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基于纳米孔的单分子DNA分析。

Nanopore-based single-molecule DNA analysis.

作者信息

Healy Ken

机构信息

University College Cork, Department of Electrical and Electronic Engineering, Ireland.

出版信息

Nanomedicine (Lond). 2007 Aug;2(4):459-81. doi: 10.2217/17435889.2.4.459.

Abstract

Nanopore-based DNA analysis is a single-molecule technique with revolutionary potential. It promises to carry out a range of analyses, orders of magnitude faster than current methods, including length measurement, specific sequence detection, single-molecule dynamics and even de novo sequencing. The concept involves using an applied voltage to drive DNA molecules through a narrow pore that separates chambers of electrolyte solution. This voltage also drives a flow of electrolyte ions through the pore, measured as an electric current. When molecules pass through the pore, they block the flow of ions and, thus, their structure and length can be determined based on the degree and duration of the resulting current reductions. In this review, I explain the nanopore-based DNA analysis concept and briefly explore its historical foundations, before discussing and summarizing all experimental results reported to date. I conclude with a summary of the obstacles that must be overcome for it to realize its promised potential.

摘要

基于纳米孔的DNA分析是一项具有变革潜力的单分子技术。它有望进行一系列分析,速度比当前方法快几个数量级,包括长度测量、特定序列检测、单分子动力学甚至从头测序。该概念涉及利用施加的电压驱动DNA分子通过一个狭窄的孔,该孔将电解质溶液腔室分隔开。此电压还驱动电解质离子流通过该孔,以电流形式测量。当分子通过孔时,它们会阻断离子流,因此,可以根据所产生的电流减小程度和持续时间来确定其结构和长度。在这篇综述中,我将解释基于纳米孔的DNA分析概念,并简要探讨其历史基础,然后讨论和总结迄今为止报道的所有实验结果。最后,我总结了要实现其预期潜力必须克服的障碍。

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