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应用简单微流控芯片分析技术评估原儿茶酸对剪切诱导的血小板聚集的抑制作用。

Application of a Simple Microfluidic Chip Analysis Technology to Evaluate the Inhibitory Role of Protocatechuic Acid on Shear-Induced Platelet Aggregation.

作者信息

He Cui, Yu Lihua, Dan Wenran, Deng Surong, Ma Haidong, Liu Beizhong, Li Yuan

机构信息

Department of Blood Transfusion of Yong-chuan Hospital, Chongqing Medical University, Chongqing 402160, China.

Central Laboratory of Yong-chuan Hospital, Chongqing Medical University, Chongqing 402160, China.

出版信息

Evid Based Complement Alternat Med. 2021 May 18;2021:5574413. doi: 10.1155/2021/5574413. eCollection 2021.

Abstract

This study aimed to develop a simple microfluidic chip analysis technology to study the inhibitory effect of protocatechuic acid on shear-induced platelet aggregation. The microfluidic chip designed in this study simulates 80% fixed narrow microchannels. This microchannel narrow model uses the finite element analysis module of the three-dimensional modeling software solidwork to analyze fluid dynamic behavior. Blood treated with protocatechuic acid at 1, 2, 4, 8, or 16 g/mL was passed through the microchannel stenosis model at a shear rate of 10,000 s. The platelet adhesion and aggregation behaviors were then measured using fluorescence microscopy and observed in real time. Simultaneously, the antiplatelet aggregation effect of protocatechuic acid was analyzed using thromboelastography and photoelectric turbidimetry. The designed stenosis model of the microfluidic chip can produce a gradient of fluid shear rate, and the gradient of fluid shear rate can induce platelet aggregation. Under this model, the degree of platelet adhesion and aggregation increased as the shear rate increased. In the experimental concentration range of 0-8 mol/mL, protocatechuic acid exerted a concentration-dependent inhibition of platelet aggregation. In contrast, thromboelastography and photoelectric turbidimetry failed to demonstrate an inhibitory effect. The microfluidic chip analysis technology developed in this study can be used to study the effect of protocatechin in inhibiting platelet aggregation induced by shear rate in vitro. This technology is simple to operate and can be used as a new type of antiplatelet aggregation analysis technology for screening studies of novel potential antiplatelet aggregation drugs.

摘要

本研究旨在开发一种简单的微流控芯片分析技术,以研究原儿茶酸对剪切诱导的血小板聚集的抑制作用。本研究设计的微流控芯片模拟了80%固定狭窄的微通道。这种微通道狭窄模型使用三维建模软件solidwork的有限元分析模块来分析流体动力学行为。将用1、2、4、8或16 g/mL原儿茶酸处理的血液以10,000 s的剪切速率通过微通道狭窄模型。然后使用荧光显微镜测量血小板的黏附与聚集行为,并进行实时观察。同时,使用血栓弹力图和光电比浊法分析原儿茶酸的抗血小板聚集作用。所设计的微流控芯片狭窄模型可产生流体剪切速率梯度,且该流体剪切速率梯度可诱导血小板聚集。在此模型下,血小板黏附与聚集程度随剪切速率增加而升高。在0 - 8 mol/mL的实验浓度范围内,原儿茶酸对血小板聚集具有浓度依赖性抑制作用。相比之下,血栓弹力图和光电比浊法未显示出抑制作用。本研究开发的微流控芯片分析技术可用于体外研究原儿茶酸对剪切速率诱导的血小板聚集的影响。该技术操作简单,可作为一种新型抗血小板聚集分析技术,用于新型潜在抗血小板聚集药物的筛选研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66e7/8154282/3f33385ffb08/ECAM2021-5574413.001.jpg

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