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Updated: Aug 7, 2026

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Published on: July 25, 2019
[B-natriuretic peptide and cardiological emergencies in childhood]
Y Dulac1, A Zabalawi, A Taktak
1Cardiologie pédiatrique, Hôpital des Enfants, Toulouse. dulac.y@chu-toulouse.fr
Insights
B-type natriuretic peptide (BNP) aids in diagnosing pediatric cardiac dysfunction. High BNP levels correlate with disease severity, while low levels effectively rule out cardiac issues in children.
Area of Science:
- Pediatric Cardiology
- Biomarkers
- Emergency Medicine
Context:
- B-type natriuretic peptide (BNP) is established in adult cardiovascular assessment.
- Its application in pediatric populations is emerging and requires further evaluation.
- Pediatric emergency departments manage diverse cases requiring rapid diagnostic tools.
Purpose:
- To prospectively study B-type natriuretic peptide (BNP) concentrations and kinetics in pediatric emergency patients.
- To assess the diagnostic utility of BNP in identifying cardiac dysfunction in children.
- To correlate BNP levels with specific cardiac conditions and disease severity.
Summary:
- A prospective study analyzed BNP levels in 54 pediatric emergency patients (average age 15 months).
- Elevated BNP (>100 pg/ml) was observed in 20 children with conditions like congenital heart disease, cardiomyopathy, and Kawasaki disease.
- Low BNP (<100 pg/ml) was found in children without cardiac disease, suggesting good negative predictive value.
Impact:
- BNP measurement is a rapid, economical tool for diagnosing pediatric cardiac dysfunction in emergency settings.
- High BNP values correlate with cardiac disease severity, aiding clinical assessment.
- Further research is needed to establish BNP's role in monitoring and prognosis for pediatric congenital heart disease.
Abstract:
The increase in B-natiuretic peptide (BNP) is well correlated with cardiovascular symptoms in adults. Its use in children is recent and only partially evaluated. The authors undertook a prospective study of BNP concentrations and its kinetics in 54 children with an average age of 15 months (5 days to 11 years) admitted as paediatric emergencies. The symptoms were dyspnoea (60%), shock (15%), suspicion of Kawasaki disease (15%) and other (10%). Twenty children had BNP levels of more than 100 pg/ml related to decompensation of known congenital heart disease in 7 patients (average BNP 462 +/- 323 pg/ml), due to neonatal coarctation in 2 patients (BNP > 3000 pg/ml), due to cardiomyopathy in 6 patients (BNP= 2576 +/- 1215 pg/ml), due to an arrhythmia in 1 patient (BNP= 3754 pg/ml) and to Kawasaki disease in 4 patients (BNP= 521 +/- 448 pg/ml). Thirty-four children had BNP values of less than 100 pg/ml; 29 had no cardiac disease and 5 had known congenital heart disease with other symptoms. Measuring BNP is quick and economical and is a valuable aid in the diagnosis of cardiac dysfunction in symptomatic children in the emergency room. High BNP values seem to be correlated with the severity of the cardiac disease. Low BNP values seem to have a good negative predictive value in children without underlying cardiac disease. The interpretation of intermediary values, especially when there is previous cardiac disease, is more difficult in view of the absence of known threshold values for different haemodynamic situations. Further studies are required to determine the value of this test for the follow-up and setting up of prognostic values in children with congenital heart disease.
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