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首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >Computational study on effect of red blood cells on primary thrombus formation.
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Computational study on effect of red blood cells on primary thrombus formation.

机译:红细胞对原发性血栓形成影响的计算研究。

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摘要

The primary thrombus formation is a critical phenomenon both physiologically and pathologically. It has been seen that various mechanical factors are involved the regulation of primary thrombus formation through a series of physiological and biochemical processes, including blood flow and intercellular molecular bridges. However, it has not been fully understood how the existence of red blood cells contributes to the process of platelet thrombus formation. We computationally analyzed the motions of platelets in plasma layer above which red blood cells flow assuming a background simple shear flow of a shear rate of 1000 s(-1) using Stokesian dynamics. In the computation, fluid mechanical interactions between platelets and red blood cells were taken into account together with the binding forces via plasma proteins between two platelets and between a platelet and injured vessel wall. The process of the platelets aggregation was significantly dependent on whether red blood cells were present. When red blood cells were absent, the aggregate formed grew more vertically compared to the case with red blood cells. Conversely, when red blood cells were present, the aggregate spread more horizontally because the red blood cells constrained the vertical growth when the height of the aggregate reached the level of the red blood cells. Our results suggest that red blood cells mechanically play a significant role in primary thrombus formation, which accelerates the horizontal spread of the thrombus, and point out the necessity of considering the presence of red blood cells when investigating the mechanism of thrombus formation.
机译:初级血栓形成在生理和病理上都是关键现象。已经发现,各种机械因素涉及通过一系列生理和生化过程,包括血流和细胞间分子桥,来调节初级血栓形成。然而,尚未完全了解红细胞的存在如何促进血小板血栓形成过程。我们计算了血浆层中血小板的运动,该血浆层中的红细胞在斯托克斯动力学的基础上以1000 s(-1)的剪切速率作为背景简单剪切流流动。在计算中,考虑了血小板和红细胞之间的流体机械相互作用以及通过血浆蛋白在两个血小板之间以及血小板和受损血管壁之间的结合力。血小板聚集的过程很大程度上取决于是否存在红细胞。当没有红细胞时,形成的聚集体与有红细胞的情况相比更垂直地生长。相反,当存在红细胞时,聚集体更水平地扩散,因为当聚集体的高度达到红细胞水平时,红细胞会限制垂直生长。我们的结果表明,红细胞在原发性血栓形成中机械地起着重要作用,这会加速血栓的水平扩散,并指出在研究血栓形成的机制时必须考虑是否存在红血球。

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