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.

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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