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Brugada-like syndrome in infancy presenting with rapid ventricular tachycardia and intraventricular conduction delay
Ronald J Kanter1, Ryan Pfeiffer, Dan Hu
1Duke University Medical Center, Box 3090, 2301 Erwin Road, Durham, NC 27710, USA. kante001@mc.duke.edu
Insights
Brugada syndrome is rare in infants. This study found that infants with rapid ventricular tachycardia and conduction issues, but no other heart problems, often have mutations in cardiac depolarizing channels.
Area of Science:
- Pediatric Cardiology
- Cardiac Electrophysiology
- Genetic Cardiology
Background:
- Brugada syndrome, a channelopathy, typically affects adults.
- Infantile Brugada syndrome is rare, with rapid ventricular tachycardia and conduction disease uncommon without metabolic or structural heart issues.
Purpose of the Study:
- To investigate the genetic basis of Brugada syndrome in infants presenting with rapid ventricular tachycardia and conduction abnormalities.
- To determine if mutations in depolarizing current channels are a cause in infants lacking structural or metabolic heart disease.
Main Methods:
- Retrospective review of infants (<2 years) diagnosed with ventricular tachycardia/fibrillation over 9 years.
- Analysis of infants with structurally normal hearts, focusing on QRS duration, Brugada pattern, electrophysiological, and genetic testing.
Main Results:
- Nine of 12 infants with structurally normal hearts showed prolonged QRS or Brugada pattern.
- Electrophysiological testing revealed prolonged HV interval (2/4), inducible VT (1/4), and procainamide-induced Brugada pattern (3/4).
- Genetic testing identified disease-causing mutations in SCN5A (sodium) or CaCNB2b (calcium) channels in all 5 infants evaluated.
Conclusions:
- Infants with rapid ventricular tachycardia and conduction abnormalities, without structural or metabolic causes, likely have mutations in cardiac depolarizing channels.
- This highlights the importance of genetic testing for diagnosing Brugada syndrome in affected infants.
Background:
Brugada syndrome is a potentially serious channelopathy that usually presents in adulthood and has only rarely been described in infancy. In the absence of metabolic or structural cardiac disease, rapid ventricular tachycardia (>200 bpm) and primary cardiac conduction disease are uncommon in infancy. We hypothesized that infants having rapid ventricular tachycardia and conduction abnormalities and not having structural or metabolic pathogeneses were likely to have mutations in depolarizing current channels.
Methods And Results:
A retrospective review of all clinical materials from a single institution over a 9-year period from all infants <2 years old and having a discharge diagnosis of ventricular tachycardia or ventricular fibrillation was performed. Among 32 infants fulfilling inclusion criteria, 12 had a structurally normal heart, and 9 of them had either prolonged QRS duration or Brugada pattern while in sinus rhythm. Of those 5 infants not having a definitive pathogenesis, electrophysiological testing had been performed in 4, and genetic testing had been performed in all 5 of those infants. During electrophysiological testing, a prolonged HV interval was present in 2 of 4, inducible ventricular tachycardia was present in 1 of 4, and a type 1 Brugada pattern was induced by intravenous procainamide in 3 of 4. Genetic testing revealed disease-causing mutations in depolarizing sodium (SCN5A) or calcium (CaCNB2b) channels in all 5 infants.
Conclusions:
Infants having rapid ventricular tachycardia and conduction abnormalities in the absence of structural or metabolic abnormalities are likely to have disease-causing mutations in cardiac depolarizing channels.
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