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Plasma concentrations after high-dose (45 mg.kg-1) rectal acetaminophen in children
C J Montgomery1, J P McCormack, C C Reichert
1Department of Anaesthesia, University of British Columbia, Vancouver, Canada.
Insights
Rectal acetaminophen absorption in children is delayed and unpredictable. A 45 mg.kg-1 dose resulted in peak concentrations similar to oral doses after three hours, indicating it may not provide rapid pain relief.
Area of Science:
- Pharmacology
- Pediatric Medicine
- Clinical Pharmacy
Background:
- Rectal acetaminophen dosing is typically higher than oral administration.
- The efficacy of rectal acetaminophen for rapid analgesia in pediatric patients requires further investigation.
Purpose of the Study:
- To measure venous plasma acetaminophen concentrations after a 45 mg.kg-1 rectal dose in pediatric patients.
- To evaluate the pharmacokinetic profile and effectiveness of rectal acetaminophen for pain management in children.
Main Methods:
- Ten pediatric patients (15 kg, ASA 1) received a single 650 mg rectal acetaminophen suppository.
- Venous plasma acetaminophen concentrations were measured at multiple time points up to 420 minutes post-administration.
- Acetaminophen levels were determined using fluorescence polarization immunoassay.
Main Results:
- Peak plasma acetaminophen concentration was 88 +/- 39 mumol.L-1 at 198 +/- 70 minutes.
- Mean plasma concentration at 420 minutes was 46 +/- 18 mumol.L-1.
- No toxic plasma concentrations (> 800 mumol.L-1) were observed.
Conclusions:
- Rectal acetaminophen administration in children results in delayed and erratic absorption.
- The pharmacokinetic profile suggests unpredictable plasma concentrations, limiting consistent effectiveness for rapid analgesia.
- Higher rectal doses do not guarantee faster or more reliable pain relief compared to standard oral doses.
Abstract:
Although the recommended dose of rectal acetaminophen (25-30 mg.kg-1) is twice that for oral administration (10-15 mg.kg-1), the literature justifies the use of a higher dose when acetaminophen is administered via the rectal route. We measured venous plasma acetaminophen concentrations resulting from 45 mg.kg-1 of rectal acetaminophen in ten ASA 1, 15 kg paediatric patients undergoing minor surgery with a standardized anaesthetic. After induction of anaesthesia, a single 650 mg suppository (Abenol, SmithKline Beecham Pharma Inc.) was administered rectally. Plasma was sampled at t = 0, 15, 30, 45, 60, 90, 120, 180, 240 min in the first five patients and at t = 0, 30, 60, 90, 120, 180, 240, 300, 420 min in the subsequent five. Acetaminophen plasma concentrations were determined using a TDxFLx fluorescence polarization immunoassay (Abbott Laboratories, Toronto, Ontario). The maximum plasma concentration was 88 +/- 39 mumol.L-1 (13 +/- 6 micrograms.ml-1) and the time of peak plasma concentration was 198 +/- 70 min (mean +/- SD). At 420 min, the mean plasma concentration was 46 +/- 18 mumol.L-1 (7.0 +/- 0.9 micrograms.ml-1). No plasma concentrations associated with toxicity (> 800 mumol.L-1) were identified. A 45 mg.kg-1 rectal dose of acetaminophen resulted in peak plasma concentrations comparable with those resulting from 10-15 mg.kg-1 of oral acetaminophen at three hours after suppository insertion. It is concluded that the delayed and erratic absorption of acetaminophen after rectal administration leads to unpredictable plasma concentrations. Rectal acetaminophen will not be consistently effective for providing rapid onset of analgesia in children.
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