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A simple method for activating the platelets used in microfluidic platelet aggregation tests: Stirring-induced platelet activation

机译:激活用于微流控血小板凝集试验的血小板的简单方法:搅拌诱导的血小板活化

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摘要

High-shear stimulation is well known as one of the key factors affecting platelet activation and aggregation, which can lead to the formation of a thrombus. In one of our previous studies, we introduced migration distance-based platelet function analysis in a microfluidic system. In this study, we set out to examine the effects of stirring on shear-induced platelet activation and aggregation in a chamber system by using a rotating stirrer. We found that the rotating stirrer caused not only rotational shear flow but also a strong radial secondary flow. The latter flow led to efficient mixing in the chamber. Moreover, the rotational flow led to the generation of shear stress, the magnitude of which can be controlled to activate the platelets. Activated platelets tend to aggregate themselves. The maximum platelet aggregation was observed at a critical shear rate of 3100 s−1, regardless of the stirrer shape. Furthermore, the time taken to attain maximum aggregation was significantly shortened when using a wide stirrer (30 s) instead of a narrow one (180 s). When using a flat stirrer, the non-uniform shear field in the chamber system was resolved with the radial secondary flow-induced mixing; thus, most of the platelets were homogenously activated. The stirring-induced platelet activation mechanism was experimentally confirmed in a microfluidic system for a platelet aggregation test while monitoring the migration distance until the microfluidic channel is occluded. Our findings indicate that the present system, consisting of a rotating stirrer and a confined chamber, provides effective shear stimulation for activating platelets and inducing platelet aggregates.
机译:众所周知,高剪切刺激是影响血小板活化和聚集的关键因素之一,这可能导致血栓的形成。在我们以前的一项研究中,我们在微流体系统中引入了基于迁移距离的血小板功能分析。在这项研究中,我们着手研究使用旋转搅拌器搅拌对腔室系统中剪切诱导的血小板活化和聚集的影响。我们发现旋转搅拌器不仅引起旋转剪切流,而且引起强烈的径向二次流。后者的流动导致室内的有效混合。此外,旋转流导致剪切应力的产生,可以控制剪切应力的大小以激活血小板。活化的血小板倾向于自身聚集。不论搅拌器的形状如何,在3100 s -1 的临界剪切速率下观察到最大的血小板聚集。此外,使用宽搅拌器(30 s)而不是窄搅拌器(180 s)时,达到最大聚集所需的时间大大缩短。当使用平面搅拌器时,腔室系统中的不均匀剪切场通过径向二次流引起的混合而得以解决。因此,大多数血小板被同质激活。在微流系统中通过实验证实了搅拌诱导的血小板活化机制,用于血小板凝集试验,同时监测了迁移距离,直到阻塞了微流通道。我们的发现表明,由旋转搅拌器和密闭室组成的本系统为激活血小板和诱导血小板聚集体提供了有效的剪切刺激。

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