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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >A novel flow cytometry-based assay to study leukocyte-endothelial cell interactions in vitro
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A novel flow cytometry-based assay to study leukocyte-endothelial cell interactions in vitro

机译:一种新型的基于流式细胞术的体外研究白细胞与内皮细胞相互作用的方法

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Interactions between peripheral blood mononuclear cells (PBMC) and the endothelium critically determine vascular repair and reparative angiogenesis, but also pathological processes, such as atherosclerosis. Current methodology to study these interactions mostly regards PBMC as a homogenous population or it restricts its focus on individual cell types and therefore does not appreciate the differential behavior of individual PBMC subpopulations, which synergize or antagonize each other to obtain the overall effect. We therefore developed a flow cytometry-based in vitro assay to assess multiple parameters of interaction between several individual populations of PBMC and an endothelial monolayer. Freshly isolated, unlabelled human PBMC were left to adhere to or transmigrate through a monolayer of fluorescence-labeled human aortic endothelial cells grown to confluence on the filter membrane of sterile transwell migration inserts. Monocyte chemoattractant protein-1 (MCP-1) was applied as a chemoattractant to the lower compartment of the migration chamber. After 6 h, transmigrating PBMC were harvested from the lower compartment, while nonadherent and adhering cell populations were harvested from the upper compartment by sequential washing/detachment. All three cell fractions were then individually stained with fluorescence-labeled monoclonal antibodies and analyzed by flow cytometry. Quantification was achieved by the usage of counting beads. Endothelial cells were separated from PBMC during the analysis by a multiparametric gating strategy. Using the newly established assay, we observed distinct migration patterns for inflammatory CD14~(hi)CD16~(neg) and resident CD16pos monocytes. These cell types differed in their basal adhesion and transmigration patterns as well as their responses to the CCR2 ligand MCP-1. This assay allows for the parallel study of interactions between multiple individual leukocyte populations and an endothelial layer. Several readouts can be derived from the same experiment, like the composition of adhering and transmigrating cell fractions or the individual adhesion/migration behavior of several distinct cell types.
机译:外周血单个核细胞(PBMC)与内皮之间的相互作用决定性地决定了血管修复和修复性血管生成,还决定了病理过程,例如动脉粥样硬化。目前研究这些相互作用的方法大多将PBMC视为同质种群,或者将其限制在单个细胞类型上,因此不了解单个PBMC亚群的不同行为,后者彼此协同或拮抗以获得整体效果。因此,我们开发了一种基于流式细胞术的体外测定法,以评估PBMC的几个个体群体与内皮单层之间相互作用的多个参数。将新鲜分离的,未标记的人PBMC粘附或转移通过荧光标记的人主动脉内皮细胞的单层,该单层已生长到汇合在无菌Transwell迁移插入物的滤膜上。单核细胞趋化蛋白-1(MCP-1)作为趋化剂应用于迁移室的下部隔室。 6小时后,从下部隔室中收集移出的PBMC,而通过连续洗涤/分离从上部隔室中收集非粘附和粘附细胞群。然后将所有三个细胞级分分别用荧光标记的单克隆抗体染色,并通过流式细胞仪进行分析。通过使用计数珠实现定量。在分析过程中,通过多参数门控策略将内皮细胞与PBMC分离。使用新建立的测定方法,我们观察到炎性CD14〜(hi)CD16〜(neg)和驻留CD16pos单核细胞的独特迁移模式。这些细胞类型的基础粘附和转运模式以及对CCR2配体MCP-1的反应不同。该测定法允许并行研究多个个体白细胞群与内皮层之间的相互作用。可以从同一实验中获得多个读数,例如粘附和转移细胞部分的组成或几种不同细胞类型的个体粘附/迁移行为。

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