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Published on: January 17, 2011
The use of propofol sedation in a paediatric intensive care unit
Marie-Louise Svensson1, Lars Lindberg
1Children's Hospital, University Hospital, Lund, Sweden.
Insights
Continuous intravenous propofol sedation in a pediatric intensive care unit (PICU) showed a low risk of propofol infusion syndrome (PRIS). Adverse effects were not linked to dose or duration, suggesting other factors may be involved.
Area of Science:
- Pediatric critical care medicine
- Pharmacology
- Anesthesiology
Background:
- Continuous intravenous propofol sedation is utilized in pediatric intensive care units (PICUs).
- Evaluating the safety and efficacy of propofol in pediatric sedation is crucial.
Purpose of the Study:
- To prospectively assess the use of continuous intravenous propofol sedation in a PICU.
- To identify potential adverse effects and risk factors associated with propofol infusion in children.
Main Methods:
- Prospective evaluation of children under 16 receiving propofol infusion in a PICU.
- Data collection on patient demographics, propofol dosage, infusion duration, and adverse events.
- Monitoring for signs of propofol infusion syndrome (PRIS) and metabolic/circulatory derangements.
Main Results:
- 18.2% of children received propofol infusion; median age 2 years 10 months.
- No cases of PRIS were observed; no dose- or duration-dependent adverse metabolic or circulatory effects were identified.
- Eight children had elevated lactate levels, all with favorable outcomes; one death was unrelated to propofol infusion.
Conclusions:
- Propofol infusion in this pediatric population presented a low risk of PRIS and adverse effects.
- Adverse events may be influenced by factors beyond dose and duration, potentially including genetic predispositions.
- The study provides guidelines for propofol use in pediatric intensive care.
Background:
The aim of this study was to prospectively evaluate and report the experience of the use of continuous intravenous propofol sedation in a paediatric intensive care unit (PICU).
Methods:
All children younger than 16 years who were admitted to the PICU at a University Hospital for slightly more than a year and received propofol infusion were included prospectively and data were recorded before and within 6 h after completion of the propofol infusion.
Results:
A total of 174 out of 955 children (18·2%) received propofol infusion for sedation. The median age was 2 years 10 months (range: 2 months to 16 years), duration of propofol infusion 13 h (range: 1·6-179 h) and dose of propofol 2·9 mg/kg/h (range: 0·3-6·5 mg/kg/h). No one developed signs of the propofol infusion syndrome (PRIS). Neither dose >3 mg/kg/h, duration of infusion >48 h nor both were found to be related to adverse metabolic derangements or circulatory failure. Eight children increased their lactate concentration ≥1·8 mmol/L during propofol infusion. All had a favourable outcome. One child who had received propofol infusion for 10 h died, but this occurred 14 h after the infusion ceased and was without doubt attributed to a multiple organ failure not related to the propofol infusion.
Conclusion:
Propofol infusion was used in this population at low risk of PRIS with no metabolic or circulatory adverse effects. These findings indicate that the occurrence of adverse effects may not be directly related to dose or duration of infusion, but emphasizes the risk that sporadic factors may be involved, such as genetic mutations. Guidelines are presented.
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