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:Immunogenetic metabolomics revealed key enzymes that modulate CAR-T metabolism and function.
这些数据共同揭示了对 CAR-T 细胞代谢重编程的系统性认识,并揭示了改进基于 CAR-T 的细胞治疗的潜在靶点。
免疫逃逸是癌症进展的重要环节,也是T细胞免疫疗法的障碍。研究者试图对T细胞进行遗传重编程,以应对肿瘤通过营造代谢不利的微环境抑制T细胞这一常见机制。计算筛选发现ADA和PDK1是代谢调节因子,其过表达可增强CD19特异性CD8 CAR-T对相应白血病细胞的杀伤,缺失则减弱作用。CAR-T中过表达ADA可在高浓度腺苷(一种免疫抑制代谢物)条件下改善杀瘤能力。转录组和代谢组分析显示,ADA或PDK1改造会改变整体基因表达及代谢特征。功能分析表明,ADA过表达可提高CD19和HER2 CAR-T增殖、降低耗竭,并增强HER2 CAR-T在结直肠癌模型中的肿瘤浸润和清除。研究揭示直接重编程CAR-T代谢的系统性机制,并提出提高细胞疗法效果的潜在靶点。
UNLABELLED: Immune evasion is a critical step of cancer progression that remains a major obstacle for current T cell-based immunotherapies. Hence, we seek to genetically reprogram T cells to exploit a common tumor-intrinsic evasion mechanism, whereby cancer cells suppress T cell function by generating a metabolically unfavorable tumor microenvironment (TME). Specifically, we use an in silico screen to identify ADA and PDK1 as metabolic regulators, in which gene overexpression (OE) enhances the cytolysis of CD19-specific CD8 CAR-T cells against cognate leukemia cells, and conversely, ADA or PDK1 deficiency dampens such effect. ADA -OE in CAR-T cells improves cancer cytolysis under high concentrations of adenosine, the ADA substrate and an immunosuppressive metabolite in the TME. High-throughput transcriptomics and metabolomics in these CAR-Ts reveal alterations of global gene expression and metabolic signatures in both ADA- and PDK1- engineered CAR-T cells. Functional and immunological analyses demonstrate that ADA -OE increases proliferation and decreases exhaustion in -CD19 and -HER2 CAR-T cells. ADA-OE improves tumor infiltration and clearance by -HER2 CAR-T cells in an in vivo colorectal cancer model. Collectively, these data unveil systematic knowledge of metabolic reprogramming directly in CAR-T cells, and reveal potential targets for improving CAR-T based cell therapy. SYNOPSIS: The authors identify the adenosine deaminase gene (ADA) as a regulatory gene that reprograms T cell metabolism. ADA-overexpression (OE) in -CD19 and -HER2 CAR-T cells increases proliferation, cytotoxicity, memory, and decreases exhaustion, and ADA-OE -HER2 CAR-T cells have enhanced clearance of HT29 human colorectal cancer tumors in vivo .
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