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A parallel microfluidic channel fixture fabricated using laser ablated plastic laminates for electrochemical and chemiluminescent biodetection of DNA

机译:使用激光烧蚀的塑料层压板制造的平行微流道固定装置用于DNA的电化学和化学发光生物检测

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摘要

Herein is described the fabrication and use of a plastic multilayer 3-channel microfluidic fixture. Multilayer devices were produced by laser machining of plastic polymethylmethacrylate and polyethyleneterapthalate laminates by ablation. The fixture consisted of an array of nine individually addressable gold or gold/ITO working electrodes, and a resistive platinum heating element. Laser machining of both the fluidic pathways in the plastic laminates, and the stencil masks used for thermal evaporation to form electrode regions on the plastic laminates, enabled rapid and inexpensive implementation of design changes. Electrochemiluminescence reactions in the fixture were achieved and monitored through ITO electrodes. Electroaddressable aryl diazonium chemistry was employed to selectively pattern gold electrodes for electrochemical multianalyte DNA detection from double stranded DNA (dsDNA) samples. Electrochemical detection of dsDNA was achieved by melting of dsDNA molecules in solution with the integrated heater, allowing detection of DNA sequences specific to breast and colorectal cancers with a non-specific binding control. Following detection, the array surface could be renewed via high temperature (95 °C) stripping using the integrated heating element. This versatile and simple method for prototyping devices shows potential for further development of highly integrated, multi-functional bioanalytical devices.
机译:本文描述了塑料多层3通道微流体固定器的制造和使用。多层器件是通过对聚甲基丙烯酸甲酯塑料和聚对苯二甲酸乙二醇酯层压板进行激光加工而进行激光加工而生产的。该夹具包括九个可单独寻址的金或金/ ITO工作电极阵列,以及一个电阻式铂加热元件。对塑料层压板中的流体路径以及用于热蒸发以在塑料层压板上形成电极区域的模板掩模进行激光加工,可以快速,廉价地实现设计变更。通过ITO电极实现并监测固定装置中的电化学发光反应。采用可电寻址的芳基重氮化合物化学试剂,从双链DNA(dsDNA)样品中选择性地选择金电极图案,以进行电化学多分析物DNA检测。 dsDNA的电化学检测是通过使用集成加热器将dsDNA分子在溶液中融化而实现的,从而可以通过非特异性结合对照检测特异于乳腺癌和结肠直肠癌的DNA序列。检测后,可以使用集成的加热元件通过高温(95 C)汽提来更新阵列表面。这种通用且简单的设备原型制作方法显示出进一步开发高度集成的多功能生物分析设备的潜力。

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