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微电子芯片阵列上的锚定多重扩增

Anchored multiplex amplification on a microelectronic chip array.

作者信息

Westin L, Xu X, Miller C, Wang L, Edman C F, Nerenberg M

机构信息

Department of Molecular Biology, Nanogen, Inc. San Diego, CA, USA.

出版信息

Nat Biotechnol. 2000 Feb;18(2):199-204. doi: 10.1038/72658.

Abstract

We have developed a method for anchored amplification on a microchip array that allows amplification and detection of multiple targets in an open format. Electronic anchoring of sets of amplification primers in distinct areas on the microchip permitted primer-primer interactions to be reduced and distinct zones of amplification created, thereby increasing the efficiency of the multiplex amplification reactions. We found strand displacement amplification (SDA) to be ideal for use in our microelectronic chip system because of the isothermal nature of the assay, which provides a rapid amplification system readily compatible with simple instrumentation. Anchored SDA supported multiplex DNA or RNA amplification without decreases in amplification efficiency. This microelectronic chip-based amplification system allows multiplexed amplification and detection to be performed on the same platform, streamlining development of any nucleic acid-based assay.

摘要

我们开发了一种用于微芯片阵列上锚定扩增的方法,该方法允许以开放格式对多个靶标进行扩增和检测。将多组扩增引物电子锚定在微芯片上的不同区域,可减少引物之间的相互作用,并形成不同的扩增区域,从而提高多重扩增反应的效率。我们发现链置换扩增(SDA)非常适合用于我们的微电子芯片系统,因为该检测方法具有等温特性,能提供一个易于与简单仪器兼容的快速扩增系统。锚定SDA支持多重DNA或RNA扩增,且扩增效率不会降低。这种基于微电子芯片的扩增系统允许在同一平台上进行多重扩增和检测,简化了任何基于核酸的检测方法的开发。

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