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Systematic Review of Genotype-Phenotype Correlations in Noncompaction Cardiomyopathy
Jaap I van Waning1, Joost Moesker1, Daphne Heijsman1
1Department of Clinical Genetics Erasmus Medical Center Rotterdam The Netherlands.
Insights
Genetic causes of noncompaction cardiomyopathy (NCCM) vary by age. Adult NCCM is often linked to sarcomere gene mutations with lower major adverse cardiac event (MACE) risk, while children face severe, multi-systemic disorders.
Area of Science:
- Cardiology
- Genetics
- Genomics
Background:
- Noncompaction cardiomyopathy (NCCM) has an identifiable genetic cause in 30% of patients.
- Clinical presentations range from asymptomatic disease to heart failure and major adverse cardiac events (MACE).
- Understanding genotype-phenotype correlations is crucial for managing NCCM.
Purpose of the Study:
- To investigate genotype-phenotype correlations in genetic noncompaction cardiomyopathy (NCCM).
- To compare cardiac features and MACE risk based on inheritance mode and molecular effects.
- To analyze age-specific genetic causes and outcomes in NCCM patients.
Main Methods:
- Collected genotypes and clinical features of 561 genetic NCCM patients from 172 literature studies.
- Compared age at diagnosis, cardiac features, and MACE risk across different genetic defects and NCCM subtypes.
- Utilized multivariate binary logistic regression to identify genetic predictors for MACE.
Main Results:
- Children with NCCM showed increased risk for congenital heart defects and MACE.
- Adult NCCM patients most commonly had single missense mutations in sarcomere genes.
- MYH7 mutations were most frequent (48%), with MYH7 and ACTC1 mutations showing lower MACE risk than MYBPC3 and TTN.
Conclusions:
- Sarcomere gene mutations are the primary cause of adult NCCM, associated with a lower MACE risk.
- Children with NCCM often present with multi-systemic disorders and severe outcomes.
- DNA diagnostics are vital for tailoring clinical management and counseling based on age-specific genotype-phenotype correlations.
Abstract:
Background A genetic cause can be identified in 30% of noncompaction cardiomyopathy patients (NCCM) with clinical features ranging from asymptomatic cardiomyopathy to heart failure with major adverse cardiac events (MACE). Methods and Results To investigate genotype-phenotype correlations, the genotypes and clinical features of genetic NCCM patients were collected from the literature. We compared age at diagnosis, cardiac features and risk for MACE according to mode of inheritance and molecular effects for defects in the most common sarcomere genes and NCCM subtypes. Geno- and phenotypes of 561 NCCM patients from 172 studies showed increased risk in children for congenital heart defects (P<0.001) and MACE (P<0.001). In adult NCCM patients the main causes were single missense mutations in sarcomere genes. Children more frequently had an X-linked or mitochondrial inherited defect (P=0.001) or chromosomal anomalies (P<0.001). MYH7 was involved in 48% of the sarcomere gene mutations. MYH7 and ACTC1 mutations had lower risk for MACE than MYBPC3 and TTN (P=0.001). The NCCM/dilated cardiomyopathy cardiac phenotype was the most frequent subtype (56%; P=0.022) and was associated with an increased risk for MACE and high risk for left ventricular systolic dysfunction (<0.001). In multivariate binary logistic regression analysis MYBPC3, TTN, arrhythmia -, non-sarcomere non-arrhythmia cardiomyopathy-and X-linked genes were genetic predictors for MACE. Conclusions Sarcomere gene mutations were the most common cause in adult patients with lower risk of MACE. Children had multi-systemic disorders with severe outcome, suggesting that the diagnostic and clinical approaches should be adjusted to age at presentation. The observed genotype-phenotype correlations endorsed that DNA diagnostics for NCCM is important for clinical management and counseling of patients.
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