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CRISPR 破坏程序性死亡-1 检查点的同种异体 CAR-T 细胞表现出增强的功能适应性

英文原题:Allogeneic chimeric antigen receptor-T cells with CRISPR-disrupted programmed death-1 checkpoint exhibit enhanced functional fitness.

查看英文原题

Allogeneic chimeric antigen receptor-T cells with CRISPR-disrupted programmed death-1 checkpoint exhibit enhanced functional fitness.

PubMed 2023/04/21(内容时间) Cytotherapy Q1 · IF 4.5(JCR 2025)

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研究概要

在同种异体 CAR-T 细胞治疗的背景下进行基因组 PD-1 检查点破坏,可能为治疗 B 淋巴细胞恶性肿瘤提供有吸引力的选择。

中文摘要

治疗性破坏免疫检查点已显著扩展癌症治疗手段。程序性死亡蛋白 1(PD-1)/程序性死亡配体 1 轴在下调 T 细胞功能方面发挥重要作用,为增强 CAR-T 细胞疗法的疾病调节作用提供了可行策略。

为应对检查点干扰,研究者采用新一代 CRISPR 平台(Cas9 chRDNA)对原代人 T 细胞进行基因组编辑,敲除编码 PD-1 受体的 PDCD1 基因。将 CD19 特异性嵌合抗原受体定点插入 T 细胞受体 α 恒定区基因座,以驱动细胞毒活性。

在成熟的 B 细胞恶性肿瘤原位异种移植模型中,与相同工程化但未敲除 PDCD1 的 CAR-T 相比,异基因 CAR-T 细胞 CB-010 延长了小鼠生存期。CB-010 与未破坏 PDCD1 的 CAR-T 在血液系统组织中的持续存在动力学相似,提示其对已形成异种移植瘤的强效早期减瘤作用源自功能适应性增强。单细胞 RNA-seq 分析显示,与相同工程化但未敲除 PDCD1 的 CAR-T 相比,CB-010 中 Treg 更少、耗竭表型更低、功能障碍特征减少,同时活化、糖酵解和氧化磷酸化特征更高。此外,线粒体代谢适应性增强,包括呼吸能力增加;这是 T 细胞分化程度较低的标志。

在异基因 CAR-T 细胞疗法背景下进行基因组 PD-1 检查点破坏,可能成为治疗 B 淋巴系统恶性肿瘤的有力选择。

展开英文摘要原文

To address checkpoint interference, primary human T cells were genome edited with a next-generation CRISPR-based platform (Cas9 chRDNA) by knockout of the PDCD1 gene encoding the PD-1 receptor. Site-specific insertion of a chimeric antigen receptor specific for CD19 into the T cell receptor alpha constant locus was implemented to drive cytotoxic activity.

These allogeneic CAR-T cells (CB-010) promoted longer survival of mice in a well-established orthotopic tumor xenograft model of a B cell malignancy compared with identically engineered CAR-T cells without a PDCD1 knockout. The persistence kinetics of CB-010 cells in hematologic tissues versus CAR-T cells without PDCD1 disruption were similar, suggesting the robust initial debulking of established tumor xenografts was due to enhanced functional fitness. By single-cell RNA-Seq analyses, CB-010 cells, when compared with identically engineered CAR-T cells without a PDCD1 knockout, exhibited fewer T reg cells, lower exhaustion phenotypes and reduced dysfunction signatures and had higher activation, glycolytic and oxidative phosphorylation signatures. Further, an enhancement of mitochondrial metabolic fitness was observed, including increased respiratory capacity, a hallmark of less differentiated T cells.

Genomic PD-1 checkpoint disruption in the context of allogeneic CAR-T cell therapy may provide a compelling option for treating B lymphoid malignancies.

论文信息

作者
Lau E、Kwong G、Fowler TW、Sun BC、Donohoue PD、Davis RT、Bryan M、McCawley S
第一作者单位
Caribou Biosciences, Inc., Berkeley, California, USA.United States
通讯作者单位
Caribou Biosciences, Inc., Berkeley, California, USA. Electronic address: skanner@cariboubio.com.United States
文献类型
非美国政府资助研究
期刊
Cytotherapy2023 Jul
原文标识
PubMed 37086241 · DOI 10.1016/j.jcyt.2023.03.011