不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Intracellular Acetyl CoA Potentiates the Therapeutic Efficacy of Antitumor CD8+ T Cells.
Intracellular Acetyl CoA Potentiates the Therapeutic Efficacy of Antitumor CD8+ T Cells.
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效应CD8+ T细胞主要依赖葡萄糖代谢来满足其生物合成和功能需求。然而,肿瘤微环境中的营养限制可导致T细胞低反应性。因此,T细胞必须获得代谢特征,使其能够在肿瘤部位维持效应功能,从而引发强效抗肿瘤免疫应答。在此,我们报道IL12刺激的CD8+ T细胞具有升高的细胞内乙酰CoA水平,并能在营养剥夺的肿瘤条件培养基(TCM)中维持IFNγ水平。药理学和代谢分析表明,IL12刺激的CD8+ T细胞中存在活跃的葡萄糖-柠檬酸-乙酰CoA循环,以ATP-柠檬酸裂解酶(ACLY)依赖的方式支持细胞内乙酰CoA池。细胞内乙酰CoA水平增强组蛋白乙酰化、脂质合成和IFNγ产生,改善CD8+ T细胞在肿瘤中的代谢和功能适应性。药理学抑制或基因敲低ACLY严重损害了营养受限条件下CD8+ T细胞的IFNγ产生和活力。此外,在体外高丙酮酸培养基中培养的CD8+ T细胞获得了IL12刺激CD8+ T细胞的关键代谢特征,并在小鼠淋巴瘤和黑色素瘤模型中过继转移后显示出改善的抗肿瘤潜力。总体而言,本研究阐明了CD8+ T细胞在肿瘤中维持稳定效应功能所需的代谢配置,并提供了一种经济可行的方法来提升CD8+ T细胞用于过继T细胞治疗的疗效。意义:IL12介导的代谢重编程增加细胞内乙酰CoA,从而在营养耗竭的肿瘤微环境中促进CD8+ T细胞的效应功能,揭示了增强T细胞抗肿瘤疗效的策略。
UNLABELLED: Effector CD8+ T cells rely primarily on glucose metabolism to meet their biosynthetic and functional needs.
However, nutritional limitations in the tumor microenvironment can cause T-cell hyporesponsiveness.
Therefore, T cells must acquire metabolic traits enabling sustained effector function at the tumor site to elicit a robust antitumor immune response.
Here, we report that IL12-stimulated CD8+ T cells have elevated intracellular acetyl CoA levels and can maintain IFNγ levels in nutrient-deprived, tumor-conditioned media (TCM). Pharmacological and metabolic analyses demonstrated an active glucose-citrate-acetyl CoA circuit in IL12-stimulated CD8+ T cells supporting an intracellular pool of acetyl CoA in an ATP-citrate lyase (ACLY)-dependent manner.
Intracellular acetyl CoA levels enhanced histone acetylation, lipid synthesis, and IFNγ production, improving the metabolic and functional fitness of CD8+ T cells in tumors. Pharmacological inhibition or genetic knockdown of ACLY severely impaired IFNγ production and viability of CD8+ T cells in nutrient-restricted conditions.
Furthermore, CD8+ T cells cultured in high pyruvate-containing media in vitro acquired critical metabolic features of IL12-stimulated CD8+ T cells and displayed improved antitumor potential upon adoptive transfer in murine lymphoma and melanoma models.
Overall, this study delineates the metabolic configuration of CD8+ T cells required for stable effector function in tumors and presents an affordable approach to promote the efficacy of CD8+ T cells for adoptive T-cell therapy. SIGNIFICANCE: IL12-mediated metabolic reprogramming increases intracellular acetyl CoA to promote the effector function of CD8+ T cells in nutrient-depleted tumor microenvironments, revealing strategies to potentiate the antitumor efficacy of T cells.
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