为肝细胞癌武装 GPC3 CAR-T 细胞:多少才足够,下一步是什么?
Armouring GPC3 CAR T cells for hepatocellular carcinoma: how much is enough and what comes next?
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Nicotinamide riboside enhances adoptive T cell therapy by promoting memory differentiation and metabolic fitness.
Nicotinamide riboside enhances adoptive T cell therapy by promoting memory differentiation and metabolic fitness.
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增强过继转移 T 细胞的疗效对于成功的免疫治疗至关重要。这些 T 细胞的细胞毒活性与其线粒体功能密切相关,而线粒体功能在 T 细胞分化中发挥关键作用。
本研究探讨了已知可增强线粒体功能的烟酰胺核糖(NR)在提高过继转移 CD8+ T 细胞抗肝细胞癌(HCC)疗效方面的潜力。在皮下和转移性 HCC 肿瘤模型中,NR 治疗显著提高了过继 T 细胞治疗(ACT)的效果。NR 促进了 CD44 hi CD62L hi 中央记忆 T 细胞(T CM)的分化,并上调了记忆相关基因(Tcf7、Ccr7 和 Foxo1)。再次刺激后,NR 处理的 CD8+ T 细胞表现出强烈的回忆应答,表现为代谢重编程和细胞因子产生增加。
此外,RNA 测序显示 Foxo1 及其靶基因表达增加。抑制 Foxo1 部分逆转了 NR 对线粒体适应性和细胞毒功能的有益作用,提示 Foxo1 相关通路在介导这些效应中发挥作用。
总之,NR 改善了线粒体适应性并促进了 T CM 分化,部分通过一种与 Foxo1 相关的转录程序,从而提高了 ACT 的疗效。这些发现表明 NR 是一种有前景且可转化的 HCC 免疫治疗代谢佐剂。
Enhancing the efficacy of adoptively transferred T cells is essential for successful immunotherapy. The cytotoxic activity of these T cells is closely related to their mitochondrial function, which plays a critical role in T cell differentiation.
This study explored the potential of nicotinamide riboside (NR), known to enhance mitochondrial function, to improve the efficacy of adoptively transferred CD8 + T cells against hepatocellular carcinoma (HCC). In subcutaneous and metastatic HCC tumor models, NR treatment significantly improved the effectiveness of adoptive T cell therapy (ACT).
NR promoted the differentiation of CD44 hi CD62L hi central memory T cells (T CM ) and upregulated memory-associated genes (Tcf7, Ccr7, and Foxo1). Upon restimulation, NR-treated CD8 + T cells exhibited strong recall responses, as evidenced by metabolic reprogramming and increased cytokine production.
Furthermore, RNA sequencing revealed an increased expression of Foxo1 and its target genes. Inhibition of Foxo1 partially reversed the beneficial effects of NR on mitochondrial fitness and cytotoxic function, suggesting a role for Foxo1-associated pathways in mediating these effects. In summary, NR improved mitochondrial fitness and promoted T CM differentiation, in part through a transcriptional program associated with Foxo1, thereby improving the efficacy of ACT.
These findings identify NR as a promising and translatable metabolic adjuvant for HCC immunotherapy.
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