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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Developing self-generated calibration curves using a capillary-driven wax-polyester lab on a chip device and thermal gates
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Developing self-generated calibration curves using a capillary-driven wax-polyester lab on a chip device and thermal gates

机译:在芯片装置和热门盖上使用毛细管驱动的蜡 - 涤纶实验室开发自我产生的校准曲线

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摘要

Here we describe the development of a capillary-driven wax-polyester lab on a chip device and the concept of thermal gates to create self-generated calibration curves. The devices were fabricated by printing a wax pattern on a polyester film, and laminating two mirrored layers together. Victoria Blue R and a diluent of methanol/water (1:1) were placed in separate wells, and capillary forces drove the reagents through three additional mixing wells, resulting in respective dilutions of 50%, 25% and 12.5% of the original dye concentration (100%). A photo was taken after the capillary action ceased, and the color brightness of the four different concentrations was used for the creation of a calibration curve, resulting in a coefficient of determination of 0.99. The chip was readily adapted to include an additional channel to perform chemical reactions with KOH to increase the available detection options. The chip designs required up to three reagents to be simultaneously added, with any discrepancies in the synchronization of reagent addition leading to irreproducible results. To overcome these synchronization discrepancies, thermal gates were added by printing 0.15 mm wax barriers across the channel inlets to prevent liquid movement. These gates were simultaneously opened to allow the solutions to flow by applying heat, controlled by an Arduino-based instrument controller, through bent copper filaments positioned adjacent to the barriers for 380 milliseconds.
机译:在这里,我们描述了在芯片装置上的毛细管驱动的蜡 - 聚酯实验室的开发和热门栅极的概念,以产生自我产生的校准曲线。通过在聚酯膜上印刷蜡图案并将两个镜像层层叠在一起来制造这些装置。维多利亚蓝R和甲醇/水的稀释剂(1:1)置于单独的孔中,并且毛细管力通过三个另外的混合孔推动试剂,导致稀释的50%,25%和12.5%的原始染料的稀释剂浓度(100%)。在停止毛细血管作用后取一张照片,并且使用四种不同浓度的颜色亮度用于产生校准曲线,导致测定系数0.99。芯片容易适于包括附加通道以与KOH进行化学反应以增加可用的检测选项。芯片设计最多可同时添加三种试剂,在试剂的同步中具有任何差异,导致IRREPROOMIBLE结果。为了克服这些同步差异,通过在通道入口上印刷0.15mm蜡屏障来加入热栅,以防止液体运动。同时打开这些栅极以允许通过施加由基于Arduino的仪器控制器控制的热量的溶液流过弯曲铜丝,其定位在380毫秒的屏障附近。

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