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环介导等温扩增技术(LAMP):原理、特点及未来展望

Loop-mediated isothermal amplification (LAMP): principle, features, and future prospects.

作者信息

Notomi Tsugunori, Mori Yasuyoshi, Tomita Norihiro, Kanda Hidetoshi

机构信息

Biochemical Research Laboratory, Research & Development Division, Eiken Chemical Co., Ltd. 1381-3 Shimoishigami, Ohtawara, Tochigi, 324-0036, Japan,

出版信息

J Microbiol. 2015 Jan;53(1):1-5. doi: 10.1007/s12275-015-4656-9. Epub 2015 Jan 4.

Abstract

Loop-mediated isothermal amplification (LAMP), a newly developed gene amplification method, combines rapidity, simplicity, and high specificity. Several tests have been developed based on this method, and simplicity is maintained throughout all steps, from extraction of nucleic acids to detection of amplification. In the LAMP reaction, samples are amplified at a fixed temperature through a repetition of two types of elongation reactions occurring at the loop regions: self-elongation of templates from the stem loop structure formed at the 3'-terminal and the binding and elongation of new primers to the loop region. The LAMP reaction has a wide range of possible applications, including point-of-care testing, genetic testing in resource-poor settings (such as in developing countries), and rapid testing of food products and environmental samples.

摘要

环介导等温扩增技术(LAMP)是一种新开发的基因扩增方法,它兼具快速、简便和高特异性的特点。基于该方法已开发了多种检测方法,并且从核酸提取到扩增检测的所有步骤都保持了简便性。在LAMP反应中,样品在固定温度下通过重复在环区域发生的两种类型的延伸反应进行扩增:模板从3'末端形成的茎环结构进行自身延伸,以及新引物与环区域的结合和延伸。LAMP反应具有广泛的可能应用,包括即时检测、资源匮乏地区(如发展中国家)的基因检测以及食品和环境样品的快速检测。

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