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Updated: Feb 16, 2026

Detection of Targetable Alterations in Non-small Cell Lung Cancer using Next-generation Sequencing
Published on: October 10, 2025
Detection of EGFR, KRAS and BRAF mutations in metastatic cells from cerebrospinal fluid
Diane Frankel1,2, Isabelle Nanni-Metellus3, Andrée Robaglia-Schlupp1,2
1APHM, Hôpital la Timone, Service de Biologie Cellulaire, Marseille, France.
Background:
In lung adenocarcinoma, molecular profiling of actionable genes has become essential to set up targeted therapies. However, the feasibility and the relevance of molecular profiling from the cerebrospinal fluid (CSF) in the context of meningeal metastasis have been poorly assessed.
Methods:
We selected patients with stage IV lung adenocarcinoma harbouring metastatic cells in the CSF after cytological analysis. Seven samples from six patients were eligible for molecular testing of epidermal growth factor receptor (EGFR), V-Ki-ras2 Kirsten rat sarcoma viral oncogene homologue (KRAS), v-Raf murine sarcoma viral oncogene homologue B1 (BRAF) and human epidermal growth factor receptor 2 (HER2) mutations using quantitative polymerase chain reaction (PCR) high-resolution melting curve analysis and Sanger sequencing after DNA extraction from the cell pellets of the CSF.
Results:
Five patients showed mutations in one or two actionable genes, two harboured an EGFR mutation (exons 19 and 21), one only a KRAS mutation, one both EGFR and KRAS mutations and one a BRAF mutation. In all cases, the results of mutation testing provided new major information for patient management, leading to therapeutic adaptation. CSF molecular analysis identified mutations not detected in other neoplastic sites for two patients. In one case, the EGFR p.Thr790Met was identified. CSF was also the only sample available for genetic testing for almost all patients at the time of disease progression.
Conclusions:
When cancer cells are present in the CSF, the molecular profiling from the cell pellets is relevant, as it can detect supplemental or different mutations compared to a previous analysis of the primitive tumour or plasma cell-free DNA and allows the adaptation of the treatment strategy.
Insights
Molecular profiling of cerebrospinal fluid (CSF) in lung adenocarcinoma with leptomeningeal metastasis is feasible. CSF analysis detects actionable gene mutations, guiding targeted therapy and treatment adaptation when other samples are unavailable.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Molecular profiling of actionable genes is crucial for targeted therapies in lung adenocarcinoma.
- The utility of cerebrospinal fluid (CSF) molecular profiling for meningeal metastasis remains understudied.
Purpose of the Study:
- To assess the feasibility and relevance of molecular profiling from CSF in lung adenocarcinoma patients with leptomeningeal metastasis.
Main Methods:
- Selected patients with stage IV lung adenocarcinoma and CSF metastatic cells.
- Performed molecular testing for EGFR, KRAS, BRAF, and HER2 mutations on CSF DNA using qPCR and Sanger sequencing.
Main Results:
- Identified mutations in actionable genes in five patients, including EGFR, KRAS, and BRAF.
- CSF analysis revealed mutations not detected in other sites for two patients, aiding treatment adaptation.
- CSF was the sole available sample for genetic testing at disease progression for most patients.
Conclusions:
- Molecular profiling of CSF cell pellets is relevant when cancer cells are present.
- CSF analysis can detect supplemental or different mutations compared to primary tumors or plasma DNA.
- CSF profiling enables personalized treatment strategy adaptation for lung adenocarcinoma with leptomeningeal metastasis.
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