Graduate Institute of Biomedical Electronics and Bioinformatics, National Taiwan University, 10617, Taipei, Taiwan.
Department of Electrical Engineering, National Taiwan University, 10617, Taipei, Taiwan.
Sci Rep. 2018 Oct 18;8(1):15345. doi: 10.1038/s41598-018-33738-8.
This study reports a microfluidic device for whole blood processing. The device uses the bifurcation law, cross-flow method, and hydrodynamic flow for simultaneous extraction of plasma, red blood cells, and on-chip white blood cell trapping. The results demonstrate successful plasma and red blood cell collection with a minimum dilution factor (0.76x) and low haemolysis effect. The extracted red blood cells can also be applied for blood type tests. Moreover, the device can trap up to ~1,800 white blood cells in 20 minutes. The three components can be collected simultaneously using only 6 μL of whole blood without any sample preparation processes. Based on these features, the microfluidic device enables low-cost, rapid, and efficient whole blood processing functionality that could potentially be applied for blood analysis in resource-limited environments or point-of-care settings.
本研究报告了一种用于全血处理的微流控装置。该装置利用分岔律、横流法和流体动力学实现了同时提取血浆、红细胞和芯片内白细胞捕获。结果表明,成功地以最小的稀释因子(0.76x)和低溶血效果收集了血浆和红细胞。提取的红细胞也可用于血型测试。此外,该装置可在 20 分钟内捕获多达约 1800 个白细胞。仅使用 6μL 全血即可同时收集这三个组件,无需任何样品制备过程。基于这些特点,微流控装置实现了低成本、快速和高效的全血处理功能,有望在资源有限的环境或即时护理环境中应用于血液分析。