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多功能过氧化物酶包封的纳米脂质体:生物刻蚀诱导的光电比色免疫分析用于广谱检测赭曲霉毒素。

Multifunctional Peroxidase-Encapsulated Nanoliposomes: Bioetching-Induced Photoelectrometric and Colorimetric Immunoassay for Broad-Spectrum Detection of Ochratoxins.

出版信息

ACS Appl Mater Interfaces. 2019 Jul 10;11(27):23832-23839. doi: 10.1021/acsami.9b04136. Epub 2019 Jun 27.

DOI:10.1021/acsami.9b04136
PMID:31245985
Abstract

In this study, a versatile dual-modal readout immunoassay platform was achieved for sensitive and broad-spectrum detection of ochratoxins based on the photocurrent response of flexible CdS/ZnO nanorod arrays/reduced graphene oxide and the localized surface plasmon resonance (LSPR) peak shift of Au nanobipyramids (Au NBPs). By using nanoliposomes as the vehicle to carry the secondary antibody and encapsulate horseradish peroxidase (HRP), the photocurrent change and the peak shift can be greatly amplified. The reaction mechanism was investigated in detail, indicating that HRP can trigger enzymatic bioetching in the presence of HO. In the photoelectrochemical detection, the oxidized HRP can etch CdS on the photoelectrode, resulting in the photocurrent change, while in the colorimetric detection, HRP can oxidize HO to produce hydroxyl radicals that can etch Au NBPs to form multiple color changes and LSPR shifts. Compared with the common single-modal immunoassay for ochratoxins, such dual-modal immunoassay is more precise and reliable, owing to the completely independent signal conversion and transmission mechanism. Therefore, we hope that this accurate, simple, and visualized strategy may create a new avenue and provide innovative inspiration for food analysis.

摘要

在这项研究中,基于柔性 CdS/ZnO 纳米棒阵列/还原氧化石墨烯的光电流响应和金纳米双锥(Au NBPs)的局域表面等离子体共振(LSPR)峰位移,实现了一种多功能双模式读出免疫分析平台,用于灵敏和广谱检测赭曲霉毒素。通过使用纳米脂质体作为携带第二抗体和封装辣根过氧化物酶(HRP)的载体,可以大大放大光电流变化和峰位移。详细研究了反应机制,表明 HRP 可以在 HO 的存在下触发酶促生物蚀刻。在光电化学检测中,氧化 HRP 可以在光电电极上蚀刻 CdS,导致光电流变化,而在比色检测中,HRP 可以将 HO 氧化为产生羟基自由基,从而蚀刻 Au NBPs 以形成多种颜色变化和 LSPR 位移。与常见的赭曲霉毒素单模态免疫分析相比,这种双模态免疫分析更精确和可靠,这归因于完全独立的信号转换和传输机制。因此,我们希望这种准确、简单和可视化的策略可以为食品分析开辟新的途径,并提供创新灵感。

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