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碳纳米结构作为 DNA 的固定化平台:电化学 DNA 传感器研究进展综述。

Carbon nanostructures as immobilization platform for DNA: A review on current progress in electrochemical DNA sensors.

机构信息

Nanoscience Research Laboratory, School of Nano Science and Technology, National Institute of Technology Calicut, Calicut, Kerala, India.

出版信息

Biosens Bioelectron. 2017 Nov 15;97:226-237. doi: 10.1016/j.bios.2017.06.001.

Abstract

Development of a sensitive, specific and cost-effective DNA detection method is motivated by increasing demand for the early stage diagnosis of genetic diseases. Recent developments in the design and fabrication of efficient sensor platforms based on nanostructures make the highly sensitive sensors which could indicate very low detection limit to the level of few molecules, a realistic possibility. Electrochemical detection methods are widely used in DNA diagnostics as it provide simple, accurate and inexpensive platform for DNA detection. In addition, the electrochemical DNA sensors provide direct electronic signal without the use of expensive signal transduction equipment and facilitates the immobilization of single stranded DNA (ssDNA) probe sequences on a wide variety of electrode substrates. It has been found that a range of nanomaterials such as metal nanoparticles (MNPs), carbon based nanomaterials, quantum dots (QDs), magnetic nanoparticles and polymeric NPs have been introduced in the sensor design to enhance the sensing performance of electrochemical DNA sensor. In this review, we discuss recent progress in the design and fabrication of efficient electrochemical genosensors based on carbon nanostructures such as carbon nanotubes, graphene, graphene oxide and nanodiamonds.

摘要

由于对遗传疾病早期诊断的需求不断增加,因此开发一种灵敏、特异且经济有效的 DNA 检测方法具有重要意义。基于纳米结构的高效传感器平台的设计和制造方面的最新进展使得高度灵敏的传感器成为可能,这些传感器可以将检测下限指示到几个分子的水平。电化学检测方法在 DNA 诊断中得到了广泛应用,因为它为 DNA 检测提供了简单、准确和廉价的平台。此外,电化学 DNA 传感器提供了直接的电子信号,而无需使用昂贵的信号转换设备,并便于将单链 DNA(ssDNA)探针序列固定在各种电极衬底上。已经发现,一系列纳米材料,如金属纳米粒子(MNPs)、碳基纳米材料、量子点(QDs)、磁性纳米粒子和聚合物 NPs 已被引入传感器设计中,以提高电化学 DNA 传感器的传感性能。在本文综述中,我们讨论了基于碳纳米结构(如碳纳米管、石墨烯、氧化石墨烯和纳米金刚石)设计和制造高效电化学基因传感器的最新进展。

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