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L-arginine and substance P reverse the pulmonary endothelial dysfunction caused by congenital heart surgery
I Schulze-Neick1, D J Penny, M L Rigby
1Department of Paediatrics, Royal Brompton and Harefield NHS Trust, National Heart and Lung Institute (Imperial College of Science, Technology and Medicine), London, UK.
Insights
Children undergoing heart surgery experience increased pulmonary vascular resistance due to endothelial dysfunction. Supplementing L-arginine and substance P post-surgery can restore normal function, suggesting new treatment strategies.
Area of Science:
- Pediatric Cardiology
- Pulmonary Hypertension
- Endothelial Function
Background:
- Pulmonary vascular resistance (PVR) increases in children post-cardiopulmonary bypass, linked to pulmonary endothelial dysfunction (PED).
- The L-arginine-nitric oxide (NO) pathway is crucial for regulating vascular tone.
Purpose of the Study:
- To investigate PED in children with congenital heart disease before and after open heart surgery.
- To assess the L-arginine-nitric oxide pathway's role in post-cardiopulmonary bypass PVR.
Main Methods:
- Evaluated 20 pediatric patients (preoperative and postoperative).
- Measured PVR during varying oxygen levels and interventions: L-arginine (L-Arg), substance P (Sub-P), and inhaled nitric oxide (NO).
- Utilized cardiac catheterization, mass spectrometry, and the Fick method.
Main Results:
- Preoperative patients showed minimal PED.
- Postoperative patients exhibited higher PVR, indicating significant PED.
- PVR in postoperative patients was improved by L-Arg and Sub-P administration.
Conclusions:
- Postoperative PVR increase suggests reversible PED in children after heart surgery.
- L-arginine and substance P show potential as therapeutic agents for managing PVR.
- Inhaled NO did not provide additional benefit in this context.
Background:
The increase in pulmonary vascular resistance (PVR) seen in children after cardiopulmonary bypass has been attributed to transient pulmonary endothelial dysfunction (PED). We therefore examined PED in children with congenital heart disease by assessing the L-arginine-nitric oxide (NO) pathway in terms of substrate supplementation (L-arginine [L-Arg]), stimulation of endogenous NO release (substance P [Sub-P]), and end-product provision (inhaled NO) before and after open heart surgery.
Methods And Results:
Ten patients (aged 0.62+/-0.27 years) with pulmonary hypertension undergoing cardiac catheterization who had not had surgery and 10 patients (aged 0.65+/-0.73 years) who had recently undergone cardiopulmonary bypass were examined. All were sedated and paralyzed and received positive-pressure ventilation. Blood samples and pressure measurements were taken from catheters in the pulmonary artery and the pulmonary vein or left atrium. Respiratory mass spectrometry was used to measure oxygen uptake, and cardiac output was determined by the direct Fick method. PVR was calculated during steady state at ventilation with room air, during FIO(2) of 0.65, then during additional intravenous infusion of L-Arg (15 mg. kg(-1). min(-1)) and Sub-P (1 pmol. kg(-1). min(-1)), and finally during inhalation of NO (20 ppm). In preoperative patients, the lack of an additional significant change of PVR with L-Arg, Sub-P, and inhaled NO suggests little preexisting PED. Postoperative PVR was higher, with an additional pulmonary endothelial contribution that was restorable with L-Arg and Sub-P.
Conclusions:
Postoperatively, the rise in PVR suggested PED, which was restorable by L-Arg and Sub-P, with no additional effect of inhaled NO. These results may indicate important new treatment strategies for these patients.
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