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Opportunities for Precision Dosing of Cytotoxic Drugs in Non-Small Cell Lung Cancer: Bridging the Gap in Precision
M P Kicken1,2, M J Deenen3,4, A J van der Wekken5
1Department of Clinical Pharmacy, Catharina Hospital, Michelangelolaan 2, 5623 EJ, Eindhoven, The Netherlands. mart.kicken@catharinaziekenhuis.nl.
Abstract:
Precision dosing of classical cytotoxic drugs in oncology remains underdeveloped, especially in treating non-small cell lung cancer (NSCLC). Despite advancements in targeted therapy and immunotherapy, classical cytotoxic agents continue to play a critical role in NSCLC treatment. However, the current body surface area (BSA)-based dosing of these agents fails to adequately address interindividual variability in pharmacokinetics. By better considering patient characteristics, treatment outcomes can be improved, reducing risks of under-exposure and over-exposure. This narrative review explores opportunities for precision dosing for key cytotoxic agents used in NSCLC treatment: cisplatin, carboplatin, pemetrexed, docetaxel, (nab-)paclitaxel, gemcitabine, and vinorelbine. A comprehensive review of regulatory reports and an extensive literature search were conducted to evaluate current dosing practices, pharmacokinetics, pharmacodynamics, and exposure-response relationships. Our findings highlight promising developments in precision dosing, although the number of directly implementable strategies remains limited. The most compelling evidence supports using the biomarker cystatin C for more precise carboplatin dosing and adopting weekly dosing schedules for docetaxel, paclitaxel, and nab-paclitaxel. Additionally, we recommend direct implementation of therapeutic drug monitoring (TDM)-guided dosing for paclitaxel. This review stresses the urgent need to reassess conventional dosing paradigms for classical cytotoxic agents to better align with the principles of the precision dosing framework. Our recommendations show the potential of precision dosing to improve NSCLC treatment, addressing gaps in the current dosing of classical cytotoxic drugs. Given the large NSCLC patient population, optimising the dosing of these agents could significantly improve treatment outcomes and reduce toxicity for many patients.
Insights
Precision dosing for non-small cell lung cancer (NSCLC) chemotherapy is needed. Optimizing cytotoxic drug doses using biomarkers like cystatin C and therapeutic drug monitoring can improve outcomes and reduce toxicity.
Area of Science:
- Oncology
- Pharmacology
- Precision Medicine
Background:
- Classical cytotoxic chemotherapy remains vital for non-small cell lung cancer (NSCLC) treatment.
- Current body surface area (BSA)-based dosing inadequately addresses pharmacokinetic variability.
- Interindividual differences in drug exposure can lead to suboptimal treatment outcomes and increased toxicity.
Purpose of the Study:
- To review precision dosing strategies for key cytotoxic agents in NSCLC.
- To evaluate current dosing practices, pharmacokinetics, pharmacodynamics, and exposure-response relationships.
- To identify implementable precision dosing approaches for NSCLC patients.
Main Methods:
- Narrative review of regulatory reports and extensive literature search.
- Evaluation of pharmacokinetic and pharmacodynamic data for key cytotoxic agents.
- Assessment of exposure-response relationships and biomarker utility.
Main Results:
- Promising developments in precision dosing exist, but directly implementable strategies are limited.
- Cystatin C shows potential as a biomarker for precise carboplatin dosing.
- Weekly dosing for docetaxel, paclitaxel, and nab-paclitaxel, and TDM for paclitaxel are recommended.
Conclusions:
- Conventional dosing paradigms for NSCLC cytotoxic agents require reassessment.
- Precision dosing offers significant potential to improve treatment efficacy and reduce toxicity.
- Optimizing cytotoxic drug dosing can enhance outcomes for the large NSCLC patient population.
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