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Topic:Immunoglobulin A

Immunoglobulin A (IgA) is an antibody that plays a significant role in the mucosal immunity of horses. It is primarily found in mucous membranes lining the respiratory, gastrointestinal, and urogenital tracts, as well as in secretions such as saliva and tears. IgA functions by binding to pathogens and preventing their adherence to and penetration of mucosal surfaces. This antibody is a key component of the horse's immune system, providing a first line of defense against environmental pathogens. Research on equine IgA focuses on its production, distribution, and function, as well as its potential use as a biomarker for disease susceptibility and immune status in horses. This page gathers peer-reviewed research studies and scholarly articles that explore the role, mechanisms, and clinical implications of immunoglobulin A in equine health.
Preliminary study of mucosal IgA in the equine small intestine: specific IgA in cases of acute grass sickness and controls.
Equine veterinary journal    October 4, 2007   Volume 39, Issue 5 457-460 doi: 10.2746/042516407x193189
Nunn FG, Pirie RS, McGorum B, Wernery U, Poxton IR.There is much evidence to suggest that group III Clostridium botulinum (types C and D) are involved in the aetiology of equine grass sickness (EGS). Antibodies have been detected previously in the blood and high levels associated with resistance to disease. Specific mucosal antibodies in the gastrointestinal (GI) tract are likely to be important in protection, and this study was performed to ascertain if such antibodies could be detected and if their levels were related to disease state. Objective: To develop a method for quantifying IgA antibodies to C. botulinum types C and D in the GI tract...
On the presence of antibodies against bovine, equine and poultry immunoglobulins in human IgG preparations, and its implications on antivenom production.
Toxicon : official journal of the International Society on Toxinology    June 26, 2007   Volume 51, Issue 1 10-16 doi: 10.1016/j.toxicon.2007.06.009
Sevcik C, Díaz P, D'Suze G.Specific immunoassays were developed to detect anti-horse, anti-chicken and anti-bovine immunoglobulins in human IgG preparations. Three samples of 5% human IgG for intravenous use ("Inmunoglobulina G Endovenosa al 5%"(trade mark), Quimbiotec CA), were studied. All samples were produced from pools of >2500 plasma units from different donors. One sample was produced from an only Venezuelan plasma pool (2660 donors) and the other two were produced from a 1:1 blend of Venezuelan and Canadian plasma pools. The amounts of human IgG detected were 0.017 (0.015,0.020) mg/ml (n=18) against horse IgG...
Experimental vesicular stomatitis virus infection in horses: effect of route of inoculation and virus serotype.
Veterinary pathology    November 14, 2006   Volume 43, Issue 6 943-955 doi: 10.1354/vp.43-6-943
Howerth EW, Mead DG, Mueller PO, Duncan L, Murphy MD, Stallknecht DE.Horses were inoculated with Vesicular stomatitis New Jersey and Indiana viruses by routes simulating contact and vector transmission. Clinical signs, lesions, antibody development, viral shedding and persistence, and viremia were monitored. Horses were infected with both viruses by all routes as confirmed by seroconversion. Salivation, primary lesions at inoculation sites, and secondary oral lesions were the most common clinical findings. Viral shedding was most often from the oral cavity, followed by the nasal cavity; titers were highest from oral cavity samples. Virus was rarely isolated fro...
Mucosal and systemic adjuvant activity of alphavirus replicon particles.
Proceedings of the National Academy of Sciences of the United States of America    February 27, 2006   Volume 103, Issue 10 3722-3727 doi: 10.1073/pnas.0600287103
Thompson JM, Whitmore AC, Konopka JL, Collier ML, Richmond EM, Davis NL, Staats HF, Johnston RE.Vaccination represents the most effective control measure in the fight against infectious diseases. Local mucosal immune responses are critical for protection from, and resolution of, infection by numerous mucosal pathogens. Antigen processing across mucosal surfaces is the natural route by which mucosal immunity is generated, as peripheral antigen delivery typically fails to induce mucosal immune responses. However, we demonstrate in this article that mucosal immune responses are evident at multiple mucosal surfaces after parenteral delivery of Venezuelan equine encephalitis virus replicon pa...
Histology, immunohistochemistry and ultrastructure of the tonsil of the soft palate of the horse.
