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Perioperative Acetaminophen Dosing in Obese Children
Brian Joseph Anderson1, Luis Ignacio Cortinez2
1Department of Anaesthesiology, University of Auckland, Park Road, Auckland 1023, New Zealand.
Insights
Acetaminophen dosing in children requires careful consideration of body composition. Total body weight is acceptable for maintenance dosing calculations, balancing efficacy with safety concerns like hepatotoxicity.
Area of Science:
- Pharmacology
- Pediatric Anesthesiology
- Pharmacokinetics
Background:
- Acetaminophen is a common perioperative analgesic in children.
- Dosing strategies aim for target concentrations (10 mg/L) linked to analgesic effects (2.6 pain units).
- Maintenance dosing maintains steady-state concentrations post-operatively.
Purpose of the Study:
- To evaluate the relationship between body composition and acetaminophen pharmacokinetics in children.
- To determine appropriate dosing metrics for perioperative acetaminophen in pediatric patients.
- To inform optimal dosing strategies considering both efficacy and safety.
Main Methods:
- Analysis of pharmacokinetic parameters, including volume of distribution and clearance.
- Exploration of various size metrics (total body weight, fat-free mass, normal fat mass) for scaling clearance.
- Application of allometric theory to describe the non-linear relationship between clearance and size.
Main Results:
- Fat mass minimally impacts acetaminophen's volume of distribution but influences clearance.
- Allometric scaling using normal fat mass is effective, but total body weight is acceptable for maintenance dose calculation.
- High pharmacokinetic variability and a gentle concentration-response slope support using total body weight.
Conclusions:
- Total body weight is a practical metric for calculating pediatric acetaminophen maintenance doses when using allometry.
- Dosing must consider potential hepatotoxicity, especially with prolonged use or doses exceeding 90 mg/kg/day.
- Further research may refine dosing based on individual pharmacokinetic and pharmacodynamic profiles.
Abstract:
Acetaminophen is a commonly used perioperative analgesic drug in children. The use of a preoperative loading dose achieves a target concentration of 10 mg/L associated with a target analgesic effect that is 2.6 pain units (visual analogue scale 1-10). Postoperative maintenance dosing is used to keep this effect at a steady-state concentration. The loading dose in children is commonly prescribed per kilogram. That dose is consistent with the linear relationship between the volume of distribution and total body weight. Total body weight is made up of both fat and fat-free mass. The fat mass has little influence on the volume of distribution of acetaminophen but fat mass should be considered for maintenance dosing that is determined by clearance. The relationship between the pharmacokinetic parameter, clearance, and size is not linear. A number of size metrics (e.g., fat-free and normal fat mass, ideal body weight and lean body weight) have been proposed to scale clearance and all consequent dosing schedules recognize curvilinear relationships between clearance and size. This relationship can be described using allometric theory. Fat mass also has an indirect influence on clearance that is independent of its effects due to increased body mass. Normal fat mass, used in conjunction with allometry, has proven a useful size metric for acetaminophen; it is calculated using fat-free mass and a fraction (Ffat) of the additional mass contributing to total body weight. However, the Ffat for acetaminophen is large (Ffat = 0.82), pharmacokinetic and pharmacodynamic parameter variability high, and the concentration-response slope gentle at the target concentration. Consequently, total body weight with allometry is acceptable for the calculation of maintenance dose. The dose of acetaminophen is tempered by concerns about adverse effects, notably hepatotoxicity associated with use after 2-3 days at doses greater than 90 mg/kg/day.
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