PI3K Inhibition Reduces Mammary Tumor Growth and Facilitates Antitumor Immunity and Anti-PD1 Responses

Jiqing Sai1,2, Philip Owens1,2, Sergey V Novitskiy3

  • 1Tennessee Valley Healthcare System, Department of Veterans Affairs, Nashville, Tennessee.

Insights

PI3K inhibition slows breast cancer growth and boosts immune response, making tumors more responsive to PD-1 checkpoint inhibitors. Combining PI3K inhibitors with anti-PD1 therapy shows promise for treating triple-negative breast cancer.

Area of Science:

  • Oncology
  • Immunology
  • Pharmacology

Background:

  • Metastatic breast cancer remains challenging to treat with current therapies, including PI3K inhibitors.
  • PI3K isoforms have distinct roles in tumor growth (PI3Kα,β) and immune cell function (PI3Kγ,δ).

Purpose of the Study:

  • To investigate the impact of PI3K inhibition on antitumor immunity.
  • To evaluate PI3K inhibition as a strategy to enhance immunotherapy efficacy.

Main Methods:

  • Mouse models of breast cancer (4T1, PyMT) and patient-derived xenografts were used.
  • Tumor-infiltrating leukocytes were analyzed following treatment with BKM120 (a PI3K inhibitor) or vehicle.
  • Combination therapy with BKM120 and anti-PD1 was assessed in PyMT tumor models.

Main Results:

  • PI3K inhibition suppressed tumor growth and restrained immune surveillance.
  • Genetic deletion of PI3Kγ in the host partially reversed these effects, indicating a role for host PI3Kγ.
  • Combined BKM120 and anti-PD1 treatment significantly inhibited tumor growth compared to monotherapy.

Conclusions:

  • PI3K inhibition enhances antitumor immunity and increases sensitivity to immune checkpoint inhibitors.
  • Combination therapy of PI3K inhibition with anti-PD1 presents a potential therapeutic strategy for triple-negative breast cancer.

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