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Hypertrophic cardiomyopathy due to truncating variants in myosin binding protein C: a Spanish cohort
Maria Melendo-Viu1,2,3, Rafael Salguero-Bodes2,3, María Valverde-Gómez3
1Cardiology, Hospital Álvaro Cunqueiro, Vigo, Spain mariamelviu@gmail.com.
Insights
Hypertrophic cardiomyopathy (HCM) patients with MYBPC3 variants have a favorable prognosis and low event rates. Major arrhythmic events were not linked to environmental or genetic factors in this cohort.
Area of Science:
- Cardiovascular Genetics
- Inherited Cardiomyopathies
- Molecular Cardiology
Background:
- Hypertrophic cardiomyopathy (HCM) is an inherited disorder.
- Causal variants often involve sarcomeric protein genes, including MYBPC3.
- MYBPC3 variants have been linked to a favorable prognosis in HCM.
Purpose of the Study:
- To describe clinical characteristics and events in a molecularly homogeneous HCM cohort.
- Focus on patients with truncating MYBPC3 variants.
- Assess prognosis and event rates in this specific HCM population.
Main Methods:
- Retrospective recruitment of HCM patients and relatives with truncating MYBPC3 variants.
- Average follow-up of 7.77 years.
- Analysis of clinical events, hypertrophy, ejection fraction, and risk factors.
Main Results:
- A 10% incident HCM phenotype observed.
- Patients were middle-aged adults with discrete hypertrophy and preserved ejection fraction.
- Heart failure was infrequent, and major events were low (1.51 per 100 patients/year).
- Event risk correlated with HCM severity, QRS duration, and age, not genetics or sex.
Conclusions:
- This is the first molecularly homogeneous cohort of HCM patients with truncating MYBPC3 variants.
- Patients demonstrated a good prognosis with a low overall event rate.
- Major arrhythmic events were not associated with measured environmental or genetic factors.
Background:
Hypertrophic cardiomyopathy (HCM) is an inherited disorder whose causal variants involve sarcomeric protein genes. One of these is myosin-binding protein C (MYBPC3), being previously associated with a favourable prognosis. Our objective is to describe the clinical characteristics and events of a molecularly homogeneous HCM cohort associated with truncating MYBPC3 variants.
Methods And Results:
A cohort of patients and relatives with HCM diagnosis and carrying a truncating MYBPC3 variant were retrospectively recruited. Subjects had an average follow-up of 7.77 years, with an incident HCM phenotype of 10%. They were middle-aged adult patients (47±16.8 years) without significant comorbidities or symptoms. Hypertrophy was discrete with a significative difference between probands and relatives (17.5±4 mm vs 14.6±5 mm; p<0.0001). Ejection fraction was predominantly preserved (65%±10%). Despite it being the most common clinical event, relevant heart failure (observed in 8.1% of patients) was infrequent and commonly found in the presence of a second environmental precipitating agent. ESC-HCM risk calculator and modifier factors did not correlate with the risk of major events predicting events, which were low (1.51 per 100 patients/year) and associated with the severity of HCM, abnormal QRS in the ECG and age. Genetic factors and sex were not associated with major events.
Conclusions:
This is the first molecularly homogeneous, contemporary cohort, including HCM patients secondary to MYBPC3 truncating variants. Patients showed a good prognosis with a low event rate. In our cohort, major arrhythmic events were not related to measured environmental or genetic factors.
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