School of Life Science and Technology, Beijing Institute of Technology, 5 Zhongguancun South Street, Haidian, Beijing, China.
Beijing GeneDetective Medical Treatment Technology Co., Ltd, Floor 3, Building 1B, Yard 27, Innovation Road, Changping Science Park, Beijing, China.
Anal Methods. 2024 May 23;16(20):3249-3255. doi: 10.1039/d4ay00074a.
The past and present scenario of COVID-19 has revealed the necessity of simple point-of-care tests. When combined with the great advantages of amplification, lateral flow assay nucleic acid analysis represents a more sensitive molecular diagnostic technique compared to universal protein analysis. Room temperature operation, an enzyme-free nature, and elongation make hybrid chain reaction amplification (HCR) a good candidate for amplified combined lateral flow assays (LFAs). Since dual modes of detection can not only satisfy different application scenarios, but also reduce the false-negative rate, in this paper, visual and fluorescent detection based on labelling with colloidal gold nanoparticles and fluorescence labelling were incorporated into a HCR integrated with a LFA. The detection assay was finished in 30 minutes. The linear relationship between the signal and the concentration of the characteristic segment in the COVID-19 ORF gene was demonstrated. The obtained detection limits of as low as 10 fM (6.02 × 10 copies per mL) and 1 fM (6.02 × 10 copies per mL), respectively, were comparable with those in the literature. The multi-site HCR amplification integrated with LFA of a 1053 bp nucleic acid chain was also preliminarily studied, and tri-site amplification was found to exhibit higher signal intensity than single-site amplification. This study provides a promising strategy for simple, sensitive, and wide-ranging detection of pathogenic bacteria.
过去和现在的 COVID-19 情况表明,需要简单的即时检测。当与扩增的巨大优势相结合时,与普遍的蛋白质分析相比,侧向流动分析核酸分析代表了一种更敏感的分子诊断技术。室温操作、无酶特性和延伸使杂交链式反应扩增 (HCR) 成为扩增组合侧向流动分析 (LFA) 的良好候选者。由于双模式检测不仅可以满足不同的应用场景,还可以降低假阴性率,因此,在本文中,我们将基于胶体金纳米粒子标记的可视化和荧光检测以及荧光标记纳入到与 LFA 集成的 HCR 中。检测分析在 30 分钟内完成。证明了信号与 COVID-19 ORF 基因特征片段浓度之间的线性关系。获得的检测限低至 10 fM(6.02×10 拷贝/mL)和 1 fM(6.02×10 拷贝/mL),可与文献中的结果相媲美。还初步研究了多靶点 HCR 扩增与 1053 bp 核酸链的 LFA 集成,发现三靶点扩增比单靶点扩增具有更高的信号强度。这项研究为简单、敏感和广泛检测病原体提供了一种很有前景的策略。