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Flexible microfluidic cloth-based analytical devices using a low-cost wax patterning technique

机译:使用低成本蜡构图技术的基于柔性微流体布的分析设备

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摘要

This paper describes the fabrication of microfluidic cloth-based analytical devices (μCADs) using a simple wax patterning method on cotton cloth for performing colorimetric bioassays. Commercial cotton cloth fabric is proposed as a new inexpensive, lightweight, and flexible platform for fabricating two- (2D) and three-dimensional (3D) microfluidic systems. We demonstrated that the wicking property of the cotton microfluidic channel can be improved by scouring in soda ash (Na2CO3) solution which will remove the natural surface wax and expose the underlying texture of the cellulose fiber. After this treatment, we fabricated narrow hydrophilic channels with hydrophobic barriers made from patterned wax to define the 2D microfluidic devices. The designed pattern is carved on wax-impregnated paper, and subsequently transferred to attached cotton cloth by heat treatment. To further obtain 3D microfluidic devices having multiple layers of pattern, a single layer of wax patterned cloth can be folded along a predefined folding line and subsequently pressed using mechanical force. All the fabrication steps are simple and low cost since no special equipment is required. Diagnostic application of cloth-based devices is shown by the development of simple devices that wick and distribute microvolumes of simulated body fluids along the hydrophilic channels into reaction zones to react with analytical reagents. Colorimetric detection of bovine serum albumin (BSA) in artificial urine is carried out by direct visual observation of bromophenol blue (BPB) colour change in the reaction zones. Finally, we show the flexibility of the novel microfluidic platform by conducting a similar reaction in a bent pinned uCAD.
机译:本文介绍了一种在棉布上使用简单的蜡图案化方法进行比色生物测定的基于微流体布的分析设备(μCAD)的制造。商业棉布织物被提议作为一种新型廉价,轻便和灵活的平台,用于制造二维(2D)和三维(3D)微流体系统。我们证明,通过在纯碱(Na2CO3)溶液中进行精练可以改善棉质微流体通道的芯吸性能,这将去除天然表面蜡并露出纤维素纤维的基本质地。经过此处理后,我们制作了狭窄的亲水通道,该通道带有由图案化蜡制成的疏水性屏障,从而定义了2D微流体装置。将设计的图案雕刻在浸蜡纸上,然后通过热处理转移到附着的棉布上。为了进一步获得具有多层图案的3D微流体装置,可以沿着预定的折叠线折叠单层的蜡图案布,然后使用机械力对其进行挤压。由于不需要特殊设备,所有制造步骤都简单且成本低廉。布基设备的诊断应用通过简单设备的开发得以展示,该设备可将微体积的模拟体液沿亲水性通道芯吸并分配到反应区,以与分析试剂反应。通过直接目视观察反应区中的溴酚蓝(BPB)颜色变化,进行比色检测人造尿液中的牛血清白蛋白(BSA)。最后,我们通过在弯曲的固定uCAD中进行类似的反应来显示新型微流体平台的灵活性。

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