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人胚胎干细胞来源的间皮素 CAR 工程化 NK 细胞抑制动物体内人卵巢癌进展

英文原题:Mesothelin CAR-engineered NK cells derived from human embryonic stem cells suppress the progression of human ovarian cancer in animals.

PubMed 2024/08/13(内容时间) Cell Prolif Q1 · IF 7.6(JCR 2025)

研究概要

我们的研究为hESC来源的MSLN CAR-NK细胞作为一种有前景的现货型细胞产品的临床转化提供了见解。

中文摘要

CAR-NK细胞疗法不需要HLA配型,且副作用极小。然而,将CAR工程化导入人组织来源NK细胞的传统方法存在异质性、转导效率低和制造成本高的问题。在此,我们提供了一种可靠的方法,从人胚胎干细胞(hESC)大规模生成并可冻存间皮素(MSLN)CAR-NK细胞,作为替代细胞来源。我们首先构建了表达MSLN CAR的hESC,以降低CAR工程化成本,随后通过高效的类器官诱导体系将这些干细胞分化为MSLN CAR-NK细胞。MSLN CAR-NK细胞表现出NK细胞活化受体、抑制性受体和效应分子的典型表达模式。在肿瘤细胞存在时,与诱导的NK细胞相比,MSLN CAR-NK细胞显示IFN-和TNF-分泌增加,以及CD107a表达水平升高。我们使用临床级冻存液(CS10)将MSLN CAR-NK细胞在液氮中冻存超过6个月,以模拟即用型CAR-NK细胞产品。解冻后的MSLN CAR-NK细胞在培养48-72小时后立即恢复,并有效清除卵巢肿瘤细胞,包括来自患者的人原代卵巢肿瘤细胞。解冻后的MSLN CAR-NK细胞在体内有效抑制卵巢肿瘤发展,并延长荷瘤小鼠的生存期。我们的研究为hESC来源的MSLN CAR-NK细胞作为有前景的即用型细胞产品的临床转化提供了见解。

展开英文摘要原文

CAR-NK cell therapy does not require HLA matching and has minimal side effects. However, traditional methods of engineering CARs into human tissue-derived NK cells exhibit heterogeneity, low transduction efficiency, and high manufacturing costs. Here, we provide a reliable approach for generating large-scale and cryopreserved mesothelin (MSLN) CAR-NK cells from human embryonic stem cells (hESCs) as an alternative cell source. We first constructed MSLN CAR-expressing hESCs to reduce CAR engineering costs and subsequently differentiated these stem cells into MSLN CAR-NK cells via an efficient organoid induction system. The MSLN CAR-NK cells exhibit the typical expression patterns of activating receptors, inhibitory receptors, and effector molecules of NK cells. In the presence of tumour cells, the MSLN CAR-NK cells show increased secretion of IFN- and TNF- , as well as elevated CD107a expression level compared with induced NK cells. We cryopreserved the MSLN CAR-NK cells in liquid nitrogen using a clinical-grade freezing medium (CS10) for more than 6 months to mimic an off-the-shelf CAR-NK cell product. The thawed MSLN CAR-NK cells immediately recovered after 48-72-h culture and effectively eliminated ovarian tumour cells, including human primary ovarian tumour cells from patients. The thawed MSLN CAR-NK cells efficiently suppressed ovarian tumour development in vivo and prolonged the survival of tumour-bearing mice. Our study provides insights into the clinical translation of hESC-derived MSLN CAR-NK cells as a promising off-the-shelf cell product.

论文信息

作者
Liu Y、Zhang M、Shen X、Xia C、Hu F、Huang D、Weng Q、Zhang Q
单位
Key Laboratory of Organ Regeneration and Reconstruction, State Key Laboratory of Stem Cell and Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.China
期刊
Cell proliferation2024 Dec
原文标识
PubMed 39136096 · DOI 10.1111/cpr.13727