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针对尤文肉瘤转移驱动因子软骨调节素-1 的 T 细胞:CRISPR/Cas9 与逆转录病毒基因转移用于过继转移的比较性工程改造

英文原题:T Cells Directed against the Metastatic Driver Chondromodulin-1 in Ewing Sarcoma: Comparative Engineering with CRISPR/Cas9 vs. Retroviral Gene Transfer for Adoptive Transfer.

PubMed 2022/11/08(内容时间) Cancers (Basel) Q2 · IF 4.8(JCR 2025)

研究概要

使用CRISPR/Cas9工程化的T细胞对于EwS的免疫治疗是可行的,并且与通过逆转录病毒基因转移工程化的T细胞相比,可能具有更持久的细胞毒性活性优势。

中文摘要

尤文肉瘤(EwS)是一种高度恶性的骨和软组织肉瘤,具有早期转移扩散的特点,发病年龄高峰在青春期早期。晚期患者的预后仍然很差,且现有疗法的长期不良反应严重。迫切需要有效的靶向治疗。我们此前的工作利用逆转录病毒基因转移生成的T细胞受体(TCR)转基因T细胞,靶向肿瘤细胞上来源于转移驱动因子的HLA限制性肽段,提供了初步的安全性和有效性数据。在此,我们比较了采用CRISPR/Cas9或逆转录病毒基因转移工程化改造的T细胞。首先,我们证实了利用CRISPR/Cas9以靶向经典转移驱动因子软骨调节素-1(CHM1)的TCR原位替换内源性TCR的可行性。CRISPR/Cas9工程化T细胞产物能够特异性识别并杀伤HLA-A*02:01+ EwS细胞系。逆转录病毒转导的效率高于CRISPR/Cas9基因编辑。两种工程化T细胞产物均能特异性识别肿瘤细胞并引发细胞毒性,其中CRISPR/Cas9工程化T细胞具有更持久的细胞毒活性。总之,采用CRISPR/Cas9工程化改造的T细胞用于EwS的免疫治疗是可行的,且与逆转录病毒基因转移工程化改造的T细胞相比,可能具有细胞毒活性更持久的优势。

展开英文摘要原文

Ewing sarcoma (EwS) is a highly malignant sarcoma of bone and soft tissue with early metastatic spread and an age peak in early puberty. The prognosis in advanced stages is still dismal, and the long-term effects of established therapies are severe. Efficacious targeted therapies are urgently needed. Our previous work has provided preliminary safety and efficacy data utilizing T cell receptor (TCR) transgenic T cells, generated by retroviral gene transfer, targeting HLA-restricted peptides on the tumor cell derived from metastatic drivers. Here, we compared T cells engineered with either CRISPR/Cas9 or retroviral gene transfer. Firstly, we confirmed the feasibility of the orthotopic replacement of the endogenous TCR by CRISPR/Cas9 with a TCR targeting our canonical metastatic driver chondromodulin-1 (CHM1). CRISPR/Cas9-engineered T cell products specifically recognized and killed HLA-A*02:01+ EwS cell lines. The efficiency of retroviral transduction was higher compared to CRISPR/Cas9 gene editing. Both engineered T cell products specifically recognized tumor cells and elicited cytotoxicity, with CRISPR/Cas9 engineered T cells providing prolonged cytotoxic activity. In conclusion, T cells engineered with CRISPR/Cas9 could be feasible for immunotherapy of EwS and may have the advantage of more prolonged cytotoxic activity, as compared to T cells engineered with retroviral gene transfer.

论文信息

作者
Xue B、von Heyking K、Gassmann H、Poorebrahim M、Thiede M、Schober K、Mautner J、Hauer J
单位
Department of Pediatrics, Children's Cancer Research Center, Kinderklinik München Schwabing, School of Medicine, Technical University of Munich, 80804 Munich, Germany.Germany
期刊
Cancers2022 Nov 8
原文标识
PubMed 36428578 · DOI 10.3390/cancers14225485