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Familial dilated cardiomyopathy. Clinical and genetic characteristics
1Centre for Inherited Cardiovascular Diseases, I.R.C.C.S. Foundation San Matteo Hospital, Piazzale Golgi 19, 27100, Pavia, Italy.
Insights
Familial dilated cardiomyopathy (F-DCM) is a diverse genetic heart condition with varied symptoms and progression. Identifying more disease genes is crucial, as over half of F-DCM cases remain genetically unexplained.
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Familial dilated cardiomyopathy (F-DCM) is a heterogeneous group of inherited heart muscle diseases.
- Characterized by left ventricular dilation and dysfunction, F-DCM exhibits variable clinical presentations and prognoses.
- Associated cardiac and extracardiac manifestations can aid in genetic diagnosis.
Purpose of the Study:
- To highlight the clinical and genetic heterogeneity of F-DCM.
- To emphasize the need for discovering novel F-DCM genes.
- To discuss the role of genetic testing and emerging technologies in F-DCM diagnosis and management.
Main Methods:
- Review of clinical and genetic data in F-DCM.
- Analysis of known disease-associated genes and mutation prevalence.
- Discussion of diagnostic approaches including Sanger sequencing and next-generation sequencing (NGS).
Main Results:
- Over 40 genes are linked to F-DCM, with mutations in a few common genes.
- More than 50% of F-DCM cases are genetically unresolved, indicating undiscovered genes.
- Clinical and extracardiac traits provide clues for genetic testing strategies.
Conclusions:
- F-DCM presents significant clinical and genetic diversity.
- Continued gene discovery is essential for a comprehensive understanding of F-DCM.
- Next-generation sequencing promises to revolutionize F-DCM research and diagnostics.
Abstract:
Familial dilated cardiomyopathy (F-DCM) describes a clinically and genetically heterogeneous group of diseases, mostly inherited as autosomal dominant traits, having idiopathic left ventricular dilatation and dysfunction as a common phenotype. The age of onset, rate of progression, disease complications, as well as overall prognosis and outcome vary both amongst and within families. Clinical traits, both cardiac and extracardiac, may recur in association with the DCM phenotype. The former include conduction defects, structural abnormalities such as left ventricular noncompaction, of right ventricular involvement, and recurrence of atrial or ventricular arrhythmias; the latter commonly affect the musculoskeletal (myopathies/dystrophies, both clinically overt and subclinical), ocular, auditory, nervous, and integument systems. These traits may help guide genetic testing. In parallel to the clinical heterogeneity, F-DCM also shows genetic heterogeneity: more than 40 genes have been causally linked to F-DCM, with mutations recurring more commonly in a few known genes, and less frequently in rare, less commonly known genes. Based on the known prevalence of mutations in disease genes, more than 50% of F-DCM cases can be regarded as still genetically orphan, implying that further disease genes have to be discovered. Family screening and genetic testing are now established as the gold standard for diagnosis, care, and prevention in F-DCM. Diagnostic tests are performed using Sanger-based sequencing. Furthermore, new biotechnology tools, based on next-generation sequencing, are now being implemented in the research setting and will dramatically modify the future of the nosology of F-DCM.
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