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Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
The evolving landscape of biomarker testing for non-small cell lung cancer in Europe
Keith M Kerr1, Frédéric Bibeau2, Erik Thunnissen3
1Department of Pathology, Aberdeen University Medical School and Aberdeen Royal Infirmary, Aberdeen, United Kingdom.
Abstract:
The discovery of oncogenic driver mutations rendering non-small cell lung cancer (NSCLC) targetable by small-molecule inhibitors, and the development of immunotherapies, have revolutionised NSCLC treatment. Today, instead of non-selective chemotherapies, all patients with advanced NSCLC eligible for treatment (and increasing numbers with earlier, less extensive disease) require fast and comprehensive screening of biomarkers for first-line patient selection for targeted therapy, chemotherapy, or immunotherapy (with or without chemotherapy). To avoid unnecessary re-biopsies, biomarker screening before first-line treatment should also include markers that are actionable from second-line onwards; PD-L1 expression testing is also mandatory before initiating treatment. Population differences exist in the frequency of oncogenic driver mutations: EGFR mutations are more frequent in Asia than Europe, whereas the converse is true for KRAS mutations. In addition to approved first-line therapies, a number of emerging therapies are being investigated in clinical trials. Guidelines for biomarker testing vary by country, with the number of actionable targets and the requirement for extensive molecular screening strategies expected to increase. To meet diagnostic demands, rapid screening technologies for single-driver mutations have been implemented. Improvements in DNA- and RNA-based next-generation sequencing technologies enable analysis of a group of genes in one assay; however, turnaround times remain relatively long. Consequently, rapid screening technologies are being implemented alongside next-generation sequencing. Further challenges in the evolving landscape of biomarker testing in NSCLC are actionable primary and secondary resistance mechanisms to targeted therapies. Therefore, comprehensive testing on re-biopsies, collected at the time of disease progression, in combination with testing of circulating tumour DNA may provide important information to guide second- or third-line therapies. Furthermore, longitudinal biomarker testing can provide insights into tumour evolution and heterogeneity during the course of the disease. We summarise best practice strategies for Europe in the changing landscape of biomarker testing at diagnosis and during treatment.
Insights
Comprehensive biomarker screening is crucial for selecting non-small cell lung cancer (NSCLC) treatments. Testing should include actionable markers for future therapies and PD-L1 expression for optimal patient selection.
Area of Science:
- Oncology
- Molecular Diagnostics
- Personalized Medicine
Background:
- Non-small cell lung cancer (NSCLC) treatment has been transformed by targeted therapies and immunotherapies.
- Biomarker screening is now essential for first-line treatment selection in advanced NSCLC.
- Population-specific mutation frequencies (e.g., EGFR in Asia, KRAS in Europe) impact testing strategies.
Purpose of the Study:
- To summarize best practice strategies for biomarker testing in NSCLC in Europe.
- To address the evolving landscape of biomarker testing at diagnosis and during treatment.
- To highlight the importance of comprehensive and rapid screening for personalized NSCLC therapy.
Main Methods:
- Review of current guidelines and emerging technologies for biomarker testing in NSCLC.
- Discussion of next-generation sequencing (NGS) and rapid screening technologies.
- Emphasis on testing for actionable resistance mechanisms and longitudinal monitoring.
Main Results:
- Biomarker screening is mandatory for first-line NSCLC treatment selection.
- PD-L1 expression testing is required before initiating immunotherapy.
- Combined approaches using rapid screening and NGS are being implemented to improve turnaround times.
- Re-biopsies and circulating tumor DNA (ctDNA) analysis are important for guiding later-line therapies.
Conclusions:
- Biomarker testing strategies for NSCLC are becoming more comprehensive and complex.
- Rapid and accurate biomarker identification is critical for effective personalized treatment.
- Longitudinal testing provides insights into tumor evolution and resistance mechanisms, guiding subsequent treatment decisions.
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