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Simple and inexpensive micromachined aluminum microfluidic devices for acoustic focusing of particles and cells

机译:用于声学聚焦的简单且廉价的微机械微流体装置和细胞

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摘要

We introduce a new method to construct microfluidic devices especially useful for bulk acoustic wave (BAW)-based manipulation of cells and microparticles. To obtain efficient acoustic focusing, BAW devices require materials that have high acoustic impedance mismatch relative to the medium in which the cells/microparticles are suspended and materials with a high-quality factor. To date, silicon and glass have been the materials of choice for BAW-based acoustofluidic channel fabrication. Silicon- and glass-based fabrication is typically performed in clean room facilities, generates hazardous waste, and can take several hours to complete the microfabrication. To address some of the drawbacks in fabricating conventional BAW devices, we explored a new approach by micromachining microfluidic channels in aluminum substrates. Additionally, we demonstrate plasma bonding of poly(dimethylsiloxane) (PDMS) onto micromachined aluminum substrates. Our goal was to achieve an approach that is both low cost and effective in BAW applications. To this end, we micromachined aluminum 6061 plates and enclosed the systems with a thin PDMS cover layer. These aluminum/PDMS hybrid microfluidic devices use inexpensive materials and are simply constructed outside a clean room environment. Moreover, these devices demonstrate effectiveness in BAW applications as demonstrated by efficient acoustic focusing of polystyrene microspheres, bovine red blood cells, and Jurkat cells and the generation of multiple focused streams in flow-through systems. Graphical abstract The aluminum acoustofluidic device and the generation of multinode focusing of particles.
机译:我们介绍一种构建微流体装置的新方法,特别适用于散装声波(BAW)的细胞和微粒的操纵。为了获得有效的声学聚焦,BAW器件需要相对于介质具有高声阻抗错配的材料,其中细胞/微粒被悬浮和具有高质量因子的材料。迄今为止,硅和玻璃一直是基于BAW的声流体通道制造的首选材料。硅和玻璃制造通常在洁净室设施中进行,产生危险废物,并且需要几个小时才能完成微制造。为了解决制造传统的BAW器件中的一些缺点,我们通过铝基板中的微量微流体通道探讨了一种新方法。另外,我们将聚(二甲基硅氧烷)(PDMS)的血浆键合在微加工铝基衬底上。我们的目标是实现一种方法,即在BAW应用方面都有低成本和有效。为此,我们将微机械研磨铝6061板,并用薄的PDMS覆盖层封闭系统。这些铝/ PDMS混合动力装置使用廉价的材料,简单地建造在洁净室环境之外。此外,这些器件在通过高效声学聚焦的高效声学聚焦和Jurkat细胞和流通系统中产生多重聚焦流的产生和产生多个聚焦物流的有效性,这些装置在凸抗应用中表现出抗波扫描应用的有效性。图形摘要铝制声流体装置及粒子多光度聚焦的产生。

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