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:Rapamycin Pretreatment Rescues the Bone Marrow AML Cell Elimination Capacity of CAR-T Cells.
我们的研究揭示了当前 AML 临床试验中报道的 CAR-T 疗效有限的潜在原因,并阐明了一种易于实施的预处理策略,该策略可增强 CAR-T 细胞的抗 AML 疗效。
目的:正在进行的临床试验显示,嵌合抗原受体(CAR)T 细胞治疗急性髓系白血病(AML)的疗效有限。本研究旨在确定报告中 CAR-T 治疗 AML 疗效有限的潜在原因。实验设计:制备靶向上皮细胞黏附分子(EpCAM)的 CAR-T 细胞,评估其杀伤 AML 细胞的活性;研究调节 CAR-T 细胞 mTORC1 和 mTORC2 信号对 CXCR4 水平的影响;评估体外扩增期间雷帕霉素预处理 EpCAM CAR-T 细胞的作用,并在白血病异种移植小鼠模型中评估雷帕霉素预处理的 EpCAM CAR-T(包括 CXCR4 敲低细胞)及 CD33 CAR-T 的体内抗肿瘤效果。结果:EpCAM CAR-T 可杀伤 AML 细胞,但未能清除骨髓中的 AML 细胞。进一步研究显示,CAR-T 细胞中 mTORC1 信号异常激活会减少其骨髓浸润,并降低雷帕霉素作用靶点 CXCR4 的水平。以雷帕霉素预处理降低 mTORC1 活性,可增强 CAR-T 细胞浸润骨髓的能力,并提高白血病异种移植小鼠模型中骨髓 AML 细胞的清除程度。CXCR4 敲低实验显示,CXCR4 有助于提高 EpCAM CAR-T 细胞骨髓浸润能力及减少骨髓 AML 细胞。结论:本研究揭示了当前 AML CAR-T 临床试验疗效有限的一个潜在原因,并提出一种易于实施的预处理策略,可增强 CAR-T 抗 AML 活性。
PURPOSE: Ongoing clinical trials show limited efficacy for Chimeric antigen receptor (CAR) T treatment for acute myeloid leukemia (AML). The aim of this study was to identify potential causes of the reported limited efficacy from CAR-T therapies against AML. EXPERIMENTAL DESIGN: We generated CAR-T cells targeting Epithelial cell adhesion molecule (EpCAM) and evaluated their killing activity against AML cells. We examined the impacts of modulating mTORC1 and mTORC2 signaling in CAR-T cells in terms of CXCR4 levels. We examined the effects of a rapamycin pretreatment of EpCAM CAR-T cells (during ex vivo expansion) and assessed the in vivo antitumor efficacy of rapamycin-pretreated EpCAM CAR-T cells (including CXCR4 knockdown cells) and CD33 CAR-T cells in leukemia xenograft mouse models. RESULTS: EpCAM CAR-T exhibited killing activity against AML cells but failed to eliminate AML cells in bone marrow. Subsequent investigations revealed that aberrantly activated mTORC1 signaling in CAR-T cells results in decreased bone marrow infiltration and decreased the levels of the rapamycin target CXCR4. Attenuating mTORC1 activity with the rapamycin pretreatment increased the capacity of CAR-T cells to infiltrate bone marrow and enhanced the extent of bone marrow AML cell elimination in leukemia xenograft mouse models. CXCR4 knockdown experiments showed that CXCR4 contributes to the enhanced bone marrow infiltration capacity of EpCAM CAR-T cells and the observed reduction in bone marrow AML cells. CONCLUSIONS: Our study reveals a potential cause for the limited efficacy of CAR-T reported from current AML clinical trials and illustrates an easy-to-implement pretreatment strategy, which enhances the anti-AML efficacy of CAR-T cells. See related commentary by Maiti and Daver, p. 5739 .
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