[HTML][HTML] Cardiac myosin-Th17 responses promote heart failure in human myocarditis

JM Myers, LT Cooper, DC Kem, S Stavrakis… - JCI insight, 2016 - ncbi.nlm.nih.gov
JM Myers, LT Cooper, DC Kem, S Stavrakis, SD Kosanke, EM Shevach, DL Fairweather…
JCI insight, 2016ncbi.nlm.nih.gov
In human myocarditis and its sequela dilated cardiomyopathy (DCM), the mechanisms and
immune phenotype governing disease and subsequent heart failure are not known. Here,
we identified a Th17 cell immunophenotype of human myocarditis/DCM with elevated CD4+
IL17+ T cells and Th17-promoting cytokines IL-6, TGF-β, and IL-23 as well as GM-CSF–
secreting CD4+ T cells. The Th17 phenotype was linked with the effects of cardiac myosin
on CD14+ monocytes, TLR2, and heart failure. Persistent heart failure was associated with …
Abstract
In human myocarditis and its sequela dilated cardiomyopathy (DCM), the mechanisms and immune phenotype governing disease and subsequent heart failure are not known. Here, we identified a Th17 cell immunophenotype of human myocarditis/DCM with elevated CD4+ IL17+ T cells and Th17-promoting cytokines IL-6, TGF-β, and IL-23 as well as GM-CSF–secreting CD4+ T cells. The Th17 phenotype was linked with the effects of cardiac myosin on CD14+ monocytes, TLR2, and heart failure. Persistent heart failure was associated with high percentages of IL-17–producing T cells and IL-17–promoting cytokines, and the myocarditis/DCM phenotype included significantly low percentages of FOXP3+ Tregs, which may contribute to disease severity. We demonstrate a potentially novel mechanism in human myocarditis/DCM in which TLR2 peptide ligands from human cardiac myosin stimulated exaggerated Th17-related cytokines including TGF-β, IL-6, and IL-23 from myocarditic CD14+ monocytes in vitro, and an anti-TLR2 antibody abrogated the cytokine response. Our translational study explains how an immune phenotype may be initiated by cardiac myosin TLR ligand stimulation of monocytes to generate Th17-promoting cytokines and development of pathogenic Th17 cells in human myocarditis and heart failure, and provides a rationale for targeting IL-17A as a therapeutic option.
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