决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Development of a compact bidirectional promoter-driven dual chimeric antigen receptor (CAR) construct targeting CD19 and CD20 in the Sleeping Beauty (SB) transposon system.
在单一载体中使用双向启动子具有体积和 CAR 强表达的优势,并有潜力扩展应用于 CAR T 细胞等其他形式的基因治疗。
背景:双向启动子驱动的嵌合抗原受体(CAR)盒可同时表达两种 CAR,从而显著增强双抗原靶向 CAR-T 疗法。 方法:研究构建了第二代 CAR,以单一 Sleeping Beauty 转座子系统,从双向启动子以头对头方向表达靶向 CD19 和 CD20 的 CAR。体外使用分别表达 CD19、CD20 或两者的细胞系评估双向启动子驱动的 CD19/CD20 CAR-T 疗效;体内则在携带 Raji 淋巴瘤的免疫缺陷 NOD-scid IL2Rγnull(NSG)小鼠中测试抗肿瘤活性。 结果:在所有测试启动子中,双向 EF-1 启动子最适于分别从正向(CD19-CAR)和反向(GFP.CD20-CAR)表达转录本。双向 EF-1 启动子驱动的 CD19/CD20 CAR-T 体外表现出更强的细胞毒性、细胞因子产生及抗原特异性活化。相比之下,采用 EF-1 启动子的单向构建体通过自切肽连接 CD19 和 CD20 CAR,表达和体外功能均较差。与接受单靶点 CAR-T 的小鼠相比,双向 EF-1 启动子驱动的 CD19/CD20 CAR-T 可有效控制晚期 Raji 淋巴瘤生长并延长小鼠生存。 结论:在单一载体中使用双向启动子具有载体尺寸小、CAR 表达稳定强效等优势,并可能扩展至 CAR-T 等其他基因疗法。
BACKGROUND: A bidirectional promoter-driven chimeric antigen receptor (CAR) cassette provides the simultaneous expression of two CARs, which significantly enhances dual antigen-targeted CAR T-cell therapy. METHODS: We developed a second-generation CAR directing CD19 and CD20 antigens, incorporating them in a head-to-head orientation from a bidirectional promoter using a single Sleeping Beauty transposon system. The efficacy of bidirectional promoter-driven dual CD19 and CD20 CAR T cells was determined in vitro against cell lines expressing either, or both, CD19 and CD20 antigens. In vivo antitumor activity was tested in Raji lymphoma-bearing immunodeficient NOD-scid IL2Rgamma null (NSG) mice. RESULTS: Of all tested promoters, the bidirectional EF-1 promoter optimally expressed transcripts from both sense (CD19-CAR) and antisense (GFP.CD20-CAR) directions. Superior cytotoxicity, cytokine production and antigen-specific activation were observed in vitro in the bidirectional EF-1 promoter-driven CD19/CD20 CAR T cells. In contrast, a unidirectional construct driven by the EF-1 promoter, but using self-cleaving peptide-linked CD19 and CD20 CARs, showed inferior expression and in vitro function. Treatment of mice bearing advanced Raji lymphomas with bidirectional EF-1 promoter-driven CD19/CD20 CAR T cells effectively controlled tumor growth and extended the survival of mice compared with group treated with single antigen targeted CAR T cells. CONCLUSION: The use of bidirectional promoters in a single vector offers advantages of size and robust CAR expression with the potential to expand use in other forms of gene therapies like CAR T cells.
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