质量细胞仪
生物
免疫系统
CD8型
细胞生物学
细胞
细胞毒性T细胞
小学(天文学)
免疫学
流式细胞术
表型
遗传学
体外
天文
基因
物理
作者
Lauren S. Levine,Kamir J. Hiam-Galvez,Diana M. Marquez,Iliana Tenvooren,Matthew Z. Madden,Diana C. Contreras,Debolanle O. Dahunsi,Jonathan M. Irish,Olalekan O. Oluwole,Jeffrey C. Rathmell,Matthew H. Spitzer
出处
期刊:Immunity
[Cell Press]
日期:2021-03-11
卷期号:54 (4): 829-844.e5
被引量:107
标识
DOI:10.1016/j.immuni.2021.02.018
摘要
Summary Memory T cells are thought to rely on oxidative phosphorylation and short-lived effector T cells on glycolysis. Here, we investigated how T cells arrive at these states during an immune response. To understand the metabolic state of rare, early-activated T cells, we adapted mass cytometry to quantify metabolic regulators at single-cell resolution in parallel with cell signaling, proliferation, and effector function. We interrogated CD8+ T cell activation in vitro and in response to Listeria monocytogenes infection in vivo. This approach revealed a distinct metabolic state in early-activated T cells characterized by maximal expression of glycolytic and oxidative metabolic proteins. Cells in this transient state were most abundant 5 days post-infection before rapidly decreasing metabolic protein expression. Analogous findings were observed in chimeric antigen receptor (CAR) T cells interrogated longitudinally in advanced lymphoma patients. Our study demonstrates the utility of single-cell metabolic analysis by mass cytometry to identify metabolic adaptations of immune cell populations in vivo and provides a resource for investigations of metabolic regulation of immune responses across a variety of applications.
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