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短生产周期、非基因毒性、基于 mRNA 的 CAR-T 细胞靶向 CD19 阳性和 CD22 阳性恶性肿瘤的表征

英文原题:Characterization of Short Production Cycle and Nongenotoxic mRNA-Based CAR-T Cells Targeting CD19-Positive and CD22-Positive Malignancies.

查看英文原题

Characterization of Short Production Cycle and Nongenotoxic mRNA-Based CAR-T Cells Targeting CD19-Positive and CD22-Positive Malignancies.

PubMed 2026/01/01(内容时间) J Immunol Res Q3 · IF 3.2(JCR 2025)

研究概要

该方案在转染24小时内可获得超过90%的细胞活力,CAR表达率超过60%。

中文摘要

靶向分化簇19(CD19)阳性恶性肿瘤的嵌合抗原受体(CAR)T细胞疗法在临床环境中已显示出相当大的疗效。然而,基于病毒的CAR-T疗法潜在的基因毒性、其相当长的生产周期和高昂成本,引发了对其安全性的质疑,并导致其在临床应用中的局限性。为了探索一种安全、高效且低成本的基于mRNA的CAR-T疗法,我们表征了一种非病毒、基于mRNA的方法,利用与现行药品生产质量管理规范(cGMP)兼容的电穿孔(EP)平台,生成抗CD19、抗CD22以及串联抗CD19/CD22的CAR-T产品,其周转时间少于48小时。该方案在转染24小时内可获得超过90%的细胞活力以及超过60%的CAR表达。基于mRNA的CAR-T产品具有显著增强的T细胞活化特征,包括CD69上调、肿瘤坏死因子-α(TNF-)、白细胞介素-2(IL-2)和颗粒酶B的产生,以及更高的Ki67表达水平。与对照相比,观察到基于mRNA的CAR-T具有强效的体外肿瘤中和能力。有趣的是,我们观察到EP后短期细胞冻存导致细胞扩增减少50%。然而,冻存和复苏对体外肿瘤中和未观察到负面影响。最后,我们评估了基于mRNA的CAR-T产品的代谢活性,在暴露于抗原阳性靶细胞后,其基础呼吸显著且可诱导地增加(增加60%),备用呼吸能力(SRC)增加2倍。我们相信这种方法有望成为一种可行的替代方案,解决当前CAR-T疗法的局限性,为未来非病毒CAR-T临床应用提供潜在解决方案。

展开英文摘要原文

The chimeric antigen receptor (CAR) T cell therapy targeting cluster of differentiation 19 (CD19)-positive malignancies has shown considerable efficacy in clinical settings. However, the potential genotoxicity of viral-based CAR-T therapy, their considerable manufacturing cycle and high costs, prompts questions about its safety and leads to limitations in clinical application. Aiming to explore a safe, efficient, and low-cost mRNA-based CAR-T therapy, we characterize a nonviral, mRNA-based approach utilizing a current good manufacturing practice (cGMP)-compatible electroporation (EP) platform to generate anti-CD19, anti-CD22, and tandem anti-CD19/CD22 CAR-T products with a turn-around time of less than 48 h. The protocol yields a more than 90% cellular viability with a CAR expression of exceeding 60% within the 24 h of transfection. The mRNA-based CAR-T products have a significantly enhanced T cell activation profile with CD69 upregulation, production of tumor necrosis factor-alpha (TNF- ), interleukin-2 (IL-2), and Granzyme B, and higher Ki67 expression level. Robust in vitro tumor neutralization by the mRNA-based CAR-T was observed compared to control. Interestingly, we have observed that the short-term cell cryopreservation after EP resulted in a 50% reduction of cellular expansion. However, the cryopreservation and thaw did not have an observed negative impact on the in vitro tumor neutralization. Lastly, we have evaluated the metabolic activity of the mRNA-based CAR-T products, which has a clearly inducible and significant increase in basal respiration (by 60%) and a 2-fold spare respiratory capacity (SRC) upon exposure with the antigen positive target cells. We believe this approach holds promise as a viable alternative that addresses the limitations of current CAR-T therapies, offering a potential solution for future nonviral CAR-T clinical application.

论文信息

作者
Zhang C、Liu H、Sangani H、Jin D、Hsu YS
第一作者单位
Tsinghua University School of Medicine, Beijing, China.China
通讯作者单位
Department of Medicine, University of Pittsburgh, Pittsburgh, USA, pitt.edu.United States
期刊
Journal of immunology research2026
原文标识
PubMed 42533521 · DOI 10.1155/jimr/9452254