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Dual-targeting CAR-T cells with optimal co-stimulation and metabolic fitness enhance antitumor activity and prevent escape in solid tumors

机译:双定位CAR-T细胞与最优co-stimulation和新陈代谢健康增强抗肿瘤活性,防止逃逸固体肿瘤

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摘要

Chimeric antigen receptor (CAR)-T cells showed great activity in hematologic malignancies. However, heterogeneous antigen expression in tumor cells and suboptimal CAR-T-cell persistence remain critical aspects to achieve clinical responses in patients with solid tumors. Here we show that CAR-T cells targeting simultaneously two tumor-associated antigens and providing trans-acting CD28 and 4-1BB co-stimulation, while sharing the same CD3ξ-chain cause rapid antitumor effects in in vivo stress conditions, protection from tumor re-challenge and prevention of tumor escape due to low antigen density. Molecular and signaling studies indicate that T cells engineered with the proposed CAR design demonstrate sustained phosphorylation of T-cell-receptor-associated signaling molecules and a molecular signature supporting CAR-T-cell proliferation and long-term survival. Furthermore, metabolic profiling of CAR-T cells displayed induction of glycolysis that sustains rapid effector T-cell function, but also preservation of oxidative functions, which are critical for T-cell long-term persistence.
机译:嵌合抗原受体(车)- t细胞血液恶性肿瘤的活动。然而,异构抗原表达肿瘤细胞和次优CAR-T-cell持久性保持关键方面实现临床实体肿瘤患者的反应。同时表明,CAR-T细胞定位两个肿瘤相关抗原和提供trans-acting CD28和4-1BB co-stimulation,共享同一CD3ξ连锁事业快速抗肿瘤影响在体内压力条件下,保护从肿瘤回头挑战和预防肿瘤逃避由于抗原密度低。信号的研究表明,T细胞提出了汽车设计工程证明持续的磷酸化T-cell-receptor-associated信号分子和分子签名支持CAR-T-cell扩散和长期生存。此外,代谢CAR-T细胞的分析糖酵解的感应,这支撑了显示快速效应t细胞功能,但也氧化功能的保护t细胞长期持久性的关键。

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