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Electronic Health Record-Embedded Decision Support Platform for Morphine Precision Dosing in Neonates
Alexander A Vinks1,2, Nieko C Punt3, Frank Menke4
1Division of Clinical Pharmacology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, USA.
Insights
Neonatal pain management using morphine is challenging due to patient variability. A new electronic health record platform offers precision dosing guidance, aiming for improved pain control and safety in infants.
Area of Science:
- Neonatal pharmacology
- Clinical informatics
- Pain management
Background:
- Morphine is the primary opioid for neonatal pain, often given via empirical protocols.
- Individualized dosing is difficult due to neonates' rapid physiological changes and inability to report pain.
- Significant variability in morphine clearance leads to unpredictable drug exposure in neonates.
Purpose of the Study:
- To develop and implement an electronic health record-integrated decision support platform for precision morphine dosing in neonates.
- To improve neonatal pain management by providing data-informed dosing guidance.
Main Methods:
- Development of a platform integrated with electronic health records.
- Incorporation of pharmacokinetic (PK) model-informed dosing guidance.
- Inclusion of real-time drug concentration monitoring and feedback into prescriber workflows.
Main Results:
- The platform provides model-informed dosing recommendations.
- It integrates real-time data and feedback directly into clinical workflows.
- The system facilitates data-informed decision-making for morphine administration.
Conclusions:
- The developed platform supports precision dosing of morphine in neonates.
- Expected outcomes include enhanced clinical efficacy and improved safety profiles.
- This approach aims to reduce adverse effects associated with neonatal pain management.
Abstract:
Morphine is the opioid most commonly used for neonatal pain management. In intravenous form, it is administered as continuous infusions and intermittent injections, mostly based on empirically established protocols. Inadequate pain control in neonates can cause long-term adverse consequences; however, providing appropriate individualized morphine dosing is particularly challenging due to the interplay of rapid natural physiological changes and multiple life-sustaining procedures in patients who cannot describe their symptoms. At most institutions, morphine dosing in neonates is largely carried out as an iterative process using a wide range of starting doses and then titrating to effect based on clinical response and side effects using pain scores and levels of sedation. Our background data show that neonates exhibit large variability in morphine clearance resulting in a wide range of exposures, which are poorly predicted by dose alone. Here, we describe the development and implementation of an electronic health record-integrated, model-informed decision support platform for the precision dosing of morphine in the management of neonatal pain. The platform supports pharmacokinetic model-informed dosing guidance and has functionality to incorporate real-time drug concentration information. The feedback is inserted directly into prescribers' workflows so that they can make data-informed decisions. The expected outcomes are better clinical efficacy and safety with fewer side effects in the neonatal population.
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