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:ADI-270: an armored allogeneic gamma delta T cell therapy designed to target CD70-expressing solid and hematologic malignancies.
这些结果证明了 ADI-270 具有强大的效力和能力,可将抗肿瘤活性扩展至抗原表达异质性的癌症。ADI-270 中引入的功能性装甲提供了一种机制,用以克服 TME 内疗效降低和持续性受限的局限。ADI-270 有潜力靶向多种 CD70 + 癌症,初步临床评估正在复发/难治性透明细胞肾细胞癌中开展。
肿瘤微环境(TME)带来的挑战限制了传统 CAR-T 细胞疗法的疗效。归巢屏障、免疫抑制因素以及靶抗原异质性均可损害 CAR-T 细胞在 TME 内的功能活性。替代策略已考虑纳入 γδ T 细胞作为 CAR-T 细胞方法,以期可能克服这些局限。γδ T 细胞兼具固有免疫与适应性免疫,有助于实现对肿瘤的广泛识别,而其天然的组织趋向性倾向可能带来更有效的肿瘤浸润。本文报道的是 ADI-270 的临床前表征,这是一种靶向 CD70+ 肿瘤的同种异体 CAR-T 细胞产品,采用基于天然 CD27 受体的第三代 CAR 进行工程化改造。ADI-270 还经过双重装甲化改造,以减轻 TGF 的免疫抑制效应并降低同种异体排斥的可能性。
从健康供者人 PBMC 中扩增出工程化表达抗 CD70 CAR 和显性负性 TGF 受体 II(dnTGF RII)的 Vδ1 T 细胞。通过体外细胞培养试验和体内肿瘤异种移植模型评估了 ADI-270 的表型及功能特征。
ADI-270 对一组癌细胞系表现出高水平的体外细胞毒性,并且与参考的基于 scFv 的抗 CD70 CAR T 细胞相比,显示出有利的炎性细胞因子谱。尽管在多种实体瘤和血液肿瘤细胞模型中观察到 CD70 低表达,细胞毒性仍保持强效。当用 dnTGF RII 装甲后,ADI-270 对 TGF 介导的 T 细胞效应活性抑制表现出功能韧性。此外,强效且敏感的 CD70 靶向的引入降低了体外 T 细胞介导的针对 ADI-270 的同种异体反应性杀伤,且无自相残杀证据。最后,ADI-270 在异种移植小鼠模型中表现出强大的肿瘤趋向性,并能控制原发性和继发性肿瘤攻击。
BACKGROUND: The tumor microenvironment (TME) poses challenges that limit the efficacy of conventional CAR-T cell therapies. Homing barriers, immunosuppressive factors, and target antigen heterogeneity can impair CAR-T cell functional activity within the TME. Alternative strategies have contemplated incorporating the use of gamma delta ( ) T cells as a CAR-T cell approach to potentially overcome these limitations. T cells possess both innate and adaptive immunity to facilitate broad tumor recognition, and their natural propensity for tissue tropism may allow for more effective tumor infiltration. Reported here is the preclinical characterization of ADI-270, an allogeneic CAR-T cell product targeting CD70 + cancers, engineered with a third-generation CAR based on the natural CD27 receptor. ADI-270 is also double-armored to mitigate the immunosuppressive effects of TGF and reduce the potential for allogeneic rejection. METHODS: V 1 T cells engineered to express an anti-CD70 CAR and dominant negative TGF receptor II (dnTGF RII) were expanded from healthy donor human PBMCs. The phenotype and functional characterization of ADI-270 were assessed with in vitro cell culture assays and in vivo tumor xenograft models. RESULTS: ADI-270 exhibited high levels of in vitro cytotoxicity against a panel of cancer cell lines and displayed a favorable inflammatory cytokine profile compared with reference scFv-based anti-CD70 CAR T cells. Cytotoxicity remained potent despite low CD70 expression observed in multiple solid and hematologic tumor cell models. When armored with dnTGF RII, ADI-270 exhibited functional resilience to TGF -mediated inhibition of T cell effector activity. In addition, the incorporation of potent and sensitive CD70-targeting decreased T cell-mediated alloreactive killing against ADI-270 in vitro without evidence of fratricide. Finally, ADI-270 displayed robust tumor tropism and control of primary and secondary tumor challenges in xenograft mouse models. CONCLUSIONS: These results demonstrate the robust potency and capacity of ADI-270 to extend antitumor activity to cancers with heterogeneous antigen expression. The functional armoring incorporated into ADI-270 provides a mechanism to overcome the limitations of reduced efficacy and persistence within the TME. ADI-270 has the potential to target multiple CD70 + cancers with initial clinical evaluation proceeding in relapsed/refractory clear cell renal cell carcinoma. TRIAL REGISTRATION NUMBER: NCT06480565.
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