Key result
Continuous intravenous epoprostenol therapy in children with severe pulmonary arterial hypertension improved survival, WHO functional class, and increased 6-minute walking distance by a mean of 77 m.
Why the study?
Does continuous intravenous epoprostenol improve survival and functional outcomes in children with severe pulmonary arterial hypertension?
Observational (n=39)
No
Does continuous intravenous epoprostenol improve survival and functional outcomes in children with severe pulmonary arterial hypertension?
Mean Difference: 77
Absolute Event Rate: 327% vs 250%
p-value: p=<0.003
Continuous intravenous epoprostenol is an effective therapy that improves survival, functional class, and exercise tolerance in children with severe pulmonary arterial hypertension.
May support epoprostenol in severe pediatric PAH; leaves open need for RCTs to confirm survival benefit.
INTRODUCTION: Severe, sustained pulmonary arterial hypertension leads to a progressive reduction in exercise capacity, right heart failure and death. Use of intravenous epoprostenol has improved survival in adults, but data are limited in children. PATIENTS AND METHODS: This study included all 39 children treated with continuous intravenous epoprostenol since November 1997 at Great Ormond Street Hospital for Children (London, UK). Patients were aged 4 months to 17 years (median 5.4 years) at the onset of therapy. The male:female ratio was 1:1.3. 25 patients had idiopathic pulmonary arterial hypertension and 14 had pulmonary arterial hypertension associated with congenital heart disease, connective tissue disease, chronic lung disease or HIV. All were in WHO functional class III and IV. Mean pulmonary arterial pressure (SD) was 59 (17) mmHg and mean pulmonary vascular resistance was 23.3 (11.6) units x m(2). Patients were assessed regularly (2-3 monthly intervals) by physical examination, electrocardiography, transthoracic echocardiography and a 6-min walk test, when practicable. RESULTS: The mean duration of follow-up was 27 (21) months. 7 patients died and 8 underwent transplantation. Cumulative survival at 1, 2 and 3 years was 94, 90 and 84%. The 6-min walking distance improved by a mean of 77 m (p<0.003). WHO functional class improved during the first year (p<0.001) and improvement was maintained for up to 3 years. Weight improved significantly from a baseline z score of -1.55 (1.74) to -1.16 (1.8) (p<0.03). 28 children had additional oral specific therapy. Hickman line changes were 0.33/patient year. CONCLUSIONS: Epoprostenol therapy improved survival, WHO functional class, exercise tolerance and ability to thrive in children with severe pulmonary arterial hypertension. Epoprostenol represents an effective and feasible therapy even in young children.
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Lammers et al. (2006) conducted an observational in Severe pulmonary arterial hypertension (n=39). Continuous intravenous epoprostenol vs. Baseline was evaluated on 6-minute walking distance (MD 77, p=<0.003). Continuous intravenous epoprostenol therapy in children with severe pulmonary arterial hypertension improved survival, WHO functional class, and increased 6-minute walking distance by a mean of 77 m.
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