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:Signaling Dynamics of TSHR-Specific CAR-T Cells Revealed by FRET-Based Biosensors.
Signaling Dynamics of TSHR-Specific CAR-T Cells Revealed by FRET-Based Biosensors.
具有CD28或4-1BB共刺激信号域的TSHR CAR-T细胞在体外表现出强效的细胞毒性。
尽管大多数甲状腺癌患者预后良好且长期生存,但部分患者对传统治疗方法难治,面临较高的死亡风险。CAR-T疗法为治疗这些患者提供了一种有吸引力的策略。考虑到TSHR在甲状腺组织中的有限表达,TSHR已被认为是一个有前景的CAR-T靶点候选。然而,寻找用于治疗甲状腺癌的最佳CAR设计仍然是一个挑战。在CAR-T细胞激活过程中,CAR分子启动动态信号级联。基于FRET的生物传感器的开发使我们能够以高时空分辨率检测CAR-T细胞激活过程中关键激酶的信号动态。在此,我们使用ZAP70和ERK生物传感器,可视化了TSHR特异性CAR-T细胞在抗原刺激下ZAP70和ERK活性的动态变化。我们首先构建了几种靶向TSHR的CAR用于治疗晚期甲状腺癌。带有CD28或4-1BB共刺激信号结构域的TSHR CAR-T细胞在体外表现出强效的细胞毒性。通过FRET成像,我们观察到TSHR CAR-T细胞在结合靶细胞后ZAP70和ERK活性迅速升高。尽管基于CD28的CAR-T细胞具有与基于4-1BB的CAR-T细胞相似的ZAP70激活动态,但它们表现出略微增强的ERK激活,这可能有助于其在体内更快的抗肿瘤动力学。这些结果证明了TSHR CAR-T细胞治疗晚期甲状腺癌的疗效。我们的研究表明了应用FRET生物传感器优化CAR设计以实现有效CAR-T治疗的潜力。
Although most patients with thyroid cancers have good prognosis and long-term survival, some patients are refractory to traditional therapeutic approaches and face a high risk of mortality. CAR-T therapy provides an attractive strategy to treat these patients. Considering the limited expression in thyroid tissues, thyroid-stimulating hormone receptor (TSHR) has been considered as a promising candidate as CAR-T target. However, it is still a challenge to find the optimal CAR design for the treatment of thyroid cancers. Dynamic signaling cascade is initiated by CAR molecules during CAR-T cell activation. The development of FRET-based biosensors enables us to detect the signaling dynamics of key kinases during CAR-T cell activation with high spatiotemporal resolution. Here using the ZAP70 and ERK biosensors, we visualized the dynamics of ZAP70 and ERK activities in TSHR-specific CAR-T cells upon antigen stimulation. We first constructed several TSHR-targeting CARs for the treatment of advanced thyroid cancers. The TSHR CAR-T cells with CD28 or 4-1BB co-stimulatory signaling domains exhibited potent cytotoxicity in vitro . By FRET imaging, we observed rapid increase of ZAP70 and ERK activities in TSHR CAR-T cells upon target cell binding. Even though CD28-based CAR-T cells had similar ZAP70 activation dynamics as 4-1BB-based CAR-T cells, they displayed slightly enhanced ERK activation, which may contribute to their faster anti-tumor kinetics in vivo . These results demonstrated the efficacy of TSHR CAR-T cells to treat advanced thyroid cancers. Our study indicated the potential of applying FRET biosensors to optimize the design of CAR for effective CAR-T therapy.
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