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Reducing the Burden of Interaction Studies in Cancer Patients Using a Stable Isotopically Labeled Microtracer: A
Ma Ida Mohmaed Ali1,2, Lisa T van der Heijden1,2,3, Matthijs Tibben1,2
1Department of Pharmacy & Pharmacology, Netherlands Cancer Institute, Amsterdam, The Netherlands.
Abstract:
Traditional drug-food interaction studies of oral anticancer agents have a high patient burden. A patient-friendly alternative approach to studying food effects could be the use of stable isotopically labeled microtracers. A prospective, single-center, open-label, crossover, food effect study with the microtracer 2H6-alectinib was conducted in patients with ALK-positive, non-small cell lung cancer treated with 600 mg alectinib bidaily. On occasion 1 (fed state), patients received 100 μg 2H6-alectinib in addition to their usual dose of alectinib and a standardized Dutch breakfast (320-392 kcal and 7.5-7.8 g fat). On occasion 2 (fasted state), patients received 2H6-alectinib and alectinib after overnight fasting. Pharmacokinetic (PK) samples were collected up to 8 hours after intake of 2H6-alectinib. The effect of food on relative bioavailability (F) and mean transit time of 2H6-alectinib was assessed by population PK modeling. Differences in area under the plasma concentration-time curve (AUC) and maximum concentration (Cmax) between fed and fasted states were estimated by simulations. MTT in the fed state was 3.14 hours (relative standard error (RSE): 16.0%). MTT and F in the fasted state were 28% (RSE: 20.5%) and 35% (RSE: 12.4%) lower, respectively, compared to the fed state. The geometric mean ratio (fed vs. fasted) of AUC and Cmax was 1.52 (90% confidence interval (CI): 1.25-1.89) and 1.42 (90% CI: 1.16-1.76), respectively. These results showed that the intake of a Dutch breakfast leads to a higher total exposure of alectinib. More importantly, the feasibility of a microtracer food effect study to reduce patient burden was demonstrated.
Insights
A novel microtracer method using deuterium-labeled alectinib significantly reduced patient burden in studying drug-food interactions. This approach demonstrated that a Dutch breakfast increases alectinib exposure in non-small cell lung cancer patients.
Area of Science:
- Pharmacokinetics and Drug Metabolism
- Oncology
- Clinical Pharmacology
Background:
- Traditional drug-food interaction studies for oral anticancer agents impose a substantial patient burden.
- Stable isotopically labeled microtracers offer a patient-friendly alternative for assessing food effects on drug absorption.
Purpose of the Study:
- To evaluate the feasibility of using a stable isotopically labeled microtracer (2H6-alectinib) to study food effects on alectinib pharmacokinetics.
- To assess the impact of a standardized Dutch breakfast on the bioavailability and exposure of alectinib in patients with ALK-positive non-small cell lung cancer.
Main Methods:
- A prospective, single-center, open-label, crossover study was conducted in patients receiving alectinib.
- Patients received 2H6-alectinib microtracer with a standardized breakfast (fed state) and after overnight fasting (fasted state).
- Population pharmacokinetic modeling was used to assess the effect of food on relative bioavailability (F) and mean transit time (MTT).
Main Results:
- Mean transit time was 3.14 hours in the fed state.
- Compared to the fed state, MTT and F were 28% and 35% lower, respectively, in the fasted state.
- The geometric mean ratio (fed vs. fasted) for area under the plasma concentration-time curve (AUC) and maximum concentration (Cmax) was 1.52 and 1.42, respectively, indicating increased alectinib exposure when taken with food.
Conclusions:
- The intake of a Dutch breakfast significantly increases total alectinib exposure in patients.
- The microtracer approach is feasible and effective in studying drug-food interactions, demonstrating a reduced patient burden compared to traditional methods.
- This method provides valuable insights into alectinib pharmacokinetics and food effects for optimizing treatment regimens.
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