Anatomia, histologia, embryologia    January 26, 2006   Volume 35, Issue 1 1-6 doi: 10.1111/j.1439-0264.2005.00622.x
Kumar P, Timoney JF.The tonsil of the soft palate was an oval, flat structure located centro-rostrally on the oral surface of the soft palate. Its stratified squamous non-keratinized epithelium was perforated by holes or small crypts the deeper parts of which were loosely spongiform inter-digitated with lymphoid tissue. These unusual features have not previously been reported in tonsils of any species. Crypts and reticulated epithelium as found in the lingual and palatine tonsils were not observed. Lectins showed varying affinities for specific layers of the epithelium. M cells were not observed. A few Langerhans...
LruA and LruB, novel lipoproteins of pathogenic Leptospira interrogans associated with equine recurrent uveitis.
Infection and immunity    October 22, 2005   Volume 73, Issue 11 7259-7266 doi: 10.1128/IAI.73.11.7259-7266.2005
Verma A, Artiushin S, Matsunaga J, Haake DA, Timoney JF.Recurrent uveitis as a sequela to Leptospira infection is the most common infectious cause of blindness and impaired vision of horses worldwide. Leptospiral proteins expressed during prolonged survival in the eyes of horses with lesions of chronic uveitis were identified by screening a phage library of Leptospira interrogans DNA fragments with eye fluids from uveitic horses. Inserts of reactive phages encoded several known leptospiral proteins and two novel putative lipoproteins, LruA and LruB. LruA was intrinsically labeled during incubation of L. interrogans in medium containing [14C]palmiti...
IgA Fc receptors in cattle and horses.
Veterinary immunology and immunopathology    August 16, 2005   Volume 108, Issue 1-2 139-143 doi: 10.1016/j.vetimm.2005.07.008
Morton HC.The biological role of IgA depends, at least partly, on the interaction with specific receptors (FcalphaRs) on the surface of leukocytes. The human FcalphaR, CD89, was the first IgA Fc receptor to be identified, and binding of IgA-coated particles to CD89 triggers numerous cellular effector functions including phagocytosis, antibody-dependent cell-mediated cytotoxicity (ADCC), and release of inflammatory mediators. Recently, CD89 orthologs have been identified in a number of other species, including cows and horses. This brief review will summarize our current knowledge regarding the structure...
The use of a systemic prime/mucosal boost strategy with an equine influenza ISCOM vaccine to induce protective immunity in horses.
Veterinary immunology and immunopathology    August 10, 2005   Volume 108, Issue 3-4 345-355 doi: 10.1016/j.vetimm.2005.06.009
Crouch CF, Daly J, Henley W, Hannant D, Wilkins J, Francis MJ.In horses, natural infection confers long lasting protective immunity characterised by mucosal IgA and humoral IgGa and IgGb responses. In order to investigate the potential of locally administered vaccine to induce a protective IgA response, responses generated by vaccination with an immunostimulating complex (ISCOM)-based vaccine for equine influenza (EQUIP F) containing A/eq/Newmarket/77 (H7N7), A/eq/Borlänge/91 (H3N8) and A/eq/Kentucky/98 (H3N8) using a systemic prime/mucosal boost strategy were studied. Seven ponies in the vaccine group received EQUIP F vaccine intranasally 6 weeks after...
Common variable immunodeficiency in three horses with presumptive bacterial meningitis.
Journal of the American Veterinary Medical Association    July 15, 2005   Volume 227, Issue 1 114-87 doi: 10.2460/javma.2005.227.114
Pellegrini-Masini A, Bentz AI, Johns IC, Parsons CS, Beech J, Whitlock RH, Flaminio MJ.Three adult horses were evaluated for signs of musculoskeletal pain, dullness, ataxia, and seizures. A diagnosis of bacterial meningitis was made on the basis of results of CSF analysis. Because primary bacterial meningitis is so rare in adult horses without any history of generalized sepsis or trauma, immune function testing was pursued. Flow cytometric phenotyping of peripheral blood lymphocytes was performed, and proliferation of peripheral blood lymphocytes in response to concanavalin A, phytohemagglutinin, pokeweed mitogen, and lipopolysaccharide was determined. Serum IgA, IgM, and IgG co...
Histology and ultrastructure of the equine lingual tonsil. II. Lymphoid tissue and associated high endothelial venules.
