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催化发夹组装的最新进展及其在生物成像和生物医药中的应用。

Recent advances of catalytic hairpin assembly and its application in bioimaging and biomedicine.

机构信息

West China School of Public Health and West China Fourth Hospital, Sichuan University, Chengdu 610041, China.

Research Center of Analytical Instrumentation, School of Mechanical Engineering, Sichuan University, Chengdu 610065, China.

出版信息

J Mater Chem B. 2022 Jul 20;10(28):5303-5322. doi: 10.1039/d2tb00815g.

Abstract

Catalytic hairpin assembly (CHA) appears to be a particularly appealing nucleic acid circuit because of its powerful amplification capability, simple protocols, and enzyme-free and isothermal conditions, and can combine with various signal output modes for the biosensing of various analytes. Especially in the last five years, vast CHA related studies have sprung up. With the deep exploration of the CHA mechanism, some novel and excellent CHA strategies have been proposed; meanwhile the CHA cascade strategies with various amplification techniques further improve the analysis performance. Furthermore, diverse CHA based biosensors have been tactfully engineered and extensively employed in imaging applications in living cells and ascribed to its gentle reaction, efficient amplification and universality. Hence, we present a comprehensive and systematic summary of the progress in CHA and its application in bioimaging and biomedicine to date. At first, we introduced the mechanism and diversification of CHA in detail, including the newly developed CHA and its ingenious combination with a variety of other technologies. Concurrently, we summarized the latest application progress of different CHA strategies in bioimaging and biomedicine, highlighting the merits and drawbacks of representative approaches. Finally, we put forward some views on the challenges and prospects of CHA in bioimaging and biomedicine in the future.

摘要

催化发夹组装 (CHA) 似乎是一种特别有吸引力的核酸电路,因为它具有强大的扩增能力、简单的方案、无需酶和等温条件,并且可以与各种信号输出模式结合,用于各种分析物的生物传感。特别是在过去五年中,大量的 CHA 相关研究如雨后春笋般涌现。随着对 CHA 机制的深入探索,一些新颖而出色的 CHA 策略已经被提出;同时,具有各种扩增技术的 CHA 级联策略进一步提高了分析性能。此外,各种基于 CHA 的生物传感器已被巧妙设计并广泛应用于活细胞中的成像应用,这归因于其温和的反应、高效的扩增和通用性。因此,我们对 CHA 及其在生物成像和生物医学中的应用进行了全面而系统的总结。首先,我们详细介绍了 CHA 的机制和多样化,包括新开发的 CHA 及其与各种其他技术的巧妙结合。同时,我们总结了不同 CHA 策略在生物成像和生物医学中的最新应用进展,突出了代表性方法的优点和缺点。最后,我们对 CHA 在未来生物成像和生物医学中的挑战和前景提出了一些看法。

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