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Using Adhesive Patterning to Construct 3D Paper Microfluidic Devices
Published on: April 1, 2016
Origami-Paper Microfluidics for Point-of-Need Analysis
Yuwei Pan1,2, Qingxin Hui1, Qihang Xu1
1Faculty of Engineering and Applied Sciences, Cranfield University, CranfieldMK43 0AL, U.K.
Abstract:
Point-of-care (POC) diagnostics has attracted increasing attention in biomedical research. However, it remains challenging in low resources setting. Origami-paper microfluidics has emerged as a promising approach for point-of-need (PON) analysis by leveraging the advantages of paper, including low cost, zero power, easy to access, biodegradability, and capillary-driven fluid transport. These features enable the development of PON platforms suitable for resource-limited environments without centralized instrumentation and trained personnel. This perspective highlights recent advances in origami-paper microfluidics for target detection using colorimetric, electrochemical, fluorescence, and lateral flow assays (LFAs). Origami-paper microfluidics offers a powerful platform for addressing challenges in PON diagnostics, with significant potential for rapid diagnostics and environmental surveillance in low resource settings.

