Quantification of the pharmacokinetic-toxicodynamic relationship of oral docetaxel co-administered with ritonavir

Publication date

2020-10

Authors

Yu, Huixin
Janssen, Julie M
de Weger, Vincent A
Nuijen, Bastiaan
Stuurman, Rik E
Marchetti, Serena
Schellens, J.H.M.ISNI 0000000042971906
Beijnen, J.H.ISNI 0000000140305595
Dorlo, ThomasISNI 0000000423118095
Huitema, Alwin D R

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Article
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taverne

Abstract

Introduction Oral formulations of docetaxel have successfully been developed as an alternative for intravenous administration. Co-administration with the enzyme inhibitor ritonavir boosts the docetaxel plasma exposure. In dose-escalation trials, the maximum tolerated doses for two different dosing regimens were established and dose-limiting toxicities (DLTs) were recorded. The aim of current analysis was to develop a pharmacokinetic (PK)-toxicodynamic (TOX) model to quantify the relationship between docetaxel plasma exposure and DLTs. Methods A total of 85 patients was included in the current analysis, 18 patients showed a DLT in the four-week observation period. A PK-TOX model was developed and simulations based on the PK-TOX model were performed. Results The final PK-TOX model was characterized by an effect compartment representing the toxic effect of docetaxel, which was linked to the probability of developing a DLT. Simulations of once-weekly, once-daily 60 mg and once-weekly, twice-daily 30 mg followed by 20 mg of oral docetaxel suggested that 14% and 34% of patients, respectively, would have a probability >25% to develop a DLT in a four-week period. Conclusions A PK-TOX model was successfully developed. This model can be used to evaluate the probability of developing a DLT following treatment with oral docetaxel and ritonavir in different dosing regimens.

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Citation

Yu, H, Janssen, J M, de Weger, V A, Nuijen, B, Stuurman, R E, Marchetti, S, Schellens, J H M, Beijnen, J H, Dorlo, T P C & Huitema, A D R 2020, 'Quantification of the pharmacokinetic-toxicodynamic relationship of oral docetaxel co-administered with ritonavir', Investigational New Drugs, vol. 38, no. 5, pp. 1526-1532. https://doi.org/10.1007/s10637-020-00935-0