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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Treatment with Next-Generation ALK Inhibitors Fuels Plasma ALK Mutation Diversity
Ibiayi Dagogo-Jack1, Marguerite Rooney1, Jessica J Lin1
1Massachusetts General Hospital Cancer Center and Department of Medicine, Massachusetts General Hospital, Boston, Massachusetts.
Purpose:
Acquired resistance to next-generation ALK tyrosine kinase inhibitors (TKIs) is often driven by secondary ALK mutations. Here, we investigated utility of plasma genotyping for identifying ALK resistance mutations at relapse on next-generation ALK TKIs.
Experimental Design:
We analyzed 106 plasma specimens from 84 patients with advanced ALK-positive lung cancer treated with second- and third-generation ALK TKIs using a commercially available next-generation sequencing (NGS) platform (Guardant360). Tumor biopsies from TKI-resistant lesions underwent targeted NGS to identify ALK mutations.
Results:
By genotyping plasma, we detected an ALK mutation in 46 (66%) of 70 patients relapsing on a second-generation ALK TKI. When post-alectinib plasma and tumor specimens were compared, there was no difference in frequency of ALK mutations (67% vs. 63%), but plasma specimens were more likely to harbor ≥2 ALK mutations (24% vs. 2%, P = 0.004). Among 29 patients relapsing on lorlatinib, plasma genotyping detected an ALK mutation in 22 (76%), including 14 (48%) with ≥2 ALK mutations. The most frequent combinations of ALK mutations were G1202R/L1196M and D1203N/1171N. Detection of ≥2 ALK mutations was significantly more common in patients relapsing on lorlatinib compared with second-generation ALK TKIs (48% vs. 23%, P = 0.017). Among 15 patients who received lorlatinib after a second-generation TKI, serial plasma analysis demonstrated that eight (53%) acquired ≥1 new ALK mutations on lorlatinib.
Conclusions:
ALK resistance mutations increase with each successive generation of ALK TKI and may be underestimated by tumor genotyping. Sequential treatment with increasingly potent ALK TKIs may promote acquisition of ALK resistance mutations leading to treatment-refractory compound ALK mutations.
Insights
Plasma genotyping effectively identifies ALK resistance mutations in lung cancer patients relapsing on ALK tyrosine kinase inhibitors (TKIs). This method detects more complex mutations than tumor biopsies, especially with newer generation TKIs.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Acquired resistance to next-generation ALK tyrosine kinase inhibitors (TKIs) in ALK-positive lung cancer is frequently driven by secondary ALK mutations.
- Identifying these resistance mutations is crucial for guiding subsequent treatment strategies.
Purpose of the Study:
- To evaluate the utility of plasma genotyping for detecting ALK resistance mutations in patients relapsing on next-generation ALK TKIs.
- To compare the sensitivity of plasma genotyping versus tumor genotyping in identifying ALK resistance mutations.
Main Methods:
- Analysis of 106 plasma specimens from 84 patients with advanced ALK-positive lung cancer treated with second- and third-generation ALK TKIs.
- Utilized a commercially available next-generation sequencing (NGS) platform (Guardant360) for plasma genotyping.
- Compared plasma genotyping results with targeted NGS of tumor biopsies from TKI-resistant lesions.
Main Results:
- Plasma genotyping detected ALK mutations in 66% of patients relapsing on second-generation ALK TKIs.
- Plasma specimens were more likely to harbor multiple ALK mutations (≥2) compared to tumor biopsies (24% vs. 2%).
- In patients relapsing on lorlatinib (third-generation TKI), plasma genotyping detected mutations in 76%, with 48% having ≥2 mutations, significantly higher than with second-generation TKIs.
Conclusions:
- The frequency and complexity of ALK resistance mutations increase with successive generations of ALK TKIs.
- Plasma genotyping may underestimate ALK resistance mutations detected by tumor genotyping.
- Sequential treatment with potent ALK TKIs can lead to the acquisition of compound ALK resistance mutations, potentially resulting in treatment-refractory disease.
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