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利用 CRISPR-Cas9 基因编辑构建下一代 CAR-T 细胞

英文原题:Engineering the next-generation of CAR T-cells with CRISPR-Cas9 gene editing.

查看英文原题

Engineering the next-generation of CAR T-cells with CRISPR-Cas9 gene editing.

PubMed 2022/03/18(内容时间) Mol Cancer Q1 · IF 42.2(JCR 2025)

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中文摘要

嵌合抗原受体(CAR)T细胞是个体化癌症治疗的一项突破。在这一策略中,利用由抗原识别、信号传导和共刺激结构域组成的合成受体,对T细胞重新编程,使其靶向并摧毁肿瘤细胞。尽管这一方法成功治疗了难治性B细胞恶性肿瘤,但在许多其他癌症,尤其实体瘤中,CAR-T 治疗的最佳效力尚未实现。T细胞耗竭、CAR-T 细胞持续存在能力不足、细胞因子相关毒性以及自体产品生产瓶颈等因素,限制了该方法的安全性、疗效和可及性。随着CRISPR-Cas9基因编辑变得简便易用,许多限制有望得到解决。

因此,当前研究聚焦于利用传统CRISPR-Cas9系统或新型编辑器对CAR-T 细胞进行精准工程化改造;这些编辑器可在是否引入基因组双链断裂(DSB)的情况下,安装所需遗传改变。这些工具和策略可直接用于靶向T细胞功能负调节因子、将治疗性转基因导入特定基因组位点,以及制备可重复、安全且高效的通用异基因CAR-T 细胞产品,以供按需癌症免疫治疗。本文评估结合新一代CRISPR-Cas9基因编辑与合成生物学的多项在研和未来方向,以优化CAR-T 细胞疗法并推动其用于未来临床试验,最终建立新的癌症治疗范式。

展开英文摘要原文

Chimeric Antigen Receptor (CAR) T-cells represent a breakthrough in personalized cancer therapy. In this strategy, synthetic receptors comprised of antigen recognition, signaling, and costimulatory domains are used to reprogram T-cells to target tumor cells for destruction. Despite the success of this approach in refractory B-cell malignancies, optimal potency of CAR T-cell therapy for many other cancers, particularly solid tumors, has not been achieved. Factors such as T-cell exhaustion, lack of CAR T-cell persistence, cytokine-related toxicities, and bottlenecks in the manufacturing of autologous products have hampered the safety, effectiveness, and availability of this approach. With the ease and accessibility of CRISPR-Cas9-based gene editing, it is possible to address many of these limitations.

Accordingly, current research efforts focus on precision engineering of CAR T-cells with conventional CRISPR-Cas9 systems or novel editors that can install desired genetic changes with or without introduction of a double-stranded break (DSB) into the genome. These tools and strategies can be directly applied to targeting negative regulators of T-cell function, directing therapeutic transgenes to specific genomic loci, and generating reproducibly safe and potent allogeneic universal CAR T-cell products for on-demand cancer immunotherapy.

This review evaluates several of the ongoing and future directions of combining next-generation CRISPR-Cas9 gene editing with synthetic biology to optimize CAR T-cell therapy for future clinical trials toward the establishment of a new cancer treatment paradigm.

论文信息

作者
Dimitri A、Herbst F、Fraietta JA
第一作者单位
Department of Microbiology, Perelman School of Medicine, University of Pennsylvania, South Pavilion Expansion (SPE), Room 9-104, 3400 Civic Center Blvd, Bldg. 421, Philadelphia, PA, 19104-5156, USA.United States
通讯作者单位
Department of Microbiology, Perelman School of Medicine, University of Pennsylvania, South Pavilion Expansion (SPE), Room 9-104, 3400 Civic Center Blvd, Bldg. 421, Philadelphia, PA, 19104-5156, USA. jfrai@upenn.edu.United States
文献类型
综述
期刊
Molecular cancer2022 Mar 18
原文标识
PubMed 35303871 · DOI 10.1186/s12943-022-01559-z