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首页> 外文期刊>American Journal of Physiology >Nitric oxide generation by endothelial cells exposed to shear stress in glass tubes perfused with red blood cell suspensions: role of aggregation
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Nitric oxide generation by endothelial cells exposed to shear stress in glass tubes perfused with red blood cell suspensions: role of aggregation

机译:内皮细胞在灌注红细胞悬液的玻璃管中暴露于剪切应力下产生的一氧化氮:聚集的作用

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Endothelial function is modulated by wall shear stress acting on the vessel wall, which is determined by fluid velocity and the local viscosity near the vessel wall. Red blood cell (RBC) aggregation may affect the local viscosity by favoring axial migration. The aim of this study was to investigate the role of RBC aggregation, with or without altered plasma viscosity, in the mechanically induced nitric oxide (NO)-related mechanisms of endothelial cells. Human umbilical vein endothelial cells (HUVEC) were cultured on the inner surface of cylindrical glass capillaries that were perfused with RBC suspensions having normal and increased aggregation at a nominal shear stress of 15 dyn/cm~2. RBC aggregation was enhanced by two different approaches:1) poloxamer-coated RBC suspended in normal, autologous plasma, resulting in enhanced aggregation but unchanged plasma viscosity and 2) normal RBC suspended in autologous plasma containing 0.5% dextran (mol mass 500 kDa), with a similar level of RBC aggregation but higher plasma viscosity. Compared with normal cells in unmodified plasma, perfusion with suspensions of poloxamer-coated RBC in normal plasma resulted in decreased levels of NO metabolites and serine 1177 phosphorylation of endothelial nitric oxide synthase (eNOS). Perfusion with normal RBC in plasma containing dextran resulted in a NO level that remained elevated, whereas only a modest decrease of phosphorylated eNOS level was observed. The results of this study suggest that increases of RBC aggregation tendency affect endothelial cell functions by altering local blood composition, especially if the alterations of RBC aggregation are due to modified cellular properties and not to plasma composition changes.
机译:内皮功能通过作用在血管壁上的壁切应力来调节,该应力由流体速度和血管壁附近的局部粘度决定。红细胞(RBC)聚集可能会通过促进轴向迁移而影响局部粘度。这项研究的目的是研究红细胞聚集,无论是否改变血浆粘度,在内皮细胞机械诱导的一氧化氮(NO)相关机制中的作用。将人脐静脉内皮细胞(HUVEC)培养在圆柱形玻璃毛细管的内表面上,该玻璃毛细管用标称剪切应力为15 dyn / cm〜2的具有正常聚集和增加聚集的RBC悬浮液灌注。 RBC聚集可通过两种不同的方法增强:1)将泊洛沙姆包被的RBC悬浮在正常的自体血浆中,导致聚集增强,但血浆粘度不变; 2)正常RBC悬浮在含有0.5%葡聚糖(摩尔质量500 kDa)的自体血浆中,红细胞聚集水平相似,但血浆粘度更高。与未修饰血浆中的正常细胞相比,在正常血浆中灌注泊洛沙姆涂层的RBC悬浮液会导致NO代谢产物水平降低以及内皮型一氧化氮合酶(eNOS)的丝氨酸1177磷酸化。在含右旋糖酐的血浆中用正常RBC灌注导致NO水平保持升高,而仅观察到磷酸化eNOS水平的适度降低。这项研究的结果表明,RBC聚集趋势的增加会通过改变局部血液成分来影响内皮细胞功能,特别是如果RBC聚集的改变是由于细胞特性的改变而不是血浆成分的改变而引起的。

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