Predicting Drug Interactions In Vivo from Experiments In Vitro

酮康唑 紫杉醇 体内 药代动力学 药理学 医学 CYP3A型 药物相互作用 代谢物 红霉素 细胞色素P450 化疗 化学 内科学 抗生素 新陈代谢 生物 生物化学 生物技术 抗真菌 皮肤病科
作者
Carlos Jamis‐Dow,Michael L. Pearl,Paul B. Watkins,Donna Jo Blake,Raymond W. Klecker,Jerry M. Collins
出处
期刊:American Journal of Clinical Oncology [Lippincott Williams & Wilkins]
卷期号:20 (6): 592-599 被引量:44
标识
DOI:10.1097/00000421-199712000-00013
摘要

This study was performed to evaluate whether concomitant treatment with ketoconazole could reduce the clearance of paclitaxel given to ovarian cancer patients. Paclitaxel, 175 mg/m2, was given as a 3-hour continuous intravenous infusion and repeated every 21 days. Initially, ketoconazole, 100 to 1600 mg, was given as a single oral dose 3 hours after paclitaxel. Later, ketoconazole, 200 mg, was given perorally 3 hours before paclitaxel. Plasma drug concentrations were measured by high-pressure liquid chromatography (HPLC), and cytochrome P450 3A (CYP3A) activity was measured with the erythromycin breath test (ERMBT). Ketoconazole did not alter plasma concentrations of paclitaxel or its principal metabolite, 6α-hydroxypaclitaxel. Although there was marked inter- and intrapatient variability in ketoconazole pharmacokinetics, peak plasma concentrations in all but one course were below the 50% inhibitory concentration (IC50) point determined for inhibition of paclitaxel metabolism in vitro. Therefore, paclitaxel and ketoconazole can be coadministered safely without dose adjustments. There was no correlation between ERMBT measurements and serial plasma concentrations of paclitaxel. The erythromycin breath-test measurements did correlate with the corresponding ketoconazole plasma concentrations. The erythromycin breath test is a valuable tool for measuring instantaneous CYP3A activity in vivo. This clinical study confirms the results of prior studies with human-derived materials in vitro, reinforcing the notion that such studies are useful predictors of drug pharmacokinetics and interactions in vivo.

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