Rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - S. pyogenes vaccine

The major events leading to both rheumatic fever and rheumatic heart disease are reviewed. Several genes are involved in the development of rheumatic fever (RF) and rheumatic heart disease (RHD). The inflammatory process that results from S. pyogenes infection involves the activation of several mole...

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Main Authors: Luiza eGuilherme, Jorge eKalil
Format: Article
Language:English
Published: Frontiers Media S.A. 2013-10-01
Series:Frontiers in Immunology
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fimmu.2013.00352/full
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spelling doaj-6e80f9e1164447b18c48ac57c27b117e2020-11-25T00:31:07ZengFrontiers Media S.A.Frontiers in Immunology1664-32242013-10-01410.3389/fimmu.2013.0035269202Rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - S. pyogenes vaccineLuiza eGuilherme0Luiza eGuilherme1Jorge eKalil2Jorge eKalil3Jorge eKalil4Heart Institute (InCor), School of Medicine, University of São Paulo, São Paulo, BrazilImmunology Investigation Institute, National Institute for Science and Technology, University of Sao Paulo, Sao Paulo, BrazilHeart Institute (InCor), School of Medicine, University of São Paulo, São Paulo, BrazilImmunology Investigation Institute, National Institute for Science and Technology, University of Sao Paulo, Sao Paulo, BrazilClinical Immunology and Allergy Division, School of Medicine, University of Sao Paulo, Sao Paulo, BrazilThe major events leading to both rheumatic fever and rheumatic heart disease are reviewed. Several genes are involved in the development of rheumatic fever (RF) and rheumatic heart disease (RHD). The inflammatory process that results from S. pyogenes infection involves the activation of several molecules such as VCAM and ICAM, which play a role in the migration of leukocytes to the heart, particularly to the valves. Specific chemokines, such as CXCL3/MIP1α as well as CCL1/I309 and CXCL9/Mig, attract T cells to the myocardium and valves, respectively. The autoimmune reactions are mediated by both the B- and T-cell responses that begin at the periphery, followed by the migration of T-cell clones to the heart and the infiltration of heart lesions in RHD patients. These cells recognize streptococcal antigens and human tissue proteins. Molecular mimicry between streptococcal M protein and human proteins has been proposed as the triggering factor leading to autoimmunity in RF and RHD. The production of cytokines from peripheral and heart-infiltrating mononuclear cells suggests that T helper 1 (Th1) and Th17 cytokines are the mediators of RHD heart lesions. The low numbers of IL-4-producing cells in the valvular tissue might contribute to the maintenance and progression of the valve lesions. The identification of a vaccine epitope opens a perspective of development of an effective and safe vaccine to prevent S. pyogenes infections, consequently RF and RHD.http://journal.frontiersin.org/Journal/10.3389/fimmu.2013.00352/fullChemokinesGenesAdhesion moleculesS. pyogenesTh1 and Th17 cytokinesT and B cells
collection DOAJ
language English
format Article
sources DOAJ
author Luiza eGuilherme
Luiza eGuilherme
Jorge eKalil
Jorge eKalil
Jorge eKalil
spellingShingle Luiza eGuilherme
Luiza eGuilherme
Jorge eKalil
Jorge eKalil
Jorge eKalil
Rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - S. pyogenes vaccine
Frontiers in Immunology
Chemokines
Genes
Adhesion molecules
S. pyogenes
Th1 and Th17 cytokines
T and B cells
author_facet Luiza eGuilherme
Luiza eGuilherme
Jorge eKalil
Jorge eKalil
Jorge eKalil
author_sort Luiza eGuilherme
title Rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - S. pyogenes vaccine
title_short Rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - S. pyogenes vaccine
title_full Rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - S. pyogenes vaccine
title_fullStr Rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - S. pyogenes vaccine
title_full_unstemmed Rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - S. pyogenes vaccine
title_sort rheumatic heart disease: molecules involved in valve tissue inflammation leading to the autoimmune process and anti - s. pyogenes vaccine
publisher Frontiers Media S.A.
series Frontiers in Immunology
issn 1664-3224
publishDate 2013-10-01
description The major events leading to both rheumatic fever and rheumatic heart disease are reviewed. Several genes are involved in the development of rheumatic fever (RF) and rheumatic heart disease (RHD). The inflammatory process that results from S. pyogenes infection involves the activation of several molecules such as VCAM and ICAM, which play a role in the migration of leukocytes to the heart, particularly to the valves. Specific chemokines, such as CXCL3/MIP1α as well as CCL1/I309 and CXCL9/Mig, attract T cells to the myocardium and valves, respectively. The autoimmune reactions are mediated by both the B- and T-cell responses that begin at the periphery, followed by the migration of T-cell clones to the heart and the infiltration of heart lesions in RHD patients. These cells recognize streptococcal antigens and human tissue proteins. Molecular mimicry between streptococcal M protein and human proteins has been proposed as the triggering factor leading to autoimmunity in RF and RHD. The production of cytokines from peripheral and heart-infiltrating mononuclear cells suggests that T helper 1 (Th1) and Th17 cytokines are the mediators of RHD heart lesions. The low numbers of IL-4-producing cells in the valvular tissue might contribute to the maintenance and progression of the valve lesions. The identification of a vaccine epitope opens a perspective of development of an effective and safe vaccine to prevent S. pyogenes infections, consequently RF and RHD.
topic Chemokines
Genes
Adhesion molecules
S. pyogenes
Th1 and Th17 cytokines
T and B cells
url http://journal.frontiersin.org/Journal/10.3389/fimmu.2013.00352/full
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