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Treatment of ALK-Rearranged Non-Small Cell Lung Cancer: Recent Progress and Future Directions
Laird Cameron1, Benjamin Solomon
1Department of Medical Oncology, Peter MacCallum Cancer Centre, St Andrew's Place, East Melbourne, VIC, 3002, Australia.
Abstract:
Rearrangements of the anaplastic lymphoma kinase (ALK) gene originally discovered nearly 20 years ago in the context of anaplastic large cell lymphoma were identified as oncogenic drivers in a subset of non-small cell lung cancers (NSCLCs) in 2007. These ALK gene rearrangements are present in 3-5 % of NSCLC patients, typically younger, never or light smokers with adenocarcinomas. Crizotinib is a first-in-class ALK tyrosine kinase inhibitor with significant activity in ALK-positive NSCLC that received accelerated US Food and Drug Administration approval for treatment of ALK-positive NSCLC in 2011, just 4 years after identification of ALK rearrangements in this setting. Subsequently, two phase III trials have shown crizotinib to have a tolerable toxicity profile and to be superior to standard chemotherapy for the first- or second-line treatment of advanced ALK-positive lung cancer and numerous countries have approved its use. Despite initial responses, acquired resistance to crizotinib invariably leads to disease progression. Mechanisms of resistance have been described to include ALK tyrosine kinase mutations, activation of bypass signalling pathways and pharmacokinetic failure of crizotinib. Several next-generation ALK inhibitors, including ceritinib and alectinib, are in clinical development and show efficacy in both the crizotinib naïve and crizotinib refractory settings. Ongoing clinical trials will identify the optimal strategy to incorporate these novel agents in the treatment of patients with ALK-positive NSCLC.
Insights
Anaplastic lymphoma kinase (ALK) gene rearrangements drive a subset of non-small cell lung cancers (NSCLC). While crizotinib shows efficacy, resistance develops, necessitating next-generation ALK inhibitors for advanced ALK-positive NSCLC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Anaplastic lymphoma kinase (ALK) gene rearrangements are oncogenic drivers in 3-5% of non-small cell lung cancer (NSCLC) patients, typically younger, light smokers with adenocarcinoma.
- Crizotinib, an ALK tyrosine kinase inhibitor, received FDA approval in 2011 for ALK-positive NSCLC and demonstrated superiority over standard chemotherapy in Phase III trials.
Purpose of the Study:
- To review the efficacy and resistance mechanisms of crizotinib in ALK-positive NSCLC.
- To discuss the development and potential of next-generation ALK inhibitors for managing acquired resistance.
Main Methods:
- Literature review of studies on ALK rearrangements in NSCLC.
- Analysis of clinical trial data for crizotinib and emerging ALK inhibitors.
- Review of identified mechanisms of acquired resistance to crizotinib.
Main Results:
- Crizotinib is effective in first- and second-line treatment of advanced ALK-positive NSCLC but acquired resistance invariably occurs.
- Mechanisms of resistance include ALK tyrosine kinase mutations, bypass signaling pathway activation, and pharmacokinetic failure.
- Next-generation ALK inhibitors like ceritinib and alectinib show promise in crizotinib-naïve and crizotinib-refractory settings.
Conclusions:
- Optimal treatment strategies incorporating novel ALK inhibitors are under investigation for ALK-positive NSCLC.
- Addressing acquired resistance is crucial for improving long-term outcomes in patients with ALK-driven NSCLC.
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