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空间中电化学发光反应性的动态映射:在基于微珠的分析中的应用。

Dynamic Mapping of Electrochemiluminescence Reactivity in Space: Application to Bead-Based Assays.

作者信息

Han Dongni, Fang Danjun, Valenti Giovanni, Paolucci Francesco, Kanoufi Frédéric, Jiang Dechen, Sojic Neso

机构信息

CNRS, Bordeaux INP, ISM, UMR 5255, ENSCBP, Univ. Bordeaux, Pessac 33607, France.

School of Pharmacy, Nanjing Medical University, Nanjing, Jiangsu 211126, China.

出版信息

Anal Chem. 2023 Oct 24;95(42):15700-15706. doi: 10.1021/acs.analchem.3c02960. Epub 2023 Oct 10.

Abstract

As an electrochemical technique offering an optical readout, electrochemiluminescence (ECL) evolved recently into a powerful microscopy technique with the visualization of a wide range of microscopic entities. However, the dynamic imaging of transient ECL events did not receive intensive attention due to the limited number of electrogenerated photons. Here, the reaction kinetics of the model ECL bioassay system was revealed by dynamic imaging of single [Ru(bpy)]-functionalized beads in the presence of the efficient tripropylamine coreactant. The time profile behavior of ECL emission, the variations of the ECL layer thickness, and the position of maximum ECL intensity over time were investigated, which were not achieved by static imaging in previous studies. Moreover, the dynamics of the ECL emission were confronted with the simulation. The reported dynamic ECL imaging allows the investigation of the ECL kinetics and mechanisms operating in bioassays and cell microscopy.

摘要

作为一种提供光学读出的电化学技术,电化学发光(ECL)最近发展成为一种强大的显微镜技术,可对多种微观实体进行可视化。然而,由于电生光子数量有限,瞬态ECL事件的动态成像并未受到广泛关注。在此,通过在高效三丙胺共反应剂存在下对单个[Ru(bpy)]功能化微珠进行动态成像,揭示了模型ECL生物分析系统的反应动力学。研究了ECL发射的时间轮廓行为、ECL层厚度的变化以及最大ECL强度随时间的位置,这些是先前研究中的静态成像无法实现的。此外,还将ECL发射的动力学与模拟结果进行了对比。所报道的动态ECL成像能够研究生物分析和细胞显微镜中ECL的动力学和作用机制。

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