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CRISPR 增强型 CAR-T 细胞免疫疗法的系统性发现

英文原题:Systematic discovery of CRISPR-boosted CAR T cell immunotherapies.

查看英文原题

Systematic discovery of CRISPR-boosted CAR T cell immunotherapies.

PubMed 2025/09/24(内容时间) Nature Q1 · IF 56.1(JCR 2025)

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中文摘要

嵌合抗原受体(CAR)T细胞疗法治疗血液系统恶性肿瘤取得显著成功,但CAR-T 细胞功能障碍仍是治疗失败的常见原因。本研究提出CELLFIE,这是一种面向多种临床目标增强CAR-T 细胞的CRISPR筛选平台。研究者在人原代CAR-T 细胞中开展全基因组筛选,检测涵盖T细胞生物学关键方面,包括增殖、靶细胞识别、活化、凋亡、相互杀伤及耗竭。采用新型体内CROP-seq方法,在人白血病异种移植模型中优先筛选候选基因敲除,并确定多种可增强CAR-T 疗效的基因。最突出的是,研究发现敲除RHOG可强效增强CAR-T 功能,这一作用出乎意料;单独敲除RHOG或与FAS联合敲除均有效,并在多个体内模型、不同CAR设计、样本供者及患者来源细胞中得到验证。为展示CELLFIE平台的多功能性,研究者还开展组合CRISPR筛选以发现协同基因对,并通过饱和碱基编辑筛选表征RHOG变异。

总之,研究者发现、验证并从生物学层面表征了经CRISPR增强的CAR-T 细胞;在常用基准评估中,这些细胞优于标准CAR-T,为优化细胞免疫疗法奠定了基础资源。

展开英文摘要原文

Chimeric antigen receptor (CAR) T cell therapy has shown remarkable success in treating blood cancers, but CAR T cell dysfunction remains a common cause of treatment failure 1 .

Here we present CELLFIE, a CRISPR screening platform for enhancing CAR T cells across multiple clinical objectives.

We performed genome-wide screens in human primary CAR T cells, with readouts capturing key aspects of T cell biology, including proliferation, target cell recognition, activation, apoptosis and fratricide, and exhaustion. Screening hits were prioritized using a new in vivo CROP-seq 2 method in a xenograft model of human leukaemia, establishing several gene knockouts that boost CAR T cell efficacy. Most notably, we discovered that RHOG knockout is a potent and unexpected CAR T cell enhancer, both individually and together with FAS knockout, which was validated across multiple in vivo models, CAR designs and sample donors, and in patient-derived cells.

Demonstrating the versatility of the CELLFIE platform, we also conducted combinatorial CRISPR screens to identify synergistic gene pairs and saturation base-editing screens to characterize RHOG variants. In summary, we discovered, validated and biologically characterized CRISPR-boosted CAR T cells that outperform standard CAR T cells in widely used benchmarks, establishing a foundational resource for optimizing cell-based immunotherapies.

论文信息

作者
Datlinger P、Pankevich EV、Arnold CD、Pranckevicius N、Lin J、Romanovskaia D、Schaefer M、Piras F
第一作者单位
CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria. paul.datlinger@cellfie.org.Austria
通讯作者单位
CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria. cbock@cemm.oeaw.ac.at.Austria
文献类型
非美国政府资助研究
期刊
Nature2025 Oct
原文标识
PubMed 40993398 · DOI 10.1038/s41586-025-09507-9