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采用一系列温度的高速率微流控血液血浆分离装置。

High flow rate microfluidic device for blood plasma separation using a range of temperatures.

机构信息

Department of electronics, Physics Faculty, University of Barcelona, C/Martí I Franquès 1, 08028 Barcelona, Spain.

出版信息

Lab Chip. 2010 Jan 21;10(2):211-9. doi: 10.1039/b904531g. Epub 2009 Nov 13.

Abstract

A hybrid microfluidic device that uses hydrodynamic forces to separate human plasma from blood cells has been designed and fabricated and the advantageous effects of temperature and flow rates are investigated in this paper. The blood separating device includes an inlet which is reduced by approximately 20 times to a small constrictor channel, which then opens out to a larger output channel with a small lateral channel for the collection of plasma. When tested the device separated plasma from whole blood using a wide range of flow rates, between 50 microl min(-1) and 200 microl min(-1), at the higher flow rates injected by hand and at temperatures ranging from 23 degrees C to 50 degrees C, the latter resulting in an increase in the cell-free layer of up to 250%. It was also tested continuously using between 5% and 40% erythrocytes in plasma and whole blood without blocking the channels or hemolysis of the cells. The mean percentage of plasma collected after separation was 3.47% from a sample of 1 ml. The percentage of cells removed from the plasma varied depending on the flow rate used, but at 37 degrees C ranged between 95.4 +/- 1% and 97.05 +/- 05% at 100 microl min(-1) and 200 microl min(-1), respectively. The change in temperature also had an effect on the number of cells removed from the plasma which was between 93.5 +/- 0.65% and 97.01 +/- 0.3% at 26.9 degrees C and 37 degrees C, respectively, using a flow rate of 100 microl min(-1). Due to its ability to operate in a wide range of conditions, it is envisaged that this device can be used in in vitro 'lab on a chip' applications, as well as a hand-held point of care (POC) device.

摘要

本文设计并制造了一种混合微流控装置,该装置利用流体动力将人体血浆从血细胞中分离出来,并研究了温度和流速的有利影响。该血液分离装置包括一个入口,入口通过大约 20 倍的缩小器通道缩小,然后扩展到一个更大的输出通道,输出通道带有一个用于收集血浆的小侧向通道。在测试中,该设备使用 50 微升/分钟至 200 微升/分钟的广泛流速,从手动注射的较高流速到 23 摄氏度至 50 摄氏度的温度范围,将血浆从全血中分离出来,后者导致无细胞层增加高达 250%。它还在 5%至 40%的红细胞在血浆和全血中的连续测试中进行了测试,而不会阻塞通道或使细胞溶血。分离后收集的血浆平均百分比为 1 毫升样本的 3.47%。从血浆中去除的细胞百分比取决于使用的流速,但在 37 摄氏度时,分别在 100 微升/分钟和 200 微升/分钟时,使用 100 微升/分钟和 200 微升/分钟时,分别在 95.4 +/- 1%和 97.05 +/- 05%之间。温度变化也对从血浆中去除的细胞数量有影响,在 26.9 摄氏度和 37 摄氏度时,分别在 100 微升/分钟的流速下,使用 93.5 +/- 0.65%和 97.01 +/- 0.3%之间。由于其能够在广泛的条件下运行,因此预计该装置可用于体外“片上实验室”应用以及手持式即时护理(POC)设备。

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