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Clinical-Based vs. Model-Based Adaptive Dosing Strategy: Retrospective Comparison in Real-World mRCC Patients Treated
Florent Ferrer1,2, Jonathan Chauvin3, Bénédicte DeVictor2
1SMARTc Unit, Centre de Recherche en Cancérologie de Marseille, Inserm U1068 Aix Marseille Université, 13385 Marseille, France.
Abstract:
Different target exposures with sunitinib have been proposed in metastatic renal cell carcinoma (mRCC) patients, such as trough concentrations or AUCs. However, most of the time, rather than therapeutic drug monitoring (TDM), clinical evidence is preferred to tailor dosing, i.e., by reducing the dose when treatment-related toxicities show, or increasing dosing if no signs of efficacy are observed. Here, we compared such empirical dose adjustment of sunitinib in mRCC patients, with the parallel dosing proposals of a PK/PD model with TDM support. In 31 evaluable patients treated with sunitinib, 53.8% had an empirical change in dosing after treatment started (i.e., 46.2% decrease in dosing, 7.6% increase in dosing). Clinical benefit was observed in 54.1% patients, including 8.3% with complete response. Overall, 58.1% of patients experienced treatment discontinuation eventually, either because of toxicities or progressive disease. When choosing 50-100 ng/mL trough concentrations as a target exposure (i.e., sunitinib + active metabolite N-desethyl sunitinib), 45% patients were adequately exposed. When considering 1200-2150 ng/mL.h as a target AUC (i.e., sunitinib + active metabolite N-desethyl sunitinib), only 26% patients were in the desired therapeutic window. TDM with retrospective PK/PD modeling would have suggested decreasing sunitinib dosing in a much larger number of patients as compared with empirical dose adjustment. Indeed, when using target trough concentrations, the model proposed reducing dosing for 61% patients, and up to 84% patients based upon target AUC. Conversely, the model proposed increasing dosing in 9.7% of patients when using target trough concentrations and in 6.5% patients when using target AUC. Overall, TDM with adaptive dosing would have led to tailoring sunitinib dosing in a larger number of patients (i.e., 53.8% vs. 71-91%, depending on the chosen metrics for target exposure) than a clinical-based decision. Interestingly, sunitinib dosing was empirically reduced in 41% patients who displayed early-onset severe toxicities, whereas model-based recommendations would have immediately proposed to reduce dosing in more than 80% of those patients. This observation suggests that early treatment-related toxicities could have been partly avoided using prospective PK/PD modeling with adaptive dosing. Conversely, the possible impact of model-based adapted dosing on efficacy could not be fully evaluated because no clear relationship was found between baseline exposure levels and sunitinib efficacy measured at 3 months.
Insights
Therapeutic drug monitoring (TDM) with PK/PD modeling could optimize sunitinib dosing in metastatic renal cell carcinoma (mRCC) patients, potentially reducing toxicity and improving treatment tailoring compared to empirical adjustments.
Area of Science:
- Pharmacology
- Oncology
- Clinical Pharmacy
Background:
- Sunitinib dosing in metastatic renal cell carcinoma (mRCC) is often guided by clinical observation rather than therapeutic drug monitoring (TDM).
- Empirical dose adjustments based on toxicity or efficacy are common but may not be optimal for patient exposure.
- Different target exposures, including trough concentrations and AUCs, have been proposed for sunitinib.
Purpose of the Study:
- To compare empirical sunitinib dose adjustments with pharmacokinetic/pharmacodynamic (PK/PD) model-guided TDM in mRCC patients.
- To evaluate the proportion of patients achieving target exposure levels with both approaches.
- To assess the potential of TDM to preemptively manage toxicities.
Main Methods:
- Retrospective analysis of 31 mRCC patients treated with sunitinib.
- Comparison of empirical dose changes with PK/PD model-predicted dose adjustments based on target trough concentrations and AUCs.
- Evaluation of patient exposure and clinical benefit.
Main Results:
- 53.8% of patients had empirical dose adjustments; 45% achieved target trough concentrations, and 26% achieved target AUCs.
- PK/PD modeling suggested dose reductions in a significantly larger proportion of patients (61-84%) compared to empirical adjustments (46.2%).
- Model-based dosing would have identified more patients for dose modification (71-91%) than clinical decisions (53.8%), potentially avoiding early toxicities.
Conclusions:
- TDM with PK/PD modeling offers a more precise approach to tailoring sunitinib dosing in mRCC patients than empirical adjustments.
- Prospective PK/PD modeling with adaptive dosing may help mitigate early-onset severe toxicities associated with sunitinib.
- Further research is needed to fully evaluate the impact of model-based dosing on sunitinib efficacy.
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