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Arrhythmic risk assessment in genotyped families with arrhythmogenic right ventricular cardiomyopathy
Alexandros Protonotarios1, Aris Anastasakis2, Demosthenes B Panagiotakos3
1Yannis Protonotarios Medical Centre, Naxos, Greece alexanderproton@gmail.com.
Insights
Male gender is a significant predictor of arrhythmic events in arrhythmogenic right-ventricular cardiomyopathy (ARVC) patients with desmosomal mutations. Clinical features like repolarization abnormalities also indicate risk.
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Arrhythmogenic right-ventricular cardiomyopathy (ARVC) is a genetic heart condition often caused by desmosomal protein gene mutations.
- Identifying individuals at high risk for major arrhythmic events is crucial for timely intervention.
Purpose of the Study:
- To evaluate genotype and phenotype characteristics for predicting the first major arrhythmic event in families with desmosomal-mutation-associated ARVC.
- To determine the predictive value of gender and genotype for arrhythmic risk.
Main Methods:
- A cohort of 105 desmosomal-mutation carriers from 39 ARVC families underwent serial clinical evaluations.
- Time-to-event analysis investigated gender and genotype as predictors.
- An age-matched nested case-control study analyzed ECG and echocardiographic features at the time of arrhythmic events.
Main Results:
- 41% of participants experienced a major arrhythmic event (ventricular tachycardia or sudden cardiac death) by a median age of 29.
- Male gender was a significant independent predictor of the first major arrhythmic event (HR=3.26).
- Repolarization abnormalities and left-ventricular dysfunction were independently associated with the clinical profile at the time of the event.
Conclusions:
- Male gender independently predicts arrhythmic events in ARVC patients with desmosomal mutations, irrespective of genotype.
- Repolarization abnormalities and left-ventricular dysfunction are key components of the clinical disease profile associated with the first arrhythmic event.
Aims:
Arrhythmogenic right-ventricular cardiomyopathy (ARVC) is a genetically determined disorder, mostly caused by mutations in genes encoding desmosomal proteins. We evaluated phenotype/genotype characteristics to predict the risk for the first major arrhythmic event in desmosomal-mutation-associated ARVC families.
Methods And Results:
A cohort of 105 desmosomal-mutation carriers belonging to 39 consecutive ARVC families was evaluated. Serial clinical work-up consisting of history, physical examination, 12-lead/signal-averaged/24 h ambulatory ECG, and two-dimensional echocardiography was performed every 6-12 months. The predictive value of gender and genotype for the first major arrhythmic event was investigated within the cohort using time-to-event analysis. ECG/echocardiographic features were evaluated at the time of event and associated with the outcome using an age-matched nested case-control study within the cohort. Forty-three (41%) participants experienced the primary arrhythmic outcome at median age of 29 (21-46) years. The first event was sustained ventricular tachycardia in 31 and sudden cardiac death in 12. Definite diagnosis according to the 2010 Task Force criteria, showed 57% positive and 100% negative predictive value for the occurrence of arrhythmic outcome. Male gender (hazard ratio = 3.26, 95%CI, 1.63-6.51), predicted the first major arrhythmic event, independently of genotype, on multivariable analysis. Repolarization abnormalities and left-ventricular dysfunction independently associated with clinical disease profile at the time of event.
Conclusion:
Male gender, independently of genotype is an arrhythmic risk predictor in ARVC-associated desmosomal-mutation carriers. Repolarization abnormalities and left-ventricular dysfunction are important components of the first event-associated clinical disease profile.
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