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首页> 外文期刊>Journal of Micromechanics and Microengineering >Designing and modeling a centrifugal microfluidic device to separate target blood cells
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Designing and modeling a centrifugal microfluidic device to separate target blood cells

机译:设计和建模用于分离目标血细胞的离心微流控设备

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The objective of this study is to design a novel and efficient portable lab-on-a -CD(LOCD) microfluidic device for separation of specific cells (target cells) using magnetic beads. In this study the results are shown for neutrophils as target cells. However, other kinds of target cells can be separated in a similar approach. The designed microfluidics can be utilized as a point of care system for neutrophil detection. This microfluidic system employs centrifugal and magnetic forces for separation. After model validation by the experimental data in the literature (that may be used as a design tool for developing centrifugo-magnetophoretic devices), two models are presented for separation of target cells using magnetic beads. The first model consists of one container in the inlet section and two containers in the outlets. Initially, the inlet container is filled with diluted blood sample which is a mixture of red blood cells (RBCs) plus neutrophils which are attached to Magnetic beads. It is shown that by using centrifugal and magnetic forces, this model can separate all neutrophils with recovery factor of -100%. In the second model, due to excess of magnetic beads in usual experimental analysis (to ensure that all target cells are attached to them) the geometry is improved by adding a third outlet for these free magnetic beads. It is shown that at angular velocity of 45 rad s(-1), recovery factor of 100% is achievable for RBCs, free magnetic beads and neutrophils as target cells.
机译:这项研究的目的是设计一种新颖高效的便携式CD-CD(LOCD)微流控设备,用于使用磁珠分离特定细胞(靶细胞)。在这项研究中,结果显示嗜中性粒细胞作为靶细胞。但是,其他种类的靶细胞也可以用类似的方法分离。设计的微流体可以用作中性粒细胞检测的护理系统。该微流体系统利用离心力和磁力进行分离。在通过文献中的实验数据对模型进行验证之后(可以将其用作开发离心磁磁装置的设计工具),提出了两种利用磁珠分离靶细胞的模型。第一个模型由入口部分中的一个容器和出口部分中的两个容器组成。最初,进口容器中充满了稀释的血液样本,该样本是附着在磁珠上的红细胞(RBC)和嗜中性粒细胞的混合物。结果表明,利用离心力和磁力,该模型可以分离出所有中性粒细胞,回收率为-100%。在第二个模型中,由于通常的实验分析中有过多的磁珠(以确保所有目标细胞都附着在其上),因此通过为这些自由磁珠添加第三个出口来改善几何形状。结果表明,在角速度为45 rad s(-1)时,作为目标细胞的RBC,自由磁珠和嗜中性粒细胞的回收率可达到100%。

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