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纸基微流控技术在传染病核酸扩增检测(NAAT)中的应用。

Paper microfluidics for nucleic acid amplification testing (NAAT) of infectious diseases.

机构信息

MMN, Gulliver Laboratory, UMR CNRS 7083, ESPCI Paris, PSL Research University, Paris, France.

出版信息

Lab Chip. 2017 Jul 11;17(14):2347-2371. doi: 10.1039/c7lc00013h.

Abstract

The diagnosis of infectious diseases is entering a new and interesting phase. Technologies based on paper microfluidics, coupled to developments in isothermal amplification of Nucleic Acids (NAs) raise opportunities for bringing the methods of molecular biology in the field, in a low setting environment. A lot of work has been performed in the domain over the last few years and the landscape of contributions is rich and diverse. Most often, the level of sample preparation differs, along with the sample nature, the amplification and detection methods, and the design of the device, among other features. In this review, we attempt to offer a structured description of the state of the art. The domain is not mature and there exist bottlenecks that hamper the realization of Nucleic Acid Amplification Tests (NAATs) complying with the constraints of the field in low and middle income countries. In this domain however, the pace of progress is impressively fast. This review is written for a broad Lab on a Chip audience.

摘要

传染病的诊断正进入一个崭新而有趣的阶段。基于纸微流控技术的技术,结合核酸(NA)等温扩增的发展,为将分子生物学方法引入现场、在低环境条件下提供了机会。在过去的几年中,该领域已经进行了大量的工作,并且贡献的领域丰富多样。通常,随着样本性质、扩增和检测方法以及设备设计等特征的不同,样本制备的水平也不同。在这篇综述中,我们试图对该领域的最新技术进行结构化描述。该领域还不够成熟,存在一些瓶颈,阻碍了符合中低收入国家现场限制的核酸扩增检测(NAAT)的实现。然而,该领域的发展速度令人印象深刻。这篇综述面向广大的芯片实验室读者。

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