Anatomia, histologia, embryologia    March 18, 2005   Volume 34, Issue 2 98-104 doi: 10.1111/j.1439-0264.2004.00579.x
Kumar P, Timoney JF.The stratified squamous epithelium of the lingual tonsil of five young horses was infiltrated with CD4 and CD8 positive cells, which were very numerous in the crypt reticular epithelium along with macrophages and IgGb and IgA positive cells. Lymphoid follicles of the lamina propria mucosae consisted of a parafollicular area, corona and germinal centre. The parafollicular area was populated by large numbers of CD4 and CD8 positive lymphocytes as well as macrophages, inter-digitating cells, and a few B-lymphocytes. The germinal centre contained mainly IgGb and IgG(T) positive cells, plasma cells...
Immune responses and protective efficacy in ponies immunised with an equine influenza ISCOM vaccine containing an ‘American lineage’ H3N8 virus.
Vaccine    November 9, 2004   Volume 23, Issue 3 418-425 doi: 10.1016/j.vaccine.2004.01.074
Crouch CF, Daly J, Hannant D, Wilkins J, Francis MJ.Protective responses generated by vaccination with an immuno-stimulating complex (ISCOM)-based vaccine for equine influenza (EQUIP F), containing a new 'American lineage' H3N8 virus, were studied. Seven ponies in the vaccine group received two intramuscular injections of EQUIP F given 6 weeks apart. Aerosol challenge with an A/eq/Newmarket/1/93 reference strain 4 weeks after booster vaccination resulted in clinical signs of infection and viral shedding in 7 influenza-naive control animals whereas the vaccinated ponies were significantly protected from both clinical signs and virus excretion. I...
Association between Key-Gaskell syndrome and infection by Clostridium botulinum type C/D.
The Veterinary record    August 27, 2004   Volume 155, Issue 4 111-115 doi: 10.1136/vr.155.4.111
Nunn F, Cave TA, Knottenbelt C, Poxton IR.There is growing evidence that equine dysautonomia is a toxicoinfection with Clostridium botulinum type C. The possibility that feline dysautonomia has the same aetiology was investigated by attempting to detect botulinum type C neurotoxin in the food, faeces and the contents of the ileum of affected cats, and by serology. The toxin was detected directly in four of eight affected cats and after enrichment in seven of them, and in their dried food. No toxin was detected in healthy control cats or in their tinned food. Recent exposure to the organism was assessed by the detection of immunoglobul...
Hypercalcemia and high serum parathyroid hormone-related protein concentration in a horse with multiple myeloma.
Journal of the American Veterinary Medical Association    August 27, 2004   Volume 225, Issue 3 409-376 doi: 10.2460/javma.2004.225.409
Barton MH, Sharma P, LeRoy BE, Howerth EW.A 13-year-old gelding was examined because of weight loss, hyperglobulinemia, and hypercalcemia. Possible causes of hypercalcemia that were considered included renal failure, primary hyperparathyroidism, vitamin D toxicosis, and malignancy. There was no history of vitamin D ingestion, and serum creatinine and parathyroid hormone concentrations were normal, making renal failure and primary hyperparathyroidism unlikely. The hypercalcemia was suspected to be a result of malignancy, but thorough testing did not reveal any neoplastic disease. Eight months later, serum parathyroid hormone-related pr...
Immunoglobulin A monoclonal gammopathy in two horses with multiple myeloma.
The Veterinary record    July 22, 2004   Volume 155, Issue 1 19-23 doi: 10.1136/vr.155.1.19
Pusterla N, Stacy BA, Vernau W, De Cock HE, Magdesian KG.The clinical findings in two horses with secretory multiple myeloma and secondary immunoglobulin A (IgA) monoclonal gammopathy were non-specific and included weight loss, pale mucous membranes, limb oedema and bacterial respiratory tract infection. Consistent laboratory abnormalities included hyperproteinaemia, hyperglobulinaemia, hypoalbuminaemia and hypercalcaemia. The diagnosis was based on the presence of IgA monoclonal gammopathy in serum and urine and bone marrow plasmacytosis (> 10 per cent). One horse was euthanased; it had neoplastic plasma cell infiltrates in its kidneys, spleen, ...
