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Published on: January 19, 2019
Durable responses to alectinib in murine models of EML4-ALK lung cancer requires adaptive immunity
Emily K Kleczko1, Trista K Hinz2,3, Teresa T Nguyen2
1Department of Medicine, University of Colorado Anschutz Medical Campus, Aurora, CO, USA.
Abstract:
Lung cancers bearing oncogenic EML4-ALK fusions respond to targeted tyrosine kinase inhibitors (TKIs; e.g., alectinib), with variation in the degree of shrinkage and duration of treatment (DOT). However, factors that control this response are not well understood. While the contribution of the immune system in mediating the response to immunotherapy has been extensively investigated, less is known regarding the contribution of immunity to TKI therapeutic responses. We previously demonstrated a positive association of a TKI-induced interferon gamma (IFNγ) transcriptional response with DOT in EGFR-mutant lung cancers. Herein, we used three murine models of EML4-ALK lung cancer to test the role for host immunity in the alectinib therapeutic response. The cell lines (EA1, EA2, EA3) were propagated orthotopically in the lungs of immunocompetent and immunodeficient mice and treated with alectinib. Tumor volumes were serially measured by μCT and immune cell content was measured by flow cytometry and multispectral immunofluorescence. Transcriptional responses to alectinib were assessed by RNAseq and secreted chemokines were measured by ELISA. All cell lines were similarly sensitive to alectinib in vitro and as orthotopic tumors in immunocompetent mice, exhibited durable shrinkage. However, in immunodeficient mice, all tumor models rapidly progressed on TKI therapy. In immunocompetent mice, EA2 tumors exhibited a complete response, whereas EA1 and EA3 tumors retained residual disease that rapidly progressed upon termination of TKI treatment. Prior to treatment, EA2 tumors had greater numbers of CD8+ T cells and fewer neutrophils compared to EA1 tumors. Also, RNAseq of cancer cells recovered from untreated tumors revealed elevated levels of CXCL9 and 10 in EA2 tumors, and higher levels of CXCL1 and 2 in EA1 tumors. Analysis of pre-treatment patient biopsies from ALK+ tumors revealed an association of neutrophil content with shorter time to progression. Combined, these data support a role for adaptive immunity in durability of TKI responses and demonstrate that the immune cell composition of the tumor microenvironment is predictive of response to alectinib therapy.
Insights
Host immunity significantly impacts the effectiveness of targeted therapies like alectinib in EML4-ALK lung cancer. Tumors with specific immune cell profiles, particularly CD8+ T cells, show better responses and longer duration of treatment.
Area of Science:
- Oncology
- Immunology
- Translational Research
Background:
- Lung cancers with EML4-ALK fusions are treated with tyrosine kinase inhibitors (TKIs) like alectinib, but response variability is not fully understood.
- The role of the immune system in TKI response is less explored compared to immunotherapy.
- Previous work linked interferon gamma (IFNγ) response to TKI duration in EGFR-mutant lung cancer.
Purpose of the Study:
- To investigate the role of host immunity in the therapeutic response to alectinib in EML4-ALK lung cancer models.
- To determine if the immune microenvironment influences the efficacy and durability of TKI treatment.
- To identify predictive biomarkers of alectinib response based on immune cell composition.
Main Methods:
- Utilized three murine models of EML4-ALK lung cancer, propagated orthotopically in immunocompetent and immunodeficient mice.
- Assessed tumor response via micro-computed tomography (μCT) and immune cell infiltration using flow cytometry and multispectral immunofluorescence.
- Analyzed transcriptional profiles (RNAseq) and chemokine levels (ELISA) to understand treatment effects and tumor microenvironment.
Main Results:
- All EML4-ALK lung cancer models showed sensitivity to alectinib in vitro and in immunocompetent mice, but rapidly progressed in immunodeficient mice, highlighting immunity's importance.
- Tumor responses varied in immunocompetent mice: EA2 tumors achieved complete response, while EA1 and EA3 had residual disease and progression post-treatment.
- Pre-treatment EA2 tumors had more CD8+ T cells and fewer neutrophils; EA1 tumors showed higher CXCL1/2, while EA2 had higher CXCL9/10.
- Patient data linked higher neutrophil counts in ALK+ tumors to shorter progression-free survival.
Conclusions:
- Adaptive immunity plays a crucial role in the durability of TKI responses in EML4-ALK lung cancer.
- The immune cell composition of the tumor microenvironment, including CD8+ T cells and neutrophils, can predict response to alectinib.
- Immune cell profiling may guide therapeutic strategies and patient selection for TKI treatment.

