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The schedule of ATR inhibitor AZD6738 can potentiate or abolish antitumor immune responses to radiotherapy
Frank P. Vendetti, Pinakin Pandya, David A. Clump, Sandra Schamus-Haynes, Meysam Tavakoli, Maria diMayorca, Naveed M. Islam, Jina Chang, Greg M. Delgoffe, Jan H. Beumer, Christopher J. Bakkenist
Frank P. Vendetti, Pinakin Pandya, David A. Clump, Sandra Schamus-Haynes, Meysam Tavakoli, Maria diMayorca, Naveed M. Islam, Jina Chang, Greg M. Delgoffe, Jan H. Beumer, Christopher J. Bakkenist
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Research Article Immunology Oncology

The schedule of ATR inhibitor AZD6738 can potentiate or abolish antitumor immune responses to radiotherapy

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Abstract

Inhibitors of the DNA damage signaling kinase ATR increase tumor cell killing by chemotherapies that target DNA replication forks but also kill rapidly proliferating immune cells including activated T cells. Nevertheless, ATR inhibitor (ATRi) and radiotherapy (RT) can be combined to generate CD8+ T cell–dependent antitumor responses in mouse models. To determine the optimal schedule of ATRi and RT, we determined the impact of short-course versus prolonged daily treatment with AZD6738 (ATRi) on responses to RT (days 1–2). Short-course ATRi (days 1–3) plus RT caused expansion of tumor antigen–specific, effector CD8+ T cells in the tumor-draining lymph node (DLN) at 1 week after RT. This was preceded by acute decreases in proliferating tumor-infiltrating and peripheral T cells and a rapid proliferative rebound after ATRi cessation, increased inflammatory signaling (IFN-β, chemokines, particularly CXCL10) in tumors, and an accumulation of inflammatory cells in the DLN. In contrast, prolonged ATRi (days 1–9) prevented the expansion of tumor antigen–specific, effector CD8+ T cells in the DLN, and entirely abolished the therapeutic benefit of short-course ATRi with RT and anti–PD-L1. Our data argue that ATRi cessation is essential to allow CD8+ T cell responses to both RT and immune checkpoint inhibitors.

Authors

Frank P. Vendetti, Pinakin Pandya, David A. Clump, Sandra Schamus-Haynes, Meysam Tavakoli, Maria diMayorca, Naveed M. Islam, Jina Chang, Greg M. Delgoffe, Jan H. Beumer, Christopher J. Bakkenist

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Figure 3

CD8+ T cell recovery in TILs after short-course ATRi plus RT requires transit of CD8+ T cells from the periphery.

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CD8+ T cell recovery in TILs after short-course ATRi plus RT requires tr...
(A–C) CT26 tumor–bearing mice treated with ATRi QDx3, RT 2 Gy x 2, ATRi QDx3 + RT, or vehicle. (A) Quantitation of CD8+ T cells, per 1,000 cells stained, in DLN at days 4 and 7. (B) Quantitation of Pentamer+ CD8+ T cells, as percentages of CD8+CD4– cells, in DLN at days 4 and 7. Data from at least 3 experiments per time point with 1–5 mice per group. n at days 4/7 = 6/8 Vehicle, 6/10 ATRi QDx3, 7/10 RT, 8/11 ATRi QDx3 + RT. (C) Quantitation of CD8+ T cells, per milligram of tumor, in the TILs at days 4, 7, and 9. (A and C) Data from at least 3 (day 4), 2 (day 7), or 4 (day 9) independent experiments with 1–4 mice per group. n at day 4/7/9 = 6/5/9 Vehicle, 6/6(5 DLN)/8 ATRi QDx3, 7(6 DLN)/7/11 RT, 8(7 DLN)/8/11 ATRi QDx3 + RT. (D and E) CT26 tumor–bearing mice treated with ATRi QDx3 + RT or vehicle, with or without FTY720 Q2Dx4. (D) Lymphocyte (Lym) quantitation, per microliter of blood, from CBC at day 9. Data from 3 experiments with 2–4 mice per group. n = 9 Vehicle, 8 FTY720 Q2Dx4, 10 ATRi QDx3 + RT, 11 ATRi QDx3 + RT + FTY. (E) Quantitation of CD8+ T cells, per milligram of tumor, in TILs at day 9. Data from 4 experiments with 1–4 mice per group. (A–E) Mean and SD bars shown. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001 by ANOVA with Tukey’s (A–C) or Šidák’s (D and E) multiple-comparison tests.

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