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Updated: May 10, 2025

Establishing Dual Resistance to EGFR-TKI and MET-TKI in Lung Adenocarcinoma Cells In Vitro with a 2-step Dose-escalation Procedure
Published on: August 11, 2017
Resistance Mutation Profiles Associated with Current Treatments for Epidermal Growth Factor Receptor-Mutated
Pratyusha Vadagam1, Dexter Waters1, Anil Bhagat2
1Johnson & Johnson, 800 Ridgeview Dr, Horsham, PA 19044, USA.
Abstract:
Treatment resistance due to gene alterations remains a challenge for patients with EGFR-mutated advanced or metastatic non-small-cell lung cancer (a/mNSCLC). A systematic literature review (SLR) was conducted to describe resistance mutation profiles and their impact on clinical outcomes in adults with a/mNSCLC in the United States (US). A comprehensive search of MEDLINE and Embase (2018-August 2022) identified 2986 records. Among 45 included studies, osimertinib was the most commonly reported treatment (osimertinib alone: 15 studies; as one of the treatment options: 18 studies), followed by other tyrosine kinase inhibitors (TKIs; 5 studies) and non-TKIs (1 study). For first-line (1L) and second-line (2L) osimertinib, the most frequent EGFR-dependent resistance mechanisms were T790M loss (1L: 15.4%; 2L: 20.5-49%) and C797X mutation (1L: 2.9-12.5%; 2L: 1.4-22%). EGFR-independent mechanisms included MET amplification (1L: 0.6-66%; 2L: 7.2-19%), TP53 mutation (1L: 29.2-33.3%), and CCNE1 amplification (1L: 7.9%; 2L: 10.3%). For patients receiving osimertinib, EGFR T790M mutation loss, EGFR/MET/HER2 amplification, RET fusion, and PIK3CA mutation were associated with worse progression-free survival. Resistance mechanisms resulting from current NSCLC treatments in the US are complex, underscoring the need to address such heterogeneous resistance profiles and improve outcomes for patients with EGFR-mutated a/mNSCLC.
Insights
Treatment resistance in EGFR-mutated non-small cell lung cancer (NSCLC) is complex. Understanding resistance mutation profiles is crucial for improving outcomes in patients with advanced or metastatic NSCLC.
Area of Science:
- Oncology
- Genetics
- Pharmacology
Background:
- Treatment resistance due to genetic alterations poses a significant challenge for patients with EGFR-mutated advanced or metastatic non-small-cell lung cancer (a/mNSCLC).
- Identifying resistance mechanisms is critical for developing effective therapeutic strategies.
Purpose of the Study:
- To conduct a systematic literature review (SLR) on resistance mutation profiles in adults with a/mNSCLC in the US.
- To describe the impact of these resistance mechanisms on clinical outcomes.
Main Methods:
- A comprehensive search of MEDLINE and Embase databases (2018-August 2022) was performed.
- 45 studies were included, focusing on treatments like osimertinib and other tyrosine kinase inhibitors (TKIs).
- Analysis of EGFR-dependent and independent resistance mechanisms and their association with outcomes.
Main Results:
- Osimertinib was the most frequently reported treatment in the included studies.
- Common resistance mechanisms included T790M loss, C797X mutation, MET amplification, TP53 mutation, and CCNE1 amplification.
- Specific alterations like EGFR T790M mutation loss, EGFR/MET/HER2 amplification, RET fusion, and PIK3CA mutation were linked to worse progression-free survival.
Conclusions:
- Resistance mechanisms in EGFR-mutated a/mNSCLC in the US are diverse and complex.
- Addressing these heterogeneous resistance profiles is essential for improving patient outcomes.
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