Wendt Emily R, Ferry Helen, Greaves David R, Keshav Satish
Nuffield Department of Clinical Medicine, Experimental Medicine Division, Translational Gastroenterology Unit, University of Oxford, Oxford, United Kingdom.
Sir William Dunn School of Pathology, University of Oxford, Oxford, United Kingdom.
PLoS One. 2015 Apr 2;10(3):e0119532. doi: 10.1371/journal.pone.0119532. eCollection 2015.
Calcium flux is a rapid and sensitive measure of cell activation whose utility could be enhanced with better techniques for data extraction. We describe a technique to monitor calcium flux by flow cytometry, measuring Fura Red calcium dye by ratiometric analysis. This technique has several advantages: 1) using a single calcium dye provides an additional channel for surface marker characterization, 2) allows robust detection of calcium flux by minority cell populations within a heterogeneous population of primary T cells and monocytes 3) can measure total calcium flux and additionally, the proportion of responding cells, 4) can be applied to studying the effects of drug treatment, simultaneously stimulating and monitoring untreated and drug treated cells. Using chemokine receptor activation as an example, we highlight the utility of this assay, demonstrating that only cells expressing a specific chemokine receptor are activated by cognate chemokine ligand. Furthermore, we describe a technique for simultaneously stimulating and monitoring calcium flux in vehicle and drug treated cells, demonstrating the effects of the Gαi inhibitor, pertussis toxin (PTX), on chemokine stimulated calcium flux. The described real time calcium flux assay provides a robust platform for characterizing cell activation within primary cells, and offers a more accurate technique for studying the effect of drug treatment on receptor activation in a heterogeneous population of primary cells.
钙流是细胞活化的一种快速且灵敏的测量指标,若有更好的数据提取技术,其效用将会得到提升。我们描述了一种通过流式细胞术监测钙流的技术,即通过比率分析来测量Fura Red钙染料。该技术具有几个优点:1)使用单一钙染料可为表面标志物表征提供一个额外通道;2)能够可靠地检测原代T细胞和单核细胞异质群体中少数细胞群体的钙流;3)可以测量总钙流,此外还能测量反应性细胞的比例;4)可应用于研究药物治疗的效果,同时刺激和监测未处理及药物处理的细胞。以趋化因子受体激活为例,我们突出了该检测方法的效用,证明只有表达特定趋化因子受体的细胞会被同源趋化因子配体激活。此外,我们描述了一种在载体和药物处理细胞中同时刺激和监测钙流的技术,展示了Gαi抑制剂百日咳毒素(PTX)对趋化因子刺激的钙流产生的影响。所描述的实时钙流检测方法为表征原代细胞内的细胞活化提供了一个可靠的平台,并且为研究药物治疗对原代细胞异质群体中受体激活的影响提供了一种更准确的技术。