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Updated: Jan 31, 2026

Detection of Targetable Alterations in Non-small Cell Lung Cancer using Next-generation Sequencing
Published on: October 10, 2025
Early Noninvasive Detection of Response to Targeted Therapy in Non-Small Cell Lung Cancer
Jillian Phallen1, Alessandro Leal1, Brian D Woodward2
1The Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Abstract:
With the advent of precision oncology, there is an urgent need to develop improved methods for rapidly detecting responses to targeted therapies. Here, we have developed an ultrasensitive measure of cell-free tumor load using targeted and whole-genome sequencing approaches to assess responses to tyrosine kinase inhibitors in patients with advanced lung cancer. Analyses of 28 patients treated with anti-EGFR or HER2 therapies revealed a bimodal distribution of cell-free circulating tumor DNA (ctDNA) after therapy initiation, with molecular responders having nearly complete elimination of ctDNA (>98%). Molecular nonresponders displayed limited changes in ctDNA levels posttreatment and experienced significantly shorter progression-free survival (median 1.6 vs. 13.7 months, P < 0.0001; HR = 66.6; 95% confidence interval, 13.0-341.7), which was detected on average 4 weeks earlier than CT imaging. ctDNA analyses of patients with radiographic stable or nonmeasurable disease improved prediction of clinical outcome compared with CT imaging. These analyses provide a rapid approach for evaluating therapeutic response to targeted therapies and have important implications for the management of patients with cancer and the development of new therapeutics.Significance: Cell-free tumor load provides a novel approach for evaluating longitudinal changes in ctDNA during systemic treatment with tyrosine kinase inhibitors and serves an unmet clinical need for real-time, noninvasive detection of tumor response to targeted therapies before radiographic assessment.See related commentary by Zou and Meyerson, p. 1038.
Insights
An ultrasensitive cell-free tumor DNA test rapidly detects lung cancer patient responses to targeted therapies. This blood test identifies treatment effectiveness earlier than CT scans, improving patient management.
Area of Science:
- Oncology
- Molecular Diagnostics
Background:
- Precision oncology requires rapid methods to assess patient response to targeted therapies.
- Current methods like CT imaging have limitations in early response detection.
Purpose of the Study:
- To develop and validate an ultrasensitive measure of cell-free tumor DNA (ctDNA) for assessing treatment response in advanced lung cancer patients.
- To compare the efficacy of ctDNA analysis with CT imaging in predicting clinical outcomes.
Main Methods:
- Targeted and whole-genome sequencing were used to quantify cell-free tumor DNA.
- Analyzed ctDNA levels in 28 patients with advanced lung cancer receiving anti-EGFR or HER2 therapies.
- Correlated ctDNA changes with progression-free survival and CT imaging results.
Main Results:
- A bimodal distribution of ctDNA was observed post-therapy, with responders showing >98% ctDNA elimination.
- Molecular non-responders had limited ctDNA changes and significantly shorter progression-free survival (1.6 vs. 13.7 months).
- ctDNA analysis predicted outcomes earlier than CT imaging (average 4 weeks) and improved prediction in patients with stable or nonmeasurable disease.
Conclusions:
- Ultrasensitive ctDNA measurement offers a rapid, noninvasive method for evaluating therapeutic response to tyrosine kinase inhibitors.
- This approach addresses an unmet clinical need for real-time monitoring of treatment effectiveness.
- ctDNA analysis has significant implications for patient management and the development of novel cancer therapeutics.
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