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通过非病毒工程与高度多重碱基编辑精准增强 CAR-NK 细胞

英文原题:Precision Enhancement of CAR-NK Cells through Non-Viral Engineering and Highly Multiplexed Base Editing.

查看英文原题

Precision Enhancement of CAR-NK Cells through Non-Viral Engineering and Highly Multiplexed Base Editing.

PubMed 2024/03/08(内容时间) bioRxiv

研究概要

自然杀伤(NK)细胞具有独特的能力,能够杀死表达应激配体或缺乏主要组织相容性复合体(MHC)的转化细胞,这促进了其用于免疫治疗的开发。

中文摘要

自然杀伤(NK)细胞具有独特的能力,能够杀伤表达应激配体或缺乏主要组织相容性复合体(MHC)的转化细胞,这推动了其用于免疫治疗的开发。然而,NK 细胞在临床试验中对癌症仅表现出中等程度的应答,可能需要进行先进的基因组工程改造才能充分发挥其作为癌症治疗手段的潜力。使用 CRISPR/Cas9 碱基编辑器(BE)进行多重基因组编辑已被用于增强 T 细胞功能,并已进入临床试验,但尚未在人类 NK 细胞中报道。在此,我们报道了 BE 在原发性 NK 细胞中的首次应用,实现了功能丧失和功能获得突变。我们观察到高效的单重和多重碱基编辑,显著增强了 NK 细胞功能。接下来,我们将多重 BE 与非病毒 TcBuster 转座子整合相结合,生成 IL-15 装甲 CD19 CAR-NK 细胞,其在体外和体内高度抑制性的 Burkitt 淋巴瘤模型中均表现出显著改善的功能。因此,将同步非病毒转座子工程与多重碱基编辑结合使用,代表了一个高度通用且高效的平台,可用于生成用于细胞免疫治疗的 CAR-NK 产品,并提供了灵活性,可定制多种基因编辑,以最大限度地提高针对所治疗癌症类型的疗效。

展开英文摘要原文

Natural killer (NK) cells' unique ability to kill transformed cells expressing stress ligands or lacking major histocompatibility complexes (MHC) has prompted their development for immunotherapy. However, NK cells have demonstrated only moderate responses against cancer in clinical trials and likely require advanced genome engineering to reach their full potential as a cancer therapeutic. Multiplex genome editing with CRISPR/Cas9 base editors (BE) has been used to enhance T cell function and has already entered clinical trials but has not been reported in human NK cells. Here, we report the first application of BE in primary NK cells to achieve both loss-of-function and gain-of-function mutations. We observed highly efficient single and multiplex base editing, resulting in significantly enhanced NK cell function. Next, we combined multiplex BE with non-viral TcBuster transposon-based integration to generate IL-15 armored CD19 CAR-NK cells with significantly improved functionality in a highly suppressive model of Burkitt's lymphoma both in vitro and in vivo . The use of concomitant non-viral transposon engineering with multiplex base editing thus represents a highly versatile and efficient platform to generate CAR-NK products for cell-based immunotherapy and affords the flexibility to tailor multiple gene edits to maximize the effectiveness of the therapy for the cancer type being treated.

论文信息

作者
Wang M、Krueger JB、Gilkey AK、Stelljes EM、Kluesner MG、Pomeroy EJ、Skeate JG、Slipek NJ
单位
Department of Pediatrics, University of Minnesota, Minneapolis, MN, USA.United States
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2024 Mar 8
原文标识
PubMed 38496503 · DOI 10.1101/2024.03.05.582637