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Assessing Leukocyte-endothelial Interactions Under Flow Conditions in an Ex Vivo Autoperfused Microflow Chamber Assay

机译:在体外自动灌注微流室测定中在流动条件下评估白细胞与内皮的相互作用

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摘要

Leukocyte-endothelial interactions are early and critical events in acute and chronic inflammation and can, when dysregulated, mediate tissue injury leading to permanent pathological damage. Existing conventional assays allow the analysis of leukocyte adhesion molecules only after the extraction of leukocytes from the blood. This requires the blood to undergo several steps before peripheral blood leukocytes (PBLs) can be ready for analysis, which in turn can stimulate PBLs influencing the research findings. The autoperfused micro flow chamber assay, however, allows scientists to study early leukocytes functional dysregulation using the systemic flow of a live mouse while having the freedom of manipulating a coated chamber. Through a disease model, the functional expression of leukocyte adhesion molecules can be assessed and quantified in a micro-glass chamber coated with immobilized endothelial adhesion molecules ex vivo. In this model, the blood flows between the right common carotid artery and left external jugular vein of a live mouse under anesthesia, allowing the interaction of native PBLs in the chamber. Real-time experimental analysis is achieved with the assistance of an intravital microscope as well as a Harvard Apparatus pressure device. The application of a flow regulator at the input point of the glass chamber allows comparable physiological flow conditions amongst the experiments. Leukocyte rolling velocity is the main outcome and is measured using the National Institutes of Health open-access software ImageJ. In summary, the autoperfused micro flow chamber assay provides an optimal physiological environment to study leukocytes endothelial interaction and allows researchers to draw accurate conclusions when studying inflammation.
机译:白细胞-内皮相互作用是急性和慢性炎症中的早期和关键事件,当失调时,可以介导组织损伤,导致永久性病理损伤。现有的常规测定仅在从血液中提取白细胞之后才允许分析白细胞粘附分子。这要求血液需要经过几个步骤,然后才能进行外周血白细胞(PBL)的分析,从而可以刺激影响研究结果的PBL。然而,自动灌注的微流腔试验使科学家能够利用活小鼠的全身血流研究早期白细胞功能失调,同时可以自由操纵带涂层的腔室。通过疾病模型,白细胞粘附分子的功能表达可以在涂有固定化内皮粘附分子的微玻璃腔体内进行评估和定量。在该模型中,麻醉下活小鼠的右颈总动脉和左颈外静脉之间的血液流动,从而允许腔室内的天然PBL相互作用。借助活体显微镜和哈佛仪器压力设备可进行实时实验分析。在玻璃室的输入点处使用流量调节器可以在实验中获得相当的生理流量条件。白细胞滚动速度是主要结果,使用国立卫生研究院开放获取软件ImageJ进行测量。综上所述,自动灌注微流室测定法为研究白细胞内皮相互作用提供了最佳的生理环境,并允许研究人员在研究炎症时得出准确的结论。

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