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首页> 外文期刊>Lab on a chip >Continuous plasma extraction under viscoelastic fluid in a straight channel with asymmetrical expansion-contraction cavity arrays
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Continuous plasma extraction under viscoelastic fluid in a straight channel with asymmetrical expansion-contraction cavity arrays

机译:具有不对称伸缩腔阵列的直通道在粘弹性流体下连续提取血浆

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摘要

In this paper, continuous plasma extraction under viscoelastic fluid in a straight channel with asymmetrical expansion-contraction cavity arrays (ECCA channel) is demonstrated by exploiting the Dean-flow-coupled elasto-inertial effects. First, the forces experienced by particles in the ECCA channel were discussed. Then, 4.8 mu m diameter particles, which mimic the behaviour of red blood cells (RBCs), were used to study the effects of poly.ethylene oxide) (PEO) concentrations and flow rates on particle viscoelastic focusing. Also, 3 mu m, 4.8 mu m and 10 mu m diameter particles, which are comparable in size to platelets, RBCs, and white blood cells (WBCs), respectively, were used to study the effect of particle size on particle viscoelastic focusing. Finally, plasma extraction from diluted blood samples under viscoelastic conditions was conducted, and the purity of the collected blood plasma was measured. After two series of filtration with the same ECCA channel, the purity of 3 mu m, 4.8 mu m and 10 mu m diameter particles reached 100%, and the plasma purity reached 99.99%, as measured by a hemocytometer. In addition, flow cytometry data further validated the filtration performance of blood plasma. By exploiting the Dean-flow-coupled elasto-inertial effects, the ECCA channel offers a continuous, sheathless, and high purity plasma extraction.
机译:在本文中,通过利用迪安流动耦合的弹性惯性效应,在具有非对称伸缩腔阵列的直通道中,在粘弹性流体下连续提取血浆。首先,讨论了ECCA通道中粒子所经历的力。然后,使用直径为4.8μm(模仿红细胞)的颗粒来研究聚环氧乙烷(PEO)浓度和流速对颗粒粘弹性聚焦的影响。另外,分别使用直径分别为血小板,RBC和白细胞(WBC)的3μm,4.8μm和10μm直径的颗粒来研究颗粒尺寸对颗粒粘弹性聚焦的影响。最后,在粘弹性条件下从稀释的血液样品中提取血浆,并测量所收集血浆的纯度。用相同的ECCA通道进行两次过滤后,直径3微米,4.8微米和10微米的颗粒的纯度达到100%,血浆纯度达到99.99%(通过血细胞计数器测量)。此外,流式细胞仪数据进一步验证了血浆的过滤性能。通过利用迪安流动耦合的弹性惯性效应,ECCA通道可提供连续,无鞘和高纯度的血浆提取。

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