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:Novel CAR T cell blend targeting PDPN and GD2 to overcome glioblastoma heterogeneity.
这种新型 PDPN/GD2 CAR T 细胞混合物在晚期临床前胶质母细胞瘤模型中显示出强效疗效,提示其具有治疗异质性胶质母细胞瘤和解决单抗原 CAR T 细胞疗法相关局限性的潜力。
背景:嵌合抗原受体(CAR)T细胞在血液系统恶性肿瘤中已取得令人鼓舞的缓解率,但治疗胶质母细胞瘤(GBM)的成功有限,尤其受到肿瘤内及肿瘤间高度异质性的影响。本研究识别出一种表达稳定的靶抗原足细胞膜蛋白(PDPN),并评估PDPN-CAR T与GD2-CAR T细胞混合疗法靶向异质性GBM的潜力。 方法:靶抗原筛选使用临床样本、细胞系、健康组织和公开RNA测序数据集。通过GBM细胞系及患者来源类器官(PDO)共培养实验评估CAR T细胞的抗肿瘤功能,并在原位异种移植模型中评估局部区域给药后的体内疗效。 结果:CAR T细胞对多例患者来源的多种细胞系和PDO均显示出强效抗肿瘤活性。所有PDO均表达PDPN和GD2;无论抗原表达模式如何,CAR T细胞混合疗法诱导的类器官凋亡水平均显著高于单抗原靶向CAR T细胞。体内实验中,局部区域给予单特异性CAR T细胞可有效使肿瘤消退。尽管异质性原位肿瘤最终在这些单药组中复发,CAR T细胞混合疗法显著延长总生存期,并使多数小鼠实现治愈。 结论:这一新型PDPN/GD2 CAR T细胞混合疗法在晚期临床前GBM模型中显示出强效疗效,提示其有望治疗异质性GBM并克服单抗原CAR T疗法的局限。
BACKGROUND: While chimeric antigen receptor (CAR) T cells have achieved encouraging remission rates in hematological malignancies, they have demonstrated limited success in treating glioblastoma (GBM), particularly due to high intratumoral and intertumorous heterogeneity. In this study, we identified a consistently expressed target antigen, podoplanin (PDPN), and evaluated the potential of a PDPN-CAR T cell and GD2-CAR T cell blend to target heterogeneous GBM. METHODS: Target antigen screening included clinical samples, cell lines and healthy tissues, as well as public RNA sequencing datasets. The anti-tumor function of CAR T cells was examined in co-culture experiments with GBM cell lines and patient-derived organoids (PDOs), and in vivo after locoregional delivery in orthotopic xenograft models. RESULTS: CAR T cells demonstrated strong anti-tumor activity against several cell lines and PDOs from multiple patients. PDPN and GD2 were expressed in all PDOs, and regardless of the antigen expression pattern, the CAR T cell blend induced significantly higher apoptosis levels in organoids compared with single-antigen targeting CAR T cells. In vivo, we observed efficient tumor regression after locoregional administration of monospecific CAR T cells. While heterogeneous orthotopic tumors eventually relapsed in these groups, therapy with the CAR T cell blend significantly increased overall survival and even achieved a cure in the majority of mice. CONCLUSION: This novel PDPN/GD2 CAR T cell blend demonstrated robust efficacy in advanced preclinical GBM models, suggesting its potential to treat heterogeneous GBM and address limitations associated with single-antigen CAR T cell therapies.
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