Blockade or deletion of IFNg reduces macrophage activation without compromising CAR-T function in hematologic malignancies

免疫系统 细胞因子 封锁 细胞因子释放综合征 免疫学 趋化因子 癌症研究 免疫疗法 嵌合抗原受体 T细胞 生物 医学
作者
Stefanie R. Bailey,Sonika Vatsa,Rebecca C Larson,Amanda A Bouffard,Irene Scarfò,Michael C Kann,Trisha R Berger,Mark B. Leick,Marc Wehrli,Andrea Schmidts,Harrison Silva,Kevin A Lindell,Ashley Demato,Kathleen M E Gallagher,Matthew J Frigault,Marcela V. Maus
出处
期刊:Blood cancer discovery [American Association for Cancer Research]
卷期号:: bloodcandisc.BCD-E.2021
标识
DOI:10.1158/2643-3230.bcd-21-0181
摘要

Chimeric antigen receptor (CAR) T cells induce impressive responses in patients with hematologic malignancies but can also trigger cytokine release syndrome (CRS), a systemic toxicity caused by activated CAR T cells and innate immune cells. Although IFNγ production serves as a potency assay for CAR T cells, its biologic role in conferring responses in hematologic malignancies is not established. Here we show that pharmacologic blockade or genetic knockout of IFNγ reduced immune checkpoint protein expression with no detrimental effect on antitumor efficacy against hematologic malignancies in vitro or in vivo. Furthermore, IFNγ blockade reduced macrophage activation to a greater extent than currently used cytokine antagonists in immune cells from healthy donors and serum from patients with CAR T-cell-treated lymphoma who developed CRS. Collectively, these data show that IFNγ is not required for CAR T-cell efficacy against hematologic malignancies, and blocking IFNγ could simultaneously mitigate cytokine-related toxicities while preserving persistence and antitumor efficacy.Blocking IFNγ in CAR T cells does not impair their cytotoxicity against hematologic tumor cells and paradoxically enhances their proliferation and reduces macrophage-mediated cytokines and chemokines associated with CRS. These findings suggest that IFNγ blockade may improve CAR T-cell function while reducing treatment-related toxicity in hematologic malignancies. See related content by McNerney et al., p. 90 (17). This article is highlighted in the In This Issue feature, p. 85.
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