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微流控 PDMS 纸基(POP)器件。

Microfluidic PDMS on paper (POP) devices.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science and Collaborative Innovation Center of Chemistry for Life Sciences, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.

出版信息

Lab Chip. 2016 Dec 20;17(1):120-127. doi: 10.1039/c6lc01250g.

Abstract

In this paper, we propose a generalized concept of microfluidic polydimethylsiloxane (PDMS) on paper (POP) devices, which combines well the merits of paper chips and PDMS chips. First, we optimized the conditions for accurate PDMS spatial patterning on paper, based on screen printing and a high temperature enabled superfast curing technique, which enables PDMS patterning to an accuracy of tens of microns in less than ten seconds. This, in turn, makes it available for seamless, reversible and reliable integration of the resulting paper layer with other PDMS channel structures. The integrated POP devices allow for both porous paper and smooth channels to be spatially defined on the devices, greatly extending the flexibility for designers to be able to construct powerful functional structures. To demonstrate the versatility of this design, a prototype POP device for the colorimetric analysis of liver function markers, serum protein, alkaline phosphatase (ALP) and aspartate aminotransferase (AST), was constructed. On this POP device, quantitative sample loading, mixing and multiplex analysis have all been realized.

摘要

在本文中,我们提出了一种广义的微流控聚二甲基硅氧烷(PDMS)在纸(POP)器件的概念,它结合了纸芯片和 PDMS 芯片的优点。首先,我们基于丝网印刷和高温快速固化技术,优化了在纸上进行精确 PDMS 空间图案化的条件,该技术可在不到 10 秒的时间内将 PDMS 图案化到几十微米的精度。这反过来又使得与其他 PDMS 通道结构的无缝、可逆和可靠集成成为可能。集成的 POP 器件允许在器件上对多孔纸和光滑通道进行空间限定,极大地扩展了设计者构建强大功能结构的灵活性。为了展示这种设计的多功能性,我们构建了一种用于肝功能标志物、血清蛋白、碱性磷酸酶(ALP)和天冬氨酸氨基转移酶(AST)比色分析的 POP 设备原型。在这个 POP 设备上,我们已经实现了定量样品加载、混合和多重分析。

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