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首页> 外文期刊>Chemistry: A European journal >Towards Genoelectronics: Electrochemical Biosensing of DNA Hybridization
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Towards Genoelectronics: Electrochemical Biosensing of DNA Hybridization

机译:迈向基因电子学:DNA杂交的电化学生物传感

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Deoxyribonucleic acid (DNA) offers the chemist a very powerful recognition tool. The use of DNA as a selective recognition element in biosensors represents an exciting new area of chemistry. Electrochemical sensing devices offer innovative routes for interfacing the nucleic acid recognition system with the signal-generating element at the molecular level. Such devices are also ideally suited for shrinking DNA diagnostics and meeting future requirements of large-scale genetic testing. This article reviews new concepts for electrochemical biosensing of DNA sequences, and for using electrical fields to regulate DNA interactions in connection with the development of genoelectronic chips. Particular attention is given to new label-free genesensing systems based on monitoring changes in electronic or interfacial properties accompanying DNA hybridization.
机译:脱氧核糖核酸(DNA)为化学家提供了非常强大的识别工具。在生物传感器中将DNA用作选择性识别元件代表了化学领域一个令人兴奋的新领域。电化学传感设备为在分子水平上使核酸识别系统与信号发生元件接口提供了创新途径。这种设备还非常适合缩小DNA诊断范围并满足大规模基因测试的未来要求。本文回顾了DNA序列的电化学生物传感以及与基因电子芯片开发有关的使用电场调节DNA相互作用的新概念。基于监视伴随DNA杂交的电子或界面特性的变化,特别关注了新的无标记发生系统。

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