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Updated: Aug 15, 2026

Determination of the Relative Cell Surface and Total Expression of Recombinant Ion Channels Using Flow Cytometry
Published on: September 28, 2016
Is it time to include ion channel diseases among cardiomyopathies?
Domenico Corrado1, Cristina Basso, Gaetano Thiene
1Department of Cardiology, University of Padua Medical School, Padova, Italy. domenico.corrado@unipd.it
Insights
Genetic advances reveal that many heart muscle diseases, or cardiomyopathies, stem from specific gene mutations. A new classification is proposed, categorizing cardiomyopathies by their genetic basis, including channelopathies.
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Traditional cardiomyopathy classification relies on pathophysiologic features like dilated, hypertrophic, restrictive, and arrhythmogenic right ventricular types.
- Molecular genetics has identified the genetic basis for many cardiomyopathies.
- The World Health Organization defines cardiomyopathies as myocardial diseases associated with cardiac dysfunction, encompassing hemodynamic and rhythm disturbances.
Purpose of the Study:
- To propose a new classification of cardiomyopathies based on underlying genetic mutations and cellular protein expression.
- To integrate nonstructural arrhythmogenic heart diseases, such as channelopathies, into the cardiomyopathy framework.
Main Methods:
- Review of recent advances in molecular genetics and their impact on understanding cardiomyopathies.
- Analysis of genetic causes for various nonstructural arrhythmogenic heart diseases (channelopathies).
- Re-evaluation of the definition and classification of cardiomyopathies.
Main Results:
- Identification of specific gene mutations underlying conditions like Long and Short QT syndromes, Brugada syndrome, Lènegre disease, and catecholaminergic polymorphic ventricular tachycardia (channelopathies).
- Demonstration that nonstructural inherited arrhythmic conditions are indeed cardiomyopathies due to myocyte abnormalities.
- Proposal for a new classification system: cytoskeletal (cytoskeletalopathies), desmosomal (desmosomalopathies), sarcomeric (sarcomyopathies), and ion channel (channelopathies) cardiomyopathies.
Conclusions:
- A new classification of cardiomyopathies is needed, integrating genetic findings and cellular mechanisms.
- Channelopathies, caused by ion channel gene mutations, should be recognized as a distinct category of cardiomyopathy.
- Understanding the genetic basis allows for a more precise and comprehensive classification of heart muscle diseases.
Abstract:
Heart muscle diseases are traditionally classified according to their peculiar pathophysiologic features such as "dilated," "hypertrophic," "restrictive," and "arrhythmogenic right ventricular" cardiomyopathy. The extraordinary advances accomplished in the last two decades in molecular genetics have allowed the identification of the genetic background of most of these conditions. According to the 1995 World Health Organization definition of cardiomyopathies as "diseases of the myocardium associated with cardiac dysfunction," they should include not only forms with hemodynamic dysfunction, but also conduction and rhythm disturbances. Arrhythmias are per se a sign of cardiac dysfunction and may reflect an underlying myocardial electrical disease with or without structural abnormalities as features. Nonstructural arrhythmogenic heart diseases include long and short QT syndromes, Brugada syndrome, Lènegre disease, and catecholaminergic polymorphic ventricular tachycardia. These conditions are defined as "channelopathies" because they are the consequence of cardiac ion channel gene mutations. Long and short QT syndromes are mostly caused by either sodium or potassium ion channel gene mutations; Brugada syndrome and Lènegre disease are both related to a defective sodium channel gene; and polymorphic ventricular tachycardia is the result of an abnormal ryanodine receptor regulating calcium release from the sarcoplasmic reticulum. These nonstructural inherited arrhythmic conditions should be regarded as cardiomyopathies because the myocyte is abnormal, although the heart is apparently intact. It is time for a new classification of cardiomyopathies taking into account the underlying gene mutations and the cellular level of expression of encoded proteins, thus distinguishing cytoskeleton (cytoskeletalopathies), desmosomal (desmosomalopathies), sarcomeric (sarcomyopathies), and ion channel (channelopathies) cardiomyopathies.
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