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Genomic expression profiling of human inflammatory cardiomyopathy (DCMi) suggests novel therapeutic targets
1Department of Cardiology and Pneumology, Campus Benjamin Franklin, Charité-Universitätsmedizin Berlin, Hindenburgdamm 30, 12200, Berlin, Germany.
Insights
Inflammatory cardiomyopathy (DCMi) shows unique gene expression changes involving CYR61 and APN. Targeting these pathways may offer new therapeutic strategies for early-stage heart disease.
Area of Science:
- Cardiology
- Molecular Biology
- Genomics
Background:
- Dilated cardiomyopathy (DCM) presents diverse etiologies.
- Targeting specific pathogenic pathways offers potential for more effective heart failure treatment.
- Inflammatory cardiomyopathy (DCMi) is a distinct subtype requiring further investigation.
Purpose of the Study:
- To identify novel therapeutic targets in DCMi by analyzing its genomic expression profile.
- To understand the molecular mechanisms underlying DCMi.
Main Methods:
- Genomic expression profiling of DCMi patient hearts.
- In vitro studies using vascular endothelial cells to assess gene regulation by inflammatory cytokines.
- Analysis of gene networks centered around CYR61 and APN.
Main Results:
- A unique cardiac expression pattern was identified in DCMi.
- Two interdependent gene networks involving cysteine-rich angiogenic inducer 61 (CYR61) and adiponectin (APN) were significantly altered.
- CYR61 was overexpressed, while APN was downregulated in DCMi hearts, impacting cytokine-induced CYR61 expression.
- Deregulation of immune cell-associated genes was observed.
Conclusions:
- A dysbalance between CYR61 and APN networks may contribute to DCMi pathogenesis.
- These networks represent potential novel therapeutic targets.
- The observed deregulations occur at an early, potentially reversible disease stage.
Abstract:
The clinical phenotype of human dilated cardiomyopathy (DCM) encompasses a broad spectrum of etiologically distinct disorders. As targeting of etiology-related pathogenic pathways may be more efficient than current standard heart failure treatment, we obtained the genomic expression profile of a DCM subtype characterized by cardiac inflammation to identify possible new therapeutic targets in humans. In this inflammatory cardiomyopathy (DCMi), a distinctive cardiac expression pattern not described in any previous study of cardiac disorders was observed. Two significantly altered gene networks of particular interest and possible interdependence centered around the cysteine-rich angiogenic inducer 61 (CYR61) and adiponectin (APN) gene. CYR61 overexpression, as in human DCMi hearts in situ, was similarly induced by inflammatory cytokines in vascular endothelial cells in vitro. APN was strongly downregulated in DCMi hearts and completely abolished cytokine-dependent CYR61 induction in vitro. Dysbalance between the CYR61 and APN networks may play a pathogenic role in DCMi and contain novel therapeutic targets. Multiple immune cell-associated genes were also deregulated (e.g., chemokine ligand 14, interleukin-17D, nuclear factors of activated T cells). In contrast to previous investigations in patients with advanced or end-stage DCM where etiology-related pathomechanisms are overwhelmed by unspecific processes, the deregulations detected in this study occurred at a far less severe and most probably fully reversible disease stage.
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