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使用学者胶水和磁性掩膜对具有高耐化学性的纸基微流控器件进行多功能制造。

Versatile fabrication of paper-based microfluidic devices with high chemical resistance using scholar glue and magnetic masks.

作者信息

Cardoso Thiago M G, de Souza Fabrício R, Garcia Paulo T, Rabelo Denilson, Henry Charles S, Coltro Wendell K T

机构信息

Instituto de Química, Universidade Federal de Goiás, Goiânia, GO, 74690-900, Brazil.

Colorado State University, Department of Chemistry, Fort Collins, CO 80523, USA.

出版信息

Anal Chim Acta. 2017 Jun 29;974:63-68. doi: 10.1016/j.aca.2017.03.043. Epub 2017 Apr 7.

Abstract

Simple methods have been developed for fabricating microfluidic paper-based analytical devices (μPADs) but few of these devices can be used with organic solvents and/or aqueous solutions containing surfactants. This study describes a simple fabrication strategy for μPADs that uses readily available scholar glue to create the hydrophobic flow barriers that are resistant to surfactants and organic solvents. Microfluidic structures were defined by magnetic masks designed with either neodymium magnets or magnetic sheets to define the patter, and structures were created by spraying an aqueous solution of glue on the paper surface. The glue-coated paper was then exposed to UV/Vis light for cross-linking to maximize chemical resistance. Examples of microzone arrays and microfluidic devices are demonstrated. μPADs fabricated with scholar glue retained their barriers when used with surfactants, organic solvents, and strong/weak acids and bases unlike common wax-printed barriers. Paper microzones and microfluidic devices were successfully used for colorimetric assays of clinically relevant analytes commonly detected in urinalysis to demonstrate the low background of the barrier material and generally applicability to sensing. The proposed fabrication method is attractive for both its ability to be used with diverse chemistries and the low cost and simplicity of the materials and process.

摘要

已经开发出了用于制造基于微流控纸的分析装置(μPADs)的简单方法,但这些装置中很少有能与含有表面活性剂的有机溶剂和/或水溶液一起使用的。本研究描述了一种用于μPADs的简单制造策略,该策略使用易于获得的学校胶水来创建对表面活性剂和有机溶剂具有抗性的疏水流动屏障。微流控结构由用钕磁铁或磁性片设计的磁性掩膜来定义图案,并通过在纸表面喷涂胶水的水溶液来创建结构。然后将涂有胶水的纸暴露于紫外/可见光下进行交联,以最大化耐化学性。展示了微区阵列和微流控装置的示例。与普通蜡印屏障不同,用学校胶水制造的μPADs在与表面活性剂、有机溶剂以及强酸/碱和弱酸/碱一起使用时能保持其屏障。纸微区和微流控装置成功用于尿液分析中常见的临床相关分析物的比色测定,以证明屏障材料的低背景以及对传感的普遍适用性。所提出的制造方法因其能够与多种化学物质一起使用以及材料和工艺的低成本和简单性而具有吸引力。

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