CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Rapid Generation of TCR and CD8αβ Transgenic Virus Specific T Cells for Immunotherapy of Leukemia.
Rapid Generation of TCR and CD8αβ Transgenic Virus Specific T Cells for Immunotherapy of Leukemia.
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IFN-γ细胞因子捕获可筛选并激活 CMV 和 EBV 特异性记忆前体 CD8+ T 细胞,这些细胞能够通过逆转录病毒转导高效地进行基因修饰并在体外快速扩增。我们的多特异性 T 细胞具有多功能性,能够识别并杀伤表达同源抗原的病毒和白血病靶细胞。
病毒特异性T细胞(VSTs)是一种有吸引力的细胞治疗平台,可用于递送肿瘤靶向的转基因受体。然而,采用传统方法进行制备可能需要数周时间并涉及大量操作。在此,我们评估了将IFN-γ细胞因子捕获(CC)与逆转录病毒转导相结合,以生成T细胞受体(TCR)和CD8αβ(TCR8)转基因VSTs的可行性和时间线,从而在单一产品中同时靶向多种病毒和肿瘤抗原。
健康供者外周血单个核细胞经来源于免疫原性病毒蛋白的巨细胞病毒(CMV)和EB病毒(EBV)肽混合物刺激后,进行CC珠分选。培养3天后,用编码四个基因(生存素特异性αβTCR和CD8αβ)的逆转录病毒载体转导细胞。TCR8转基因或对照VSTs被扩增,并对其表型、特异性以及抗病毒和抗肿瘤功能进行了表征。
CC 选择的细胞可被 TCR8 高效转导。平均扩增倍数为 10 天内 269 倍,且细胞中含有高比例的 CD8+ T 中央记忆细胞。TCR8+ VST 在细胞表面同时表达天然抗病毒 TCR 和转基因抗 survivin TCR。对照 VST 和 TCR8+ VST 均能对病毒靶点产生细胞因子并杀伤病毒靶点,而肿瘤靶点仅被 TCR8+ VST 识别和杀伤。
Virus-specific T cells (VSTs) are an attractive cell therapy platform for the delivery of tumor-targeted transgenic receptors. However, manufacturing with conventional methods may require several weeks and intensive handling. Here we evaluated the feasibility and timelines when combining IFN-γ cytokine capture (CC) with retroviral transduction for the generation of T cell receptor (TCR) and CD8αβ (TCR8) transgenic VSTs to simultaneously target several viral and tumor antigens in a single product.
Healthy donor peripheral blood mononuclear cells were stimulated with cytomegalovirus (CMV) and Epstein-Barr-Virus (EBV) peptide mixtures derived from immunogenic viral proteins, followed by CC bead selection. After 3 days in culture, cells were transduced with a retroviral vector encoding four genes (a survivin-specific αβTCR and CD8αβ). TCR8-transgenic or control VSTs were expanded and characterized for their phenotype, specificity and anti-viral and anti-tumor functions.
CC selected cells were efficiently transduced with TCR8. Average fold expansion was 269-fold in 10 days, and cells contained a high proportion of CD8+ T central memory cells. TCR8+ VSTs simultaneously expressed native anti-viral and transgenic anti-survivin TCRs on their cell surface. Both control and TCR8+ VSTs produced cytokines to and killed viral targets, while tumor targets were only recognized and killed by TCR8+ VSTs.
IFN-γ cytokine capture selects and activates CMV and EBV-specific memory precursor CD8+ T cells that can be efficiently gene-modified by retroviral transduction and rapidly ex vivo expanded. Our multi-specific T cells are polyfunctional and recognize and kill viral and leukemic targets expressing the cognate antigens.
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