Emerging treatment for advanced lung cancer with EGFR mutation
Cengiz Inal1, Emrullah Yilmaz1, Bilal Piperdi2
1a 1 Montefiore Medical Center/Albert Einstein College of Medicine, Division of Thoracic Oncology, Department of Medical Oncology , 111 E 210th Street Bronx, NY 10467, USA.
Introduction:
Lung cancer is the leading cause of cancer-related death worldwide. It is usually diagnosed at advanced stage for which platinum-based chemotherapy had been the standard approach, although with limited clinical benefits. Discovery of oncogenic EGFR mutations in lung cancer have shifted the treatment paradigm with molecularly targeted therapies.
Areas Covered:
EGFR tyrosine kinase inhibitors (TKIs) have become the first-line choice in patients with advanced NSCLC harboring EGFR activating mutations. However, resistance to targeted therapy develops inevitably during the course of treatment. Multiple mechanisms of acquired resistance have been discovered, most commonly the secondary mutation of T790M in exon 20. The second- and third-generation EGFR TKIs are holding promise to overcome T790M-associated acquired resistance and currently being tested in clinical trials. In this article, we focus on the emerging approaches to overcome the different mechanisms of resistance to targeted therapies in patients with EGFR-mutant advanced NSCLC.
Expert Opinion:
It is essential to uncover the complex mechanisms underlying the progression of lung cancer after upfront EGFR TKIs. Next generation, in particular, the third generations of EGFR TKIs have been developed against acquired T790M mutation with promising clinical activity and better toxicity profile. Combination of targeted therapies has also been explored. Further studies are needed to detect the real-time changes of the resistance mechanisms and to develop new therapeutic strategies for lung cancer patients with EGFR mutations.
Insights
Newer generations of EGFR tyrosine kinase inhibitors (TKIs) show promise in overcoming resistance mechanisms, such as the T790M mutation, in advanced non-small cell lung cancer (NSCLC) patients. Further research is needed to understand resistance and develop novel therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Lung cancer is a leading cause of cancer death globally, often diagnosed at advanced stages.
- Platinum-based chemotherapy has been standard but offers limited benefits for advanced lung cancer.
- Oncogenic EGFR mutations have revolutionized treatment with targeted therapies.
Purpose of the Study:
- To review emerging strategies for overcoming resistance to targeted therapies in EGFR-mutant advanced non-small cell lung cancer (NSCLC).
- To discuss mechanisms of acquired resistance to EGFR tyrosine kinase inhibitors (TKIs).
Main Methods:
- Focus on emerging approaches to combat resistance mechanisms in EGFR-mutant advanced NSCLC.
- Review of acquired resistance mechanisms, including the T790M mutation.
Main Results:
- EGFR TKIs are first-line for EGFR-mutant advanced NSCLC, but resistance is inevitable.
- The T790M mutation is a common mechanism of acquired resistance.
- Second- and third-generation EGFR TKIs show promise against T790M-associated resistance.
Conclusions:
- Understanding resistance mechanisms to EGFR TKIs in lung cancer is crucial.
- Third-generation EGFR TKIs demonstrate promising clinical activity and improved toxicity profiles.
- Combination therapies and real-time monitoring of resistance are areas for future research.
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