Related Experiment Video
Updated: May 27, 2026

A Blood-based Test for the Detection of ROS1 and RET Fusion Transcripts from Circulating Ribonucleic Acid Using Digital Polymerase Chain Reaction
Published on: April 5, 2018
Targeting ROS1 rearrangements in non-small cell lung cancer: Current insights and future directions
Antoine Desilets1, Matteo Repetto1,2, Soo-Ryum Yang3
1Early Drug Development Service, Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
Abstract:
ROS1 rearrangements define a molecular subset of non-small cell lung cancer (NSCLC) by accounting for 1%-2% of cases. Targeted therapy with ROS1 tyrosine kinase inhibitors (TKIs) has significantly improved the outcomes for these patients. First-generation inhibitors, such as crizotinib and entrectinib, have demonstrated impressive efficacy, with objective response rates exceeding 60%-70%. However, the emergence of resistance mechanisms, including solvent-front mutations such as ROS1 G2032R, and limited blood-brain barrier penetration have limited the long-term efficacy of early-generation agents. Next-generation TKIs, including lorlatinib, taletrectinib, and repotrectinib, have been developed to overcome these challenges. These agents show enhanced central nervous system (CNS) penetration and activity against on-target ROS1 resistance mutations. Repotrectinib, a potent, CNS-penetrant ROS1 inhibitor, has demonstrated superior activity in both TKI-naive and -resistant tumors, including those harboring the G2032R mutation. Zidesamtinib, a highly selective next-generation ROS1 inhibitor, further addresses TRK-mediated off-target neurological toxicities seen with prior agents, and is poised to offer improved tolerability. Ongoing research is focused on optimizing sequencing strategies for ROS1 inhibitors and exploring combination approaches to prevent or overcome resistance. In addition, the development of novel diagnostic tools, including RNA-based next-generation sequencing, has enhanced the detection of functional ROS1 fusions by ensuring that patients with actionable mutations receive appropriate targeted therapies. These advances highlight the evolving landscape of treatment for ROS1-positive NSCLC, with the aim of maximizing long-term survival and quality of life.
Insights
Targeted therapies for ROS1-positive non-small cell lung cancer (NSCLC) are advancing. Next-generation inhibitors offer improved efficacy against resistance mutations and better CNS penetration for advanced lung cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- ROS1 rearrangements occur in 1%-2% of non-small cell lung cancer (NSCLC) cases.
- Tyrosine kinase inhibitors (TKIs) targeting ROS1 have improved patient outcomes.
- Resistance mechanisms and limited central nervous system (CNS) penetration hinder early-generation TKI efficacy.
Purpose of the Study:
- To review the development and efficacy of next-generation ROS1 inhibitors.
- To discuss strategies for overcoming resistance and improving CNS penetration in ROS1-positive NSCLC.
- To highlight advancements in diagnostic tools for identifying actionable ROS1 fusions.
Main Methods:
- Review of clinical trial data and scientific literature on ROS1 inhibitors.
- Analysis of resistance mechanisms, including specific mutations like ROS1 G2032R.
- Evaluation of CNS penetration and activity of novel TKIs.
Main Results:
- First-generation TKIs show high response rates but face resistance and CNS penetration issues.
- Next-generation TKIs like lorlatinib, taletrectinib, and repotrectinib demonstrate improved CNS activity and efficacy against resistance mutations.
- Repotrectinib shows promise in TKI-naive and resistant NSCLC, including G2032R mutations.
- Zidesamtinib offers improved tolerability by reducing off-target toxicities.
Conclusions:
- Next-generation ROS1 inhibitors represent a significant advancement in treating ROS1-positive NSCLC.
- Optimizing treatment sequencing and combination therapies are key to managing resistance.
- Enhanced diagnostic methods ensure broader patient access to effective targeted therapies.

