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光学决定基于珠粒的免疫分析的电化学发光信号。

Optics Determines the Electrochemiluminescence Signal of Bead-Based Immunoassays.

机构信息

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

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

出版信息

ACS Sens. 2023 Dec 22;8(12):4782-4791. doi: 10.1021/acssensors.3c01878. Epub 2023 Nov 17.

Abstract

Electrochemiluminescence (ECL) is an optical readout technique that is successfully applied for the detection of biomarkers in body fluids using microbead-based immunoassays. This technology is of utmost importance for in vitro diagnostics and thus a very active research area but is mainly focused on the quest for new dyes and coreactants, whereas the investigation of the ECL optics is extremely scarce. Herein, we report the 3D imaging of the ECL signals recorded at single microbeads decorated with the ECL labels in the sandwich immunoassay format. We show that the optical effects due to the light propagation through the bead determine mainly the spatial distribution of the recorded ECL signals. Indeed, the optical simulations based on the discrete dipole approximation compute rigorously the electromagnetic scattering of the ECL emission by the microbead and allow for reconstructing the spatial map of ECL emission. Thus, it provides a global description of the ECL chemical reactivity and the associated optics. The outcomes of this 3D imaging approach complemented by the optical modeling provide insight into the ECL optics and the unique ECL chemical mechanism operating on bead-based immunoassays. Therefore, it opens new directions for mechanistic investigations, ultrasensitive ECL bioassays, and imaging.

摘要

电化学发光 (ECL) 是一种光学读出技术,已成功应用于基于微珠的免疫分析中对体液中生物标志物的检测。该技术对于体外诊断至关重要,因此是一个非常活跃的研究领域,但主要集中在寻找新的染料和共反应物上,而对 ECL 光学的研究却极为匮乏。在此,我们报告了在夹心免疫分析形式下用 ECL 标记物修饰的单个微珠上记录的 ECL 信号的 3D 成像。我们表明,由于光通过微珠传播而产生的光学效应主要决定了记录的 ECL 信号的空间分布。实际上,基于离散偶极近似的光学模拟严格计算了 ECL 发射的电磁散射,并允许重建 ECL 发射的空间图谱。因此,它提供了对 ECL 化学反应性和相关光学的全面描述。通过光学建模补充的这种 3D 成像方法为 ECL 光学和在基于微珠的免疫分析中起作用的独特 ECL 化学机制提供了深入的了解。因此,它为机制研究、超灵敏的 ECL 生物分析和成像开辟了新的方向。

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