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基于纸张的核酸扩增检测用于即时诊断。

Paper-based nucleic acid amplification tests for point-of-care diagnostics.

机构信息

Department of Chemical Engineering, Indian Institute of Science, Bangalore, India560012.

出版信息

Analyst. 2018 May 15;143(10):2213-2234. doi: 10.1039/c7an01943b.

Abstract

There has been a recent resurgence in the use of paper as a substrate for developing point-of-care medical diagnostic tests, possibly triggered by expiring patents published in the 1990s. A hallmark of this resurgence has been the development of advanced shapes and structures made from paper to conduct multi-step fluidic operations using the wicking action of porous materials. Such devices indicate a distinct improvement over lateral flow immunoassays, which are restricted to conducting one-step operations. New developments in paper-based diagnostic devices have triggered interest in the development of paper-based point-of-care nucleic acid amplification tests (NAATs). NAATs can identify extremely low levels of specific nucleic acid sequences from clinical samples and are the most sensitive of all available tests for infectious disease diagnosis. Because traditional PCR-based NAATs require expensive instruments, the development of portable paper-based NAAT's has become an exciting field of research. This article aims to review and analyse the current state of development of paper-based NAATs. We project paper-based NAATs as miniaturized chemical processes and shed light on various schemes of operation used for converting the multiple steps of the chemical processes into paper microfluidic devices. We conclude by elaborating on the challenges that must be overcome in the near future so that progress can be made towards the development of fully functional and commercial paper-based NAATs.

摘要

近年来,纸质材料作为开发即时医疗诊断测试的基底又重新受到关注,这可能是由 20 世纪 90 年代过期的专利所引发的。这种复苏的一个特点是开发了先进的形状和结构的纸基器件,这些器件利用多孔材料的芯吸作用来进行多步流体操作。与只能进行单步操作的侧向流动免疫分析相比,这些设备有明显的改进。基于纸张的诊断设备的新进展引发了人们对基于纸张的即时核酸扩增测试(NAAT)的开发兴趣。NAAT 可以从临床样本中识别极低水平的特定核酸序列,是所有传染病诊断测试中最敏感的。由于传统的基于 PCR 的 NAAT 需要昂贵的仪器,因此便携式基于纸张的 NAAT 的开发已成为一个令人兴奋的研究领域。本文旨在综述和分析基于纸张的 NAAT 的最新发展情况。我们将基于纸张的 NAAT 视为微型化的化学过程,并阐明用于将化学过程的多个步骤转换为纸张微流控器件的各种操作方案。最后,我们详细阐述了在不久的将来必须克服的挑战,以便朝着开发功能齐全且商业化的基于纸张的 NAAT 取得进展。

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