The State Key Laboratory of Refractories and Metallurgy, and Institute of Advanced Materials and Nanotechnology, Wuhan University of Science and Technology, Wuhan 430081, China.
Analyst. 2019 Aug 16;144(17):5037-5047. doi: 10.1039/c9an00633h.
As the information in DNA is of practical value for clinical diagnosis, it is important to develop efficient and rapid methods for DNA detection. In the past decades, nanopores have been extensively explored for DNA detection due to their low cost and high efficiency. As a sub-group of the solid-state nanopore, nanopipettes exhibit great potential for DNA detection which is ascribed to their stability, ease of fabrication and good compatibility with other technologies, compared with biological and traditional solid-state nanopores. Herein, the review systematically summarizes the recent progress in DNA detection with nanopipettes and highlights those studies dedicated to improve the performance of DNA detection using nanopipettes through different approaches, including reducing the rate of DNA translocation, improving the spatial resolution of sensing nanopipettes, and controlling DNA molecules through novel techniques. Besides, some new perspectives of the integration of nanopipettes with other technologies are reviewed.
由于 DNA 中的信息对临床诊断具有实际价值,因此开发高效、快速的 DNA 检测方法非常重要。在过去的几十年中,由于成本低、效率高,纳米孔在 DNA 检测方面得到了广泛的研究。与生物和传统固态纳米孔相比,纳米管作为固态纳米孔的一个分支,在 DNA 检测方面具有很大的潜力,这归因于它们的稳定性、易于制造以及与其他技术的良好兼容性。在此,本文系统地总结了近年来利用纳米管进行 DNA 检测的最新进展,并重点介绍了那些通过不同方法致力于提高纳米管 DNA 检测性能的研究,包括降低 DNA 迁移率、提高传感纳米管的空间分辨率以及通过新技术控制 DNA 分子。此外,还综述了纳米管与其他技术集成的一些新视角。