The Combined Effect of FGFR Inhibition and PD-1 Blockade Promotes Tumor-Intrinsic Induction of Antitumor Immunity
Sangeetha Palakurthi1, Mari Kuraguchi1, Sima J Zacharek1
1Belfer Center for Applied Cancer Science, Dana-Farber Cancer Institute, Boston, Massachusetts.
Abstract:
The success of targeted or immune therapies is often hampered by the emergence of resistance and/or clinical benefit in only a subset of patients. We hypothesized that combining targeted therapy with immune modulation would show enhanced antitumor responses. Here, we explored the combination potential of erdafitinib, a fibroblast growth factor receptor (FGFR) inhibitor under clinical development, with PD-1 blockade in an autochthonous FGFR2K660N/p53mut lung cancer mouse model. Erdafitinib monotherapy treatment resulted in substantial tumor control but no significant survival benefit. Although anti-PD-1 alone was ineffective, the erdafitinib and anti-PD-1 combination induced significant tumor regression and improved survival. For both erdafitinib monotherapy and combination treatments, tumor control was accompanied by tumor-intrinsic, FGFR pathway inhibition, increased T-cell infiltration, decreased regulatory T cells, and downregulation of PD-L1 expression on tumor cells. These effects were not observed in a KRASG12C-mutant genetically engineered mouse model, which is insensitive to FGFR inhibition, indicating that the immune changes mediated by erdafitinib may be initiated as a consequence of tumor cell killing. A decreased fraction of tumor-associated macrophages also occurred but only in combination-treated tumors. Treatment with erdafitinib decreased T-cell receptor (TCR) clonality, reflecting a broadening of the TCR repertoire induced by tumor cell death, whereas combination with anti-PD-1 led to increased TCR clonality, suggesting a more focused antitumor T-cell response. Our results showed that the combination of erdafitinib and anti-PD-1 drives expansion of T-cell clones and immunologic changes in the tumor microenvironment to support enhanced antitumor immunity and survival.
Insights
Combining erdafitinib (FGFR inhibitor) with PD-1 blockade significantly improved survival in a lung cancer model. This combination therapy enhanced antitumor responses by modulating the tumor microenvironment and T-cell activity.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Targeted therapies and immune checkpoint inhibitors (ICIs) show limited efficacy due to resistance and patient heterogeneity.
- Combining therapies may overcome these limitations and enhance antitumor responses.
Purpose of the Study:
- To investigate the combination of erdafitinib (FGFR inhibitor) and PD-1 blockade in an autochthonous FGFR2-mutant lung cancer mouse model.
- To elucidate the underlying mechanisms of combined therapeutic effects on tumor immunity.
Main Methods:
- Utilized a genetically engineered mouse model (GEMM) of FGFR2-mutant lung cancer.
- Administered erdafitinib monotherapy, anti-PD-1 monotherapy, or combination therapy.
- Assessed tumor growth, survival, immune cell infiltration, and molecular markers (FGFR pathway, PD-L1, T-cell receptor repertoire).
Main Results:
- Erdafitinib monotherapy controlled tumors but did not improve survival; anti-PD-1 alone was ineffective.
- Combination therapy induced significant tumor regression and prolonged survival.
- Both treatments inhibited FGFR signaling and increased T-cell infiltration; combination therapy further reduced tumor-associated macrophages.
Conclusions:
- Combining erdafitinib with PD-1 blockade enhances antitumor immunity and survival in FGFR-mutant lung cancer.
- Erdafitinib modulates the tumor microenvironment, promoting T-cell infiltration and potentially enhancing ICI efficacy.
- This combination strategy warrants further investigation for clinical application in lung cancer.
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