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储存条件和缓冲液成分对流动红细胞力学行为的影响。

Influence of storage and buffer composition on the mechanical behavior of flowing red blood cells.

机构信息

GDR MECABIO, France; Institut de Mécanique des Fluides de Toulouse (IMFT), Université de Toulouse, CNRS, Toulouse, France; Biomechanics and Bioengineering Laboratory (UMR 7338), Université de Technologie de Compiègne - CNRS, Compiègne, France.

GDR MECABIO, France; Université Grenoble Alpes, CNRS, LIPhy, Grenoble, France.

出版信息

Biophys J. 2023 Jan 17;122(2):360-373. doi: 10.1016/j.bpj.2022.12.005. Epub 2022 Dec 6.

Abstract

On-chip study of blood flow has emerged as a powerful tool to assess the contribution of each component of blood to its overall function. Blood has indeed many functions, from gas and nutrient transport to immune response and thermal regulation. Red blood cells play a central role therein, in particular through their specific mechanical properties, which directly influence pressure regulation, oxygen perfusion, or platelet and white cell segregation toward endothelial walls. As the bloom of in-vitro studies has led to the apparition of various storage and sample preparation protocols, we address the question of the robustness of the results involving cell mechanical behavior against this diversity. The effects of three conservation media (EDTA, citrate, and glucose-albumin-sodium-phosphate) and storage time on the red blood cell mechanical behavior are assessed under different flow conditions: cell deformability by ektacytometry, shape recovery of cells flowing out of a microfluidic constriction, and cell-flipping dynamics under shear flow. The impact of buffer solutions (phosphate-buffered saline and density-matched suspension using iodixanol/Optiprep) are also studied by investigating individual cell-flipping dynamics, relative viscosity of cell suspensions, and cell structuration under Poiseuille flow. Our results reveal that storing blood samples up to 7 days after withdrawal and suspending them in adequate density-matched buffer solutions has, in most experiments, a moderate effect on the overall mechanical response, with a possible rapid evolution in the first 3 days after sample collection.

摘要

在片上研究血流已成为评估血液各成分对其整体功能贡献的有力工具。血液确实具有许多功能,从气体和营养物质的运输到免疫反应和体温调节。红细胞在其中起着核心作用,特别是通过其特定的机械特性,这直接影响压力调节、氧气灌注或血小板和白细胞向血管内皮壁的分离。随着体外研究的蓬勃发展,出现了各种存储和样品制备方案,我们针对涉及细胞机械行为的结果对这种多样性的稳健性提出了质疑。评估了三种保存介质(EDTA、柠檬酸盐和葡萄糖-白蛋白-磷酸钠)和储存时间对不同流动条件下红细胞机械行为的影响:通过 ektacytometry 评估细胞变形性、细胞从微流控收缩中流出的形状恢复以及剪切流下的细胞翻转动力学。缓冲液(磷酸盐缓冲盐水和使用碘克沙醇/Optiprep 密度匹配悬浮液)的影响也通过研究单个细胞翻转动力学、细胞悬浮液的相对粘度和泊肃叶流下的细胞结构来研究。我们的结果表明,在采血后最多储存 7 天的血液样本,并将其悬浮在适当的密度匹配缓冲液中,在大多数实验中对整体机械响应只有适度的影响,在样本采集后的头 3 天可能会迅速演变。

相似文献

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The influence of erythrocyte shape on suspension viscosities.红细胞形状对悬浮液黏度的影响。
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