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Multilevel fluidic flow control in a rotationally-driven polyester film microdevice created using laser print, cut and laminate

机译:使用激光印刷,切割和层压板在旋转驱动的聚酯薄膜微霉菌中进行多级流体流量控制

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摘要

This paper presents a simple and cost-effective polyester toner microchip fabricated with laser print and cut lithography (PCL) to use with a battery-powered centrifugal platform for fluid handling. The combination of the PCL microfluidic disc and centrifugal platform: (1) allows parallel aliquoting of two different reagents of four different volumes ranging from nL to mu L with an accuracy comparable to a piston-driven air pipette; (2) incorporates a reciprocating mixing unit driven by a surface-tension pump for further dilution of reagents, and (3) is amenable to larger scale integration of assay multiplexing (including all valves and mixers) without substantially increasing fabrication cost and time. For a proof of principle, a 10 min colorimetric assay for the quantitation of the protein level in the human blood plasma samples is demonstrated on chip with a limit of detection of similar to 5 mg mL(-1) and coefficient of variance of similar to 7%.
机译:本文介绍了一种简单且经济高效的聚酯碳粉微芯片,用激光印刷和切割光刻(PCL),以与电池供电的离心平台一起使用,用于流体处理。 PCL微流体盘和离心平台的组合:(1)允许平行等四种不同的4种不同体积的试剂等分于从N1到MU L的精度与活塞驱动的空气移液管相媲美; (2)包括由表面张力驱动的往复混合单元,用于进一步稀释试剂,(3)可用于更大的测定复用(包括所有阀门和混合器)的尺度集成而没有显着增加制造成本和时间。 对于原理的证据,对人血浆样品中蛋白质水平定量的10分钟的比色测定在芯片上进行了说明,其检测限与5mg ml(-1)和类似的变化系数 7%。

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