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:BOXR1030, an anti-GPC3 CAR with exogenous GOT2 expression, shows enhanced T cell metabolism and improved anti-cell line derived tumor xenograft activity.
BOXR1030, an anti-GPC3 CAR with exogenous GOT2 expression, shows enhanced T cell metabolism and improved anti-cell line derived tumor xenograft activity.
这些结果表明,GOT2的共表达可通过诱导细胞功能和表型的广泛变化,显著提高CAR T细胞的整体抗肿瘤活性。这些数据表明,BOXR1030是靶向特定实体瘤的一种有吸引力的方法。为此,BOXR1030将在临床中探索,以评估安全性、剂量探索和初步疗效(NCT05120271)。
实体瘤微环境(TME)驱动T细胞功能障碍,并抑制CAR-T 细胞(CAR T)等免疫疗法的有效性。早期数据显示,在临床前模型中,调节T细胞代谢可改善瘤内T细胞功能。
我们评估了GPC3在人类正常组织和肿瘤组织标本中的表达。我们开发并评估了BOXR1030,这是一种新型CAR T治疗药物,共表达靶向glypican-3(GPC3)的CAR和外源性谷氨酸-草酰乙酸转氨酶2(GOT2),并在体外和体内评估了其CAR T细胞功能。
在肝细胞癌、脂肪肉瘤、鳞状肺癌和默克尔细胞癌患者的肿瘤活检中,通过免疫组织化学染色观察到肿瘤抗原 GPC3 的细胞表面表达。与单独的对照 GPC3 CAR 相比,BOXR1030(共表达 GOT2 的 GPC3 靶向 CAR T 细胞)在侵袭性实体瘤异种移植模型中表现出优越的体内疗效,并在体外显示出有利特性,包括增强的细胞因子产生谱、分化程度较低的 T 细胞表型且应激和耗竭标志物表达较低、增强的代谢谱以及在 TME 样条件下增殖增加。
PURPOSE: The solid tumor microenvironment (TME) drives T cell dysfunction and inhibits the effectiveness of immunotherapies such as chimeric antigen receptor-based T cell (CAR T) cells. Early data has shown that modulation of T cell metabolism can improve intratumoral T cell function in preclinical models. EXPERIMENTAL DESIGN: We evaluated GPC3 expression in human normal and tumor tissue specimens. We developed and evaluated BOXR1030, a novel CAR T therapeutic co-expressing glypican-3 (GPC3)-targeted CAR and exogenous glutamic-oxaloacetic transaminase 2 (GOT2) in terms of CAR T cell function both in vitro and in vivo. RESULTS: Cell surface expression of tumor antigen GPC3 was observed by immunohistochemical staining in tumor biopsies from hepatocellular carcinoma, liposarcoma, squamous lung cancer, and Merkel cell carcinoma patients. Compared to control GPC3 CAR alone, BOXR1030 (GPC3-targeted CAR T cell that co-expressed GOT2) demonstrated superior in vivo efficacy in aggressive solid tumor xenograft models, and showed favorable attributes in vitro including an enhanced cytokine production profile, a less-differentiated T cell phenotype with lower expression of stress and exhaustion markers, an enhanced metabolic profile and increased proliferation in TME-like conditions. CONCLUSIONS: Together, these results demonstrated that co-expression of GOT2 can substantially improve the overall antitumor activity of CAR T cells by inducing broad changes in cellular function and phenotype. These data show that BOXR1030 is an attractive approach to targeting select solid tumors. To this end, BOXR1030 will be explored in the clinic to assess safety, dose-finding, and preliminary efficacy (NCT05120271).
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