CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:IFN-γ lowers tumor growth by increasing glycolysis and lactate production in a nitric oxide-dependent manner: implications for cancer immunotherapy.
IFN-γ lowers tumor growth by increasing glycolysis and lactate production in a nitric oxide-dependent manner: implications for cancer immunotherapy.
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临床研究已表明,IFN-γ在涉及检查点抑制剂和 CAR-T 细胞的成功癌症免疫治疗中发挥关键作用。本文讨论了该研究对异质性肿瘤细胞中 IFN-γ激活的代谢调控的积极意义。
干扰素-γ(IFN-γ)是II型干扰素家族的唯一成员,已知可保护宿主免受传染病侵害并产生抗肿瘤反应。肿瘤微环境中IFN-γ的量决定宿主对肿瘤的反应;然而,一些肿瘤通过响应低IFN-γ信号来采用逃避策略。
在本研究中,体外研究了多种肿瘤细胞系对IFN-γ的反应。
IFN-γ激活以NO和ROS依赖的方式增加H6肝癌肿瘤细胞系的糖酵解通量并降低线粒体功能。较高的糖酵解进一步促进了NO和ROS的产生,表明存在相互调节。这些过程伴随着HIF-1α的稳定以及HIF-1α依赖的糖酵解通量增强。IFN-γ对乳酸生成的增强也发生在其他产生NO的细胞系中:RAW 264.7单核/巨噬细胞和Renca肾腺癌。然而,另外两种肿瘤细胞系,CT26结肠癌和B16F10黑色素瘤,在IFN-γ激活后不产生NO和乳酸。IFN-γ激活后HIF-1α的稳定导致B16F10细胞生长降低,但CT26细胞未出现此现象。重要的是,通过外源性给予乳酸钾进行代谢重编程后,CT26和B16F10细胞的IFN-γ激活均表现出显著的细胞生长减少。
In this study, the response of various tumor cell lines to IFN-γ was studied in vitro .
IFN-γ-activation increases glycolytic flux and reduces mitochondrial function in a nitric oxide (NO)- and reactive oxygen species (ROS)-dependent manner in the H6 hepatoma tumor cell line. The higher glycolysis further fueled NO and ROS production, indicating a reciprocal regulation. These processes are accompanied by Hypoxia inducing factor (HIF)-1α stabilization and HIF-1α-dependent augmentation of the glycolytic flux. The IFN-γ enhancement of lactate production also occurred in other NO-producing cell lines: RAW 264.7 monocyte/macrophage and Renca renal adenocarcinoma. However, two other tumor cell lines, CT26 colon carcinoma and B16F10 melanoma, did not produce NO and lactate upon IFN-γ-activation. HIF-1α stabilization upon IFN-γ-activation led to lower cell growth of B16F10 but not CT26 cells. Importantly, the IFN-γ-activation of both CT26 and B16F10 cells demonstrated significant cellular growth reduction upon metabolic rewiring by exogenous administration of potassium lactate. DISCUSSION: Clinical studies have shown the crucial roles of IFN-γ for successful cancer immunotherapies involving checkpoint inhibitors and chimeric antigen receptor T cells. The positive implications of this study on the metabolic modulation of IFN-γ activation on heterogeneous tumor cells are discussed.
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