决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Decoding the mechanisms of chimeric antigen receptor (CAR) T cell-mediated killing of tumors: insights from granzyme and Fas inhibition.
Decoding the mechanisms of chimeric antigen receptor (CAR) T cell-mediated killing of tumors: insights from granzyme and Fas inhibition.
嵌合抗原受体(CAR)T细胞在癌症治疗中显示出前景,但其作用机制尚不十分清楚。
嵌合抗原受体(CAR)T 细胞在癌症治疗中显示出前景,但其作用机制尚未被充分理解。解析单个 T 细胞所使用的机制有助于提高 T 细胞的疗效,同时也能识别导致肿瘤逃逸的 T 细胞失效机制。在这里,我们使用了一套检测方法,包括细胞间相互作用的动态单细胞成像、荧光报告基因的动态成像以直接追踪肿瘤细胞中的细胞毒素活性,以及对患者输注产品的 scRNA-seq,来研究单个 CAR T 细胞在杀伤肿瘤细胞时所使用的细胞毒性机制。我们发现,出乎意料的是,过表达 Granzyme B(GZMB)抑制剂 protease inhibitor-9(PI9)并不会改变 CD19 特异性 CAR T 细胞对白血病细胞系 NALM6 或卵巢癌细胞系 SkOV3-CD19 所介导的细胞毒性。我们设计并验证了报告基因,以直接检测肿瘤细胞中 T 细胞递送的 GZMB 活性,并确认虽然 PI9 过表达在分子水平上抑制 GZMB 活性,但这不足以影响 CAR T 细胞所介导杀伤的动力学或幅度。改变 CAR T 细胞介导的细胞毒性需要联合抑制多条肿瘤细胞特异性通路:(a) 像 NALM6、Raji 和 Daudi 这样的 B 细胞系对联合抑制 GZMB 和 granzyme A(GZMA)敏感;而 (b) 像 SkOV3-CD19 和 A375-CD19(黑色素瘤)这样的实体瘤靶点对联合抑制 GZMB 和 Fas ligand 敏感。我们通过检查Tisa-cel和Axi-cel输注产品的scRNA-seq图谱,实现了这些发现的转化相关性,并显示在单细胞水平上,GZMB和GZMA表达之间存在显著相关性,且这种相关性依赖于T细胞亚群。我们的发现强调了CAR T细胞杀伤机制冗余性的重要性,以及这种冗余性对于有效T细胞的关键作用。
Chimeric antigen receptor (CAR) T cell show promise in cancer treatments, but their mechanism of action is not well understood. Decoding the mechanisms used by individual T cells can help improve the efficacy of T cells while also identifying mechanisms of T cell failure leading to tumor escape. Here, we used a suite of assays including dynamic single-cell imaging of cell-cell interactions, dynamic imaging of fluorescent reporters to directly track cytotoxin activity in tumor cells, and scRNA-seq on patient infusion products to investigate the cytotoxic mechanisms used by individual CAR T cells in killing tumor cells. We show that surprisingly, overexpression of the Granzyme B (GZMB) inhibitor, protease inhibitor-9 (PI9), does not alter the cytotoxicity mediated by CD19-specific CAR T cells against either the leukemic cell line, NALM6; or the ovarian cancer cell line, SkOV3-CD19. We designed and validated reporters to directly assay T cell delivered GZMB activity in tumor cells and confirmed that while PI9 overexpression inhibits GZMB activity at the molecular level, this is not sufficient to impact the kinetics or magnitude of killing mediated by the CAR T cells. Altering cytotoxicity mediated by CAR T cells required combined inhibition of multiple pathways that are tumor cell specific: (a) B-cell lines like NALM6, Raji and Daudi were sensitive to combined GZMB and granzyme A (GZMA) inhibition; whereas (b) solid tumor targets like SkOV3-CD19 and A375-CD19 (melanoma) were sensitive to combined GZMB and Fas ligand inhibition. We realized the translational relevance of these findings by examining the scRNA-seq profiles of Tisa-cel and Axi-cel infusion products and show a significant correlation between GZMB and GZMA expression at the single-cell level in a T cell subset-dependent manner. Our findings highlight the importance of the redundancy in killing mechanisms of CAR T cells and how this redundancy is important for efficacious T cells.
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