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Progression patterns, resistant mechanisms and subsequent therapy for ALK-positive NSCLC in the era of
Lige Wu1, Zihua Zou1,2, Yan Li3
1Department of Medical Oncology, National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, No 17 Panjiayuan Nanli, Chaoyang district, Beijing, 100021, P.R. China.
Background:
In the era of second-generation ALK tyrosine kinase inhibitors (ALK-TKIs), there was a paucity of data regarding the progression patterns, resistant mechanisms, and subsequent therapeutic approaches for ALK-positive (ALK+) non-small cell lung cancer (NSCLC).
Methods:
Patients with advanced ALK+ NSCLC were retrospectively selected from our center. Cohort 1 consisted of patients who experienced disease progression after receiving first-line alectinib treatment (n = 20), while Cohort 2 included patients who progressed following sequential treatment with crizotinib and second-generation ALK-TKIs (n = 53). Oligo-progression was defined as the occurrence of disease progression in no more than three lesions. Symptomatic progression was determined when patients developed new symptoms or experienced worsening of pre-existing symptoms during radiological progression.
Results:
The incidence of central nervous system (CNS) progression and symptomatic CNS progression was significantly lower in Cohort 1 compared to patients treated with crizotinib, with rates of 15.0% vs. 56.6% (p = 0.002) and 5.0% vs. 32.1% (p = 0.016), respectively. A total of 60.3% (44/73) patients underwent repeated biopsy and next-generation sequencing subsequent to the second-generation ALK-TKI resistance, with secondary mutation in ALK kinase domain emerging as the predominant mechanism of resistance (56.8%). Local therapy was applied to 50% of oligo-progression cases. Subsequent ALK-TKIs demonstrated significantly prolonged progression-free survival (PFS) (8.6 m vs. 2.7 m, p = 0.021, HR = 0.43, 95%CI: 0.15-0.85) and long-term overall survival (OS) (NA vs. 11.9 m, p = 0.132, HR = 0.50, 95%CI: 0.18-1.25) in patients harboring ALK resistance mutations, compared to those without such mutations. For patients without ALK-resistant mutations following progression on second-generation ALK-TKIs, there was no statistically significant difference in survival outcomes between subsequent chemotherapy or alternative ALK-TKI treatments.
Conclusions:
First-line alectinib demonstrated superior efficacy in protecting the CNS compared to crizotinib. For patients with ALK-resistant mutations following the resistance to second-generation ALK-TKIs, appropriate sensitive ALK-TKI should be administered; for those without such mutations, the selection of chemotherapy or third-generation ALK-TKI should be based on the patient's overall physical health and personal preferences.
Insights
First-line alectinib significantly reduces central nervous system progression in ALK-positive non-small cell lung cancer compared to crizotinib. Subsequent ALK-TKIs improve outcomes in patients with resistance mutations.
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Limited data exists on progression patterns and resistance mechanisms for ALK-positive non-small cell lung cancer (NSCLC) treated with second-generation ALK tyrosine kinase inhibitors (ALK-TKIs).
- Understanding these patterns is crucial for optimizing treatment strategies in advanced ALK+ NSCLC.
Purpose of the Study:
- To investigate progression patterns, resistance mechanisms, and subsequent treatment outcomes in ALK-positive NSCLC patients treated with first-line alectinib versus sequential crizotinib and second-generation ALK-TKIs.
- To evaluate the efficacy of subsequent therapies based on the presence or absence of ALK resistance mutations.
Main Methods:
- Retrospective analysis of advanced ALK+ NSCLC patients.
- Cohort 1: Progression after first-line alectinib (n=20).
- Cohort 2: Progression after crizotinib and second-generation ALK-TKIs (n=53).
- Analysis included central nervous system (CNS) progression, resistance mechanisms via next-generation sequencing, and survival outcomes.
Main Results:
- First-line alectinib showed significantly lower rates of CNS progression (15.0%) and symptomatic CNS progression (5.0%) compared to crizotinib-based treatment (56.6% and 32.1%, respectively).
- Secondary ALK kinase domain mutations were the predominant resistance mechanism (56.8%) after second-generation ALK-TKI failure.
- Subsequent ALK-TKIs significantly improved progression-free survival (8.6 months vs. 2.7 months) in patients with ALK resistance mutations compared to those without.
Conclusions:
- First-line alectinib offers superior CNS protection in ALK+ NSCLC compared to crizotinib.
- For patients developing resistance mutations, targeted ALK-TKIs are recommended.
- For patients without resistance mutations, treatment choice (chemotherapy or third-generation ALK-TKI) should be individualized based on patient factors.
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