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红细胞变形能力对血细胞比容分布和血小板靠边的影响。

The influence of red blood cell deformability on hematocrit profiles and platelet margination.

机构信息

Computational Science Lab, Faculty of Science, Institute for Informatics, University of Amsterdam, Amsterdam, Netherlands.

Department of Chemical Engineering, University of Michigan, Ann Arbor, Michigan, United States of America.

出版信息

PLoS Comput Biol. 2020 Mar 12;16(3):e1007716. doi: 10.1371/journal.pcbi.1007716. eCollection 2020 Mar.

Abstract

The influence of red blood cell (RBC) deformability in whole blood on platelet margination is investigated using confocal microscopy measurements of flowing human blood and cell resolved blood flow simulations. Fluorescent platelet concentrations at the wall of a glass chamber are measured using confocal microscopy with flowing human blood containing varying healthy-to-stiff RBC fractions. A decrease is observed in the fluorescent platelet signal at the wall due to the increase of stiffened RBCs in flow, suggesting a decrease of platelet margination due to an increased fraction of stiffened RBCs present in the flow. In order to resolve the influence of stiffened RBCs on platelet concentration at the channel wall, cell-pair and bulk flow simulations are performed. For homogeneous collisions between RBC pairs, a decrease in final displacement after a collision with increasing membrane stiffness is observed. In heterogeneous collisions between healthy and stiff RBC pairs, it is found that the stiffened RBC is displaced most. The influence of RBC deformability on collisions between RBCs and platelets was found to be negligible due to their size and mass difference. For a straight vessel geometry with varying healthy-to-stiff RBC ratios, a decrease was observed in the red blood cell-free layer and platelet margination due to an increase in stiffened RBCs present in flow.

摘要

采用共聚焦显微镜测量流动的人血和细胞分辨血流模拟,研究了全血中红细胞(RBC)变形性对血小板靠边的影响。在含有不同健康到刚性 RBC 分数的流动人血中,使用共聚焦显微镜测量玻璃室壁处的荧光血小板浓度。由于刚性 RBC 在流动中增加,观察到壁处的荧光血小板信号减少,这表明由于存在的刚性 RBC 分数增加,血小板靠边减少。为了解决刚性 RBC 对通道壁处血小板浓度的影响,进行了细胞对和体流模拟。对于 RBC 对之间的均匀碰撞,随着膜刚度的增加,碰撞后最终位移减小。在健康和刚性 RBC 对之间的非均匀碰撞中,发现刚性 RBC 被置换最多。由于其尺寸和质量差异,发现 RBC 变形性对 RBC 与血小板之间的碰撞影响可以忽略不计。对于具有不同健康到刚性 RBC 比的直血管几何形状,由于流动中存在刚性 RBC 增加,观察到无红细胞层和血小板靠边减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1d6/7093031/880a4ba90a72/pcbi.1007716.g001.jpg

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