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血小板与内皮下层的黏附——剪切速率、血细胞比容和血小板计数对血小板黏附于表面及从表面脱离的动态平衡的影响。

Platelet adhesion to subendothelium--effect of shear rate, hematocrit and platelet count on the dynamic equilibrium between platelets adhering to and detaching from the surface.

作者信息

Remuzzi A, Languino L R, Costantini V, Guardabasso V, de Gaetano G, Dejana E

出版信息

Thromb Haemost. 1985 Dec 17;54(4):857-61.

PMID:4089819
Abstract

The adherence of human 3H-adenine-labeled platelets to rat subendothelium was quantitated using a rotating probe device. Platelet adhesion increased in relation to the rotation time, reaching a plateau value in about 4-6 min without any further increase. A non-linear fitting analysis of experimental data allowed calculations of initial rate and plateau value of platelet adhesion. Increasing the shear rates (from 35 to 150 sec-1) or the hematocrit (from 10% to 40%), both the adhesion rate and the plateau value were increased. When different platelet concentrations were used the adhesion rate and the plateau calculated increased with platelet concentration. Different plateau values were obtained in the experimental conditions considered. This suggests that the plateau was not reached for the complete occupation of the subendothelial surface by the adherent platelets. Experiments using two different vessels rotated in the same platelet suspension or, viceversa, the same vessel rotated successively in two fresh platelet suspensions, showed that the plateau was not determined by reduced platelet reactivity. Rotating the same vessel first in radiolabeled platelets, until the plateau was reached, and secondly in non labeled platelets, or viceversa, showed that the plateau was indeed a dynamic condition where the number of platelets adhering and detaching reached equilibrium. These observations suggest that the platelet adhesion to subendothelium is the final equilibrium of two platelet fluxes, one adhering to the surface and another detaching from the surface.

摘要

使用旋转探针装置对人3H-腺嘌呤标记血小板与大鼠内皮下层的黏附进行定量。血小板黏附随旋转时间增加,在约4 - 6分钟达到平台值且不再进一步增加。对实验数据进行非线性拟合分析可计算血小板黏附的初始速率和平台值。增加剪切速率(从35至150秒-1)或血细胞比容(从10%至40%),黏附速率和平台值均增加。当使用不同血小板浓度时,计算得出的黏附速率和平台值随血小板浓度增加。在所考虑的实验条件下获得了不同的平台值。这表明黏附的血小板并未完全占据内皮下表面,所以未达到平台值。使用在同一血小板悬液中旋转的两种不同血管进行实验,或者反过来,同一血管先后在两种新鲜血小板悬液中旋转,结果表明平台值并非由血小板反应性降低所决定。先将同一血管在放射性标记血小板中旋转直至达到平台值,然后再在未标记血小板中旋转,或者反之,结果表明平台值实际上是一种动态状态,即黏附与脱离的血小板数量达到平衡。这些观察结果表明,血小板与内皮下层的黏附是两种血小板通量的最终平衡,一种黏附于表面,另一种从表面脱离。

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