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Updated: Apr 15, 2026

Measurement of Antibody Effects on Cellular Function of Isolated Cardiomyocytes
Published on: March 8, 2013
Autoantibody Profiling in Cardiomyopathies: Toward Immune-Guided Risk Stratification and Therapy
Alberto Marmai1, Giovanni Civieri1,2, Laura Iop3
1Cardiology Division, Department of Cardiac, Thoracic, Vascular Sciences and Public Health, University of Padua, 35128 Padua, Italy.
Insights
Autoimmune processes and cardiac autoantibodies contribute to cardiomyopathies. Identifying these autoantibodies may aid diagnosis, prognosis, and targeted therapies like plasmapheresis.
Area of Science:
- Cardiology
- Immunology
- Genetics
Background:
- Cardiomyopathies are myocardial disorders with structural/functional abnormalities.
- Genetic factors are key, but incomplete penetrance suggests other mechanisms.
- Autoimmune processes are increasingly implicated in cardiomyopathy development.
Purpose of the Study:
- To explore the role of autoimmune processes in cardiomyopathies.
- To identify autoantibodies targeting cardiac self-antigens.
- To evaluate the diagnostic, prognostic, and therapeutic potential of autoantibody profiling.
Main Methods:
- Reviewed experimental and clinical data on autoantibodies in cardiomyopathies.
- Identified autoantibodies targeting cardiac structural proteins, intercalated discs, intracellular proteins (e.g., calreticulin), and G protein-coupled receptors.
- Examined the effects of autoantibodies on cardiomyocyte signaling and intercellular coupling.
Main Results:
- A spectrum of autoantibodies against cardiac self-antigens is found in cardiomyopathy patients.
- Autoantibodies may promote maladaptive remodeling, ventricular dysfunction, and arrhythmias.
- Autoantibody profiling can identify distinct cardiomyopathy subsets.
Conclusions:
- Autoimmune mechanisms are significant in cardiomyopathy pathogenesis.
- Autoantibody profiling offers diagnostic and prognostic value.
- Therapeutic strategies like plasmapheresis can improve outcomes by removing pathogenic autoantibodies.
Abstract:
Cardiomyopathies comprise a heterogeneous group of myocardial disorders characterized by structural and/or functional abnormalities in the absence of secondary causes of myocardial dysfunction. Although genetic determinants play a central role in many forms of the disease, incomplete penetrance and the frequent absence of identifiable pathogenic variants suggest that additional mechanisms contribute to disease onset and progression. Growing evidence supports the pathogenic role of autoimmune processes in several cardiomyopathy phenotypes. A spectrum of autoantibodies targeting cardiac self-antigens, including structural proteins, intercalated disc components, intracellular proteins such as calreticulin, and G protein-coupled receptors, has been identified in affected patients. Experimental and clinical data suggest that these autoantibodies may exert functional effects on cardiomyocyte signaling pathways and intercellular coupling, thereby promoting maladaptive remodeling, progressive ventricular dysfunction, and an increased risk of arrhythmias. Accordingly, autoantibody profiling may facilitate the identification of biologically distinct cardiomyopathy subsets with potential diagnostic and prognostic implications. From a therapeutic perspective, pathogenic autoantibodies can be removed from patient serum through plasmapheresis or immunoadsorption strategies, and these approaches have been associated with improvements in hemodynamic parameters and clinical outcomes in selected patients.
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