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Drift and fluctuating motion of artificial platelets during the lateral transport and adhesion process near the wall

机译:人造血小板在壁附近的横向运输和粘附过程中的漂移和波动运动

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摘要

Recombinant glycoprotein Ibα latex beads (rGPIbα-LB) are a potential solution to overcoming platelet transfusion problems with artificial platelets. To understand the transport process of artificial platelets and to estimate the particle motion when adhering to the wall surface, we evaluated the lateral motion of rGPIbα-LB in terms of drift and random motion, because the lateral motion is an important factor for transport and adhesion. We observed the lateral motion of rGPIbα-LB flowing with red blood cells toward the immobilized von Willebrand factor (vWf) surface in a model arteriole at wall shear rates of 200-1000 s~(-1) and 0-40% Hct. At 40% Hct, wall shear rate dependence was observed for the drift motion, i. e. the lateral velocity of rGPIbα-LB toward the wall. In the near-wall region, the drift motion of contacting particles differed substantially from that of non-contacting particles. Additionally, the trajectories of contacting particles on the vWf surface had specific motion that was not observed on the BSA surface. These results suggest that the adhesion force between rGPIbα and vWf is highly associated with the motion of particles near the wall. These features are desirable for artificial platelets, particularly for the adhesion process.
机译:重组糖蛋白Ibα乳胶珠(rGPIbα-LB)是克服人工血小板的血小板输注问题的潜在解决方案。为了了解人造血小板的运输过程并评估粘附到壁表面时的颗粒运动,我们从漂移和随机运动的角度评估了rGPIbα-LB的横向运动,因为横向运动是运输和粘附的重要因素。我们观察到rGPIbα-LB与红血球向模型小动脉中固定的von Willebrand因子(vWf)表面流动的横向运动,壁剪切率为200-1000 s〜(-1)和0-40%Hct。在40%Hct时,观察到壁剪切速率随漂移运动的变化,即e。 rGPIbα-LB向壁的横向速度。在近壁区域中,接触颗粒的漂移运动与非接触颗粒的漂移运动基本不同。另外,vWf表面上的接触粒子的轨迹具有在BSA表面上未观察到的特定运动。这些结果表明,rGPIbα和vWf之间的粘附力与壁附近颗粒的运动高度相关。这些特征对于人造血小板是理想的,特别是对于粘附过程。

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