Anti-PD-1 Induces M1 Polarization in the Glioma Microenvironment and Exerts Therapeutic Efficacy in the Absence of CD8 Cytotoxic T Cells

抗 PD-1 诱导胶质瘤微环境中的 M1 极化,并在缺乏 CD8 细胞毒性 T 细胞的情况下发挥治疗效果

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作者:Ganesh Rao, Khatri Latha, Martina Ott, Aria Sabbagh, Anantha Marisetty, Xiaoyang Ling, Daniel Zamler, Tiffany A Doucette, Yuhui Yang, Ling-Yuan Kong, Jun Wei, Gregory N Fuller, Fernando Benavides, Adam M Sonabend, James Long, Shulin Li, Michael Curran, Amy B Heimberger

Conclusions

Our results show that the therapeutic effect of anti-PD-1 blockade in GBM may be mediated by the innate immune system, rather than by CD8 T cells. Anti-PD-1 immunologically modulates innate immunity in the glioma microenvironment-likely a key mode of activity.

Purpose

Anti-programmed cell death protein 1 (PD-1) therapy has demonstrated inconsistent therapeutic

Results

We observed a survival benefit in immunocompetent mice with endogenously arising intracranial glioblastomas after intravenous administration of anti-PD-1. The therapeutic effect of PD-1 administration persisted in mice even after genetic ablation of the CD8 gene (CD8-/-). CD11b+ and Iba1+ monocytes and macrophages were enriched in the glioma microenvironment of the CD8-/- mice. The macrophages and microglia assumed a proinflammatory M1 response signature in the setting of anti-PD-1 blockade through the elimination of PD-1-expressing macrophages and microglia in the tumor microenvironment. Anti-PD-1 can inhibit the proliferation of and induce apoptosis of microglia through antibody-dependent cellular cytotoxicity, as fluorescently labeled anti-PD-1 was shown to gain direct access to the glioma microenvironment. Conclusions: Our results show that the therapeutic effect of anti-PD-1 blockade in GBM may be mediated by the innate immune system, rather than by CD8 T cells. Anti-PD-1 immunologically modulates innate immunity in the glioma microenvironment-likely a key mode of activity.

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