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Updated: Feb 24, 2026

Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
Precision medicine approaches to lung adenocarcinoma with concomitant MET and HER2 amplification
Doo-Yi Oh1,2, Kyungsoo Jung2, Ji-Young Song1,2
1Department of Pathology and Translational Genomics, Samsung Medical Center, Sungkyunkwan University School of Medicine, 81 Irwon-ro, Gangnam-gu, Seoul, 06351, South Korea.
Background:
Patient-derived xenograft (PDX) models are important tools in precision medicine and for the development of targeted therapies to treat cancer patients. This study aimed to evaluate our precision medicine strategy that integrates genomic profiling and preclinical drug-screening platforms, in order to personalize cancer treatments using PDX models.
Methods:
We performed array-comparative genomic hybridization, microarray, and targeted next-generation sequencing analyses, in order to determine the oncogenic driver mutations. PDX cells were obtained from PDXs and subsequently screened in vitro with 17 targeted agents.
Results:
PDX tumors recapitulated the histopathologic and genetic features of the patient tumors. Among the samples from lung cancer patients that were molecularly-profiled, copy number analysis identified unique focal MET amplification in one sample, 033 T, without RTK/RAS/RAF oncogene mutations. Although HER2 amplification in 033 T was not detected in the cancer panel, the selection of HER2-amplified clones was found in PDXs and PDX cells. Additionally, MET and HER2 overexpression were found in patient tumors, PDXs, and PDX cells. Crizotinib or EGFR tyrosine kinase inhibitor treatments significantly inhibited cell growth and impaired tumor sphere formation in 033 T PDX cells.
Conclusions:
We established PDX cell models using surgical samples from lung cancer patients, and investigated their preclinical and clinical implications for personalized targeted therapy. Additionally, we suggest that MET and EGFR inhibitor-based therapy can be used to treat MET and HER2-overexpressing lung cancers, without receptor tyrosine kinase /RAS/RAF pathway alterations.
Insights
Patient-derived xenograft (PDX) models enable personalized cancer treatment. This study used PDX models to identify targeted therapies for lung cancer patients with MET and HER2 overexpression, demonstrating effective treatment strategies.
Area of Science:
- Oncology
- Precision Medicine
- Genomics
Background:
- Patient-derived xenograft (PDX) models are crucial for precision medicine and targeted cancer therapy development.
- This study evaluated a precision medicine strategy integrating genomic profiling and drug screening using PDX models.
Purpose of the Study:
- To assess a precision medicine strategy for personalizing cancer treatment via PDX models.
- To identify effective targeted therapies for lung cancer based on genomic profiling.
Main Methods:
- Genomic analyses including array-comparative genomic hybridization, microarray, and next-generation sequencing were performed.
- PDX cells were established and screened in vitro with 17 targeted agents.
Main Results:
- PDX models accurately reflected patient tumor histopathology and genetics.
- Focal MET amplification was identified in a lung cancer sample (033 T) lacking RTK/RAS/RAF mutations.
- MET and HER2 overexpression were observed in patient tumors and PDX models; targeted inhibitors (crizotinib, EGFR TKI) showed efficacy in 033 T PDX cells.
Conclusions:
- PDX cell models were successfully established from lung cancer patient samples for personalized targeted therapy investigation.
- MET and EGFR inhibitor-based therapy is a potential treatment for lung cancers with MET/HER2 overexpression and no RTK/RAS/RAF alterations.
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