Nanobioelectronics & Biosensors Group, CIN2, ICN-CSIC, Catalan Institute of Nanotechnology, Campus UAB, Bellaterra, Barcelona, Spain.
ACS Nano. 2012 Sep 25;6(9):7556-83. doi: 10.1021/nn301368z. Epub 2012 Aug 27.
Selective transport in nanochannels (protein-based ion channels) is already used in living systems for electrical signaling in nerves and muscles, and this natural behavior is being approached for the application of biomimetic nanochannels in biosensors. On the basis of this principle, single nanochannels and nanochannel arrays seem to bring new advantages for biosensor development and applications. The purpose of this review is to provide a general comprehensive and critical overview on the latest trends in the development of nanochannel-based biosensing systems. A detailed description and discussion of representative and recent works covering the main nanochannel fabrication techniques, nanoporous material characterizations, and especially their application in both electrochemical and optical sensing systems is given. The state-of-the-art of the developed technology may open the way to new advances in the integration of nanochannels with (bio)molecules and synthetic receptors for the development of novel biodetection systems that can be extended to many other applications with interest for clinical analysis, safety, and security as well as environmental and other industrial studies and applications.
纳米通道(基于蛋白质的离子通道)中的选择性运输已经在生命系统中用于神经和肌肉的电信号传导,这种自然行为正在被应用于生物仿生纳米通道在生物传感器中的应用。基于这一原理,单个纳米通道和纳米通道阵列似乎为生物传感器的发展和应用带来了新的优势。本综述的目的是对基于纳米通道的生物传感系统的最新发展趋势提供一个全面和批判性的概述。详细描述和讨论了代表性和最新的工作,涵盖了主要的纳米通道制造技术、纳米多孔材料的特性,特别是它们在电化学和光学传感系统中的应用。该技术的最新发展可能为纳米通道与(生物)分子和合成受体的集成开辟新的途径,从而开发出新型的生物检测系统,这些系统可以扩展到许多其他应用领域,如临床分析、安全以及环境和其他工业研究和应用。