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Updated: Apr 17, 2026

Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
Molecular profiling and targeted therapy for advanced thoracic malignancies: a biomarker-derived, multiarm,
Ariel Lopez-Chavez1, Anish Thomas1, Arun Rajan1
1Ariel Lopez-Chavez, Anish Thomas, Arun Rajan, Mark Raffeld, Betsy Morrow, Ronan Kelly, Corey Allan Carter, Udayan Guha, Keith Killian, Christopher C. Lau, Zied Abdullaev, Liqiang Xi, Svetlana Pack, Paul S. Meltzer, David J. Liewehr, Seth M. Steinberg, Arlene Berman, Eva Szabo, Yisong Wang, and Giuseppe Giaccone, National Cancer Institute; Austin Doyle, Cancer Therapy Evaluation Program, Bethesda, MD; Ariel Lopez-Chavez, Christopher L. Corless, Alan Sandler, Carol Beadling, and Andrea Warrick, Knight Cancer Institute, Oregon Health and Science University, Portland, OR; Ariel Lopez-Chavez, Sylvester Comprehensive Cancer Center, University of Miami, Miami, FL; and Yisong Wang and Giuseppe Giaccone, Lombardi Comprehensive Cancer Center, Georgetown University, Washington, DC.
Purpose:
We conducted a basket clinical trial to assess the feasibility of such a design strategy and to independently evaluate the effects of multiple targeted agents against specific molecular aberrations in multiple histologic subtypes concurrently.
Patients And Methods:
We enrolled patients with advanced non-small-cell lung cancer (NSCLC), small-cell lung cancer, and thymic malignancies who underwent genomic characterization of oncogenic drivers. Patients were enrolled onto a not-otherwise-specified arm and treated with standard-of-care therapies or one of the following five biomarker-matched treatment groups: erlotinib for EGFR mutations; selumetinib for KRAS, NRAS, HRAS, or BRAF mutations; MK2206 for PIK3CA, AKT, or PTEN mutations; lapatinib for ERBB2 mutations or amplifications; and sunitinib for KIT or PDGFRA mutations or amplification.
Results:
Six hundred forty-seven patients were enrolled, and 88% had their tumors tested for at least one gene. EGFR mutation frequency was 22.1% in NSCLC, and erlotinib achieved a response rate of 60% (95% CI, 32.3% to 83.7%). KRAS mutation frequency was 24.9% in NSCLC, and selumetinib failed to achieve its primary end point, with a response rate of 11% (95% CI, 0% to 48%). Completion of accrual to all other arms was not feasible. In NSCLC, patients with EGFR mutations had the longest median survival (3.51 years; 95% CI, 2.89 to 5.5 years), followed by those with ALK rearrangements (2.94 years; 95% CI, 1.66 to 4.61 years), those with KRAS mutations (2.3 years; 95% CI, 2.3 to 2.17 years), those with other genetic abnormalities (2.17 years; 95% CI, 1.3 to 2.74 years), and those without an actionable mutation (1.85 years; 95% CI, 1.61 to 2.13 years).
Conclusion:
This basket trial design was not feasible for many of the arms with rare mutations, but it allowed the study of the genetics of less common malignancies.
Insights
This basket trial showed that while not feasible for rare mutations, it enabled studying the genetics of uncommon thoracic malignancies. Targeted therapies, like erlotinib for EGFR mutations in NSCLC, demonstrated significant response rates.
Area of Science:
- Oncology
- Genomics
- Clinical Trial Design
Background:
- Advanced thoracic malignancies often harbor specific molecular aberrations.
- Evaluating multiple targeted agents across diverse histologic subtypes presents a challenge.
Purpose of the Study:
- To assess the feasibility of a basket clinical trial design.
- To evaluate targeted therapies against molecular aberrations in non-small-cell lung cancer (NSCLC), small-cell lung cancer, and thymic malignancies.
Main Methods:
- A basket trial enrolled patients with advanced NSCLC, small-cell lung cancer, and thymic malignancies.
- Genomic characterization identified oncogenic drivers for biomarker-matched therapies (e.g., erlotinib for EGFR, selumetinib for KRAS).
Main Results:
- Of 647 enrolled patients, 88% had tumors tested. EGFR mutations occurred in 22.1% of NSCLC patients, with erlotinib achieving a 60% response rate.
- Selumetinib for KRAS mutations showed a 11% response rate, failing its primary endpoint. Accrual for other arms was not feasible.
- Median survival in NSCLC varied by mutation: EGFR (3.51 years), ALK (2.94 years), KRAS (2.3 years).
Conclusions:
- The basket trial design proved infeasible for rare mutations but facilitated the study of less common thoracic malignancies.
- Targeted therapy demonstrated efficacy for specific driver mutations, notably erlotinib in EGFR-mutated NSCLC.
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