[Classification of cardiomyopathies and indication for endomyocardial biopsy revisited]
Sabine Pankuweit1, Anette Richter, Volker Ruppert
1Klinik für Innere Medizin - Kardiologie, Philipps-Universität Marburg, Baldingerstrasse, 35043, Marburg. pankuwei@staff.uni-marburg.de
Insights
Cardiomyopathy classifications have evolved from morphological descriptions to genomic and clinical approaches. Understanding these classifications aids in diagnosing heart muscle diseases by identifying genetic, autoimmune, and viral causes.
Area of Science:
- Cardiology
- Genetics
- Pathology
Context:
- Historical classifications of cardiomyopathies (dilated, hypertrophic, restrictive, arrhythmogenic right ventricular) focused on structural and functional abnormalities.
- The 1996 WHO/ISFC classification introduced inflammatory cardiomyopathy, distinguishing infectious and autoimmune forms, and viral cardiomyopathy based on viral persistence or inflammation.
- The advent of molecular genetics spurred a genomic classification, categorizing cardiomyopathies by underlying gene mutations and protein expression (cytoskeletalopathies, sarcomyopathies, channelopathies).
Purpose:
- To review the evolution of cardiomyopathy classifications, from early morphological and etiological approaches to modern genomic and clinically oriented systems.
- To highlight the shift towards molecular and genetic underpinnings of heart muscle diseases.
- To emphasize the clinical utility of integrated diagnostic approaches, including endomyocardial biopsy, for precise diagnosis and management.
Summary:
- Cardiomyopathy classification has progressed from initial descriptive models to sophisticated genomic and clinical frameworks.
- Genomic classifications categorize cardiomyopathies based on genetic mutations affecting cytoskeletal proteins, sarcomeres, or ion channels.
- Clinically oriented classifications, like the ESC's, group heart muscle disorders by morphology and function, aiding diagnosis and management.
- Endomyocardial biopsy plays a crucial role in identifying causative factors (genetic, autoimmune, viral) for both familial and nonfamilial cardiomyopathies.
Impact:
- Facilitates more precise diagnosis and tailored treatment strategies for patients with diverse cardiomyopathies.
- Enhances understanding of the genetic and molecular basis of heart muscle diseases.
- Provides clinicians with a structured approach to differentiate cardiomyopathies from other cardiac conditions.
- Supports the identification of familial forms of cardiomyopathy, enabling proactive screening and genetic counseling for at-risk relatives.
Abstract:
The first classifications of cardiomyopathies from 1980 and 1996 described them as heart muscle diseases, with dilated (DCM), hypertrophic (HCM), restrictive (RCM), arrhythmogenic right ventricular (ARVC), and nonclassifiable cardiomyopathies. Furthermore, the World Health Organization/International Society and Federation of Cardiology (WHO/ISFC) classification from 1996 listed among the specific cardiomyopathies inflammatory cardiomyopathy as a new and distinct entity, which was defined histologically as myocarditis in association with cardiac dysfunction. Infectious and autoimmune forms of inflammatory cardiomyopathy were recognized. Viral cardiomyopathy was defined as viral persistence in a dilated heart without ongoing inflammation. If it was accompanied by myocardial inflammation, it was termed inflammatory viral cardiomyopathy (or viral myocarditis with cardiomegaly). This entity was further elucidated in a World Heart Federation consensus meeting in 1999 by quantitative immunohistological criteria (< 14 infiltrating cells/mm(2)) and the etiology by molecular biological methods, e.g., polymerase chain reaction, as viral, bacterial, or autoimmune (= nonmicrobial). The development of molecular genetics, with the discovery of a genetic background in several forms of cardiomyopathies previously alluded to as "of unknown origin", was the origin of a debate on a new classification based on genomics. A genomic/postgenomic classification was postulated taking the underlying gene mutations and the cellular level of expression of encoded proteins into account, thus distinguishing cytoskeleton (cytoskeletalopathies, e.g., DCM or ARVC), sarcomeric (sarcomyopathies as in HCM and RCM) and ion channel (channelopathies, e.g., long or short QT syndrome and Brugada's syndrome) cardiomyopathies. Such a classification of cardiomyopathies was proposed in 2006 by the American Heart Association (AHA), which took the rapid evolution of molecular genetics in cardiology into account. It also introduced several recently described diseases, and is unique in that it incorporated ion channelopathies even without hemodynamic dysfunction as a "primary" cardiomyopathy. The ESC (European Society of Cardiology) Working Group on Myocardial and Pericardial Diseases has deliberately taken a different approach based on a clinically oriented classification in which heart muscle disorders were grouped according to morphology and function. This obviously remains the clinically most useful approach for the diagnosis and management of patients and families with heart muscle disease. In the ESC position statement published in 2008, cardiomyopathies were defined as myocardial disorders in which the heart muscle is structurally and functionally abnormal, and in which coronary artery disease, hypertension, valvular and congenital heart disease are absent or do not sufficiently explain the observed myocardial abnormality. The aim was to help clinicians look beyond generic diagnostic labels in order to reach more specific diagnoses. In parallel, a scientific statement on the role of endomyocardial biopsy in the management of cardiovascular disease was published at the end of 2007 making useful recommendations for clinical practice and providing an understanding for the use of endomyocardial biopsy in an individual patient. Taking the classification of cardiomyopathies and the statement on the role of endomyocardial biopsies in different clinical scenarios together, the clinician is now able to identify genetic, autoimmune and viral causative factors by using a thorough and logical approach to reach a diagnosis in patients with familial and nonfamilial forms of the underlying structural heart muscle diseases.
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