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Enalapril in infants with single ventricle: results of a multicenter randomized trial
Daphne T Hsu1, Victor Zak, Lynn Mahony
1Division of Pediatric Cardiology, Children's Hospital at Montefiore, 3415 Bainbridge Ave., Bronx, NY 10457, USA. dhsu@montefiore.org
Insights
Enalapril did not improve growth or heart function in infants with single-ventricle physiology. This study suggests routine enalapril use is not recommended for these infants.
Area of Science:
- Pediatric Cardiology
- Congenital Heart Disease
- Pharmacology
Background:
- Angiotensin-converting enzyme inhibitor (ACEi) therapy benefits adults with heart failure.
- Infants with single-ventricle physiology face growth and ventricular function challenges.
- The efficacy of ACEi in this infant population remains unestablished.
Purpose of the Study:
- To evaluate the effect of enalapril on somatic growth and ventricular function in infants with single-ventricle physiology.
- To determine if enalapril improves outcomes in this high-risk infant group.
Main Methods:
- A double-blind trial randomized 230 infants with single-ventricle physiology to enalapril or placebo.
- Follow-up occurred until 14 months of age, with weight-for-age z score as the primary endpoint.
- Intention-to-treat analysis was used for primary comparisons.
Main Results:
- No significant difference in weight-for-age z score between enalapril and placebo groups at 14 months.
- No significant group differences observed in height, heart failure class, or infant development scores.
- Enalapril did not improve ventricular ejection fraction or reduce mortality/transplantation rates.
Conclusions:
- Enalapril administration in the first year of life did not enhance somatic growth or ventricular function in infants with single-ventricle physiology.
- The study results do not support the routine use of enalapril for this specific pediatric population.
- Further research may be needed to explore alternative therapeutic strategies.
Background:
Angiotensin-converting enzyme inhibitor therapy improves clinical outcome and ventricular function in adults with heart failure. Infants with single-ventricle physiology have poor growth and are at risk for abnormalities in ventricular systolic and diastolic function. The ability of angiotensin-converting enzyme inhibitor therapy to preserve ventricular function and improve somatic growth and outcomes in these infants is unknown.
Methods And Results:
The Pediatric Heart Network conducted a double-blind trial involving 230 infants with single-ventricle physiology randomized to receive enalapril (target dose 0.4 mg . kg(-1) . d(-1)) or placebo who were followed up until 14 months of age. The primary end point was weight-for-age z score at 14 months. The primary analysis was intention to treat. A total of 185 infants completed the study. There were 24 and 21 withdrawals or deaths in the enalapril and placebo groups, respectively (P=0.74). Weight-for-age z score was not different between the enalapril and placebo groups (mean+/-SE -0.62+/-0.13 versus -0.42+/-0.13, P=0.28). There were no significant group differences in height-for-age z score, Ross heart failure class, brain natriuretic peptide concentration, Bayley scores of infant development, or ventricular ejection fraction. The incidence of death or transplantation was 13% and did not differ between groups. Serious adverse events occurred in 88 patients in the enalapril group and 87 in the placebo group.
Conclusions:
Administration of enalapril to infants with single-ventricle physiology in the first year of life did not improve somatic growth, ventricular function, or heart failure severity. The results of this randomized trial do not support the routine use of enalapril in this population.
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