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基于纸张的即时诊断微流控设备。

Paper-based microfluidic point-of-care diagnostic devices.

机构信息

Department of Chemical Engineering and Biotechnology, University of Cambridge, Cambridge, United Kingdom.

出版信息

Lab Chip. 2013 Jun 21;13(12):2210-51. doi: 10.1039/c3lc50169h. Epub 2013 May 8.

Abstract

Dipstick and lateral-flow formats have dominated rapid diagnostics over the last three decades. These formats gained popularity in the consumer markets due to their compactness, portability and facile interpretation without external instrumentation. However, lack of quantitation in measurements has challenged the demand of existing assay formats in consumer markets. Recently, paper-based microfluidics has emerged as a multiplexable point-of-care platform which might transcend the capabilities of existing assays in resource-limited settings. However, paper-based microfluidics can enable fluid handling and quantitative analysis for potential applications in healthcare, veterinary medicine, environmental monitoring and food safety. Currently, in its early development stages, paper-based microfluidics is considered a low-cost, lightweight, and disposable technology. The aim of this review is to discuss: (1) fabrication of paper-based microfluidic devices, (2) functionalisation of microfluidic components to increase the capabilities and the performance, (3) introduction of existing detection techniques to the paper platform and (4) exploration of extracting quantitative readouts via handheld devices and camera phones. Additionally, this review includes challenges to scaling up, commercialisation and regulatory issues. The factors which limit paper-based microfluidic devices to become real world products and future directions are also identified.

摘要

过去三十年来,尿试纸条和侧向流动格式主导了快速诊断。由于其紧凑、便携以及无需外部仪器即可轻松解释的特点,这些格式在消费市场中广受欢迎。然而,由于测量缺乏定量性,这对现有检测格式在消费市场中的需求提出了挑战。最近,纸基微流控技术作为一种可实现多重检测的即时检测平台,可能会超越现有检测格式在资源有限环境下的能力。然而,纸基微流控技术可以实现流体处理和定量分析,在医疗保健、兽医、环境监测和食品安全等领域具有潜在应用前景。目前,纸基微流控技术仍处于早期发展阶段,被认为是一种低成本、重量轻且一次性使用的技术。本文旨在讨论:(1)纸基微流控器件的制造;(2)微流控组件的功能化,以提高其性能和能力;(3)将现有的检测技术引入纸基平台;(4)通过手持设备和摄像手机提取定量读数的探索。此外,本文还包括了向规模化、商业化和监管问题的挑战。确定了限制纸基微流控器件成为现实产品的因素以及未来的发展方向。

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