4.1 Article

Cancer Cachexia Raises the Plasma Concentration of Oxymorphone Through the Reduction of CYP3A But Not CYP2D6 in Oxycodone-Treated Patients

Journal

JOURNAL OF CLINICAL PHARMACOLOGY
Volume 53, Issue 8, Pages 812-818

Publisher

WILEY-BLACKWELL
DOI: 10.1002/jcph.112

Keywords

oxycodone; cancer cachexia; oxymorphone; CYP2D6; pharmacokinetics

Funding

  1. Sagawa Foundation for Promotion of Cancer Research
  2. Grants-in-Aid for Scientific Research [23591379] Funding Source: KAKEN

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This study evaluated the plasma concentrations of oxycodone and its demethylates and opioid-induced adverse effects based on cachexia stage in cancer patients receiving oxycodone. Seventy patients receiving oxycodone for cancer pain were enrolled. Cachexia was evaluated using the Glasgow Prognostic Score (GPS). Predose plasma concentrations of oxycodone, oxymorphone, and noroxycodone were determined at the titration dose. Opioid-induced adverse effects were monitored for 2 weeks after the titration. Plasma concentrations of oxycodone and oxymorphone but not noroxycodone in patients with a GPS of 2 were significantly higher than that with a GPS of 0. The metabolic ratios of noroxycodone but not oxymorphone to oxycodone in patients with a GPS of 1 and 2 were significantly lower than in those with a GPS of 0. A higher GPS was associated with a higher incidence of somnolence, while the GPS did not affect the incidence of vomiting. Plasma concentrations of oxycodone and oxymorphone were not associated with the incidence of adverse effects. In conclusion, cancer cachexia raised the plasma exposures of oxycodone and oxymorphone through the reduction of CYP3A but not CYP2D6. Although the cachexia elevated the incidence of somnolence, alterations in their pharmacokinetics were not associated with the incidence.

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