作者
Zohreh Amoozgar, Jonas Kloepper, Jun Ren, Rong En Tay, Samuel W Kazer, Evgeny Kiner, Shanmugarajan Krishnan, Jessica M Posada, Mitrajit Ghosh, Emilie Mamessier, Christina Wong, Gino B Ferraro, Ana Batista, Nancy Wang, Mark Badeaux, Sylvie Roberge, Lei Xu, Peigen Huang, Alex K Shalek, Dai Fukumura, Hye-Jung Kim, Rakesh K Jain
发表日期
2021/5/11
期刊
Nature communications
卷号
12
期号
1
页码范围
2582
出版商
Nature Publishing Group UK
简介
Immune checkpoint blockers (ICBs) have failed in all phase III glioblastoma (GBM) trials. Here, we show that regulatory T (Treg) cells play a key role in GBM resistance to ICBs in experimental gliomas. Targeting glucocorticoid-induced TNFR-related receptor (GITR) in Treg cells using an agonistic antibody (αGITR) promotes CD4 Treg cell differentiation into CD4 effector T cells, alleviates Treg cell-mediated suppression of anti-tumor immune response, and induces potent anti-tumor effector cells in GBM. The reprogrammed GBM-infiltrating Treg cells express genes associated with a Th1 response signature, produce IFNγ, and acquire cytotoxic activity against GBM tumor cells while losing their suppressive function. αGITR and αPD1 antibodies increase survival benefit in three experimental GBM models, with a fraction of cohorts exhibiting complete tumor eradication and immune memory upon tumor re-challenge …
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