Enhanced antitumor immunity through sequential targeting of PI3Kδ and LAG3

Sarah Nicol Lauder1, Kathryn Smart2, Veerle Kersemans3

  • 1Infection and Immunity, Cardiff University Department of Medicine, Cardiff, UK LauderSN@cardiff.ac.uk.

Abstract

Insights

Combining PI3Kδ inhibition with anti-LAG3 antibodies overcomes tumor resistance to immunotherapy. This sequential blockade strategy enhances anti-tumor T cell responses and is crucial for improving cancer immunotherapy efficacy.

Area of Science:

  • Immunology
  • Oncology
  • Pharmacology

Background:

  • Cancer immunotherapies aiming to boost T cell responses often fail in most patients.
  • Inhibiting the PI3Kδ signaling enzyme to inactivate regulatory T cells (Treg) shows promise in preclinical tumor immunity models.
  • This approach is currently under investigation in early-phase clinical trials for solid tumors.

Purpose of the Study:

  • To investigate the efficacy of PI3Kδ inhibition alone and in combination with anti-LAG3 antibodies in a preclinical model of breast cancer.
  • To analyze the impact of these treatments on tumor growth, survival, and T cell infiltration within the tumor microenvironment.

Main Methods:

  • Mice with 4T1 mammary tumors were treated daily with a PI3Kδ inhibitor (PI-3065).
  • A sequential treatment involved administering the PI3Kδ inhibitor followed by anti-LAG3 antibodies 10 days later.
  • Tumor growth, survival, and T cell populations (including Treg, CD8+ T cells, TCF1+ T cells, and CD69- T cells) were analyzed.

Main Results:

  • PI3Kδ inhibition alone resulted in partial tumor regression in some mice (regressors) but not others (non-regressors).
  • Tumor-infiltrating T cells in regressors were metabolically fitter, with increased antigen-specific CD8+ T cells, TCF1+ T cells, and CD69- T cells.
  • While Treg numbers decreased in both groups, non-regressor tumors showed increased LAG3 expression on remaining Treg, indicating its role in resistance.
  • Sequential blockade of PI3Kδ and LAG3 led to complete tumor eradication in all treated mice.
  • Partial response to PI3Kδ inhibition was a prerequisite for therapeutic benefit from subsequent anti-LAG3 antibody treatment in other cancer models (MC38, CT26).

Conclusions:

  • LAG3 is a critical factor limiting the effectiveness of PI3Kδ-targeted immunotherapy.
  • Combining PI3Kδ and LAG3 blockade offers a promising strategy for overcoming immunotherapy resistance in cancer.
  • These findings provide a strong rationale for clinical trials investigating combined PI3Kδ/LAG3 blockade.

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