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Updated: Aug 14, 2025

An Experimental Paradigm for the Prediction of Post-Operative Pain PPOP
Published on: January 27, 2010
Association of CYP2D6 genotype predicted phenotypes with oxycodone requirements and side effects in children
Soroush Merchant1, Cynthia A Prows2, Fang Yang3,4
1Department of Anesthesia, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.
Insights
CYP2D6 genetic variations affect how children need oxycodone for pain relief and may influence respiratory depression risk. Provider guidance on genetic testing impacts opioid prescribing patterns post-surgery.
Area of Science:
- Pharmacogenomics
- Pediatric Pain Management
- Clinical Genetics
Background:
- Oxycodone is a common oral opioid for pediatric postoperative pain.
- The CYP2D6 gene metabolizes oxycodone into its active form, oxymorphone.
- CYP2D6 genetic variations can alter drug metabolism and efficacy.
Purpose of the Study:
- To investigate the influence of CYP2D6 polymorphisms on oxycodone requirements in children.
- To assess the association between CYP2D6 genotype and the risk of oxycodone-induced side effects like respiratory depression and emesis.
- To explore how genetic information availability and provider guidance affect oral opioid prescribing.
Main Methods:
- Retrospective analysis of pediatric patients undergoing Nuss procedure or spine fusion with pre-operative CYP2D6 genotyping.
- Comparison of CYP2D6 phenotypes (PM, UM, IM, NM) regarding oxycodone requirements and side effect incidence.
- Logistic regression and Breslow-Day test to evaluate genotype-guided prescribing impact.
Main Results:
- CYP2D6 phenotype significantly influenced oxycodone dosage requirements (P<0.001).
- Poor metabolizers (PM) and ultrarapid metabolizers (UM) required less oxycodone compared to normal metabolizers (NM).
- CYP2D6 phenotype was associated with respiratory depression risk in high oxycodone users (P=0.018), but not emesis.
Conclusions:
- CYP2D6 genotypes are linked to oxycodone needs and potential respiratory depression risk in pediatric patients.
- Availability of genetic data and provider guidance appear to modify oral opioid prescribing practices.
- Further research is needed due to small sample sizes for UM/PM groups.
Background:
Oxycodone is a commonly used oral opioid in children for treating postoperative pain. Highly polymorphic gene CYP2D6 metabolizes oxycodone into its more potent metabolite, oxymorphone. We hypothesized that altered activity due to CYP2D6 polymorphisms will influence oxycodone requirements {relative oxycodone use [oxycodone morphine equivalents (MEq)/total MEq] to maintain analgesia} (primary outcome) and risk for oxycodone induced side-effects such as respiratory depression (RD) and emesis (secondary outcomes). We also explored the influence of genotype availability and provider guidance on oral opioid prescription patterns.
Methods:
Patients who underwent Nuss procedure and spine fusion with CYP2D6 genotyping results available preoperatively were included. Data on demographics, genotypes, oral opioids, pain scores, RD and emesis were collected. Univariate and multivariable regression for comparison of CYP2D6 genotype predicted poor, ultrarapid, intermediate metabolizers (PM, UM and IM) phenotype with normal metabolizers (NM) for outcomes were performed. Stratified logistic regression was conducted in low (oxycodone/total MEq <0.5) and high (and oxycodone/total MEq >0.5) oxycodone use groups for RD and emesis, with application of firth correction due to quasi-complete separations. Breslow-Day test was used to evaluate odds ratios for prescribing genotype directed opioid between control group (2012-15) (where providers were alerted to genotyping results availability but not directed to use them while prescribing) and genotype directed groups (2016-18) (where providers were directed to use the genotyping results available to them while prescribing oxycodone after surgery).
Results:
Of 193 subjects (age 15.9±0.25 years, 28.5% female, 93.78% White; 101 NM, 76 IM, 10 PM and 6 UM), 77.72% underwent pectus surgery. CYP2D6 phenotype was associated with oxycodone MEq/total MEq requirements (P<0.001). Both PM and UM phenotypes had lower oxycodone requirements compared to NM [-0.316 (SE 0.098), P=0.005 and -0.432 (SE 0.113), P<0.001 respectively]. CYP2D6 phenotype was associated with RD in high use oxycodone group (P=0.018) but not low use oxycodone groups (P=0.634). No phenotype association was found for emesis. Oxycodone was prescribed to 91.24% of NM/IM vs. 66.67% of PM/UM (P=0.129) in control group and 94.64% of NM/IM vs. 28.57% of PM/UM (P<0.001) in the genotype-directed group. PM/UM phenotypes in genotype directed group had a lower chance of being prescribed oxycodone (effect size =-2.775; SE 1.566; P=0.076).
Conclusions:
Our findings suggest CYP2D6 genotypes are associated with oxycodone requirements for analgesia and may influence risk for RD. Genotype availability and guidance likely influence oral opioid prescription pattern after surgery. Our findings are limited by small sample size for UM/PM groups.
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