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用于即时诊断的单链核酸的快速扩增与检测

Rapid Amplification and Detection of Single-Stranded Nucleic Acids for Point-of-Care Diagnosis.

作者信息

Fu Jinglin, Zhang Qiaochu, Liu Shiming, Puyat Derek, Shah Akshay, Ebrahimimojarad Alireza, Oh Sung Won

机构信息

Department of Chemistry, Rutgers University-Camden, Camden, NJ, 08102, USA.

Center for Computational and Integrative Biology, Rutgers University-Camden, Camden, NJ, 08102, USA.

出版信息

Small Methods. 2025 Jun;9(6):e2401733. doi: 10.1002/smtd.202401733. Epub 2025 Jan 6.

Abstract

Nucleic acid detection plays a crucial role in various applications, including disease diagnostics, research development, food safety, and environmental health monitoring. A rapid, point-of-care (POC) nucleic acid test can greatly benefit healthcare system by providing timely diagnosis for effective treatment and patient management, as well as supporting diseases surveillance for emerging pandemic diseases. Recent advancements in nucleic acids technology have led to rapid assays for single-stranded nucleic acids that can be integrated into simple and miniaturized platforms for ease of use. In this review, the study focuses on the developments in isothermal amplification, nucleic acid hybridization circuits, various enzyme-based signal reporting mechanisms, and detection platforms that show promise for POC testing. The study also evaluates critical technical breakthroughs to identify the advantages and disadvantages of these methods in various applications.

摘要

核酸检测在多种应用中发挥着关键作用,包括疾病诊断、研究开发、食品安全和环境卫生监测。快速的即时检测(POC)核酸检测能够通过提供及时诊断以实现有效治疗和患者管理,以及支持对新出现的大流行性疾病进行疾病监测,从而极大地造福于医疗保健系统。核酸技术的最新进展已带来针对单链核酸的快速检测方法,这些方法可集成到简单且小型化的平台中以便于使用。在本综述中,该研究聚焦于等温扩增、核酸杂交电路、各种基于酶的信号报告机制以及对POC检测具有前景的检测平台的发展。该研究还评估了关键技术突破,以确定这些方法在各种应用中的优缺点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e031/12182895/346ba0424fbd/SMTD-9-2401733-g011.jpg

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