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:Impact of scFv on Functionality and Safety of Third-Generation CD123 CAR T Cells.
Impact of scFv on Functionality and Safety of Third-Generation CD123 CAR T Cells.
这些结果共同强调了在 CAR 构建体开发中筛选不同 scFv 的重要性,以支持为临床开发选择具有最佳风险获益比的细胞。
嵌合抗原受体(CAR)T 细胞表达一个胞外结构域,该结构域由靶向细胞表面肿瘤相关抗原的单链可变片段(scFv)构成。选择 scFv 时应进行安全性评估并权衡疗效与毒性,尤其当靶抗原也表达于健康细胞时。本研究为评估疗效及靶向肿瘤同时影响正常组织(on-target/off-tumor)效应的差异,仅替换 scFv,构建了 5 种靶向 CD123 的不同 CAR。体外模型中,表达其中 3 种 CD123 CAR 的工程化 T 细胞能有效杀伤白血病细胞,且未增加对单核细胞或内皮细胞的裂解。IncuCyte 系统检测进一步证实 CD123 CAR T 细胞对内皮细胞的细胞毒性较低。通过祖细胞培养和 CD34 细胞裂解评估血液毒性发现,5 种 CD123 CAR T 细胞中有 2 种对造血干细胞的细胞毒性较低。采用人源化小鼠模型证实,CD123 阴性细胞不会被 CD123 CAR T 细胞清除。在 3 种母细胞性浆细胞样树突细胞肿瘤体内模型中,其中 2 种 CD123 CAR T 细胞减少了肿瘤浸润,并延长了小鼠总生存期。在一种侵袭性更强的模型中,注射后数天进行的整体 RNA 测序显示,这些 CD123 CAR T 细胞上调了与细胞毒性、活化/耗竭相关的基因。综上,这些结果强调了筛选不同 scFv 对开发 CAR 构建体的重要性,有助于选择风险获益比最适合临床开发的细胞。
Chimeric antigen receptor (CAR) T cells express an extracellular domain consisting of a single-chain fragment variable (scFv) targeting a surface tumor-associated antigen. scFv selection should involve safety profiling with evaluation of the efficacy/toxicity balance, especially when the target antigen also is expressed on healthy cells. Here, to assess differences in terms of efficacy and on-target/off-tumor effects, we generated five different CARs targeting CD123 by substituting only the scFv. In in vitro models, T cells engineered to express three of these five CD123 CARs were effectively cytotoxic on leukemic cells without increasing lysis of monocytes or endothelial cells. Using the IncuCyte system, we confirmed the low cytotoxicity of CD123 CAR T cells on endothelial cells. Hematotoxicity evaluation using progenitor culture and CD34 cell lysis showed that two of the five CD123 CAR T cells were less cytotoxic on hematopoietic stem cells. Using a humanized mouse model, we confirmed that CD123- cells were not eliminated by the CD123 CAR T cells. Two CD123 CAR T cells reduced tumor infiltration and increased the overall survival of mice in three in vivo models of blastic plasmacytoid dendritic cell neoplasm. In an aggressive version of this model, bulk RNA sequencing analysis showed that these CD123 CAR T cells upregulated genes associated with cytotoxicity and activation/exhaustion a few days after the injection. Together, these results emphasize the importance of screening different scFvs for the development of CAR constructs to support selection of cells with the optimal risk-benefit ratio for clinical development.
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