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高流速全血样本中蛋白质涂层表面血小板黏附的动力学。

Kinetics of Platelet Adhesion to Protein-Coated Surface in Whole Blood Samples at High Flow Rates.

机构信息

Laboratory of Human Stem Cells, National Medical Research Center of Cardiology, Ministry of Health of Russian Federation, Moscow, Russia.

National Medical Research Center of Hematology, Ministry of Health of Russian Federation, Moscow, Russia.

出版信息

Bull Exp Biol Med. 2020 Jun;169(2):229-232. doi: 10.1007/s10517-020-04856-z. Epub 2020 Jul 10.

Abstract

We studied platelet adhesion to fibrinogen-coated surface in whole blood samples under conditions of high flow rates. The degree of platelet adhesion was evaluated by the intensity of laser light scattered from protein-coated optical surface with adhered platelets. The intensity of adhesion in whole blood samples at high flow rates was by 2.7 (2.4; 4.1) times higher than in platelet-rich plasma samples. Among the factors intensifying platelet adhesion in the whole blood at high flow rates, von Willebrand factor is of utmost importance. At low flow rates, platelet adhesion almost totally depends on platelet-fibrinogen interaction. At high flow rates, the interactions of platelets with both fibrinogen and von Willebrand factor become equally important.

摘要

我们研究了在高速流动条件下全血样本中血小板对纤维蛋白原涂层表面的黏附。通过激光散射测定黏附于涂覆蛋白的光学表面的血小板的强度,评估血小板黏附的程度。在高速率下全血样本中的血小板黏附强度比富含血小板的血浆样本高 2.7(2.4;4.1)倍。在高速率下增强全血中血小板黏附的因素中,血管性血友病因子是最重要的。在低流速下,血小板黏附几乎完全取决于血小板-纤维蛋白原相互作用。在高速率下,血小板与纤维蛋白原和血管性血友病因子的相互作用同样重要。

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