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Updated: Nov 17, 2025

An Experimental Paradigm for the Prediction of Post-Operative Pain PPOP
Published on: January 27, 2010
Postoperative breakthrough pain in paediatric cardiac surgery not reduced by increased morphine concentrations
Sjoerd de Hoogd1, Sebastiaan C Goulooze2, Abraham J Valkenburg3
1Department of Clinical Pharmacy, St Antonius Hospital, Nieuwegein, The Netherlands.
Insights
In children after cardiac surgery, higher morphine doses did not reduce the need for rescue pain medication. Future research should explore multimodal pain management strategies for better pediatric postoperative analgesia.
Area of Science:
- Pediatric Anesthesiology
- Pharmacodynamics
- Pain Management
Background:
- Morphine is a common choice for managing postoperative pain in children.
- Protocolized morphine administration is used for analgesia in pediatric patients following cardiac surgery.
Purpose of the Study:
- To investigate the pharmacodynamics of morphine in children undergoing cardiac surgery.
- To analyze morphine rescue requirements in relation to plasma morphine concentrations.
Main Methods:
- Utilized repeated time-to-event (RTTE) modeling to analyze data from 35 children (3-36 months) receiving a standardized morphine protocol.
- Data included morphine loading dose, continuous infusion rates, and rescue morphine requirements guided by pain scores.
Main Results:
- Morphine rescue events (130 total) primarily occurred within the first 24 hours post-surgery.
- The hazard of requiring rescue morphine decreased over time (half-life of 18 hours).
- Increased morphine concentrations correlated with a higher hazard for rescue morphine, indicating diminishing returns.
Conclusions:
- Protocolized morphine analgesia in children after cardiac surgery showed rescue events across a wide range of morphine concentrations.
- Increasing morphine concentration did not effectively reduce the need for rescue medication.
- Future research should prioritize multimodal approaches, including other analgesics, for managing breakthrough pain in pediatric patients.
Background:
Morphine is commonly used for postoperative analgesia in children. Here we studied the pharmacodynamics of morphine in children after cardiac surgery receiving protocolized morphine.
Methods:
Data on morphine rescue requirements guided by validated pain scores in children (n = 35, 3-36 months) after cardiac surgery receiving morphine as loading dose (100 μg kg-1) with continuous infusion (40 μg kg-1 h-1) from a previous study on morphine pharmacokinetics were analysed using repeated time-to-event (RTTE) modelling.
Results:
During the postoperative period (38 h (IQR 23-46)), 130 morphine rescue events (4 (IQR 1-5) per patient) mainly occurred in the first 24 h (107/130) at a median morphine concentration of 29.5 ng ml-1 (range 7-180 ng ml-1). In the RTTE model, the hazard of rescue morphine decreased over time (half-life 18 h; P < 0.001), while the hazard for rescue morphine (21.9% at 29.5 ng ml-1) increased at higher morphine concentrations (P < 0.001).
Conclusions:
In this study on protocolized morphine analgesia in children, rescue morphine was required at a wide range of morphine concentrations and further increase of the morphine concentration did not lead to a decrease in hazard. Future studies should focus on a multimodal approach using other opioids or other analgesics to treat breakthrough pain in children.
Impact:
In children receiving continuous morphine infusion, administration of rescue morphine is an indicator for insufficient effect or an event. Morphine rescue events were identified at a wide range of morphine concentrations upon a standardized pain protocol consisting of continuous morphine infusion and morphine as rescue boluses. The expected number of rescue morphine events was found to increase at higher morphine concentrations. Instead of exploring more aggressive morphine dosing, future research should focus on a multimodal approach to treat breakthrough pain in children.
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