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Low-cost printing of poly(dimethylsiloxane) barriers to define microchannels in paper

机译:低成本印刷聚二甲基硅氧烷阻隔层,以定义纸中的微通道

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摘要

This paper describes the use of a modified x,y-plotter to generate hydrophilic channels by printing a solution of hydrophobic polymer (pol(dimethylsiloxane; PDMS) dissolved in hexanes onto filter paper. The PDMS penetrates the depth of the paper and forms a hydrophobic wall that aqueous solutions cannot cross. The minimum size of printed features is similar to 1 mm; this resolution is adequate for the rapid prototyping of hand-held, visually read, diagnostic assays (and other microfluidic systems) based on paper. After curing the printed PDMS, the paper-based devices can be bent or folded to generate three-dimensional systems of channels. Capillary action pulls aqueous samples into the paper channels. Colorimetric assays for the presence of glucose and protein are demonstrated in the printed devices; spots of Bromothymol Blue distinguished samples with slightly basic pH (8.0) from samples with slightly acidic pH (6.5). The work also describes using printed devices that can be loaded using multipipets and printed flexible, foldable channels in paper over areas larger than 100 cm(2).
机译:本文介绍了使用改性的x,y-绘图仪通过将溶于己烷中的疏水性聚合物(pol(二甲基硅氧烷; PDMS)溶液)打印到滤纸上来生成亲水通道的方法。PDMS渗透纸的深处并形成疏水性水溶液无法穿过的壁,印刷特征的最小尺寸约为1毫米;此分辨率足以用于基于纸的手持式,目视读取,诊断分析(和其他微流体系统)的快速原型制作。打印的PDMS,可以弯曲或折叠纸基设备以生成三维通道系统,毛细作用将水性样品拉入纸通道中,比色测定法用于检测葡萄糖和蛋白质的存在;溴百里酚蓝区分弱碱性pH(8.0)的样品和弱酸性pH(6.5)的样品。在大于100 cm(2)的区域中用多移液器和打印的柔性,可折叠通道在纸上打印。

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