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Phosphoinositide 3-kinase δ inhibition promotes antitumor responses but antagonizes checkpoint inhibitors
Ee Lyn Lim, Fiorella M. Cugliandolo, Dalya R. Rosner, David Gyori, Rahul Roychoudhuri, Klaus Okkenhaug
Ee Lyn Lim, Fiorella M. Cugliandolo, Dalya R. Rosner, David Gyori, Rahul Roychoudhuri, Klaus Okkenhaug
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Research Article Immunology Oncology

Phosphoinositide 3-kinase δ inhibition promotes antitumor responses but antagonizes checkpoint inhibitors

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Abstract

Multiple modes of immunosuppression restrain immune function within tumors. We previously reported that phosphoinositide 3-kinase δ (PI3Kδ) inactivation in mice confers resistance to a range of tumor models by disrupting immunosuppression mediated by regulatory T cells (Tregs). The PI3Kδ inhibitor idelalisib has proven highly effective in the clinical treatment of chronic lymphocytic leukemia and the potential to extend the use of PI3Kδ inhibitors to nonhematological cancers is being evaluated. In this work, we demonstrate that the antitumor effect of PI3Kδ inactivation is primarily mediated through the disruption of Treg function, and correlates with tumor dependence on Treg immunosuppression. Compared with Treg-specific PI3Kδ deletion, systemic PI3Kδ inactivation is less effective at conferring resistance to tumors. We show that PI3Kδ deficiency impairs the maturation and reduces the capacity of CD8+ cytotoxic T lymphocytes (CTLs) to kill tumor cells in vitro, and to respond to tumor antigen–specific immunization in vivo. PI3Kδ inactivation antagonized the antitumor effects of tumor vaccines and checkpoint blockade therapies intended to boost the CD8+ T cell response. These findings provide insights into mechanisms by which PI3Kδ inhibition promotes antitumor immunity and demonstrate that the mechanism is distinct from that mediated by immune checkpoint blockade.

Authors

Ee Lyn Lim, Fiorella M. Cugliandolo, Dalya R. Rosner, David Gyori, Rahul Roychoudhuri, Klaus Okkenhaug

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Figure 4

PI3Kδ-deficient CD8+ T cells fail to respond to checkpoint blockade.

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PI3Kδ-deficient CD8+ T cells fail to respond to checkpoint blockade.
(A)...
(A) Mice bearing LLC-OVA or MC38-OVA tumors received intravenous injections of antibodies against cytotoxic T lymphocyte antigen 4 (CTLA-4) or programmed death ligand 1 (PD-L1) on days 3, 6, and 10 after tumor injection (treatment of LLC-OVA tumor with anti–PD-L1 was performed on days 2, 5, and 9 after tumor injection) (n = 6). (B and C) Anti–CTLA-4 antibody treatment of LLC-OVA (B) and MC38-OVA (C) tumors in WT and PI3KδD910A mice; no significant change was observed in tumor-infiltrating CD8+ T cells. (D and E) Anti–PD-L1 antibody treatment of LLC-OVA (D) and MC38-OVA (E) tumors in WT and PI3KδD910A mice. Only 2 WT tumors were available for analysis, and no significant changes were found in the CD8+ infiltrate of these tumors. Statistical significance determined by Mann-Whitney test between antibody-treated and control groups. *P < 0.05; **P < 0.01.

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