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磁珠增敏光穿孔联合基于抗体的激活用于 mRNA CAR-T 细胞制备

英文原题:Magnetic bead-sensitized optoporation coupled with antibodies-based activation for mRNA CAR-T cell manufacturing.

查看英文原题

Magnetic bead-sensitized optoporation coupled with antibodies-based activation for mRNA CAR-T cell manufacturing.

PubMed 2025/02/04(内容时间) Mol Ther Methods Clin Dev Q2 · IF 5(JCR 2025)

研究概要

我们的研究结果表明,磁珠敏化光穿孔有望成为免疫细胞治疗的mRNA递送策略。

中文摘要

免疫治疗正随着免疫细胞工程的出现而经历一场革命。嵌合抗原受体(CAR)-T细胞疗法在B细胞恶性肿瘤中显示出前所未有的疗效,目前正在其他疾病领域进行评估。病毒转导是免疫细胞基因工程最常用的方法,但存在重要局限性,例如高试剂成本以及因突变风险带来的监管问题。一种主流的非病毒基因递送策略依赖于非整合型RNA的电穿孔。然而,大多数现代电穿孔技术同样需要高试剂成本,并依赖专有软件和转染缓冲液。纳米颗粒敏化光穿孔代表了一种用于细胞瞬时透化的替代方法。在此,我们引入磁珠敏化光穿孔,其中将偶联抗人CD3和CD28抗体的市售超顺磁性磁珠用作光敏剂,以高效地将遗传货物递送至人原代T细胞和其他免疫细胞中。我们表明,对人T细胞进行磁珠敏化光穿孔可生成基于mRNA的功能性CAR-T细胞,而不影响T细胞产品的记忆表型或激活潜能。重要的是,与电穿孔的T细胞相比,光穿孔的T细胞表现出更强的增殖能力。总之,我们的研究结果表明,磁珠敏化光穿孔有望成为免疫细胞治疗的mRNA递送策略。

展开英文摘要原文

Immunotherapy is facing a revolution with the advent of immune cell engineering. Chimeric antigen receptor (CAR)-T cell therapy has shown unprecedented efficacy in B cell malignancies and is now being evaluated in other disease areas. Viral transduction is the most common method for immune cell genetic engineering, but presents important limitations, such as high reagent costs and regulatory concerns due to mutagenesis risk. One prevailing non-viral gene delivery strategy relies on the electroporation of non-integrating RNA. However, most modern electroporation technologies also require high reagent costs and rely on the use of proprietary software and transfection buffers. Nanoparticle-sensitized optoporation represents an alternative method for transient permeabilization of cells. Here, we introduce magnetic bead-sensitized optoporation, in which commercially available superparamagnetic beads coupled with anti-human CD3 and CD28 antibodies are used as photosensitizers for efficient genetic cargo delivery into human primary T cells and other immune cells. We show that magnetic bead-sensitized optoporation of human T cells generates functional mRNA-based CAR-T cells without affecting T cell product memory phenotype or activation potential. Importantly, optoporated T cells exhibited a greater proliferation capacity relative to electroporated T cells. In conclusion, our findings suggest that magnetic bead-sensitized optoporation holds promise as mRNA delivery strategy for immune cell therapy.

论文信息

作者
Maldonado-Pérez N、Doucey MA、Dzhumashev D、Martínez Bedoya D、Castillo Cantero L、Boudousquie C、Pierson Y、Henry L
单位
Center for Translational Research in Onco-Hematology, University of Geneva, 1211 Geneva, Switzerland.Switzerland
期刊
Molecular therapy. Methods & clinical development2025 Mar 13
原文标识
PubMed 40092640 · DOI 10.1016/j.omtm.2025.101428