Department of Internal Clinical Sciences, Anaesthesiology and Cardiovascular Sciences, Sapienza University of Rome, 00161 Roma, Italy.
Istituto Pasteur Italia-Fondazione Cenci Bolognetti, 00161 Roma, Italy.
Int J Mol Sci. 2021 Apr 9;22(8):3906. doi: 10.3390/ijms22083906.
T cells undergo activation and differentiation programs along a continuum of states that can be tracked through flow cytometry using a combination of surface and intracellular markers. Such dynamic behavior is the result of transcriptional and post-transcriptional events, initiated and sustained by the activation of specific transcription factors and by epigenetic remodeling. These signaling pathways are tightly integrated with metabolic routes in a bidirectional manner: on the one hand, T cell receptors and costimulatory molecules activate metabolic reprogramming; on the other hand, metabolites modify T cell transcriptional programs and functions. Flow cytometry represents an invaluable tool to analyze the integration of phenotypical, functional, metabolic and transcriptional features, at the single cell level in heterogeneous T cell populations, and from complex microenvironments, with potential clinical application in monitoring the efficacy of cancer immunotherapy. Here, we review the most recent advances in flow cytometry-based analysis of gene expression, in combination with indicators of mitochondrial activity, with the aim of revealing and characterizing major metabolic pathways in T cells.
T 细胞沿着激活和分化状态的连续谱进行激活和分化,这可以通过流式细胞术使用表面和细胞内标志物的组合来跟踪。这种动态行为是转录和转录后事件的结果,由特定转录因子的激活和表观遗传重塑引发和维持。这些信号通路以双向方式与代谢途径紧密整合:一方面,T 细胞受体和共刺激分子激活代谢重编程;另一方面,代谢物修饰 T 细胞转录程序和功能。流式细胞术是一种非常有价值的工具,可在单细胞水平上分析异质 T 细胞群体和复杂微环境中表型、功能、代谢和转录特征的整合,在监测癌症免疫治疗的疗效方面具有潜在的临床应用。在这里,我们回顾了基于流式细胞术的基因表达分析的最新进展,结合线粒体活性的指标,旨在揭示和描述 T 细胞中的主要代谢途径。