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Population pharmacokinetics of dexmedetomidine in infants after open heart surgery
Felice Su1, Susan C Nicolson, Marc R Gastonguay
1Division of Clinical Pharmacology and Therapeutics, Abramson Research Center, The Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.
Insights
This study determined dexmedetomidine pharmacokinetics in infants after heart surgery. Weight, age, and single-ventricle physiology influence drug clearance, supporting weight-based dosing.
Area of Science:
- Pharmacology
- Pediatric Critical Care
- Cardiovascular Surgery
Background:
- Dexmedetomidine is a selective alpha(2)-agonist used for sedation, analgesia, and anxiolysis in adults.
- Limited pharmacokinetic data exist for pediatric populations, especially infants undergoing surgery.
- Understanding dexmedetomidine pharmacokinetics in infants is crucial for safe and effective use.
Purpose of the Study:
- To determine the pharmacokinetic profile of dexmedetomidine in infants following open heart surgery.
- To investigate the influence of covariates such as weight, age, and surgical factors on drug disposition.
- To provide data supporting optimized dosing strategies for pediatric patients.
Main Methods:
- 36 infants (1-24 months) undergoing open heart surgery were enrolled.
- Three initial loading dose-continuous IV infusion (CIVI) regimens were administered.
- Population nonlinear mixed effects modeling was used to analyze plasma dexmedetomidine concentrations.
Main Results:
- A 2-compartment disposition model was utilized, incorporating covariates.
- Key pharmacokinetic parameters included clearance (28.1 mL/min/kg^0.75) and central volume of distribution (1.2 L/kg).
- Clearance was influenced by weight, age, and single-ventricle physiology.
Conclusions:
- Infant dexmedetomidine clearance increases with weight, age, and single-ventricle physiology.
- Total bypass time showed a trend towards decreasing clearance and increasing central volume of distribution.
- Current weight-based dosing is supported, but other covariate effects need further study.
Background:
Dexmedetomidine is a highly selective alpha(2)-agonist with hypnotic, analgesic, and anxiolytic properties. In adults, it provides sedation while preserving respiratory function facilitating extubation. Only limited pharmacokinetic data are available for pediatric patients. The primary aim of this study was to determine the pharmacokinetics of dexmedetomidine in infants after open heart surgery.
Methods:
We evaluated 36 infants, aged 1 to 24 months, after open heart surgery. Cohorts of 12 infants requiring mechanical ventilation after open heart surgery were enrolled sequentially to 1 of the 3 initial loading dose-continuous IV infusion (CIVI) regimens: 0.35-0.25, 0.7-0.5, or 1-0.75 microg/kg-microg/kg/h. The initial loading dose was administered over 10 minutes immediately postoperatively followed by a CIVI of up to 24 hours. Plasma dexmedetomidine concentrations were determined using a validated high-performance liquid chromatography tandem mass spectrometry assay. A population nonlinear mixed effects modeling approach was used to characterize dexmedetomidine pharmacokinetics.
Results:
Pharmacokinetic parameters of dexmedetomidine were estimated using a 2-compartment disposition model with weight on drug clearance, intercompartmental clearance, central and peripheral volume of distributions, total bypass time as a covariate on clearance and central volume of distribution, and age and ventricular physiology as covariates on clearance. Infants demonstrated a clearance of 28.1 mL/min/kg(0.75), intercompartmental clearance of 93.4 mL/min/kg(0.75), central volume of distribution of 1.2 L/kg, and peripheral volume of distribution of 1.5 L/kg.
Conclusions:
Dexmedetomidine clearance increased with weight, age, and single-ventricle physiology, whereas total bypass time was associated with a trend toward decreasing clearance, and central volume of distribution increased as a function of total bypass time. The dependence of clearance on body weight supports current practice of weight-based dexmedetomidine dosing, whereas the clinical impact of the remaining covariate effects requires further investigation. Initial loading doses in the range of 0.35 to 1 microg/kg over 10 minutes and CIVI of 0.25 to 0.75 microg/kg/h were well tolerated in this infant population.
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