)    August 10, 2016   Volume 5, Issue 3 55 doi: 10.3390/pathogens5030055
Karamendin K, Kydyrmanov A, Sayatov M, Strochkov V, Sandybayev N, Sultankulova K.A retrospective phylogenetic characterization of the hemagglutinin, neuraminidase and nucleoprotein genes of equine influenza virus A/equine/Kirgizia/26/1974 (H7N7) which caused an outbreak in Kirgizia (a former Soviet Union republic, now Kyrgyzstan) in 1977 was conducted. It was defined that it was closely related to the strain London/1973 isolated in Europe and it shared a maximum nucleotide sequence identity at 99% with it. This Central Asian equine influenza virus isolate did not have any specific genetic signatures and can be considered as an epizootic strain of 1974 that spread in Europe...
Assessment of antigenic difference of equine influenza virus strains by challenge study in horses.
Influenza and other respiratory viruses    August 9, 2016   Volume 10, Issue 6 536-539 doi: 10.1111/irv.12418
Yamanaka T, Nemoto M, Bannai H, Tsujimura K, Kondo T, Matsumura T, Gildea S, Cullinane A.We previously reported that horse antiserum against the Japanese equine influenza vaccine virus, A/equine/La Plata/1993 (LP93) exhibited reduced cross-neutralization against some Florida sublineage Clade (Fc) 2 viruses, for example, A/equine/Carlow/2011 (CL11). As a result, Japanese vaccine manufacturers will replace LP93 with A/equine/Yokohama/aq13/2010 (Y10, Fc2). To assess the benefit of updating the vaccine, five horses vaccinated with inactivated Y10 vaccine and five vaccinated with inactivated LP93 were challenged by exposure to a nebulized aerosol of CL11. The durations of pyrexia (≥3...
Duration of serum antibody response to rabies vaccination in horses.
Journal of the American Veterinary Medical Association    August 2, 2016   Volume 249, Issue 4 411-418 doi: 10.2460/javma.249.4.411
Harvey AM, Watson JL, Brault SA, Edman JM, Moore SM, Kass PH, Wilson WD.OBJECTIVE To investigate the impact of age and inferred prior vaccination history on the persistence of vaccine-induced antibody against rabies in horses. DESIGN Serologic response evaluation. ANIMALS 48 horses with an undocumented vaccination history. PROCEDURES Horses were vaccinated against rabies once. Blood samples were collected prior to vaccination, 3 to 7 weeks after vaccination, and at 6-month intervals for 2 to 3 years. Serum rabies virus-neutralizing antibody (RVNA) values were measured. An RVNA value of ≥ 0.5 U/mL was used to define a predicted protective immune response on the b...
Vesicular stomatitis.
The Veterinary record    July 31, 2016   Volume 179, Issue 5 119-120 doi: 10.1136/vr.i4075
Timoney P.More than 800 premises in eight states in the USA have recently reported cases of vesicular stomatitis in their horses. Here, Peter Timoney, of the Gluck Equine Research Center in Kentucky, discusses this zoonotic disease in more detail.
Establishment of an equine tetanus antitoxin reference standard for veterinary use in Japan.
Biologicals : journal of the International Association of Biological Standardization    July 22, 2016   Volume 44, Issue 5 374-377 doi: 10.1016/j.biologicals.2016.06.008
Hirano F, Imamura S, Sasaki Y, Takikawa N, Sawata A, Yamamoto A, Uchiyama M, Shimazaki Y, Kojima A, Nagai H.To establish the first National Veterinary Assay Laboratory (NVAL) equine tetanus antitoxin reference standard for veterinary use, we manufactured vials of a candidate antitoxin. These were quality tested for moisture content, vacuum, colour, clarity, and the presence of foreign objects. Ultimately, 115 quality-controlled vials were prepared. To estimate the antitoxin potency of the candidate standard, three different laboratories conducted parallel line assays alongside the existing antitoxin standard. These potency estimates ranged from 38 to 42 IU. This activity was maintained for two years...
Immune response to bovine papillomavirus type 1 in equine sarcoid.
Veterinary journal (London, England : 1997)    July 20, 2016   Volume 216 107-108 doi: 10.1016/j.tvjl.2016.07.012
Brandt S.No abstract available
RNA expression of TLR10 in normal equine tissues.
BMC research notes    July 19, 2016   Volume 9 353 doi: 10.1186/s13104-016-2161-9
Tarlinton RE, Alder L, Moreton J, Maboni G, Emes RD, Tötemeyer S.Toll like receptors are one of the major innate immune system pathogen recognition systems. There is little data on the expression of the TLR10 member of this family in the horse. Results: This paper describes the genetic structure of the Equine TLR10 gene and its RNA expression in a range of horse tissues. It describes the phylogenetic analysis of the Equine TLR1,6,10,2 annotations in the horse genome, firmly identifying them in their corresponding gene clades compared to other species and firmly placing the horse gene with other TLR10 genes from odd-toed ungulates. Additional 3' transcript e...
A naturally truncated NS1 protein of influenza A virus impairs its interferon-antagonizing activity and thereby confers attenuation in vitro.
