Serial Cell-Free DNA Sequencing in ROS1 Fusion-Positive Lung Cancers During Treatment With Entrectinib
Noura J Choudhury1,2, Hyung Jun Woo3, Monica Chen1
1Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, NY.
Purpose:
Patients with metastatic ROS1 fusion-positive non-small cell lung cancer (NSCLC) are effectively treated with entrectinib, a multikinase inhibitor. Whether serial targeted gene panel sequencing of cell-free DNA (cfDNA) can identify response and progression along with mechanisms of acquired resistance to entrectinib is underexplored.
Methods:
In patients with ROS1 fusion-positive NSCLC, coclinical trial plasma samples were collected before treatment, after two cycles, and after progression on entrectinib (global phase II clinical trial, ClinicalTrials.gov identifier: NCT02568267). Samples underwent cfDNA analysis using MSK-ACCESS. Variant allele frequencies of detectable alterations were correlated with objective response per RECIST v1.1 criteria.
Results:
Twelve patients were included, with best response as partial response (n = 9, 75%), stable disease (n = 2, 17%), and progressive disease (PD; n = 1, 8%). A ROS1 fusion was variably detected in cfDNA; however, patients without a ROS1 fusion in cfDNA had no other somatic alterations detected, indicative of possible low cfDNA shedding. Clearance of the enrolling ROS1 fusion or concurrent non-ROS1 alterations (TP53, CDH1, NF1, or ARID1A mutations) was observed in response to entrectinib therapy. Radiologic PD was accompanied by redemonstration of a ROS1 fusion or non-ROS1 alterations. On-target resistance was rare; only one patient acquired ROS1 G2032R at the time of progression. Several patients acquired new off-target likely oncogenic alterations, including a truncating alteration in NF1.
Conclusion:
Serial cfDNA monitoring may complement radiographic assessments as determinants of response and resistance to entrectinib in ROS1 fusion-positive lung cancers in addition to detecting putative resistance mechanisms on progression.
Insights
Serial cell-free DNA (cfDNA) monitoring can track treatment response and resistance in ROS1 fusion-positive non-small cell lung cancer (NSCLC) patients receiving entrectinib. This approach helps identify resistance mechanisms and complements radiographic assessments.
Area of Science:
- Oncology
- Molecular Diagnostics
- Genomics
Background:
- Metastatic ROS1 fusion-positive non-small cell lung cancer (NSCLC) shows efficacy with entrectinib.
- Serial targeted gene panel sequencing of cell-free DNA (cfDNA) for monitoring treatment response and resistance is underexplored.
Purpose of the Study:
- To evaluate the utility of serial cfDNA sequencing in identifying treatment response and progression.
- To detect mechanisms of acquired resistance to entrectinib in ROS1-positive NSCLC.
Main Methods:
- Plasma samples from a clinical trial of entrectinib in ROS1-positive NSCLC patients were analyzed.
- cfDNA was analyzed using MSK-ACCESS, correlating variant allele frequencies with objective response.
- Samples were collected pre-treatment, after two cycles, and at progression.
Main Results:
- Nine of twelve patients achieved partial response; two had stable disease; one had progressive disease.
- Clearance of ROS1 fusions or concurrent alterations was observed during entrectinib treatment.
- Acquired resistance mechanisms included rare on-target ROS1 G2032R mutations and new off-target alterations like NF1 mutations.
Conclusions:
- Serial cfDNA monitoring can complement radiographic assessments for response and resistance.
- cfDNA analysis aids in detecting resistance mechanisms upon progression in ROS1-positive NSCLC.
- This method provides insights into treatment dynamics and acquired resistance pathways.
More Related Videos
09:49Oncogenic Gene Fusion Detection Using Anchored Multiplex Polymerase Chain Reaction Followed by Next Generation Sequencing
Published on: July 5, 2019
07:59Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
