Advances and future directions in ROS1 fusion-positive lung cancer
Mary C Boulanger1, Jaime L Schneider1, Jessica J Lin1
1Department of Medicine and Cancer Center, Massachusetts General Hospital, Boston, MA 02114, United States.
Abstract:
ROS1 gene fusions are an established oncogenic driver comprising 1%-2% of non-small cell lung cancer (NSCLC). Successful targeting of ROS1 fusion oncoprotein with oral small-molecule tyrosine kinase inhibitors (TKIs) has revolutionized the treatment landscape of metastatic ROS1 fusion-positive (ROS1+) NSCLC and transformed outcomes for patients. The preferred Food and Drug Administration-approved first-line therapies include crizotinib, entrectinib, and repotrectinib, and currently, selection amongst these options requires consideration of the systemic and CNS efficacy, tolerability, and access to therapy. Of note, resistance to ROS1 TKIs invariably develops, limiting the clinical benefit of these agents and leading to disease relapse. Progress in understanding the molecular mechanisms of resistance has enabled the development of numerous next-generation ROS1 TKIs, which achieve broader coverage of ROS1 resistance mutations and superior CNS penetration than first-generation TKIs, as well as other therapeutic strategies to address TKI resistance. The approach to subsequent therapy depends on the pace and pattern of progressive disease on the initial ROS1 TKI and, if known, the mechanisms of TKI resistance. Herein, we describe a practical approach for the selection of initial and subsequent therapies for metastatic ROS1+ NSCLC based on these clinical considerations. Additionally, we explore the evolving evidence for the optimal treatment of earlier-stage, non-metastatic ROS1+ NSCLC, while, in parallel, highlighting future research directions with the goal of continuing to build on the tremendous progress in the management of ROS1+ NSCLC and ultimately improving the longevity and well-being of people living with this disease.
Insights
ROS1 gene fusions drive 1-2% of non-small cell lung cancer (NSCLC). Targeted therapies have improved outcomes, but resistance necessitates next-generation treatments for ROS1+ NSCLC patients.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- ROS1 gene fusions are key drivers in 1-2% of non-small cell lung cancer (NSCLC).
- Tyrosine kinase inhibitors (TKIs) have transformed metastatic ROS1-positive (ROS1+) NSCLC treatment.
- Resistance to current TKIs is a significant clinical challenge, leading to disease relapse.
Purpose of the Study:
- To provide a practical approach for selecting initial and subsequent therapies for metastatic ROS1+ NSCLC.
- To discuss the evolving treatment landscape for earlier-stage, non-metastatic ROS1+ NSCLC.
- To highlight future research directions in managing ROS1+ NSCLC.
Main Methods:
- Review of current Food and Drug Administration-approved first-line therapies (crizotinib, entrectinib, repotrectinib).
- Analysis of molecular mechanisms of TKI resistance.
- Consideration of systemic and central nervous system (CNS) efficacy, tolerability, and access.
- Evaluation of next-generation TKIs and alternative therapeutic strategies.
Main Results:
- First-line TKI selection depends on efficacy, tolerability, and CNS penetration.
- Resistance mechanisms guide the choice of subsequent therapies.
- Next-generation TKIs offer broader coverage for resistance mutations and improved CNS penetration.
Conclusions:
- A practical, evidence-based approach is crucial for optimizing ROS1+ NSCLC treatment.
- Addressing TKI resistance with novel agents and strategies is essential for improving patient outcomes.
- Continued research is vital for advancing the management and improving the longevity of patients with ROS1+ NSCLC.
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