School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai, China.
School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, China.
Nat Protoc. 2019 Jul;14(7):2015-2035. doi: 10.1038/s41596-019-0171-5. Epub 2019 Jun 5.
Measurements of a single entity underpin knowledge of the heterogeneity and stochastics in the behavior of molecules, nanoparticles, and cells. Electrochemistry provides a direct and fast method to analyze single entities as it probes electron/charge-transfer processes. However, a highly reproducible electrochemical-sensing nanointerface is often hard to fabricate because of a lack of control of the fabrication processes at the nanoscale. In comparison with conventional micro/nanoelectrodes with a metal wire inside, we present a general and easily implemented protocol that describes how to fabricate and use a wireless nanopore electrode (WNE). Nanoscale metal deposition occurs at the tip of the nanopipette, providing an electroactive sensing interface. The WNEs utilize a dynamic ionic flow instead of a metal wire to sense the interfacial redox process. WNEs provide a highly controllable interface with a 30- to 200-nm diameter. This protocol presents the construction and characterization of two types of WNEs-the open-type WNE and closed-type WNE-which can be used to achieve reproducible electrochemical measurements of single entities. Combined with the related signal amplification mechanisms, we also describe how WNEs can be used to detect single redox molecules/ions, analyze the metabolism of single cells, and discriminate single nanoparticles in a mixture. This protocol is broadly applicable to studies of living cells, nanomaterials, and sensors at the single-entity level. The total time required to complete the protocol is ~10-18 h. Each WNE costs ~$1-$3.
对单个实体的测量是了解分子、纳米粒子和细胞行为的异质性和随机性的基础。电化学提供了一种直接而快速的方法来分析单个实体,因为它可以探测电子/电荷转移过程。然而,由于缺乏对纳米尺度制造过程的控制,高度可重复的电化学传感纳米界面通常难以制造。与内部有金属丝的传统微/纳电极相比,我们提出了一种通用且易于实施的方案,用于描述如何制造和使用无线纳米孔电极 (WNE)。纳米级金属沉积发生在纳米管的尖端,提供了一个电活性传感界面。WNE 利用动态离子流而不是金属丝来感测界面氧化还原过程。WNE 提供了一个高度可控的界面,直径为 30-200nm。该方案介绍了两种 WNE 的构建和表征——开放式 WNE 和封闭式 WNE——可用于实现单个实体的可重复电化学测量。结合相关的信号放大机制,我们还描述了 WNE 如何用于检测单个氧化还原分子/离子、分析单个细胞的代谢以及在混合物中区分单个纳米粒子。该方案广泛适用于单个实体水平的活细胞、纳米材料和传感器的研究。完成该方案总共需要 10-18 小时。每个 WNE 的成本约为 1-3 美元。