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:Demethylation-primed tandem CD19/CD20 CAR T cells in relapsed/refractory B-cell lymphoma: a phase I/II trial.
在此,我们报告一项开放标签非随机I/II期试验(NCT04697940),评估经DAC预处理的CD19/CD20双靶向CAR T细胞(dCAR T)在23例复发或难治性NHL患者中的应用。
尽管 CAR T 疗法在非霍奇金淋巴瘤 (NHL) 中取得成功,复发仍然具有挑战性。此前,我们显示地西他滨 (DAC) 体外预处理可增强 CAR T 持久性和疗效。在此,我们报告一项开放标签非随机 I/II 期试验 (NCT04697940),评估 DAC 预处理的 CD19/CD20 双靶向 CAR T 细胞 (dCAR T) 在 23 例复发或难治性 NHL 患者中的应用。主要终点为 I 期的安全性和剂量毒性,以及 II 期的总缓解率和完全缓解率 (CRR)。次要终点包括无进展生存期 (PFS)、总生存期和缓解持续时间。该试验已达到预设终点。治疗耐受性良好,并实现持久缓解,CRR 为 87%,2 年 PFS 为 77%(中位随访 24.3 个月)。与历史未修饰 CAR T 队列相比,dCAR T 细胞表现出强劲的体内扩增和持续持久性。单细胞测序表明,DAC 预处理可富集维持细胞毒性和记忆特征的记忆样祖细胞,并上调与 T 细胞适应性及内源性免疫参与相关的基因。这些数据确立 DAC 预处理作为一种临床可行的表观遗传重编程策略,可增强 CAR T 持久性和疗效,为恶性肿瘤的工程化细胞疗法提供一种可推广的范式。
Despite the success of CAR T therapy in non-Hodgkin lymphoma (NHL), recurrence remains challenging. Previously, we showed that ex vivo priming with decitabine (DAC) enhances CAR T persistence and efficacy. Here, we report on an open-label non-randomised phase I/II trial (NCT04697940) evaluating DAC-primed CD19/CD20 dual-targeted CAR T cells (dCAR T) in 23 patients with relapsed or refractory NHL. Primary endpoints are safety and dose-toxicity for phase I, and overall response rate and complete response rate (CRR) for phase II. Secondary endpoints include progression-free survival (PFS), overall survival, and duration of response. This trial has met pre-specified endpoints. Treatment is well tolerated and achieves durable responses, with an 87% CRR and a 2-year PFS of 77% (median follow-up, 24.3 months). Compared with historically unmodified CAR T cohorts, dCAR T cells exhibited robust in vivo expansion and sustained persistence. Single-cell sequencing indicates that DAC priming enriches for memory-like progenitors, which maintain cytotoxic and memory signatures, and upregulates genes associated with T cell fitness and engagement of endogenous immunity. These data establish DAC-priming as a clinically feasible epigenetic reprogramming strategy enhanceing CAR T durability and efficacy, offering a generalizable paradigm for engineered cell therapies in malignant tumors.
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