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Fabrication of fully enclosed paper microfluidic devices using plasma deposition and etching

机译:使用等离子体沉积和蚀刻制造完全封闭的纸张微流体装置

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A fully enclosed paper microfluidic device has been fabricated using pentafluoroethane (PFE) plasma deposition followed by O-2 plasma etching. Structures with one and two non-interacting, fully enclosed hydrophilic channels were generated in a single paper sheet using metal masks. Furthermore, by performing an additional O-2 plasma step with a secondary mask, pinholes were created at the reaction zones for reagent loading. Finally, to demonstrate the functionality of the device, a glucose assay was performed. Quantitative analysis of glucose assays showed that the device can be used for the clinically relevant range of glucose. To our knowledge, this is the first time that such structures have been fabricated without paper stacking. Multi-layer devices have enhanced functionality relative to a single channel device, because the design space for creating networks of channels within the paper substrate is greatly expanded. The fluid-filled channels in the fabricated device are isolated, thereby preventing contamination due to handling and environmental exposure. Fluid evaporation can be inhibited by sealing the device with adhesive tape without contaminating the enclosed channels. The method described is a dry process and compatible with roll-to-roll technology, thus facilitating large scale production. The novel method to fabricate enclosed mu-PADs overcomes many of the limitations experienced with current approaches and thus offers an alternative means to develop low-cost point-of-care diagnostics for resource-limited settings.
机译:使用五氟乙烷(PFE)等离子体沉积后,采用O-2等离子体蚀刻制造了全封闭的纸质微流体装置。使用金属面罩在单个纸张中产生具有一个和两个非相互作用,完全封闭的亲水通道的结构。此外,通过用次级掩模进行另外的O-2等离子体步骤,在反应区产生针孔以进行试剂载荷。最后,为了证明装置的功能,进行葡萄糖测定。葡萄糖测定的定量分析表明,该装置可用于临床相关的葡萄糖范围。为了我们的知识,这是第一次没有纸张堆叠制造这种结构。多层器件具有相对于单通道设备的增强功能,因为用于在纸基板内创建通道网络的设计空间大大扩展。隔离制造装置中的流体填充的通道,从而防止由于处理和环境暴露引起的污染。通过用胶带密封而不污染封闭的通道,可以抑制流体蒸发。所描述的方法是干法,与卷到辊技术相容,从而促进大规模生产。制造封闭的MU焊盘的新方法克服了当前方法的许多限制,因此提供了一种为资源限制设置开发低成本的护理点诊断的替代方法。

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