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:Target antigen-displaying extracellular vesicles boost CAR T cell efficacy in cell and mouse models of neuroblastoma.
Glypican-2 (GPC2) 和双唾液酸神经节苷脂 GD2 是神经母细胞瘤中经过验证的 CAR T 细胞靶点,但持久的临床缓解仍然有限。
Glypican-2 (GPC2) 和双唾液酸神经节苷脂 GD2 是神经母细胞瘤中经过验证的 CAR T 细胞靶点,但持久临床缓解仍有限。这种中等的CAR-T 细胞 (CAR T 细胞) 疗效部分归因于 T 细胞持久性欠佳、抗原下调以及敌对的肿瘤微环境,其中包括调节免疫细胞的细胞外囊泡 (EVs)。神经母细胞瘤来源的 EVs 可能含有 CAR 靶点或其他可调节 CAR T 细胞抗肿瘤活性的免疫调节元件。因此,我们首先分析了神经母细胞瘤 EVs 的表面蛋白组,并评估了它们对 GPC2 和 GD2 CAR T 细胞功能的影响。神经母细胞瘤 EVs 显示 GPC2 和 GD2,程序性死亡配体 1 (PD-L1) 表达极低,并且在荷瘤小鼠和患者血液中可检测到。这些 EVs 直接激活配对的 CAR T 细胞,提示外周来源的 CAR 抗原发挥作用。为了在治疗上利用这一点,我们将非肿瘤来源的 GPC2+ 合成 EVs (SyntEVs) 工程化为 CAR T 细胞增强剂,并用白蛋白结合结构域或 GD2 结合结构域将其武装。在携带人神经母细胞瘤细胞系来源或患者来源异种移植瘤的小鼠中,GPC2 CAR T 细胞后连续输注武装的 SyntEVs 通过增强外周 CAR T 细胞持久性提高了肿瘤控制。此外,靶向 GD2 的 SyntEVs 用 GPC2 装饰低抗原肿瘤细胞,从而绕过抗原下调。这一 SyntEV 平台提供了一个多功能系统,以解决 CAR T 细胞在实体瘤中的治疗局限性。
Glypican-2 (GPC2) and the disialoganglioside GD2 are validated CAR T cell targets in neuroblastoma, but durable clinical responses remain limited. This modest chimeric antigen receptor T cell (CAR T cell) efficacy is in part due to suboptimal T cell persistence, antigen down-regulation, and a hostile tumor microenvironment, which includes immune cell-modulating extracellular vesicles (EVs). Neuroblastoma-derived EVs may contain CAR targets or other immunoregulatory elements that can modulate CAR T cell antitumor activity. Thus, we first profiled the surfaceome of neuroblastoma EVs and assessed their impact on both GPC2 and GD2 CAR T cell function. Neuroblastoma EVs displayed GPC2 and GD2, with minimal expression of programmed death-ligand 1 (PD-L1), and were detected in blood from tumor-bearing mice and patients. These EVs directly activated paired CAR T cells, suggesting a role for a peripheral source of CAR antigen. To exploit this therapeutically, we engineered nontumor-derived GPC2+ synthetic EVs (SyntEVs) as CAR T cell enhancers and armored them with either albumin-binding domains or GD2-binding domains. In mice harboring human neuroblastoma cell line-derived or patient-derived xenografts, serial infusion of armored SyntEVs after GPC2 CAR T cells enhanced tumor control by boosting peripheral CAR T cell persistence. Moreover, GD2-targeting SyntEVs decorated low-antigen tumor cells with GPC2, circumventing antigen down-regulation. This SyntEV platform offers a versatile system to address the therapeutic limitations of CAR T cells in solid tumors.
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