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Investigation of human platelet adhesion under low shear conditions in a rotational flow chamber

机译:在旋转流室内低剪切条件下人体血小板粘附的研究

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Even though blood pumps have come into clinical usage, thrombo-embolic complications still pose a major problem, and they have not yet been clarified and quantified. However, it is known that the basis of thrombus formation is platelet adhesion, which is thought to be closely associated with the shear rate. Therefore, our current interest focuses on the effect of shear conditions on platelet adhesion. We have designed and carried out an experimental setup allowing fluorescent microscopy of whole blood within a rotational viscometer under controllable shear conditions. A small area of the bottom plate was coated with type 1 collagen, which provided a model of the injured vessel as a target for platelet adhesion. Using this setup, the time course of platelet adhesion under several different shear rates, ranging from 127 to 723 s~(-1), was studied. Platelet adhesion increased along with shear rates up to 283 s~(-1), followed by a gradual decrease when the shear rate exceeded 346 s~(-1). The adhesion amounts were statistically significant between 283 and 173 s~(-1) (p = 0.02), 173 and 127 s~(-1) (p = 0.035), and 283 and 503 s~(-1) (p = 0.03), respectively. This result suggests that there is an optimal shear condition around 300 s~(-1) for platelet adhesion to type I collagen.
机译:尽管血泵已投入临床使用,但血栓栓塞并发症仍然是一个主要问题,尚未对其进行澄清和量化。然而,已知血栓形成的基础是血小板粘附,血小板粘附被认为与剪切速率密切相关。因此,我们目前的兴趣集中在剪切条件对血小板粘附的影响上。我们设计并进行了实验设置,允许在旋转粘度计内可控剪切条件下对全血进行荧光显微镜检查。底板的一小部分涂有1型胶原蛋白,它提供了受伤血管的模型作为血小板粘附的目标。使用该设置,研究了在127到723 s〜(-1)范围内的几种不同剪切速率下血小板粘附的时程。血小板黏附力随着剪切速率的增加而增加,直至283 s〜(-1),当剪切速率超过346 s〜(-1)时逐渐降低。粘附量在283和173 s〜(-1)(p = 0.02),173和127 s〜(-1)(p = 0.035)和283和503 s〜(-1)(p = 0.03)。该结果表明,对于I型胶原的血小板粘附,存在300s〜(-1)左右的最佳剪切条件。

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