Development of margination of platelet-sized particles in red blood cell suspensions flowing through Y-shaped bifurcating microchannels.

IF 1 4区 医学 Q4 BIOPHYSICS
Biorheology Pub Date : 2020-01-01 DOI:10.3233/BIR-201010
Masako Sugihara-Seki, Tenki Onozawa, Nozomi Takinouchi, Tomoaki Itano, Junji Seki
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引用次数: 1

Abstract

Background: In the blood flow through microvessels, platelets exhibit enhanced concentrations in the layer free of red blood cells (cell-free layer) adjacent to the vessel wall. The motion of platelets in the cell-free layer plays an essential role in their interaction with the vessel wall, and hence it affects their functions of hemostasis and thrombosis.

Objective: We aimed to estimate the diffusivity of platelet-sized particles in the transverse direction (the direction of vorticity) across the channel width in the cell-free layer by in vitro experiments for the microchannel flow of red blood cell (RBC) suspensions containing platelet-sized particles.

Methods: Fluorescence microscope observations were performed to measure the transverse distribution of spherical particles immersed in RBC suspensions flowing through a Y-shaped bifurcating microchannel. We examined the development of the particle concentration profiles along the flow direction in the daughter channels, starting from asymmetric distributions with low concentrations on the inner side of the bifurcation at the inlet of the daughter channels.

Results: In daughter channels of 40 μm width, reconstruction of particle margination revealed that a symmetric concentration profile was attained in ∼30 mm from the bifurcation, independent of flow rate.

Conclusions: We presented experimental evidence of particle margination developing in a bifurcating flow channel where the diffusivity of 2.9-μm diameter particles was estimated to be ∼40 μm2/s at a shear rate of 1000 s-1 and hematocrit of 0.2.

红细胞悬浮液中血小板大小的颗粒通过y形分岔微通道的边缘发展。
背景:在血液流经微血管时,血小板在靠近血管壁的无红细胞层(无细胞层)中浓度升高。无细胞层血小板的运动在血小板与血管壁的相互作用中起着至关重要的作用,从而影响血小板的止血和血栓功能。目的:通过含血小板大小的红细胞(RBC)悬浮液微通道流动的体外实验,估计血小板大小的颗粒在无细胞层中横向(涡度方向)的扩散率。方法:采用荧光显微镜观察红细胞悬浮液中球形颗粒的横向分布,并通过y型分岔微通道进行观察。我们从子通道入口分岔内侧低浓度的不对称分布开始,研究了子通道中沿流动方向的颗粒浓度分布。结果:在40 μm宽度的子通道中,颗粒边缘重建显示,在距离分叉约30 mm处获得了对称的浓度分布,与流速无关。结论:我们提供了在分岔流道中颗粒边沿发生的实验证据,其中2.9 μm直径的颗粒在剪切速率为1000 s-1和红细胞压积为0.2时的扩散系数估计为~ 40 μm2/s。
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来源期刊
Biorheology
Biorheology 医学-工程:生物医学
CiteScore
2.00
自引率
0.00%
发文量
5
审稿时长
>12 weeks
期刊介绍: Biorheology is an international interdisciplinary journal that publishes research on the deformation and flow properties of biological systems or materials. It is the aim of the editors and publishers of Biorheology to bring together contributions from those working in various fields of biorheological research from all over the world. A diverse editorial board with broad international representation provides guidance and expertise in wide-ranging applications of rheological methods to biological systems and materials. The scope of papers solicited by Biorheology extends to systems at different levels of organization that have never been studied before, or, if studied previously, have either never been analyzed in terms of their rheological properties or have not been studied from the point of view of the rheological matching between their structural and functional properties. This biorheological approach applies in particular to molecular studies where changes of physical properties and conformation are investigated without reference to how the process actually takes place, how the forces generated are matched to the properties of the structures and environment concerned, proper time scales, or what structures or strength of structures are required.
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