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利用惯性微流控技术从全血中高通量分离白细胞。

High-Throughput Separation of White Blood Cells From Whole Blood Using Inertial Microfluidics.

出版信息

IEEE Trans Biomed Circuits Syst. 2017 Dec;11(6):1422-1430. doi: 10.1109/TBCAS.2017.2735440. Epub 2017 Aug 29.

Abstract

White blood cells (WBCs) constitute only about 0.1% of human blood cells, yet contain rich information about the immune status of the body; thus, separation of WBCs from the whole blood is an indispensable and critical sample preparation step in many scientific, clinical, and diagnostic applications. In this paper, we developed a continuous and high-throughput microfluidic WBC separation platform utilizing the differential inertial focusing of particles in serpentine microchannels. First, separation performance of the proposed method is characterized and evaluated using polystyrene beads in the serpentine channel. The purity of 10-μm polystyrene beads is increased from 0.1% to 80.3% after two cascaded processes, with an average enrichment ratio of 28 times. Next, we investigated focusing and separation properties of Jurkat cells spiked in the blood to mimic the presence of WBCs in whole blood. Finally, separation of WBCs from human whole blood was conducted and separation purity of WBCs was measured by the flow cytometry. The results show that the purity of WBCs can be increased to 48% after two consecutive processes, with an average enrichment ratio of ten times. Meanwhile, a parallelized inertial microfluidic device was designed to provide a high processing flow rate of 288 ml/h for the diluted (×1/20) whole blood. The proposed microfluidic device can potentially work as an upstream component for blood sample preparation and analysis in the integrated microfluidic systems.

摘要

白细胞(WBC)仅占人体血液细胞的 0.1%左右,但包含有关身体免疫状态的丰富信息;因此,从全血中分离 WBC 是许多科学、临床和诊断应用中不可或缺的关键样本制备步骤。在本文中,我们开发了一种连续的高通量微流控白细胞分离平台,利用蛇形微通道中颗粒的差分惯性聚焦。首先,使用蛇形通道中的聚苯乙烯珠对所提出的方法的分离性能进行了表征和评估。经过两个级联过程,10μm 聚苯乙烯珠的纯度从 0.1%提高到 80.3%,平均富集比为 28 倍。接下来,我们研究了在血液中加入 Jurkat 细胞以模拟全血中 WBC 存在的聚焦和分离特性。最后,进行了从人全血中分离 WBC 的实验,并通过流式细胞术测量 WBC 的分离纯度。结果表明,经过两个连续的过程,WBC 的纯度可以提高到 48%,平均富集比为十倍。同时,设计了一个并行的惯性微流控装置,为稀释(×1/20)全血提供 288ml/h 的高处理流速。所提出的微流控装置有望作为集成微流控系统中血液样本制备和分析的上游组件。

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