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Published on: June 9, 2023
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.
Abstract:
Purpose: Metastatic breast cancers continue to elude current therapeutic strategies, including those utilizing PI3K inhibitors. Given the prominent role of PI3Kα,β in tumor growth and PI3Kγ,δ in immune cell function, we sought to determine whether PI3K inhibition altered antitumor immunity.Experimental Design: The effect of PI3K inhibition on tumor growth, metastasis, and antitumor immune response was characterized in mouse models utilizing orthotopic implants of 4T1 or PyMT mammary tumors into syngeneic or PI3Kγ-null mice, and patient-derived breast cancer xenografts in humanized mice. Tumor-infiltrating leukocytes were characterized by IHC and FACS analysis in BKM120 (30 mg/kg, every day) or vehicle-treated mice and PI3Kγ versus PI3Kγ mice. On the basis of the finding that PI3K inhibition resulted in a more inflammatory tumor leukocyte infiltrate, the therapeutic efficacy of BKM120 (30 mg/kg, every day) and anti-PD1 (100 μg, twice weekly) was evaluated in PyMT tumor-bearing mice.Results: Our findings show that PI3K activity facilitates tumor growth and surprisingly restrains tumor immune surveillance. These activities could be partially suppressed by BKM120 or by genetic deletion of PI3Kγ in the host. The antitumor effect of PI3Kγ loss in host, but not tumor, was partially reversed by CD8+ T-cell depletion. Treatment with therapeutic doses of both BKM120 and antibody to PD-1 resulted in consistent inhibition of tumor growth compared with either agent alone.Conclusions: PI3K inhibition slows tumor growth, enhances antitumor immunity, and heightens susceptibility to immune checkpoint inhibitors. We propose that combining PI3K inhibition with anti-PD1 may be a viable therapeutic approach for triple-negative breast cancer. Clin Cancer Res; 23(13); 3371-84. ©2016 AACR.
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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