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Effects of Methadone on Corrected Q-T Interval Prolongation in Critically Ill Children
Insights
Methadone use in critically ill children did not significantly prolong the corrected Q-T interval (QTc). Further prospective studies are needed to confirm these findings on pediatric cardiac safety.
Area of Science:
- Pediatric Cardiology
- Clinical Pharmacology
- Critical Care Medicine
Background:
- Methadone is used for pain management in critically ill children.
- Concerns exist regarding potential cardiac side effects, specifically QTc prolongation.
Purpose of the Study:
- To investigate the association between methadone use and corrected Q-T interval (QTc) prolongation.
- To identify predictors of QTc prolongation in critically ill pediatric patients receiving methadone.
Main Methods:
- Retrospective cohort study of critically ill children (under 19 years) admitted between 2009-2013.
- Analyzed electrocardiograms (ECGs) before and after methadone initiation.
- Assessed QTc interval changes and potential influencing factors.
Main Results:
- Sixty-four pediatric patients were included in the analysis.
- Median QTc interval change was -8 msec (p=0.19), indicating no significant prolongation.
- 8% of patients experienced a QTc interval change from normal to prolonged.
Conclusions:
- Methadone initiation did not lead to significant QTc prolongation in this cohort of critically ill children.
- Findings suggest a potentially low risk of QTc prolongation with methadone in this population.
- A controlled, prospective study is recommended for definitive evaluation.
Objectives:
This study aimed to determine the association between methadone use and corrected Q-T interval (QTc) prolongation in critically ill children.
Methods:
A retrospective cohort study of critically ill children receiving methadone at a tertiary care pediatric hospital was conducted. Patients younger than 19 years who had been admitted to the intensive care unit between January 1, 2009, and June 21, 2013, who had received methadone while inpatients, and who had had electrocardiograms (ECGs) performed within 30 days before and after methadone initiation were included. The primary outcome was the net change in QTc interval between baseline and postmethadone ECGs. Secondary outcomes included percent change in QTc interval and the proportion of patients whose QTc intervals changed from normal to prolonged following methadone initiation. We also evaluated potential predictors of QTc interval prolongation, including age, sex, admission diagnosis category, exposure to other QTc-prolonging medications, presence of congenital heart disease or known arrhythmias, and methadone daily dose and route of administration.
Results:
Sixty-four patients met the inclusion criteria. The median (25th, 75th percentiles) change in QTc interval following methadone initiation was -8 msec (-34, 13.5 msec; p = 0.19). Five patients (8%) had a baseline normal QTc interval that became prolonged after methadone initiation. We identified no statistically significant predictors of QTc prolongation after methadone initiation.
Conclusions:
In this dedicated pediatric safety study, methadone initiation did not result in prolongation of the QTc interval. Although these findings suggest methadone initiation may not have a substantial effect of QTc prolongation in critically ill children, a controlled, prospective evaluation in this population remains warranted.
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