Role of EGFR-TKIs in Nonmetastatic Epidermal Growth Factor Receptor–Mutated Non–Small Cell Lung Cancer: A Comprehensive Review

Роль ингибиторов тирозинкиназы EGFR при неметастатическом немелкоклеточном раке легкого с мутацией рецептора эпидермального фактора роста: всесторонний обзор
Lukas Delasos, Khaled A. Hassan
2026-02-23

Adjuvant therapyCirculating tumor DNAEGFR-TKIsEGFR-mutated non-small cell lung cancerOsimertinib
The treatment landscape of non–small cell lung cancer (NSCLC) has advanced considerably in the past two decades, driven largely by molecular profiling and the development of targeted therapies. Among oncogenic drivers, mutations in the epidermal growth factor receptor (EGFR) have proven to be particularly significant, with the introduction of tyrosine kinase inhibitors (TKIs) revolutionizing management. While first- and second-generation EGFR TKIs improved disease-free survival (DFS), they failed to confer overall survival (OS) benefit in the adjuvant setting. Osimertinib, a third-generation EGFR TKI with superior potency, CNS penetration, and tolerability, has emerged as the standard of care for nearly all stages of EGFR -mutated NSCLC. The phase III ADAURA trial demonstrated that adjuvant osimertinib significantly prolonged DFS and OS in patients with stage IB-IIIA, resected EGFR exon 19 deletion, or L858R-mutated NSCLC. Similarly, the phase III LAURA trial established osimertinib as consolidation therapy after chemoradiotherapy in unresectable stage III EGFR -mutated NSCLC, yielding a dramatic progression-free survival benefit and reduced CNS relapse rates. As osimertinib use expands, clinicians must remain vigilant regarding toxicity, including rash, diarrhea, cytopenias, and rarer but serious risks such as interstitial lung disease and cardiotoxicity. Optimal treatment duration, the role of adjuvant chemotherapy, and surveillance strategies remain subjects of active investigation. Emerging technologies, such as circulating tumor DNA for minimal residual disease detection and radiomic analyses, may refine patient selection and duration of therapy. Future directions include perioperative use of osimertinib, as explored in the ongoing NeoADAURA trial, and extension of the adjuvant TKI paradigm to other oncogenic drivers such as ALK , ROS1 , and RET . Collectively, these advances herald a new era of precision oncology in NSCLC, where targeted therapies are reshaping curative-intent treatment strategies for oncogene-driven disease.
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First- and second-generation EGFR TKIs improved disease-free survival (DFS) but did not provide overall survival (OS) benefit in the adjuvant setting for nonmetastatic EGFR-mutated NSCLC.
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Key open issues include optimal osimertinib treatment duration, the role of adjuvant chemotherapy, surveillance strategies, and monitoring for toxicities such as interstitial lung disease and cardiotoxicity; circulating tumor DNA and radiomics may improve patient selection.
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Osimertinib, a third-generation EGFR TKI, has superior potency, CNS penetration, and tolerability, and has emerged as the standard of care for nearly all stages of EGFR-mutated nonmetastatic NSCLC.
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The phase III ADAURA trial showed adjuvant osimertinib significantly prolonged DFS and OS in resected stage IB–IIIA NSCLC with EGFR exon 19 deletion or L858R mutations.
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The phase III LAURA trial demonstrated consolidation osimertinib after chemoradiotherapy in unresectable stage III EGFR-mutated NSCLC produced a large progression-free survival benefit and reduced CNS relapse rates.

Use of EGFR tyrosine kinase inhibitors (EGFR-TKIs), particularly osimertinib, in nonmetastatic EGFR-mutated non–small cell lung cancer (stages IB–IIIA and unresectable stage III)

Efficacy, safety, optimal duration and perioperative/adjuvant/consolidation roles of EGFR-TKIs (notably osimertinib) including effects on disease-free survival, overall survival, CNS relapse prevention, toxicity profile, and integration with chemotherapy and surveillance strategies in nonmetastatic EGFR-mutated NSCLC

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2026-02-23
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Lukas Delasos
Khaled A. Hassan
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