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纳米孔传感中小分子检测的最新进展

Recent advances of small molecule detection in nanopore sensing.

作者信息

Wang Runyu, Zhang Yinuo, Ma Qianli D Y, Wu Lingzhi

机构信息

College of Science, Nanjing University of Posts and Telecommunications, Nanjing, 210046, China.

College of Integrated Circuit Science and Engineering, Nanjing University of Posts and Telecommunications, Nanjing, 210046, China.

出版信息

Talanta. 2024 Sep 1;277:126323. doi: 10.1016/j.talanta.2024.126323. Epub 2024 May 25.

Abstract

Due to its advantages of label-free and highly sensitive, the resistive pulse sensing with a nanopore has recently become even more potent for the discrimination of analytes in single molecule level. Generally, a transient interruption of ion current originated from the captured molecule passing through a nanopore will provide the rich information on the structure, charge and translocation dynamics of the analytes. Therefore, nanopore sensors have been widely used in the fields of DNA sequencing, protein recognition, and the portable detection of varied macromolecules and particles. However, the conventional nanopore devices are still lack of sufficient selectivity and sensitivity to distinguish more metabolic molecules involving ATP, glucose, amino acids and small molecular drugs because it is hard to receive a large number of identifiable signals with the fabricated pores comparable in size to small molecules for nanopore sensing. For all this, a series of innovative strategies developed in the past decades have been summarized in this review, including host-guest recognition, engineering alteration of protein channel, the introduction of nucleic acid aptamers and various delivery carriers integrating signal amplification sections based on the biological and solid nanopore platforms, to achieve the high resolution for the small molecules sensing in micro-nano environment. These works have greatly enhanced the powerful sensing capabilities and extended the potential application of nanopore sensors.

摘要

由于其具有无标记和高灵敏度的优点,基于纳米孔的电阻脉冲传感最近在单分子水平上对分析物的鉴别方面变得更加强大。一般来说,由捕获的分子通过纳米孔引起的离子电流的瞬时中断将提供有关分析物的结构、电荷和转运动力学的丰富信息。因此,纳米孔传感器已广泛应用于DNA测序、蛋白质识别以及各种大分子和颗粒的便携式检测领域。然而,传统的纳米孔装置仍然缺乏足够的选择性和灵敏度来区分更多涉及ATP、葡萄糖、氨基酸和小分子药物的代谢分子,因为对于纳米孔传感来说,很难通过尺寸与小分子相当的制造孔获得大量可识别的信号。为此,本综述总结了过去几十年中开发的一系列创新策略,包括主客体识别、蛋白质通道的工程改造、核酸适配体的引入以及基于生物和固体纳米孔平台整合信号放大部分的各种递送载体,以实现微纳米环境中小分子传感的高分辨率。这些工作极大地增强了纳米孔传感器的强大传感能力,并扩展了其潜在应用。

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