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人血小板沿与切变流垂直的方向收缩。

Human blood platelets contract in perpendicular direction to shear flow.

机构信息

Institute for X-Ray Physics, University of Goettingen, 37077 Göttingen, Germany.

出版信息

Soft Matter. 2019 Feb 27;15(9):2009-2019. doi: 10.1039/c8sm02136h.

Abstract

In their physiological environment, blood platelets are permanently exposed to shear forces caused by blood flow. Within this surrounding, they generate contractile forces that eventually lead to a compaction of the blood clot. Here, we present a microfluidic chamber that combines hydrogel-based traction force microscopy with a controlled shear environment, and investigate the force fields platelets generate when exposed to shear flow in a spatio-temporally resolved manner. We find that for shear rates between 14 s-1 to 33 s-1, the general contraction behavior in terms of force distribution and magnitude does not differ from no-flow conditions. The main direction of contraction, however, does respond to the externally applied stress. At high shear stress, we observe an angle of about 90° between flow direction and main contraction axis. We explain this observation by the distribution of the stress acting on the adherent cell: the observed angle provides the most stable situation for the cell experiencing the shear flow, as supported by a finite element method simulation of the stresses along the platelet boundary.

摘要

在生理环境中,血小板会持续受到血流产生的切变力的影响。在这种环境下,血小板会产生收缩力,最终导致血栓的压实。在这里,我们展示了一种微流控室,它将基于水凝胶的牵引力显微镜与受控的切变环境相结合,并以时空分辨的方式研究血小板在受到切变流时产生的力场。我们发现,对于 14 s-1 至 33 s-1 的切变率,力分布和大小方面的一般收缩行为与无流条件没有区别。然而,主要的收缩方向确实会对外加应力做出响应。在高剪切应力下,我们观察到流动方向和主要收缩轴之间的夹角约为 90°。我们通过作用在贴壁细胞上的应力分布来解释这一观察结果:由于对经历切变流的细胞最稳定,因此观察到的角度提供了最稳定的情况,这得到了沿着血小板边界的应力的有限元方法模拟的支持。

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