首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Radiation effects on circulating and endothelial cell interactions studied by quantitative real-time videomicroscopy.
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Radiation effects on circulating and endothelial cell interactions studied by quantitative real-time videomicroscopy.

机译:辐射对循环和内皮细胞相互作用的定量实时视频显微镜研究。

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摘要

PURPOSE: To quantify in vitro the functional consequences of irradiation on the interactions between leukocytes or platelets and endothelial cells (EC) in flowing whole blood using a parallel-plate flow chamber and real-time videomicroscopy. MATERIALS AND METHODS: The parallel-plate flow chamber was calibrated to determine the dynamic parameters of the flow channel. Fluorescent-labelled whole blood was perfused at wall shear rates of 25, 75 and 500 s(-1) over a monolayer of human microvascular EC-lung (HMVEC-L) with or without irradiation at 10 Gy. The adhesion of leukocytes and platelets on EC was quantified by videomicroscopy and image analysis. RESULTS: Calibration of the parallel-plate flow chamber showed that flow in the chamber was laminar and steady and had a parabolic velocity profile, thus simulating physiological flow conditions. Flow assay revealed that rolling, mean rolling velocity and firm adhesion of leukocytes was increased following irradiation of EC. Irradiation also favoured platelet adhesion to EC. CONCLUSIONS: The results of an in vitro flow assay with whole blood showed that under physiological flow conditions, irradiation affected the function of EC; pro-inflammatory and thrombogenic responses were enhanced, which may contribute to in vivo radiation-induced vascular occlusion and fibrosis.
机译:目的:使用平行板流动室和实时视频显微镜,在体外量化辐射对全血流动中白细胞或血小板与内皮细胞(EC)之间相互作用的功能影响。材料与方法:校准平行板流动室以确定流动通道的动态参数。荧光标记的全血在人微血管EC肺(HMVEC-L)单层上以25、75和500 s(-1)的壁剪切速率灌注,有或没有10 Gy的辐射。通过视频显微镜和图像分析定量白细胞和血小板在EC上的粘附。结果:对平行板流动室的校准表明,该室中的流动是层流且稳定的,并且具有抛物线速度分布,从而模拟了生理流动条件。流动分析表明,EC照射后白细胞的滚动,平均滚动速度和牢固的粘附力增加。辐射也有利于血小板粘附于EC。结论:全血体外血流分析的结果表明,在生理血流条件下,辐射会影响EC的功能。促炎和血栓形成反应增强,这可能有助于体内辐射诱导的血管闭塞和纤维化。

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