School of Information Science and Technology, University of Science and Technology of China, Hefei, Anhui 230027, China.
School of Information Science and Technology, University of Science and Technology of China, Hefei, Anhui 230027, China.
Biotechnol Adv. 2023 Mar-Apr;63:108093. doi: 10.1016/j.biotechadv.2022.108093. Epub 2023 Jan 2.
Since the inception of the first electrochemical devices on paper substrates, many different reports of microfluidic paper-based electroanalytical devices (μPEDs), innovative hydrophobic barriers and electrode fabrication processes have allowed the incorporation of diverse materials, resulting in different applications and a boost in performance. These advancements have led to the creation of paper-based devices with comparable performance to many standard conventional devices, with the added benefits of pumpless fluidic transport, component separation and reagent storage that can be exploited to automate and handle sample preprocessing. Herein, we review μPEDs, summarize the characteristics and functionalities of μPEDs, such as separation, fluid flow control and storage, and outline the conventional and emerging fabrication and modification approaches for μPEDs. We also examine the recent application of μPEDs in biomedicine, the environment, and food and water safety, as well as some limitations and challenges that must be addressed.
自最初在纸基上制作电化学器件以来,许多不同的微流控纸基电化学生物分析器件(μPED)报告、创新的疏水屏障和电极制造工艺允许了各种材料的结合,从而产生了不同的应用和性能提升。这些进展导致了与许多标准传统器件性能相当的基于纸张的器件的创建,同时还具有无泵流体输送、组件分离和试剂存储的优势,这些优势可用于自动化和处理样品预处理。在此,我们综述了 μPED,并总结了 μPED 的特性和功能,如分离、流体流动控制和存储,并概述了 μPED 的传统和新兴制造和修饰方法。我们还研究了 μPED 在生物医学、环境以及食品和水安全中的最新应用,以及必须解决的一些局限性和挑战。