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Lenvatinib Plus Anti-PD-1 Combination Therapy for Advanced Cancers: Defining Mechanisms of Resistance in an Inducible
Bruna C Bertol1,2, Elise S Bales2, Jacob D Calhoun2
1Postgraduate Program of Basic and Applied Immunology, Department of Medicine, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, Brazil.
Abstract:
Combination therapy with lenvatinib plus programmed death-1 (PD-1) immune checkpoint blockades (ICBs) is under investigation in many solid tumors, including thyroid cancer. Lenvatinib is known to reduce angiogenesis and may overturn the immunosuppressive effects of vascular endothelial growth factor in the tumor microenvironment. Previous studies investigating the effects of VEGF receptor inhibition on the immune response were performed in rapidly growing tumor models where immune equilibrium is not established before treatment. We hypothesize that physiologically relevant preclinical models are necessary to define mechanisms of resistance to immune-targeted combination therapies. We utilized the TPO-CreER/Braf/wt/Trp53Δex2-10/Δex2-10 inducible transgenic model of advanced thyroid cancer to investigate lenvatinib treatment in the context of an anti-PD-1 ICB. Following tumor establishment, 3.5 months postinduction, mice were treated with high- (10 mg/kg) or low-dose (2 mg/kg) lenvatinib, anti-PD-1, or combination of lenvatinib with anti-PD-1. Tumor volume and lung metastases were assessed in each group. Immune infiltrate was characterized by flow cytometry and immunohistochemistry, and TCRß sequencing was performed to further investigate the T cell response. Both low- and high-dose lenvatinib reduced tumor volume, while anti-PD-1 had no effect, alone or in combination. Although both low- and high-dose lenvatinib reduced vascular density, low-dose lenvatinib was superior in controlling tumor size. Lung metastases and survival were not improved with therapy despite the effects of lenvatinib on primary tumor size. Low-dose lenvatinib treatment led to a subtle reduction in the dominant Ly6G+CD11b+ myeloid cell population and was associated with increased CD4+ T cell infiltrate and enrichment in 4-1BB+ and granzyme B+ CD4+ T cells and FoxP3+ regulatory T cells. Polyclonal T cell expansion was evident in the majority of mice, suggesting that a tumor-specific T cell response was generated. The effects of lenvatinib on the immune response were most pronounced in mice treated with low-dose lenvatinib, suggesting that dose should be considered in clinical application. While the immune-modulating potential of lenvatinib is encouraging, alterations in the immune milieu and T cell activation status were insufficient to sustain durable tumor regression, even with added anti-PD-1. Additional studies are necessary to develop more effective combination approaches in low-mutation burden tumors, such as thyroid cancer.
Insights
Lenvatinib, an anti-angiogenesis drug, showed immune-modulating effects in thyroid cancer models, but combination therapy with PD-1 blockade did not improve outcomes. Low-dose lenvatinib was more effective in controlling tumor size and altering the immune microenvironment.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Combination therapy with lenvatinib and PD-1 immune checkpoint blockades (ICBs) is being investigated for solid tumors, including thyroid cancer.
- Lenvatinib's anti-angiogenic properties may counteract VEGF-mediated immunosuppression.
- Previous studies used rapidly growing models, necessitating physiologically relevant models to understand resistance mechanisms.
Purpose of the Study:
- To investigate lenvatinib's efficacy and immune-modulating effects in combination with anti-PD-1 ICB in an advanced thyroid cancer preclinical model.
- To determine the optimal dose of lenvatinib for combination therapy.
- To elucidate mechanisms of resistance to lenvatinib and anti-PD-1 combination therapy.
Main Methods:
- Utilized an inducible transgenic mouse model of advanced thyroid cancer (TPO-CreER/Braf WT/Trp53 Δex2-10/Δex2-10).
- Treated mice with high-dose (10 mg/kg) or low-dose (2 mg/kg) lenvatinib, anti-PD-1, or combination therapy post-tumor establishment.
- Assessed tumor volume, lung metastases, immune infiltrate (flow cytometry, IHC), and T cell receptor sequencing.
Main Results:
- Both lenvatinib doses reduced tumor volume; low-dose lenvatinib was superior in tumor control.
- Anti-PD-1 alone or in combination did not improve tumor volume, lung metastases, or survival.
- Low-dose lenvatinib modulated the immune microenvironment, increasing CD4+ T cell infiltrate and activating specific T cell subsets, suggesting a generated tumor-specific T cell response.
Conclusions:
- Dose of lenvatinib is a critical factor in its clinical application and immune-modulating effects.
- While lenvatinib demonstrated immune-modulating potential, the combination with anti-PD-1 was insufficient for durable tumor regression in this model.
- Further research is needed to develop effective combination strategies for low-mutation burden tumors like thyroid cancer.
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