Department of Chemistry and Biochemistry, California State University, 5151 State University Drive, Los Angeles, California, 90032-8202, USA.
Electrophoresis. 2019 Jan;40(2):296-303. doi: 10.1002/elps.201800383. Epub 2018 Nov 14.
In this paper we describe the fabrication of novel 3D microfluidic paper-based analytical devices (3D-μPADs) and a 3D microfluidic thread/paper-based analytical device (3D-μTPAD) to detect glucose and BSA through colorimetric assays. The 3D-μPAD and 3D-μTPAD consisted of three (wax, heat pressed wax-printed paper, single-sided tape) and four (hole-punched single-sided tape, blank chromatography circles, heat-pressed wax-printed paper, hole-punched single-sided tape containing trifurcated thread) layers, respectively. The saturation curves for each assay were generated for all platforms. For the glucose assay, a solution of glucose oxidase (GOx), horseradish peroxidase, and potassium iodide was flowed through each platform and, upon contact with glucose, generated a yellow-brown color indicative of the oxidation of iodide to iodine. For the protein assay, BSA was flowed through each device and, upon contact with citrate buffer and tetrabromophenol blue, resulted in a color change from yellow to blue. The devices were dried, scanned, and analyzed yielding a correlation between either yellow intensity and glucose concentration or cyan intensity and BSA concentration. A similar glucose assay, using unknown concentrations of glucose in artificial urine, was conducted and, when compared to the saturation curve, showed good correlation between the theoretical and actual concentrations (percent differences <10%). The development of 3D-μPADs and 3D-μTPADs can further facilitate the use of these platforms for colorimetric bioassays.
本文描述了新型 3D 微流控纸基分析器件(3D-μPAD)和 3D 微流控线/纸基分析器件(3D-μTPAD)的制作,可通过比色分析检测葡萄糖和 BSA。3D-μPAD 和 3D-μTPAD 分别由三层(蜡、热压蜡印纸、单面胶带)和四层(冲孔单面胶带、空白色谱圈、热压蜡印纸、含三叉线的冲孔单面胶带)组成。为每个平台生成了每个分析的饱和度曲线。对于葡萄糖分析,将葡萄糖氧化酶 (GOx)、辣根过氧化物酶和碘化钾的溶液流过每个平台,与葡萄糖接触后会产生黄褐色,表明碘化物被氧化成碘。对于蛋白质分析,BSA 通过每个装置流动,与柠檬酸盐缓冲液和四溴酚蓝接触后,颜色从黄色变为蓝色。将装置干燥、扫描并进行分析,得到黄色强度与葡萄糖浓度或青色强度与 BSA 浓度之间的相关性。使用人工尿液中未知浓度的葡萄糖进行了类似的葡萄糖分析,与饱和度曲线相比,理论浓度和实际浓度之间显示出良好的相关性(差异百分比<10%)。3D-μPAD 和 3D-μTPAD 的开发可以进一步促进这些平台在比色生物分析中的应用。