基于芯片的DNA电检测。

R Moeller, W Fritzsche
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引用次数: 0

摘要

已经开发了多种方法来检测DNA互补链与基因芯片的结合,使用电而不是已建立的光信号技术。基于芯片的DNA传感器为检测与人类疾病相关的选定DNA序列或突变基因提供了灵敏度、特异性、并行化和小型化。与已建立的基于荧光的光学检测技术相关的问题包括高设备成本和需要使用复杂的数值算法来解释数据。这些问题通常限制了它在研究实验室的使用,并使这种检测方案难以适应现场或护理点的使用。电子读数可能是解决这些问题的一种方法。回顾了一些不同的方法来实现DNA芯片的电子读出。该综述涵盖了基于使用金属纳米颗粒作为标记的各种方法,以及使用聚合物修饰电极的电化学方法,dna特异性氧化还原报告器和dna介导的电荷传输技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chip-based electrical detection of DNA.

A variety of methods have been developed for the detection of the binding of the complementary strand of DNA to a gene chip using electrical rather than the established optical signal techniques. Chip-based DNA sensors offer sensitivity, specificity, parallelisation and miniaturisation for the detection of selected DNA sequences or mutated genes associated with human diseases. Problems associated with the established fluorescence-based optical detection technique include the high equipment costs and the need to use sophisticated numerical algorithms to interpret the data. These problems generally limit its use to research laboratories and make it hard to adapt this detection scheme for on-site or point-of-care use. An electrical readout might be a solution to these problems. A review of a number of different approaches to achieve an electrical readout for a DNA chip is presented. The review covers various methods that are based on the use of metal nanoparticles as labels and also electrochemical methods that use polymer-modified electrodes, DNA-specific redox reporters, and DNA-mediated charge transport techniques.

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