VEGFR-2 redirected CAR-T cells are functionally impaired by soluble VEGF-A competition for receptor binding

Evripidis Lanitis1, Paris Kosti2, Catherine Ronet2

  • 1Department of Oncology, Ludwig Institute for Cancer Research Lausanne, Lausanne University Hospital and University of Lausanne, Lausanne, Vaud, Switzerland melita.irving@unil.ch george.coukos@chuv.ch evripidis.lanitis@unil.ch.

Abstract

Insights

Chimeric antigen receptor (CAR)-T cell therapy faces challenges in solid tumors. Targeting tumor vasculature with anti-VEGFR-2 CAR-T cells combined with anti-VEGF-A antibody improves CAR-T cell persistence and tumor control.

Area of Science:

  • Immunotherapy
  • Oncology
  • Cellular Therapy

Background:

  • Chimeric antigen receptor (CAR)-T cell therapy shows promise for hematological malignancies but struggles with epithelial solid tumors.
  • Challenges include identifying tumor antigens and overcoming the suppressive tumor microenvironment (TME).
  • Tumor vasculature antigens offer potential due to stability and broad expression across tumor types.

Purpose of the Study:

  • To investigate limitations in second-generation (2G) murine CAR-T cells targeting vascular endothelial growth factor receptor-2 (VEGFR-2).
  • To evaluate the efficacy of anti-VEGFR-2 CAR-T cells alone and in combination with anti-VEGF-A antibody in vivo.
  • To analyze the phenotype of tumor-infiltrating CAR-T cells post-treatment.

Main Methods:

  • Retroviral transduction of murine T cells to express a 2G anti-VEGFR-2 CAR.
  • In vitro assessment of CAR-T cell binding and reactivity against VEGFR-2 and tumor cells.
  • In vivo tumor control studies with CAR-T cells alone or combined with anti-VEGF-A antibody.
  • Ex vivo phenotypic analysis of tumor-infiltrating CAR-T cells.

Main Results:

  • Monotherapy with 2G anti-VEGFR-2 CAR-T cells showed poor control of B16 melanoma.
  • VEGF-A, upregulated by tumors, competed with CAR-T cells for VEGFR-2 binding, impairing in vitro function.
  • Anti-VEGF-A antibody restored CAR-T cell adhesion and effector function in vitro.
  • Combination therapy enhanced CAR-T cell persistence and tumor control in vivo.
  • Reduced frequencies of PD-1+ and LAG-3+ CAR-T cells were observed in the TME with combination therapy.

Conclusions:

  • This study demonstrates impaired CAR-T cell function by an angiogenic ligand (VEGF-A).
  • It provides a rationale for combinatorial therapies targeting tumor vasculature and enhancing CAR-T cell function.
  • Targeting tumor vasculature with CAR-T cells and anti-VEGF-A antibody represents a promising strategy for solid tumor treatment.

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