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Mass Spectrometry and Luminogenic-based Approaches to Characterize Phase I Metabolic Competency of In Vitro Cell Cultures
Published on: March 28, 2017
Validated liquid chromatography tandem mass spectrometry for simultaneous quantification of foretinib and lapatinib,
Mohammed M Alanazi1, Hamad M Alkahtani1, Abdulrahman A Almehizia1
1Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University P.O. Box 2457 Riyadh 11451 Saudi Arabia mehizia@ksu.edu.sa mzeidan@ksu.edu.sa +966 1146 76 220 +966 1146 70237.
Abstract:
Foretinib (GSK1363089, FTB) is a multikinase inhibitor that inhibits multiple receptor tyrosine kinases, including vascular endothelial growth factor receptor-2 and mesenchymal-epithelial transition factor, with the potential for solid tumor treatment. Lapatinib (LPB) is a significant promising drug molecule that was approved by the USFDA and was utilized to develop a nontoxic and very efficient targeted therapy against breast cancer. There is an ongoing clinical trial for using of FTB and LPB combination for HER-2 positive metastatic breast cancer treatment. In the current study, liquid chromatography tandem mass spectrometry methodology was validated for simultaneous estimation of FTB and LPB with application to drug metabolic stability investigation. Chromatographic separation of FTB, LPB and masitinib (internal standard) was attained using an isocratic mobile phase running on a reversed-phase C18 column. The linear dynamic range was 5-500 ng mL-1 with r 2 ≥ 0.9999 in the rat liver microsomes (RLMs) matrix. The FTB and LPB metabolic stabilities in the RLMs matrix were estimated by computing two parameters, intrinsic clearance (CLint: 6.33 and 5.63 mL min-1 kg-1) and a low in vitro half-life (t 1/2: 23.9 and 26.9 min), which revealed the FTB and LPB high clearance by the liver from the blood. This probably revealed the low in vivo bioavailability that verified the low oral bioavailability previously reported and also indicated that FTB and LPB will not bioaccumulate after multiple doses. FTB metabolic rate is slightly decreased in combination with LPB, while LPB metabolic rate is greatly increased in combination with FTB. So dose recalculation must be evaluated when FTB and LPB are used in combination.
Insights
Foretinib and Lapatinib show high liver clearance and low in vivo bioavailability, indicating they won't accumulate. Their combined use requires dose adjustments due to altered metabolic rates.
Area of Science:
- Pharmacology and Drug Metabolism
- Oncology
- Analytical Chemistry
Background:
- Foretinib (FTB) is a multikinase inhibitor with potential in solid tumor treatment.
- Lapatinib (LPB) is an FDA-approved targeted therapy for breast cancer.
- A clinical trial is investigating the combination of FTB and LPB for HER-2 positive metastatic breast cancer.
Purpose of the Study:
- To validate a liquid chromatography-tandem mass spectrometry (LC-MS/MS) method for simultaneous quantification of FTB and LPB.
- To investigate the metabolic stability of FTB and LPB in rat liver microsomes (RLMs).
- To assess the impact of FTB and LPB combination on their respective metabolic rates.
Main Methods:
- Validated an LC-MS/MS method for simultaneous estimation of FTB and LPB using masitinib as an internal standard.
- Separation achieved on a reversed-phase C18 column with an isocratic mobile phase.
- Assessed metabolic stability in RLMs, calculating intrinsic clearance (CLint) and in vitro half-life (t1/2).
Main Results:
- The validated LC-MS/MS method demonstrated a linear dynamic range of 5-500 ng/mL (r² ≥ 0.9999).
- FTB and LPB exhibited high intrinsic clearance (6.33 and 5.63 mL/min/kg) and short in vitro half-lives (23.9 and 26.9 min) in RLMs.
- FTB's metabolic rate decreased slightly with LPB, while LPB's metabolic rate increased significantly with FTB.
Conclusions:
- High liver clearance suggests low in vivo bioavailability and no expected bioaccumulation for FTB and LPB.
- The combination of FTB and LPB alters their individual metabolic profiles.
- Dose recalculation is necessary when combining FTB and LPB for therapeutic use.
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