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:Sodium citrate pretreatment enhances CAR-T cell persistence and anti-tumor efficacy through inhibition of calcium signaling.
我们的研究结果表明,在 CAR-T 细胞扩增过程中补充柠檬酸钠,可能是一种有前景的策略,可通过防止耗竭和促进记忆 T 细胞形成来改善实体瘤的 CAR-T 治疗。
引言:CAR-T 细胞疗法治疗血液系统恶性肿瘤已获成功,但 T 细胞耗竭限制其对实体瘤的疗效。在体外扩增期间,CAR 表达引发的持续性信号可促成 CAR-T 细胞耗竭,而抑制钙信号能够缓解耗竭。鉴于柠檬酸钠可螯合钙离子并抑制钙信号,本研究考察其能否减少耗竭并增强 CAR-T 功能。方法:构建抗 CD70 CAR-T 细胞,并在培养过程中加入柠檬酸钠。通过体外和体内实验评估柠檬酸钠预处理 CAR-T 细胞的特征和功能。为进一步验证结果,也使用柠檬酸钠处理抗间皮素(MSLN)CAR-T 细胞,并检测其表型和抗肿瘤功能。结果:柠檬酸钠预处理的抗 CD70 CAR-T 细胞耗竭减少、记忆 T 细胞比例增加,并且体内外抗肿瘤疗效增强。值得注意的是,柠檬酸钠处理改善 CAR-T 细胞体内持久性并防止肿瘤复发。抗 MSLN CAR-T 细胞也出现这些有益作用。转录组和代谢物分析显示,柠檬酸钠抑制钙信号、mTORC1 活性及糖酵解通路,从而调节 T 细胞耗竭和分化。讨论:CAR-T 细胞扩增期间补充柠檬酸钠,可能通过预防耗竭并促进记忆 T 细胞形成,成为改善实体瘤 CAR-T 疗法的有前景策略。
INTRODUCTION: Chimeric antigen receptor T cell (CAR-T) therapy has shown success in treating hematological malignancies, but its effectiveness against solid tumors is hindered by T cell exhaustion. During in vitro expansion, tonic signaling induced by CAR expression contributes to CAR-T cell exhaustion, which can be mitigated by inhibiting calcium signaling. Given that sodium citrate can chelate calcium ions and inhibit calcium signaling, in this study, we investigated whether sodium citrate could reduce exhaustion and enhance CAR-T cell function. METHODS: We constructed anti-CD70 CAR-T cells and cultured them in the presence of sodium citrate. The characteristics and functionality of sodium citrate-pretreated CAR-T cells were assessed through in vitro and in vivo experiments. To further validate our observation, we also treated anti-mesothelin (MSLN) CAR-T cells with sodium citrate and detected the phenotypes and anti-tumor function of CAR-T cells. RESULTS: We found that sodium citrate-pretreated anti-CD70 CAR-T cells exhibited reduced exhaustion, increased memory T cell proportions, and enhanced anti-tumor efficacy both in vitro and in vivo . Notably, sodium citrate treatment improved the in vivo persistence of CAR-T cells and prevented tumor recurrence. These beneficial effects were also observed in anti-MSLN CAR-T cells. Transcriptomic and metabolite analyses revealed that sodium citrate inhibited calcium signaling, mTORC1 activity, and glycolysis pathways, thus modulating T cell exhaustion and differentiation. DISCUSSION: Our findings suggest that sodium citrate supplementation during CAR-T cell expansion could be a promising strategy to improve CAR-T therapy for solid tumors by preventing exhaustion and promoting memory T cell formation.
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