Archives of virology    July 11, 2016   Volume 162, Issue 1 13-21 doi: 10.1007/s00705-016-2966-9
Lee J, Park JH, Min JY.The non-structural protein of influenza A virus (NS1A protein) is a multifunctional protein that antagonizes host antiviral responses and contributes to efficient viral replication during infection. However, most of its functions have been elucidated by generating recombinant viruses expressing mutated NS1 proteins that do not exist in nature. Recently, the novel H3N8 A/Equine/Kyonggi/SA1/2011 (KG11) influenza virus was isolated in Korea from horses showing respiratory disease symptoms. KG11 virus contains a naturally truncated NS gene segment with the truncation in the NS1A coding region, res...
Comparative transcriptome analysis of equine alveolar macrophages.
Equine veterinary journal    July 9, 2016   Volume 49, Issue 3 375-382 doi: 10.1111/evj.12584
Karagianni AE, Kapetanovic R, Summers KM, McGorum BC, Hume DA, Pirie RS.Alveolar macrophages (AMs) are the first line of defence against pathogens in the lungs of all mammalian species and thus may constitute appropriate therapeutic target cells in the treatment and prevention of opportunistic airway infections. Therefore, acquiring a better understanding of equine macrophage biology is of paramount importance in addressing this issue in relation to the horse. Objective: To compare the transcriptome of equine AMs with that of equine peritoneal macrophages (PMs) and to investigate the effect of lipopolysaccharide (LPS) on equine AM. Methods: Gene expression study o...
Intratracheal therapy with autologous bone marrow-derived mononuclear cells reduces airway inflammation in horses with recurrent airway obstruction.
Respiratory physiology & neurobiology    July 7, 2016   Volume 232 35-42 doi: 10.1016/j.resp.2016.07.002
Barussi FC, Bastos FZ, Leite LM, Fragoso FY, Senegaglia AC, Brofman PR, Nishiyama A, Pimpão CT, Michelotto PV.This research evaluated the effects of bone marrow-derived mononuclear cells (BMMCs) on the inflammatory process in the equine recurrent airway obstruction (RAO). Eight horses in RAO clinical score were divided into cell therapy group (Gcel) treated with a single intratracheal dose of BMMCs, and dexamethasone group (Gdex) treated with 21days of oral dexamethasone. The horses were clinically revaluated on days 7 and 21, together with cytological evaluation of the BALF, and detection of inflammatory markers (interleukins [IL]-10, -4, and -17, and interferon γ and α). There were decreases in re...
Double-stranded-RNA-specific adenosine deaminase 1 (ADAR1) is proposed to contribute to the adaptation of equine infectious anemia virus from horses to donkeys.
Archives of virology    July 6, 2016   Volume 161, Issue 10 2667-2672 doi: 10.1007/s00705-016-2951-3
Tang YD, Zhang X, Na L, Wang XF, Fu LH, Zhu CH, Wang X, Zhou JH.Equine infectious anemia virus (EIAV) is a member of the genus Lentivirus of the family Retroviridae. Horses are the most susceptible equids to EIAV infection and are therefore the primary hosts of this virus. In contrast, infected donkeys do not develop clinically active equine infectious anemia (EIA). This phenomenon is similar to what has been observed with HIV-1, which fails to induce AIDS in non-human primates. Interestingly, Shen et al. developed a donkey-tropic pathogenic virus strain (EIAVDV117, DV117) by serially passaging a horse-tropic pathogenic strain, EIAVLN40 (LN40), in donkeys....
Quantitative analysis of infiltrating immune cells and bovine papillomavirus type 1 E2-positive cells in equine sarcoids.
Veterinary journal (London, England : 1997)    July 5, 2016   Volume 216 45-52 doi: 10.1016/j.tvjl.2016.06.016
Geisshüsler H, Marti E, Stoffel MH, Kühni K, Stojiljkovic A, von Tscharner C, Vidondo B, Gerber V, Koch C.Sarcoids are the most frequently observed skin tumours in equids and consist of cutaneous accumulations of transformed fibroblasts. Their aetiopathogenesis is closely linked to a presumably abortive infection by bovine papillomavirus (BPV) types 1 and 2. In cattle, dermal fibropapillomas induced by BPV1/2 usually regress spontaneously due to a local, cell-mediated, immune response; however, equids appear to lack an effective immune response to BPV1/2 and mechanisms of immune evasion have been postulated. As a consequence, equine sarcoids tend to persist and are prone to recur. In this study, c...
Concurrent vaccination against equine influenza and equine herpesvirus – a practical approach.
Influenza and other respiratory viruses    July 2, 2016   Volume 10, Issue 5 433-437 doi: 10.1111/irv.12396
Gildea S, Sanchez Higgins MJ, Johnson G, Walsh C, Cullinane A.There is a lack of information concerning concurrent administration of vaccines against equine influenza virus (EIV) and equine herpesvirus 1 and 4 (EHV-1/4). The primary objective of this study was to determine the impact of the concurrent use of EIV and EHV-1/4 vaccines in Thoroughbred racehorses on their humoral immune response to EIV. This study was carried out on a population of 30 horses using an inactivated whole-virus EIV vaccine and an inactivated EHV-1/4 vaccine. Horses were randomly allocated to vaccination group A or B. Horses in group A were vaccinated against EIV and EHV-1/4 2 we...
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