Department of Hematopoiesis, Sanquin Research and Landsteiner Laboratory, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands.
Department of Research Facilities, Sanquin Research and Laboratory Services, Amsterdam, The Netherlands.
Eur J Immunol. 2023 Feb;53(2):e2249918. doi: 10.1002/eji.202249918. Epub 2022 Dec 8.
Memory CD8 T cells are indispensable for maintaining long-term immunity against intracellular pathogens and tumors. Despite their presence at oxygen-deprived infected tissue sites or in tumors, the impact of local oxygen pressure on memory CD8 T cells remains largely unclear. We sought to elucidate how oxygen pressure impacts memory CD8 T cells arising after infection with Listeria monocytogenes-OVA. Our data revealed that reduced oxygen pressure during in vitro culture switched CD8 T cell metabolism from oxidative phosphorylation to a glycolytic phenotype. Quantitative proteomic analysis showed that limiting oxygen conditions increased the expression of glucose transporters and components of the glycolytic pathway, while decreasing TCA cycle and mitochondrial respiratory chain proteins. The altered CD8 T cell metabolism did not affect the expansion potential, but enhanced the granzyme B and IFN-γ production capacity. In vivo, memory CD8 T cells cultured under low oxygen pressure provided protection against bacterial rechallenge. Taken together, our study indicates that strategies of cellular immune therapy may benefit from reducing oxygen during culture to develop memory CD8 T cells with superior effector functions.
记忆 CD8 T 细胞对于维持针对细胞内病原体和肿瘤的长期免疫至关重要。尽管它们存在于缺氧感染组织部位或肿瘤中,但局部氧压对记忆 CD8 T 细胞的影响在很大程度上仍不清楚。我们试图阐明氧压如何影响感染李斯特菌-OVA 后产生的记忆 CD8 T 细胞。我们的数据表明,体外培养过程中降低氧压会使 CD8 T 细胞代谢从氧化磷酸化转变为糖酵解表型。定量蛋白质组学分析表明,限制氧条件会增加葡萄糖转运蛋白和糖酵解途径的组成部分的表达,同时降低 TCA 循环和线粒体呼吸链蛋白的表达。改变的 CD8 T 细胞代谢不会影响扩增潜力,但增强了颗粒酶 B 和 IFN-γ的产生能力。在体内,在低氧压下培养的记忆 CD8 T 细胞提供了对细菌再挑战的保护。总之,我们的研究表明,细胞免疫治疗策略可能受益于在培养过程中降低氧分压,以开发具有优异效应功能的记忆 CD8 T 细胞。