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Molecular Pathology of Advanced NSCLC: Biomarkers and Therapeutic Decisions
Melanie Winter1,2, Jan Jeroch2, Maximilian Wetz1
1Dr. Senckenberg Institutes of Pathology and Human Genetics, University Hospital Frankfurt, Goethe University Frankfurt, Theodor-Stern-Kai 7, 60596 Frankfurt am Main, Germany.
Abstract:
Background: Advances in molecular pathology have transformed NSCLC (Non-Small Cell Lung Cancer) diagnosis, prognosis, and treatment by enabling precise tumor characterization and targeted therapeutic strategies. We review key genomic alterations in NSCLC, including EGFR (epidermal growth factor receptor) mutations, ALK (anaplastic lymphoma kinase) and ROS1 (ROS proto-oncogene 1) rearrangements, BRAF (B-Raf proto-oncogene serine/threonine kinase) mutations, MET (mesenchymal-epithelial transition factor) alterations, KRAS (Kirsten rat sarcoma) mutations, HER2 (human epidermal growth factor receptor 2) alterations and emerging NTRK (neurotrophic receptor tyrosine kinase) fusions and AXL-related pathways. Methods: A total of 48 patients with NSCLC was analyzed, including 22 women and 26 men (mean age 70 years, range 44-86). Tumor specimens were classified histologically as adenocarcinomas (n = 81%) or squamous cell carcinomas (n = 19%). Smoking history, PD-L1 (programmed death-ligand 1) expression, and genetic alterations were assessed. NGS (Next-generation sequencing) identified genomic variants, which were classified according to ACMG (American College of Medical Genetics and Genomics) guidelines. Results: The cohort consisted of 29 former smokers, 13 current smokers, and 5 non-smokers (12%), with a mean smoking burden of 33 pack years. PD-L1 TPS (tumor proportion score) was ≥50% in 10 patients, ≥1-<50% in 22, and <1% in 15 patients. In total, 120 genomic variants were detected (allele frequency ≥ 5%). Of these, 52 (43%) were classified as likely pathogenic or pathogenic, 48 (40%) as variants of unknown significance, and 20 (17%) as benign or likely benign. The most frequently altered genes were TP53 (tumor protein p53) (31%), KRAS and EGFR (15% each), and STK11 (serine/threonine kinase 11) (12%). Adenocarcinomas accounted for 89% of all alterations, with TP53 (21%) and KRAS (15%) being most common, while squamous cell carcinomas predominantly harbored TP53 (38%) and MET (15%) mutations. In patients with PD-L1 TPS ≥ 50%, KRAS mutations were enriched (50%), particularly KRAS G12C and G12D, with frequent co-occurrence of TP53 mutations (20%). No pathogenic EGFR mutations were detected in this subgroup. Conclusions: Comprehensive genomic profiling in NSCLC revealed a high prevalence of clinically relevant mutations, with TP53, KRAS and EGFR as the dominant drivers. The strong association of KRAS mutations with high PD-L1 expression, irrespective of smoking history, highlights the interplay between genetic and immunological pathways in NSCLC. These findings support the routine implementation of broad molecular testing to guide precision oncology approaches in both adenocarcinoma and squamous cell carcinoma patients.
Insights
Comprehensive genomic profiling in Non-Small Cell Lung Cancer (NSCLC) reveals TP53, KRAS, and EGFR as dominant drivers. KRAS mutations strongly associate with high PD-L1 expression, guiding precision oncology.
Area of Science:
- Oncology
- Genomics
- Molecular Pathology
Background:
- Molecular pathology advances have transformed Non-Small Cell Lung Cancer (NSCLC) diagnosis and treatment.
- Key genomic alterations in NSCLC include EGFR, ALK, ROS1, BRAF, MET, KRAS, HER2, NTRK fusions, and AXL pathways.
Purpose of the Study:
- To review key genomic alterations in NSCLC.
- To analyze the prevalence and clinical relevance of these alterations in a patient cohort.
Main Methods:
- Analysis of 48 NSCLC patients (adenocarcinomas and squamous cell carcinomas).
- Assessment of smoking history, PD-L1 expression, and genetic alterations using Next-Generation Sequencing (NGS).
- Classification of genomic variants according to ACMG guidelines.
Main Results:
- TP53 (31%), KRAS (15%), and EGFR (15%) were the most frequent mutations.
- KRAS mutations were enriched (50%) in patients with PD-L1 TPS ≥50%, often co-occurring with TP53 mutations.
- Adenocarcinomas showed TP53 and KRAS as most common; squamous cell carcinomas harbored TP53 and MET mutations.
Conclusions:
- Comprehensive genomic profiling identifies clinically relevant mutations in NSCLC, with TP53, KRAS, and EGFR as primary drivers.
- A strong association exists between KRAS mutations and high PD-L1 expression, irrespective of smoking history.
- Routine broad molecular testing is supported to guide precision oncology for both adenocarcinoma and squamous cell carcinoma patients.
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