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电化学和基于光学核酸的金属离子检测的最新进展。

Recent Achievements in Electrochemical and Optical Nucleic Acids Based Detection of Metal Ions.

机构信息

Chair of Medical Biotechnology, Faculty of Chemistry, Warsaw University of Technology, Stanisława Noakowskiego 3, 00-664 Warsaw, Poland.

Doctoral School, Warsaw University of Technology, Plac Politechniki 1, 00-661 Warsaw, Poland.

出版信息

Molecules. 2022 Nov 2;27(21):7481. doi: 10.3390/molecules27217481.

Abstract

Recently nucleic acids gained considerable attention as selective receptors of metal ions. This is because of the possibility of adjusting their sequences in new aptamers selection, as well as the convenience of elaborating new detection mechanisms. Such a flexibility allows for easy utilization of newly emerging nanomaterials for the development of detection devices. This, in turn, can significantly increase, e.g., analytical signal intensity, both optical and electrochemical, and the same can allow for obtaining exceptionally low detection limits and fast biosensor responses. All these properties, together with low power consumption, make nucleic acids biosensors perfect candidates as detection elements of fully automatic portable microfluidic devices. This review provides current progress in nucleic acids application in monitoring environmentally and clinically important metal ions in the electrochemical or optical manner. In addition, several examples of such biosensor applications in portable microfluidic devices are shown.

摘要

最近,核酸作为金属离子的选择性受体引起了相当大的关注。这是因为在新的适体选择中可以调整它们的序列,以及可以方便地制定新的检测机制。这种灵活性允许轻松利用新兴的纳米材料来开发检测设备。反过来,这可以显著提高例如光学和电化学分析信号强度,并且可以获得异常低的检测限和快速的生物传感器响应。所有这些特性,再加上低功耗,使核酸生物传感器成为全自动便携式微流控设备的检测元件的理想选择。本综述提供了核酸在电化学或光学方式监测环境和临床重要金属离子方面的最新进展。此外,还展示了几个此类生物传感器在便携式微流控设备中的应用示例。

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