Recombinant Streptococcus equi proteins protect mice in challenge experiments and induce immune response in horses.
Infection and immunity    May 25, 2004   Volume 72, Issue 6 3228-3236 doi: 10.1128/IAI.72.6.3228-3236.2004
Flock M, Jacobsson K, Frykberg L, Hirst TR, Franklin A, Guss B, Flock JI.Horses that have undergone infection caused by Streptococcus equi subspecies equi (strangles) were found to have significantly increased serum antibody titers against three previously characterized proteins, FNZ (cell surface-bound fibronectin binding protein), SFS (secreted fibronectin binding protein), and EAG (alpha2-macroglobulin, albumin, and immunoglobulin G [IgG] binding protein) from S. equi. To assess the protective efficacy of vaccination with these three proteins, a mouse model of equine strangles was utilized. Parts of the three recombinant proteins were used to immunize mice, eith...
Natural killer cell receptors in the horse: evidence for the existence of multiple transcribed LY49 genes.
European journal of immunology    March 3, 2004   Volume 34, Issue 3 773-784 doi: 10.1002/eji.200324695
Takahashi T, Yawata M, Raudsepp T, Lear TL, Chowdhary BP, Antczak DF, Kasahara M.In rodents, the Ly49 family encodes natural killer (NK) receptors interacting with classical MHC class I molecules, whereas the corresponding receptors in primates are members of the killer cell immunoglobulin-like receptor (KIR) family. Recent evidence indicates that the cattle, domestic cat, dog, and pig have a single LY49 and multiple KIR genes, suggesting that predominant NK receptors in most non-rodent mammals might be KIR. Here, we show that the horse has at least six LY49 genes, five with an immunoreceptor tyrosine-based inhibition motif (ITIM) and one with arginine in the transmembrane...
Cross-species reactivity of seven monoclonal antibodies with equine lymphocytes by flow cytometry.
Veterinary research    January 30, 2004   Volume 34, Issue 6 791-801 doi: 10.1051/vetres:2003033
Mérant C, Bonnefont C, Desbos A, Greenland T, Cadoré JL, Monier JC.The recognition of equine lymphocyte antigens by monoclonal antibodies (mAbs) directed against human CD11a, CD18, CD21, CD23, CD29 and DR, as well as mouse CD23 was studied by flow cytometry. Unlike anti-CD11a, -CD21, -CD23 and DR mAbs, anti-CD18 and CD29 mAbs labelled the same percentage of horse peripheral blood lymphocytes (PBL) as human PBL. Double-staining with anti-horse immunoglobulin antibodies showed that anti-CD21 and -CD23 mAbs are mainly bound to peripheral blood B lymphocytes. The seven mAbs were also tested on the lymph node and thymus cells. The molecular targets of anti-CD11a, ...
Characterization of the horse (Equus caballus) IGHA gene.
Immunogenetics    October 15, 2003   Volume 55, Issue 8 552-560 doi: 10.1007/s00251-003-0617-2
Wagner B, Greiser-Wilke I, Antczak DF.Nucleotide sequences of the immunoglobulin constant heavy chain genes of the horse have been described for IGHM, IGHG and IGHE genes, but not for IGHA. Here, we provide the nucleotide sequence of the genomic IGHA gene of the horse ( Equus caballus), including its secretion region and the transmembrane exon. The equine IGHA gene shows the typical structure of a mammalian IGHA gene, with only three exons, separated by two introns of similar size. The hinge exon is located at the 5' end of the CH2 exon and encodes a hinge region of 11 amino acids, which contains five proline residues. The coding ...
Onset of immunoglobulin production in foals.
Equine veterinary journal    October 1, 2003   Volume 35, Issue 6 620-622 doi: 10.2746/042516403775467153
Holznagel DL, Hussey S, Mihalyi JE, Wilson WD, Lunn DP.No abstract available
Regional antibody and cellular immune responses to equine influenza virus infection, and particle mediated DNA vaccination.
