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A Nanosurface Microfluidic Device for Capture and Detection of Bacteria

机译:用于细菌捕获和检测的纳米表面微流体装置

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Here we report on design, fabrication and implementation of a nanosurfac microfluidic device for efficient bacteria capture and optical detection. The device features simple design and ease of implementation. The principal of operation depends on the self-assembly of microparticles (polystyrene particles) at a pillar array region to form a Nano-filter for subsequent bacteria capture on gold nano/micro islands. The design was optimized using 2D COMSOL simulation. The device was fabricated using a single UV lithography step followed by electrodeposition of the gold structures and a subsequent step of polydimethylsiloxane (PDMS) bonding for device sealing. Lastly, the device was experimentally implemented using Escherichia coli (E.coli) bacteria showing efficient bacteria capturing performance.
机译:在这里,我们报告为高效细菌捕获和光学检测的纳米表面活性剂微流控设备的设计,制造和实施。该设备具有简单的设计和易于实现的特点。操作的原理取决于微粒(聚苯乙烯颗粒)在柱阵列区域的自组装,以形成用于随后将细菌捕获在金纳米/微岛上的纳米过滤器。使用2D COMSOL仿真对设计进行了优化。使用单个UV光刻步骤,然后电沉积金结构和随后的聚二甲基硅氧烷(PDMS)粘合步骤进行器件密封来制造器件。最后,使用显示出有效细菌捕获性能的大肠杆菌(E.coli)细菌在实验上实现了该设备。

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