首页> 外文会议>Biomedical Applications of Micro- and Nanoengineering II; Progress in Biomedical Optics and Imaging; vol.5 no.34 >Fabrication and Testing of Novel Blood Separation Devices Based on MicroChannel Bend Structures
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Fabrication and Testing of Novel Blood Separation Devices Based on MicroChannel Bend Structures

机译:基于微通道弯曲结构的新型血液分离装置的制造与测试

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Most clinical chemistry tests are performed on cell-free serum or plasma. Therefore micro assay devices for blood tests require integrated on-chip microfluidics for separation of plasma or serum from blood. Polymers are ideally suited for these applications due to their material properties and their applicability for high volume production. These requirements are achieved by a new on-chip blood separation technique based on microchannel bend structures and a rapid processing technology for micro assay devices using injection molding or hot embossing. Different prototype polymer chips with channel dimensions down to 20 μm and aspect ratios of 4 have been fabricated by injection molding and hot embossing. The inserts for the molding tools were fabricated by an UV-LIGA technology. The separation efficiency of these chips has been tested with human blood samples. The results show different separation efficiencies up to 100% for blood cells and plasma depending on microchannel geometry as well as cell concentration. As compared to present microfluidic devices for the separation of blood cells like filters, membranes or filtration by diffusion the microchannel bend is an integrated on-chip blood separation method. It combines the advantages of rapid separation times and a simple geometry that leads to cost-effective high volume production using injection molding.
机译:大多数临床化学测试都是在无细胞的血清或血浆上进行的。因此,用于血液测试的微量测定装置需要集成的芯片上微流体来从血液中分离血浆或血清。聚合物由于其材料特性及其在大批量生产中的适用性而非常适合这些应用。这些要求是通过基于微通道弯曲结构的新型片上血液分离技术以及采用注塑或热压花技术的微分析设备快速处理技术来实现的。通过注射成型和热压花,可以制造出通道尺寸低至20μm,纵横比为4的不同原型聚合物芯片。用于成型工具的刀片是通过UV-LIGA技术制造的。这些芯片的分离效率已通过人体血液样本进行了测试。结果表明,取决于微通道的几何形状以及细胞浓度,血细胞和血浆的分离效率最高可达100%。与目前的用于分离血细胞的微流体装置(例如过滤器,膜或通过扩散过滤)相比,微通道弯曲是一种集成的芯片上血液分离方法。它结合了快速的分离时间和简单的几何形状的优点,从而可以通过注塑成型实现经济高效的大批量生产。

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