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可编程且超高效 Argonaute 蛋白介导的核酸检测:综述。

Programmable and ultra-efficient Argonaute protein-mediated nucleic acid tests: A review.

机构信息

School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.

School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 2):134755. doi: 10.1016/j.ijbiomac.2024.134755. Epub 2024 Aug 13.

DOI:10.1016/j.ijbiomac.2024.134755
PMID:39147338
Abstract

With the attributes of high sensitivity, single-base resolution, multiplex detection capability, and programmability upon nucleic acid recognition, Argonaute (Ago)-based biosensing assays are increasingly recognized as one of the most promising tools for precise identification and quantification of target analytes. Employed as highly specific sequence recognition elements of these robust diagnostic methods, Agos are revolutionizing how nucleic acid targets are detected. A systematic and comprehensive summary of this emerging and rapid-advancing technology is necessary to give play to the potential of Ago-based biosensing assays. The structure and function of Agos were briefly overviewed at the beginning of the work, followed by a review of the recent advancements in employing Agos sensing for detecting various targets with a comprehensive analysis such as viruses, tumor biomarkers, pathogens, mycoplasma, and parasite. The significance and benefits of these platforms were then deliberated. In addition, the authors shared subjective viewpoints on the existing challenges and offered relevant guidance for the future progress of Agos assays. Finally, the future research outlook regarding Ago-based sensing in this field was also outlined. As such, this review is expected to offer valuable information and fresh perspectives for a broader group of researchers.

摘要

基于 Argonaute(Ago)的生物传感分析因其具有高灵敏度、单碱基分辨率、多重检测能力和核酸识别可编程性等特点,逐渐被认为是精确识别和定量目标分析物的最有前途的工具之一。在这些强大的诊断方法中,Ago 被用作高度特异性序列识别元件,正在彻底改变核酸靶标检测的方式。因此,有必要对这项新兴且快速发展的技术进行系统而全面的总结,以充分发挥基于 Ago 的生物传感分析的潜力。本文首先简要概述了 Ago 的结构和功能,然后综述了利用 Ago 传感检测各种靶标的最新进展,包括病毒、肿瘤标志物、病原体、支原体和寄生虫等,并对这些平台的意义和优势进行了讨论。此外,作者还就当前面临的挑战分享了主观观点,并为 Ago 分析的未来发展提供了相关建议。最后,还概述了该领域基于 Ago 的传感的未来研究展望。因此,本文有望为更广泛的研究群体提供有价值的信息和新视角。

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