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:Optimizing in vitro T cell differentiation by using induced pluripotent stem cells with GFP-RUNX1 and mCherry-TCF7 labelling.
Optimizing in vitro T cell differentiation by using induced pluripotent stem cells with GFP-RUNX1 and mCherry-TCF7 labelling.
体外由多能干细胞(PSCs)分化T细胞可能为癌症免疫治疗提供无限的T细胞来源,然而,获得功能成熟、终末分化的T细胞效率低下仍然阻碍着这一进程。
从多能干细胞(PSC)体外分化 T 细胞,有望为癌症免疫治疗提供几乎无限的 T 细胞来源,但由于难以高效获得功能成熟、终末分化的 T 细胞,这一方法仍受限制。本研究建立了一种名为 TCF7-mCherry-RUNX1-GFP 的荧光报告人诱导多能干细胞(iPSC)系,其中内源 RUNX1 和 TCF7 的表达分别通过 GFP 和 mCherry 荧光显示。利用该细胞系,我们确定,当饲养细胞采用表达 CXCL12 的 OP9 细胞与表达 DL4 的 OP9 细胞按 1:3 比例混合(OP9-C1D3)时,可显著提高 PSC 向 CD8+ T 细胞分化的效率。此外,我们将靶向 EGFR 的嵌合抗原受体(CAR)导入 iPSC。使用 OP9-C1D3 饲养细胞从这些 iPSC 分化获得的 CAR-T 细胞可有效杀伤肺癌细胞。我们预计该平台有助于优化体外造血干/祖细胞(HSPC)和 T 细胞分化,以满足临床对这些细胞的需求。
In vitro T-cell differentiation from pluripotent stem cells (PSCs) could potentially provide an unlimited source of T cells for cancer immunotherapy, which, however is still hindered by the inefficient obtaining functionally-matured, terminally-differentiated T cells. Here, we established a fluorescence reporter human induced pluripotent stem cell (iPSC) line termed TCF7 mCherry RUNX1 GFP , in which the endogenous expression of RUNX1 and TCF7 are illustrated by the GFP and mCherry fluorescence, respectively. Utilizing TCF7 mCherry RUNX1 GFP , we defined that the feeder cells incorporating CXCL12-expressing OP9 cells with DL4-expressing OP9 cells at a 1:3 ratio (OP9-C1D3) significantly enhanced efficiency of CD8 + T cell differentiation from PSCs. Additionally, we engineered a chimeric antigen receptor (CAR) targeting EGFR into iPSCs. The CAR-T cells differentiated from these iPSCs using OP9-C1D3 feeders demonstrated effective cytotoxicity toward lung cancer cells. We anticipate this platform will help the in vitro HSPC and T cell differentiation optimization, serving the clinical demands of these cells.
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