He Jing, Zhu Shuying, Zhou Jiawei, Jiang Wenjie, Yin Liliang, Su Lan, Zhang Xinling, Chen Qi, Li Xiaoping
Shulan International Medical College, Zhejiang Shuren University, Hangzhou, China.
Front Bioeng Biotechnol. 2023 Jan 10;10:1090281. doi: 10.3389/fbioe.2022.1090281. eCollection 2022.
Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) is still in an epidemic situation, which poses a serious threat to the safety of people and property. Rapid diagnosis and isolation of infected individuals are one of the important methods to control virus transmission. Existing lateral flow immunoassay techniques have the advantages of rapid, sensitive, and easy operation, and some new options have emerged with the continuous development of nanotechnology. Such as lateral flow immunoassay test strips based on colorimetric-fluorescent dual-mode and gold nanoparticles, Surface Enhanced Raman Scattering, etc., these technologies have played an important role in the rapid diagnosis of COVID-19. In this paper, we summarize the current research progress of lateral flow immunoassay in the field of Severe Acute Respiratory Syndrome Coronavirus 2 infection diagnosis, analyze the performance of Severe Acute Respiratory Syndrome Coronavirus 2 lateral flow immunoassay products, review the advantages and limitations of different detection methods and markers, and then explore the competitive CRISPR-based nucleic acid chromatography detection method. This method combines the advantages of gene editing and lateral flow immunoassay and can achieve rapid and highly sensitive lateral flow immunoassay detection of target nucleic acids, which is expected to be the most representative method for community and clinical point-of-care testing. We hope that researchers will be inspired by this review and strive to solve the problems in the design of highly sensitive targets, the selection of detection methods, and the enhancement of CRISPR technology, to truly achieve rapid, sensitive, convenient, and specific detection of novel coronaviruses, thus promoting the development of novel coronavirus diagnosis and contributing our modest contribution to the world's fight against epidemics.
严重急性呼吸综合征冠状病毒2(SARS-CoV-2)仍处于流行状态,对人民生命财产安全构成严重威胁。快速诊断和隔离感染者是控制病毒传播的重要手段之一。现有的侧向流免疫分析技术具有快速、灵敏、操作简便等优点,随着纳米技术的不断发展,也出现了一些新的方法。如基于比色-荧光双模和金纳米粒子的侧向流免疫分析试纸条、表面增强拉曼散射等,这些技术在COVID-19的快速诊断中发挥了重要作用。本文综述了侧向流免疫分析在严重急性呼吸综合征冠状病毒2感染诊断领域的研究进展,分析了严重急性呼吸综合征冠状病毒2侧向流免疫分析产品的性能,回顾了不同检测方法和标志物的优缺点,进而探索了基于CRISPR的竞争性核酸层析检测方法。该方法结合了基因编辑和侧向流免疫分析的优点,能够实现对目标核酸的快速、高灵敏侧向流免疫分析检测,有望成为社区和临床即时检测中最具代表性的方法。我们希望通过这篇综述能给研究人员带来启发,努力解决高灵敏靶点设计、检测方法选择以及CRISPR技术增强等方面的问题,真正实现对新型冠状病毒的快速、灵敏、便捷、特异检测,从而推动新型冠状病毒诊断的发展,为全球抗疫贡献一份微薄之力。