Distinct Afatinib Resistance Mechanisms Identified in Lung Adenocarcinoma Harboring an EGFR Mutation
Toshimitsu Yamaoka1, Tohru Ohmori2, Motoi Ohba2
1Institute of Molecular Oncology, Showa University, Tokyo, Japan. yamaoka.t@med.showa-u.ac.jp.
Abstract:
EGFR tyrosine kinase inhibitors (TKI) are associated with significant responses in non-small cell lung cancer (NSCLC) patients harboring EGFR-activating mutations. However, acquired resistance to reversible EGFR-TKIs remains a major obstacle. In particular, although the second-generation irreversible EGFR-TKI afatinib is currently used for treating NSCLC patients, the mechanisms underlying acquired afatinib resistance remain poorly understood. Here, heterogeneous mechanisms of acquired resistance were identified following long-term exposure to increasing doses of afatinib in EGFR-mutant lung adenocarcinoma PC-9 cells. Notably, three resistant cell lines, PC-9AFR1, PC-9AFR2, and PC-9AFR3 (AFR1, AFR2, and AFR3, respectively) employed distinct mechanisms for avoiding EGFR inhibition, with increased EGFR expression being detected in all resistant cell lines. Moreover, an activating EGFR mutation was partially lost in AFR1 and AFR2 cells. AFR1 cells exhibited afatinib resistance as a result of wild-type KRAS amplification and overexpression; however, these cells showed a progressive decrease and eventual loss of the acquired KRAS dependence, as well as resensitization to afatinib, following a drug holiday. Meanwhile, AFR2 cells exhibited increased expression of insulin-like growth factor-binding protein 3 (IGFBP3), which promoted insulin-like growth factor 1 receptor (IGF1R) activity and subsequent AKT phosphorylation, thereby indicating a potential bypass signaling pathway associated with IGFR1. Finally, AFR3 cells harbored the secondary EGFR mutation T790M. Our findings constitute the first report showing acquired wild-type KRAS overexpression and attenuation of afatinib resistance following a drug holiday.Implications: The heterogeneous mechanisms of afatinib resistance should facilitate the development of more effective therapeutic strategies for NSCLC patients. Mol Cancer Res; 15(7); 915-28. ©2017 AACR.
Insights
Acquired resistance to afatinib in lung cancer involves diverse mechanisms, including increased EGFR expression and bypass signaling pathways. Some resistance, like KRAS amplification, can be reversed with a drug holiday.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Epidermal growth factor receptor (EGFR) tyrosine kinase inhibitors (TKIs) show efficacy in non-small cell lung cancer (NSCLC) with EGFR-activating mutations.
- Acquired resistance to EGFR-TKIs, including afatinib, is a significant clinical challenge.
- Mechanisms of acquired resistance to afatinib in NSCLC are not fully understood.
Purpose of the Study:
- To investigate the heterogeneous mechanisms of acquired resistance to afatinib in EGFR-mutant NSCLC cells.
- To identify distinct resistance pathways and their potential reversibility.
Main Methods:
- Long-term exposure of EGFR-mutant lung adenocarcinoma PC-9 cells to increasing doses of afatinib.
- Characterization of resistant cell lines (PC-9AFR1, PC-9AFR2, PC-9AFR3) using molecular analyses.
- Assessment of resistance attenuation following a drug holiday.
Main Results:
- All resistant cell lines showed increased EGFR expression.
- PC-9AFR1 cells acquired resistance via wild-type KRAS amplification, which was reversible with a drug holiday.
- PC-9AFR2 cells developed resistance through IGFBP3/IGF1R/AKT pathway activation.
- PC-9AFR3 cells acquired the T790M secondary EGFR mutation.
Conclusions:
- Heterogeneous mechanisms contribute to acquired afatinib resistance in NSCLC.
- Wild-type KRAS amplification confers resistance but may be overcome by drug holidays.
- Understanding these diverse resistance mechanisms is crucial for developing improved therapeutic strategies.
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