Related Experiment Video
Updated: May 8, 2026

HPLC-based Assay to Monitor Extracellular Nucleotide/Nucleoside Metabolism in Human Chronic Lymphocytic Leukemia Cells
Published on: July 20, 2016
Development and validation of a sensitive LC-MS/MS assay for the simultaneous quantification of allitinib and its two
Lishan Lin1, Zhiwei Gao, Xiaoyan Chen
1Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, PR China.
Abstract:
Allitinib, also known as AST1306, is a novel irreversible inhibitor of the epidermal growth factor receptors 1 and 2. Allitinib is currently used in clinical trial to treat solid tumors. A previous study showed that allitinib is extensively metabolized in humans. Amide hydrolysis metabolite (M6) and 29,30-dihydrodiol allitinib (M10) are the major metabolites in circulation. To study the pharmacokinetics of allitinib and its two major metabolites in cancer patients, a rapid, sensitive and reliable LC-MS/MS method was developed and validated for the simultaneous determination of allitinib, M6 and M10 in human plasma. After simple protein precipitation, the analytes and the combined internal standards (lapatinib and NB-2, an analog of allitinib) were separated on a Zorbax Eclipase XDB C18 column (50 mm × 4.6 mm, 1.8 μm, Agilent) using a mobile phase of 5 mM ammonium acetate with 0.1% formic acid (phase A) and 50% (v/v) methanol in acetonitrile (phase B) with gradient elution. Mass spectrometric detection was conducted by atmospheric-pressure chemical ionization in positive ion multiple reaction monitoring modes using AB Sciex Triple Quad 6500 system. Linear calibration curves were obtained for the following concentration range: 0.300-200 ng/ml for allitinib; 0.030-20.0 ng/ml for M6; and 0.075-50.0 ng/ml for M10. Intra-day and inter-day accuracy and precision were within the acceptable limits of ±15% at all of the concentrations. The method was successfully applied to a preliminary clinical pharmacokinetic study following oral administration of allitinib tosylate tablets in cancer patients.
Insights
A new LC-MS/MS method accurately measures allitinib and its key metabolites (M6, M10) in cancer patients. This supports pharmacokinetic studies of allitinib, an EGFR inhibitor for solid tumors.
Area of Science:
- Pharmacology
- Analytical Chemistry
- Oncology
Background:
- Allitinib (AST1306) is an irreversible EGFR inhibitor investigated for solid tumors.
- Previous research indicates extensive human metabolism of allitinib, with M6 and M10 as major circulating metabolites.
Purpose of the Study:
- To develop and validate a rapid, sensitive, and reliable LC-MS/MS method for simultaneous determination of allitinib, M6, and M10 in human plasma.
- To support pharmacokinetic studies of allitinib in cancer patients.
Main Methods:
- Simultaneous quantification of allitinib, M6, and M10 in human plasma using LC-MS/MS.
- Sample preparation involved protein precipitation.
- Analysis utilized a C18 column with gradient elution and atmospheric-pressure chemical ionization in positive ion MRM mode.
Main Results:
- The validated LC-MS/MS method demonstrated linearity over specified concentration ranges for allitinib, M6, and M10.
- Intra-day and inter-day accuracy and precision were within ±15% across all tested concentrations.
- The method was successfully applied to a preliminary pharmacokinetic study in cancer patients.
Conclusions:
- A robust LC-MS/MS assay was developed for quantifying allitinib and its major metabolites in human plasma.
- This method is suitable for clinical pharmacokinetic investigations of allitinib.
- The established method aids in understanding allitinib's disposition in cancer patients.
More Related Videos
10:38Simultaneous Quantification of Selected Kynurenines Analyzed by Liquid Chromatography-Mass Spectrometry in Medium Collected from Cancer Cell Cultures
Published on: May 9, 2020
06:14Optimized LC-MS/MS Method for the High-throughput Analysis of Clinical Samples of Ivacaftor, Its Major Metabolites, and Lumacaftor in Biological Fluids of Cystic Fibrosis Patients
Published on: October 15, 2017