Pharmacokinetics and Pharmacodynamics of Imatinib in a Phase I Trial With Chronic Myeloid Leukemia Patients

Bin Peng, Michael Hayes, Debra Resta, Amy Racine-Poon, Brian Druker, Moshe Talpaz, Charles L. Sawyers, Marianne Rosamilia, J. Ford, Peter Lloyd,

Journal of Clinical Oncology · 2004 · 465 citations · 16 references

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TL;DR

The study aimed to characterize imatinib’s pharmacokinetics and its relationship with pharmacodynamics in 64 Philadelphia chromosome‑positive leukemia patients during a phase I trial. Patients received oral imatinib once or twice daily, and PK parameters were derived from plasma concentration–time curves while a maximum inhibition–effect model linked WBC reduction after one month to drug exposure. Imatinib exposure was dose‑proportional (25–1,000 mg) with 1.5–3× accumulation after once‑daily dosing, a steady‑state trough of 0.57 µg/mL exceeding the IC50, and a 400 mg threshold needed for maximal WBC reduction.

Abstract

To evaluate the basic pharmacokinetic (PK) characteristics of imatinib mesylate and assess the relationship between the PK and pharmacodynamic (PD) properties of the drug.The PK and PD properties of imatinib were investigated during a phase I trial that included 64 adult patients with Philadelphia chromosome-positive leukemias. Patients received imatinib orally once or twice daily. PK parameters of imatinib, derived from the plasma concentration-time curves, were determined. PD response, defined as the WBC after 1 month of treatment with imatinib, was used to develop an efficacy model. A maximum inhibition-effect model was used to describe the relationship between reduction in WBC and drug exposure parameters.Imatinib exposure was dose proportional after oral administration for the dose range of 25 to 1,000 mg. There was a 1.5- to three-fold drug accumulation after repeated once-daily dosing. Mean plasma trough concentration was 0.57 microg/mL (approximately 1 micromol/L) 24 hours after administration of 350 mg of imatinib at steady-state, which exceeds the 50% inhibitory concentration required to inhibit proliferation of Bcr-Abl-positive leukemic cells. Analysis of PK/PD relationships indicates that the initial hematologic response depends on the administered dose for patients with chronic myeloid leukemia.Drug exposure (area under the concentration-time curve) is dose proportional for the dose range of 25 to 1,000 mg, and there is a 1.5- to three-fold drug accumulation at steady-state after once-daily dosing. Analysis of the relationship between PD (WBC reduction) and PK parameters at steady-state indicates that a dose of 400 mg or greater is required for maximal PD effect.

References

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