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猪尾猕猴中的混合 CAR-T 筛选鉴定出具有增强增殖、迁移和持久性的设计

英文原题:Pooled CAR-T screening in pig-tailed macaques identifies designs with enhanced proliferation, trafficking, and persistence.

查看英文原题

Pooled CAR-T screening in pig-tailed macaques identifies designs with enhanced proliferation, trafficking, and persistence.

PubMed 2025/11/20(内容时间) Blood Q1 · IF 23.9(JCR 2025)

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中文摘要

CAR-T 疗法革新了 B 细胞恶性肿瘤的治疗;然而,超过 60% 患者在 1 年内复发,常见原因是 CAR-T 持续性不足。小鼠和原代细胞模型对 CAR-T 疗法进步发挥了重要作用,但往往不能预测临床结局,凸显了开发更具转化相关性模型的必要性。据作者所知,本研究首次在免疫健全的非人灵长类(NHP)模型中系统评估 CAR 结构与功能的关系。研究构建了 20 种 CD20 靶向 CAR,采用不同铰链区、跨膜区和共刺激结构域组合。体外表征后,将混合自体 CAR-T 细胞组合输注给 3 只 NHP,并使用新型数字液滴 PCR 检测方法纵向追踪 CAR 丰度。

体外实验中,含 MyD88-CD40 共刺激结构域的 CAR-T 表现出明显不同的功能特征,包括活化增强、细胞因子分泌模式独特、基础持续性信号传导及抗耗竭能力。体内实验中,MyD88-CD40 CAR 大量扩增,占外周 CAR-T 细胞比例最高达 100%,显著优于经典 CD28 和 4-1BB CAR,并伴随所有动物出现强效 B 细胞清除。尤其是具有 CD28 铰链区和跨膜区的 MyD88-CD40 CAR,向次级淋巴组织迁移能力更强,且持续存在至研究终点;其他 CAR 则在第 28 天前逐渐减少。研究结果凸显 NHP 模型在筛选 CAR 设计方面的价值,并确定 MyD88-CD40 CAR 为具有突出效力的候选方案。该结构域赋予的独特功能特征或可揭示增强 CAR-T 活性的关键因素。

展开英文摘要原文

Chimeric antigen receptor T-cell (CAR-T) therapy has revolutionized the treatment of B-cell malignancies; however, >60% of patients relapse within 1 year, often due to insufficient CAR-T persistence.

Although mouse and primary cell models have been instrumental in advancing CAR-T therapy, they frequently fail to predict clinical outcomes, underscoring the need for more translationally relevant models. To address this limitation, we conducted, to our knowledge, the first systematic evaluation of CAR structure-function relationships in an immunocompetent nonhuman primate (NHP) model.

We engineered an array of 20 CD20-targeted CARs with distinct combinations of hinge, transmembrane, and costimulatory domains. After ex vivo characterization, we administered pooled autologous CAR-T arrays to 3 NHPs and tracked CAR abundance longitudinally using a novel digital droplet polymerase chain reaction assay. Ex vivo, CAR-T cells incorporating the MyD88-CD40 costimulatory domain exhibited markedly distinct functional profiles, including increased activation, unique cytokine secretion, tonic signaling, and resistance to exhaustion.

In vivo, MyD88-CD40 CARs expanded dramatically, comprising up to 100% of peripheral CAR-T cells and significantly outperforming canonical CD28- and 4-1BB-based CARs. This expansion was associated with robust B-cell depletion across all animals. MyD88-CD40 CARs, particularly those with a CD28 hinge and transmembrane domain, demonstrated superior trafficking to secondary lymphoid tissues and persistence through study end point, unlike other CARs, which waned by day 28.

Our findings highlight the value of NHP models for screening CAR designs and identify MyD88-CD40 CARs as candidates with unmatched potency. The unique functional attributes conferred by this domain may provide key insights into features that drive enhanced CAR-T activity.

论文信息

作者
Maynard LH、Cavanaugh EJ、Zhu H、Starke CE、Doherty SM、Einhaus T、Pérez-Osorio AC、Stensland L
单位
Translational Science and Therapeutics Division, Fred Hutchinson Cancer Center, Seattle, WA.United States
期刊
Blood2025 Nov 20
原文标识
PubMed 40811854 · DOI 10.1182/blood.2025028683