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New paper-based microfluidic tools for the analysis of blood serum protein and creatinine built via aerosolized deposition of polycaprolactone

机译:用于分析血清血清蛋白和通过聚己内酯的雾化沉积构建的血液血清蛋白和肌酐的新纸质微流体工具

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This article describes a low-cost method for rapid fabrication of paper-based microfluidic devices using an aerosolized polymeric solution and substrates masked with painter's tape. This approach requires only a few simple tools and uses low-cost supplies to achieve fully functional microfluidic paper-based analytical devices. The method is capable of producing devices with minimum hydrophilic channel widths of 482 +/- 4 m, with the channel height being dictated by the substrate thickness. Complete hydrophobic barriers can be achieved with widths of only 257 +/- 2 m. This technique enables two dimensional (2D) fluidic pattern fabrication on a single membrane while complex three dimensional (3D) fluidic pattern fabrication is possible by simply incorporating a stack and lamination step. Devices built using this approach were applied in two clinical diagnostic applications: quantitative colorimetric assays for protein and for creatinine.
机译:本文介绍了一种利用雾化聚合物溶液快速制造纸质微流体装置的低成本方法,并用涂料胶带掩盖的基材。 这种方法只需要一些简单的工具,并使用低成本的电源来实现全功能的微流体纸纸种分析装置。 该方法能够产生具有482 +/- 4m的最小亲水通道宽度的装置,通道高度由基板厚度决定。 完全疏水屏障可以实现,宽度仅为257 +/-2μm。 该技术使得在单个膜上能够在单个膜上进行二维(2D)流体图案制造,而通过简单地结合堆叠和层压步骤,可以进行复杂的三维(3D)流体图案制造。 使用这种方法建造的设备应用于两个临床诊断应用:蛋白质和肌酐的定量比色测定。

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