Lanuti P, Fuhrmann S, Lachmann R, Marchisio M, Miscia S, Kern F
Division of Medicine, Brighton and Sussex Medical School, Brighton, United Kingdom.
Int J Immunopathol Pharmacol. 2009 Jul-Sep;22(3):689-98. doi: 10.1177/039463200902200314.
Multi-colour flow cytometry is the only technological platform that can analyse the highly complex cellular composition of the immune system in parallel and at a single cell resolution. Analysis of the T cell compartment, in particular, requires the simultaneous measurement of multiple markers in order to account for lineage, phenotype and function. Flow cytometry also enables the analysis of intracellular signalling events. By combining the expression of surface markers, intracellular cytokines, phosphorylated versus unphosphorylated kinases, cell proliferation and DNA profile, mechanistic and kinetic information of subset-specific signalling may be obtained: this has not previously been achieved. Here we present a protocol which permits all of these aspects to be explored simultaneously. By comparing basic procedures previously described we were able to optimise different variables, including the choice of antibody/fluorochrome pairs, permeabilisation, fixation and labelling time, to obtain the best DNA staining of different cell types. We applied this method to study subset-specific signalling related to cytokine production and DNA synthesis in T cells responding to specific antigens.
多色流式细胞术是唯一能够以单细胞分辨率并行分析免疫系统高度复杂细胞组成的技术平台。特别是对T细胞区室的分析,需要同时测量多个标志物,以便确定细胞谱系、表型和功能。流式细胞术还能够分析细胞内信号事件。通过结合表面标志物的表达、细胞内细胞因子、磷酸化与未磷酸化激酶、细胞增殖和DNA谱,可以获得亚群特异性信号传导的机制和动力学信息:这在以前是无法实现的。在此,我们提出了一种能够同时探索所有这些方面的方案。通过比较先前描述的基本程序,我们能够优化不同变量,包括抗体/荧光染料对的选择、通透化、固定和标记时间,以获得不同细胞类型的最佳DNA染色效果。我们应用该方法研究了T细胞对特定抗原反应时与细胞因子产生和DNA合成相关亚群特异性信号传导。