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Published on: January 16, 2019
Phenotype of Children with QT Prolongation Identified Using an Institution-Wide QT Alert System
Heather N Anderson1, J Martijn Bos1,2,3, Kristina H Haugaa2
1Department of Pediatric and Adolescent Medicine/Division of Pediatric Cardiology, Mayo Clinic, Rochester, MN, USA.
Insights
Pediatric QT prolongation, often caused by medications, rarely leads to death. Evaluation for modifiable factors is key, with congenital long QT syndrome considered if issues persist.
Area of Science:
- Cardiology
- Pediatrics
- Clinical Pharmacology
Background:
- QT prolongation is a known risk factor for cardiovascular mortality in adults.
- Limited data exists on pediatric QT prolongation and associated outcomes.
Purpose of the Study:
- To assess the prevalence and phenotype of QT prolongation in pediatric patients.
- To identify risk factors and outcomes in this population.
Main Methods:
- Retrospective review of 1303 pediatric ECGs (Nov 2010-June 2011).
- Analysis of 68 children with isolated QT prolongation, including clinical, laboratory, and medication data.
- Calculation of a pro-QTc score to quantify risk factors.
Main Results:
- 5% (68/1303) of pediatric ECGs showed isolated QT prolongation (mean age 9±6 years, QTc 494±42 ms).
- All children had at least one QT-prolonging risk factor, primarily medications.
- One case of congenital long QT syndrome (LQTS) was newly diagnosed.
- One non-cardiac death occurred within one year (1.5%).
- 80% of patients had medication adjustments after QT alert.
Conclusions:
- Pediatric QT prolongation, predominantly medication-induced, is associated with low mortality.
- Evaluation for modifiable QT-prolonging factors is crucial.
- Congenital LQTS should be considered in persistent or unexplained cases.
Abstract:
QT prolongation is an independent risk factor for cardiovascular mortality in adults. However, there is little information available on pediatric patients with QT prolongation and their outcomes. Herein, we evaluated the prevalence of QT prolongation in pediatric patients identified by an institution-wide QT alert system, and the spectrum of their phenotype. Patients with documented QT prolongation on an ECG obtained between November 2010 and June 2011 were included. There were 1303 pediatric ECGs, and 68 children had electrographically isolated QT prolongation. Comprehensive review of medical records was performed with particular attention to QT-prolonging clinical, laboratory, and medication data, which were summarized into a pro-QTc score. Overall, 68 (5 %) pediatric patients had isolated QT prolongation. The mean age of this pediatric cohort was 9 ± 6 years, and the average QTc was 494 ± 42 ms. All children had 1 or more QT-prolonging risk factor(s), most commonly QT-prolonging medications. One patient was identified with congenital long QT syndrome (LQTS), which was not previously diagnosed. In one-year follow-up, only one pediatric death (non-cardiac) occurred (1.5 %). Potentially QT-offending/pro-arrhythmic medications were changed in 80 % of pediatric patients after the physician received the QT alert. Children with QT prolongation had very low mortality and minimal polypharmacy. Still, medications and other modifiable conditions were the most common causes of QT prolongation. Children with a prolonged QTc should be evaluated for modifiable QT-prolonging factors. However, if no risk factors are present or the QTc does not attenuate after risk factor modification/removal, the child should be evaluated for congenital LQTS.
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