Veterinary immunology and immunopathology    July 5, 2003   Volume 94, Issue 1-2 47-62 doi: 10.1016/s0165-2427(03)00060-6
Soboll G, Horohov DW, Aldridge BM, Olsen CW, McGregor MW, Drape RJ, Macklin MD, Swain WF, Lunn DP.We have previously demonstrated that hemagglutinin (HA) gene vaccination and influenza virus infection generate protective antibody responses in equids. However, these antibody responses differ substantially in that particle mediated DNA vaccination does not induce an immunoglobulin A (IgA) response. A study was performed to investigate the regional immunoregulatory mechanisms associated with these different immune responses. Ponies were either vaccinated with equine HA DNA vaccines at skin and mucosal sites, infected with influenza virus or left untreated and influenza-specific antibody respo...
Mucosal co-administration of cholera toxin and influenza virus hemagglutinin-DNA in ponies generates a local IgA response.
Vaccine    June 12, 2003   Volume 21, Issue 21-22 3081-3092 doi: 10.1016/s0264-410x(03)00161-0
Soboll G, Nelson KM, Leuthner ES, Clark RJ, Drape R, Macklin MD, Swain WF, Olsen CW, Lunn DP.We have previously demonstrated that equine influenza virus hemagglutinin (HA) DNA vaccination protects ponies from challenge infection, and induces protective IgGa and IgGb responses. However, this approach does not induce a nasal IgA response. The objective of this study was to examine the value of cholera toxin (CT) administration as an adjuvant for intranasal HA DNA vaccination, and to measure protection 3 months after DNA vaccination. After an immunogenic dose of CT was determined, ponies were immunized on two occasions by intranasal administration of HA DNA and cholera toxin, or HA DNA a...
IgA and secretory component (SC) in the third eyelid of domestic animals: a comparative study.
Veterinary ophthalmology    May 20, 2003   Volume 6, Issue 2 157-161 doi: 10.1046/j.1463-5224.2003.00284.x
Schlegel T, Brehm H, Amselgruber WM.The third eyelid of domestic animals is important for the production and distribution of tears, in removing ocular debris and in protection of the globe, and has significant immunologic functions. Although it is known that tears contain antibodies of the immunoglobulin A (IgA) isotype which are produced mainly by plasma cells of the lacrimal gland, very little is known about the antibody repertoires in the third eyelid of domestic animals. To assess whether IgA is derived from local synthesis, we analyzed the location of IgA-producing cells and the cellular distribution of secretory component ...
Serum and mucosal antibodies of infected foals recognized two distinct epitopes of VapA of Rhodococcus equi.
FEMS immunology and medical microbiology    November 22, 2002   Volume 34, Issue 4 299-306 doi: 10.1111/j.1574-695X.2002.tb00637.x
Taouji S, Bréard E, Peyret-Lacombe A, Pronost S, Fortier G, Collobert-Laugier C.Virulence-associated protein A (VapA) of Rhodococcus equi has been proposed for use both as a vaccine and as a target for antibodies in immunotherapy and diagnostic tests. Epitope mapping of VapA allowed the identification of two B cell epitopes associated with R. equi pneumonia. The peptide NLQKDEPGRASDT was confirmed as an immunodominant N-terminal B cell epitope recognized by all sera from infected foals while VSFQYNAVGPYLNINFFDSS (C-terminal B cell epitope) was exclusively recognized by IgA from the tracheal aspirates. Moreover, specific antibodies produced against the VapA-specific peptid...
Common variable immunodeficiency in a horse.
Journal of the American Veterinary Medical Association    November 7, 2002   Volume 221, Issue 9 1296-1267 doi: 10.2460/javma.2002.221.1296
Flaminio MJ, LaCombe V, Kohn CW, Antczak DF.A 12-year-old Quarter Horse mare that was nonresponsive to medical treatment was evaluated for chronic respiratory disease and hepatobiliary disease. Serum immunoglobulin concentrations were measured by use of radial immunodiffusion that revealed trace to nondetectable concentrations of IgG, IgG(T), IgM, and IgA. Use of serum protein electrophoresis confirmed agammaglobulinemia by the absence of the expected peak in the gamma region. In addition, vaccination with tetanus toxoid did not result in specific immunoglobulin production. Flow cytometric analysis of blood lymphocyte subpopulations rev...
Cloning and molecular characterization of an immunogenic LigA protein of Leptospira interrogans.
