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Published on: November 9, 2016
Ketorolac Dose Ceiling Effect for Pediatric Headache in the Emergency Department
Brian Lefchak1, Danielle Morgan2, Mike Finch3
1Department of Pediatric Emergency Medicine (BL, MM), Children's Minnesota, Minneapolis, MN.
Insights
Reducing the maximum intravenous ketorolac dose to 15 mg in pediatric patients weighing at least 60 kg effectively manages headache pain, mirroring adult study findings. This dose reduction also showed a trend towards decreased nausea medication use.
Area of Science:
- Emergency Medicine
- Pediatric Pain Management
- Pharmacology
Background:
- Intravenous ketorolac is used for acute pain in pediatric emergency departments.
- Previous studies in adults suggest an analgesic ceiling effect for ketorolac.
- The optimal dose for pediatric patients requires further investigation.
Purpose of the Study:
- To determine if a reduced maximum dose of 15 mg intravenous ketorolac is non-inferior to 30 mg for pediatric headache analgesia.
- To evaluate the analgesic ceiling effect in pediatric patients.
Main Methods:
- Retrospective cohort study of pediatric ED patients (≥60 kg) treated with 30 mg or 15 mg IV ketorolac for headache.
- Primary outcome: patient-reported pain scores.
- Secondary outcomes: demographic data, adjunct medication use, and adverse effects.
Main Results:
- No significant difference in rescue analgesic use between the 30 mg (5.6%) and 15 mg (3.2%) groups (p=0.416).
- A trend towards less nausea medication use in the 15 mg group (83.9%) compared to the 30 mg group (91.7%) (p=0.087).
- The 15 mg group experienced a significantly greater mean pain score reduction (5.1 points) versus the 30 mg group (3.9 points) (p<0.001).
Conclusions:
- A 15 mg maximum dose of IV ketorolac is effective for pediatric headache analgesia in patients weighing at least 60 kg.
- This supports the analgesic ceiling effect in pediatric populations.
- Further research can explore admission rates and multi-dose regimens.
Objective:
This study sought to demonstrate a non-inferiority analgesic ceiling effect previously -demonstrated within adults for pediatric patients receiving a maximum ketorolac dose of 15 mg.
Methods:
We conducted a retrospective cohort study of pediatric ED patients weighing at least 60 kg treated with 30 mg (pre-intervention) or 15 mg (post-intervention) intravenous (IV) ketorolac for headache. The primary outcome included patient-reported pain scores. Additional outcomes included demographic variables, adjunct medication use and adverse effects. Categorical data were evaluated using a χ2 test, and numerical data were evaluated using an ANOVA F test and Welch 2-sample t test.
Results:
The pre- and post-intervention groups included 216 and 62 patients, respectively. Overall demographics were similar between the groups (72.3% female, 49.3% White/Caucasian, mean age 15.5 years, mean weight 79.2 kg, and mean baseline 10-point pain score 7.5). Twelve (5.6%) in the pre-intervention group required rescue analgesic compared with 2 patients (3.2%) in the post-intervention group (p = 0.416). In the pre-intervention group, 198 patients (91.7%) received nausea medication compared with 52 patients (83.9%) in the post-intervention group (p = 0.087). Mean 10-point pain scores following ketorolac administration decreased by 3.9 in the pre-intervention group compared with 5.1 in the post-intervention group (p = < 0.001). Common (0.9%) or rare (0.9%) side effects were infrequent and only seen in the pre-intervention group patients.
Conclusions:
Truncating the maximum intravenous ketorolac dose in pediatric patients at least 60 kg in weight to 15 mg compared with 30 mg results in effective analgesia in pediatric patients with headache. Future research could explore differences in admission rates, treatment of other indications, or treatment with multiple-dose regimens.
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