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Variability of plasma aprotinin concentrations in pediatric patients undergoing cardiac surgery
William C Oliver1, David N Fass, Gregory A Nuttall
1Department of Anesthesiology, Rochester, Minnesota 55905, USA.oliver.william@mayo.edu
Insights
Current weight-based aprotinin dosing shows significant plasma concentration variability in pediatric cardiac surgery patients. Further research is needed to optimize dosing for improved efficacy and reduced bleeding risks.
Area of Science:
- Pediatric Cardiac Surgery
- Pharmacokinetics
- Hemostasis Management
Background:
- Infants and children undergoing cardiopulmonary bypass face high bleeding risks.
- Aprotinin is effective in adults but its pediatric use and dosing are unclear.
Purpose of the Study:
- To determine plasma aprotinin concentrations in pediatric patients using a functional assay.
- To assess the impact of weight-based dosing on aprotinin levels.
Main Methods:
- Thirty pediatric patients (<16 years) received aprotinin during cardiac surgery.
- Plasma aprotinin concentrations were measured at multiple time points.
- Patients were stratified by weight (<10 kg, 10-20 kg, >20 kg) for analysis.
Main Results:
- Significant differences in aprotinin concentrations were observed across weight groups.
- A significant correlation between patient weight and aprotinin concentration was found post-bolus and post-CPB initiation.
Conclusions:
- Current weight-based aprotinin dosing leads to significant variability in pediatric plasma concentrations.
- Further investigation is required to establish optimal dosing regimens for better efficacy.
Objectives:
Infants and children undergoing cardiopulmonary bypass for repair of congenital heart defects are at substantial risk for excessive bleeding, contributing greatly to morbidity and mortality. Aprotinin significantly reduces bleeding and transfusion requirements in adults but is of indeterminate value for pediatric patients. The aim of this study was to determine plasma aprotinin concentrations in these patients with a functional aprotinin assay.
Methods:
Thirty patients less than 16 years of age scheduled for cardiac surgery with aprotinin were enrolled. Aprotinin was administered as a 25,000 KIU/kg bolus, 35,000 KIU/kg cardiopulmonary bypass prime, and 12,500 KIU.kg(-1).h(-1) continuous infusion. Blood samples for aprotinin concentrations (kallikrein-inhibiting units/milliliter) were obtained before aprotinin; 5 minutes post-bolus; 5 minutes after cardiopulmonary bypass initiation; 30 and 60 minutes on cardiopulmonary bypass; on discontinuation of aprotinin; 1 hour after aprotinin discontinuation; and 4 hours after permanent separation from cardiopulmonary bypass. For analysis, patients were grouped according to weight (<10 kg, 10-20 kg, >20 kg). Differences between weight groups were assessed using an exact test for categoric variables and 1-way analysis of variance for continuous variables.
Results:
Aprotinin concentrations differed significantly across weight groups. Five minutes after aprotinin bolus and initiation of cardiopulmonary bypass, there was significant correlation between weight and aprotinin concentration (r =.57, P =.003; r =.69, P =.001, respectively).
Conclusion:
A functional assay reveals significant variability in aprotinin concentration for pediatric patients using current weight-based aprotinin dosing. Additional investigation is necessary to determine target aprotinin concentration dosing regimens to provide better efficacy.
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