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将多层双信号纳米标签引入比色-荧光共增强免疫色谱检测法用于超灵敏和灵活监测严重急性呼吸综合征冠状病毒2

Introduction of Multilayered Dual-Signal Nanotags into a Colorimetric-Fluorescent Coenhanced Immunochromatographic Assay for Ultrasensitive and Flexible Monitoring of SARS-CoV-2.

作者信息

Yang Xingsheng, Yu Qing, Cheng Xiaodan, Wei Hongjuan, Zhang Xiaochang, Rong Zhen, Wang Chongwen, Wang Shengqi

机构信息

Bioinformatics Center of AMMS, Beijing 100850, P. R. China.

Beijing Key Laboratory of New Molecular Diagnosis Technologies for Infectious Diseases, Beijing 100850, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 8;15(9):12327-12338. doi: 10.1021/acsami.2c21042. Epub 2023 Feb 21.

DOI:10.1021/acsami.2c21042
PMID:36808937
Abstract

Timely, accurate, and rapid diagnosis of SARS-CoV-2 is a key factor in controlling the spread of the epidemic and guiding treatments. Herein, a flexible and ultrasensitive immunochromatographic assay (ICA) was proposed based on a colorimetric/fluorescent dual-signal enhancement strategy. We first fabricated a highly stable dual-signal nanocomposite (SADQD) by continuously coating one layer of 20 nm AuNPs and two layers of quantum dots onto a 200 nm SiO nanosphere to provide strong colorimetric signals and enhanced fluorescence signals. Two kinds of SADQD with red and green fluorescence were conjugated with spike (S) antibody and nucleocapsid (N) antibody, respectively, and used as dual-fluorescence/colorimetric tags for the simultaneous detection of S and N proteins on one test line of ICA strip, which can not only greatly reduce the background interference and improve the detection accuracy but also achieve a higher colorimetric sensitivity. The detection limits of the method for target antigens via colorimetric and fluorescence modes were as low as 50 and 2.2 pg/mL, respectively, which were 5 and 113 times more sensitive than those from the standard AuNP-ICA strips, respectively. This biosensor will provide a more accurate and convenient way to diagnose COVID-19 in different application scenarios.

摘要

及时、准确、快速地诊断新型冠状病毒(SARS-CoV-2)是控制疫情传播和指导治疗的关键因素。在此,基于比色/荧光双信号增强策略提出了一种灵活且超灵敏的免疫层析分析方法(ICA)。我们首先通过在200 nm的SiO纳米球上连续包覆一层20 nm的金纳米颗粒(AuNPs)和两层量子点,制备了一种高度稳定的双信号纳米复合材料(SADQD),以提供强比色信号和增强的荧光信号。分别将两种具有红色和绿色荧光的SADQD与刺突(S)抗体和核衣壳(N)抗体偶联,并用作双荧光/比色标签,用于在ICA试纸条的一条检测线上同时检测S和N蛋白,这不仅可以大大降低背景干扰并提高检测准确性,还能实现更高的比色灵敏度。该方法通过比色和荧光模式对目标抗原的检测限分别低至50和2.2 pg/mL,分别比标准AuNP-ICA试纸条灵敏5倍和113倍。这种生物传感器将为在不同应用场景中诊断新型冠状病毒肺炎(COVID-19)提供一种更准确、便捷的方法。

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