Infection and immunity    October 16, 2002   Volume 70, Issue 11 5924-5930 doi: 10.1128/IAI.70.11.5924-5930.2002
Palaniappan RU, Chang YF, Jusuf SS, Artiushin S, Timoney JF, McDonough SP, Barr SC, Divers TJ, Simpson KW, McDonough PL, Mohammed HO.A clone expressing a novel immunoreactive leptospiral immunoglobulin-like protein A of 130 kDa (LigA) from Leptospira interrogans serovar pomona type kennewicki was isolated by screening a genomic DNA library with serum from a mare that had recently aborted due to leptospiral infection. LigA is encoded by an open reading frame of 3,675 bp, and the deduced amino acid sequence consists of a series of 90-amino-acid tandem repeats. A search of the NCBI database found that homology of the LigA repeat region was limited to an immunoglobulin-like domain of the bacterial intimin binding protein of Esc...
Nasal mucosal immunogenicity for the horse of a SeM peptide of Streptococcus equi genetically coupled to cholera toxin.
Vaccine    February 23, 2002   Volume 20, Issue 11-12 1653-1659 doi: 10.1016/s0264-410x(01)00488-1
Sheoran AS, Artiushin S, Timoney JF.The intranasal immunogenicity of cholera toxin (CT) genetically coupled to peptide sequence aa236-334 (F3) of the SeM protein of Streptococcus equi was studied in five young adult Welsh ponies. All ponies made rapid CTB- and SeMF3-specific serum antibody responses following the first immunization. Specific nasal IgA responses were detected in two ponies 14 days after the first immunization, in another two 14 days after a second immunization on day 14, and in all ponies 28 days after a third immunization on day 42. SeMF3-specific antibody responses in sera and nasal washes were dominated by IgG...
Immunological reagents: catalysts for research progress.
Equine veterinary journal    January 5, 2002   Volume 33, Issue 7 628-629 doi: 10.2746/042516401776249390
McGuire TC.No abstract available
Altered immune responses to a heterologous protein in ponies with heavy gastrointestinal parasite burdens.
Equine veterinary journal    January 5, 2002   Volume 33, Issue 7 658-663 doi: 10.2746/042516401776249282
Edmonds JD, Horohov DW, Chapmat MR, Pourciau SS, Antoku K, Snedden K, Klei TR.This study was performed to test the hypothesis that immunity to heterologous vaccination would improve when the parasites were removed. It was also expected that parasitised ponies would exhibit a biased Th2 cytokine response to KLH immunisation. Helminth parasites are common in horses even in the era of highly effective broad-spectrum antiparasiticides. These parasites have been shown to alter the outcome to heterologous immunisation in a number of host species. The effect of gastrointestinal parasites on heterologous vaccination has not been addressed in equids. In the current study, humora...
The mucosal humoral immune response of the horse to infective challenge and vaccination with equine herpesvirus-1 antigens.
Equine veterinary journal    January 5, 2002   Volume 33, Issue 7 651-657 doi: 10.2746/042516401776249318
Breathnach CC, Yeargan MR, Sheoran AS, Allen GP.Equine herpesvirus-1 (EHV-1) remains a frequent cause of upper respiratory tract infection and abortion in horses worldwide. However, little is known about the local antibody response elicited in the upper airways of horses following exposure to EHV-1. This study analysed the mucosal humoral immune response of weanling foals following experimental infection with virulent EHV-1, or vaccination with either of 2 commercial vaccines. Twenty weanlings were assigned to 5 groups and were inoculated with, or vaccinated against, EHV-1 following different regimens. Finally, all weanlings were simultaneo...
High-dose Borna disease virus infection induces a nucleoprotein-specific cytotoxic T-lymphocyte response and prevention of immunopathology.
Journal of virology    November 2, 2001   Volume 75, Issue 23 11700-11708 doi: 10.1128/JVI.75.23.11700-11708.2001
Furrer E, Bilzer T, Stitz L, Planz O.Experimental Borna disease virus (BDV) infection of rats and natural infection of horses and sheep leads to severe central nervous system disease based on immunopathological pathways. The virus replicates slowly, and the cellular immune response results in immunopathology. CD8(+) T cells exert effector cell functions, and their activity results in the destruction of virus-infected cells. Previously, Oldach and colleagues (D. Oldach, M. C. Zink, J. M. Pyper, S. Herzog, R. Rott, O. Narayan, and J. E. Clements, Virology 206:426-434, 1995) have reported protection against Borna disease after inocu...