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Updated: Nov 15, 2025

Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
Targeting rare and non-canonical driver variants in NSCLC - An uncharted clinical field
Anna-Lena Volckmar1, Petros Christopoulos2, Martina Kirchner1
1Institute of Pathology, University Hospital Heidelberg, Heidelberg, Germany.
Objectives:
Implementation of tyrosine kinase inhibitors (TKI) and other targeted therapies was a main advance in thoracic oncology with survival gains ranging from several months to years for non-small-cell lung cancer (NSCLC) patients. High-throughput comprehensive molecular profiling is of key importance to identify patients that can potentially benefit from these novel treatments.
Material And Methods:
Next-generation sequencing (NGS) was performed on 4500 consecutive formalin-fixed, paraffin-embedded specimens of advanced NSCLC (n = 4172 patients) after automated extraction of DNA and RNA for parallel detection of mutations and gene fusions, respectively.
Results And Conclusion:
Besides the 24.9 % (n = 1040) of cases eligible for approved targeted therapies based on the presence of canonical alterations in EGFR exons 18-21, BRAF, ROS1, ALK, NTRK, and RET, an additional n = 1260 patients (30.2 %) displayed rare or non-canonical mutations in EGFR (n = 748), BRAF (n = 135), ERBB2 (n = 30), KIT (n = 32), PIK3CA (n = 221), and CTNNB1 (n = 94), for which targeted therapies could also be potentially effective. A systematic literature search in conjunction with in silico evaluation identified n = 232 (5.5 %) patients, for which a trial of targeted treatment would be warranted according to available evidence (NCT level 1, i.e. published data showing efficacy in the same tumor entity). In conclusion, a sizeable fraction of NSCLC patients harbors rare or non-canonical alterations that may be associated with clinical benefit from currently available targeted drugs. Systematic identification and individualized management of these cases can expand applicability of precision oncology in NSCLC and extend clinical gain from established molecular targets. These results can also inform clinical trials.
Insights
Molecular profiling identifies non-small-cell lung cancer (NSCLC) patients with rare mutations who may benefit from targeted therapies. This expands precision oncology applications and potential clinical gains for NSCLC patients.
Area of Science:
- Oncology
- Genomics
- Molecular Biology
Background:
- Targeted therapies, including tyrosine kinase inhibitors (TKIs), have significantly improved outcomes for non-small-cell lung cancer (NSCLC) patients.
- High-throughput molecular profiling is crucial for identifying NSCLC patients who can benefit from these targeted treatments.
Purpose of the Study:
- To assess the prevalence of canonical and non-canonical molecular alterations in advanced NSCLC using next-generation sequencing (NGS).
- To identify NSCLC patients with rare or non-canonical mutations who may be candidates for targeted therapies or clinical trials.
Main Methods:
- Conducted parallel DNA and RNA detection of mutations and gene fusions using NGS on 4500 formalin-fixed, paraffin-embedded advanced NSCLC specimens.
- Analyzed 4172 patients for canonical alterations in EGFR, BRAF, ROS1, ALK, NTRK, and RET, and for rare/non-canonical mutations in EGFR, BRAF, ERBB2, KIT, PIK3CA, and CTNNB1.
Main Results:
- 24.9% of cases had approved targeted therapy alterations (EGFR, BRAF, ROS1, ALK, NTRK, RET).
- An additional 30.2% of patients (1260) showed rare or non-canonical mutations in genes including EGFR, BRAF, ERBB2, KIT, PIK3CA, and CTNNB1.
- 5.5% of patients were identified for potential targeted treatment trials based on literature and in silico evaluation.
Conclusions:
- A significant proportion of NSCLC patients harbor rare or non-canonical alterations potentially responsive to existing targeted drugs.
- Systematic identification and individualized management of these cases can broaden precision oncology's reach in NSCLC.
- These findings can inform the design of future clinical trials for NSCLC targeted therapies.
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