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BRAF in non-small cell lung cancer (NSCLC): Pickaxing another brick in the wall
Alessandro Leonetti1, Francesco Facchinetti1, Giulio Rossi2
1Medical Oncology Unit, University Hospital of Parma, Parma, Italy.
Abstract:
Molecular characterization of non-small cell lung cancer (NSCLC) marked an historical turning point for the treatment of lung tumors harboring kinase alterations suitable for specific targeted drugs inhibition, translating into major clinical improvements. Besides EGFR, ALK and ROS1, BRAF represents a novel therapeutic target for the treatment of advanced NSCLC. BRAF mutations, found in 1.5-3.5% of NSCLC, are responsible of the constitutive activation of mitogen activated protein kinase (MAPK)/extracellular signal-regulated kinase (ERK) pathway. Clinical trials evaluating the efficacy of the BRAF inhibitor dabrafenib in combination with the downstream MEK inhibitor trametinib in metastatic BRAFV600E-mutated NSCLC guaranteed FDA and EMA rapid approval of the combination regimen in this clinical setting. In line with the striking results observed in metastatic melanoma harboring the same molecular alteration, BRAF and MEK inhibition should be considered a new standard of care in this molecular subtype of NSCLC. In the present review, we propose an overview of the available evidence about BRAF in NSCLC mutations (V600E and non-V600E), from biological significance to emerging clinical implications of BRAF mutations detection. Focusing on the current strategies to act against the mutated kinase, we moreover approach additional strategies to overcome treatment resistance.
Insights
Targeted therapy for non-small cell lung cancer (NSCLC) has advanced with BRAF inhibitors. The combination of BRAF and MEK inhibitors is now a standard of care for BRAF-mutated NSCLC, improving patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Molecular characterization of non-small cell lung cancer (NSCLC) has identified actionable kinase alterations.
- BRAF mutations, present in 1.5-3.5% of NSCLC cases, activate the MAPK/ERK pathway.
- BRAF is a novel therapeutic target in advanced NSCLC.
Purpose of the Study:
- To review the biological significance and clinical implications of BRAF mutations in NSCLC.
- To discuss current therapeutic strategies targeting BRAF mutations.
- To explore methods for overcoming treatment resistance.
Main Methods:
- Review of available evidence on BRAF mutations in NSCLC (V600E and non-V600E).
- Analysis of clinical trial data for BRAF and MEK inhibitor combinations.
- Examination of resistance mechanisms and potential overcoming strategies.
Main Results:
- BRAF mutations lead to constitutive MAPK/ERK pathway activation.
- The combination of dabrafenib (BRAF inhibitor) and trametinib (MEK inhibitor) is approved for metastatic BRAFV600E-mutated NSCLC.
- This combination shows significant clinical improvement, similar to its efficacy in melanoma.
Conclusions:
- BRAF and MEK inhibition represents a new standard of care for BRAF-mutated NSCLC.
- Detection of BRAF mutations is crucial for guiding treatment decisions.
- Further research is needed to address treatment resistance.
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