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基于自驱动催化发夹组装和熵驱动电路的氯霉素双级等温扩增灵敏荧光检测法

Sensitive fluorescence assay of chloramphenicol coupled with two-level isothermal amplification using a self-powered catalyzed hairpin assembly and entropy-driven circuit.

作者信息

Xiong Zhengwei, Wang Cun, Liu Cheng, Jiang Yue, Li Yiping, Yun Wen

机构信息

Chongqing Research Station of Field Scientific Observation for Authentic Traditional Chinese Medicine in the Tree Gorges Reservoir Area, Chongqing University of Education, Chongqing 400067, China.

Collaborative Innovation Center for Child Nutrition and Health Development, Chongqing University of Education, Chongqing 400067, China.

出版信息

Anal Methods. 2024 May 30;16(21):3430-3437. doi: 10.1039/d4ay00641k.

Abstract

Two levels of nucleic acids-based isothermal amplification normally require a long reaction time due to the low concentration of catalyst, which limits its practical application. A sensitive fluorescence assay of chloramphenicol (CAP) was developed coupled with two-level isothermal amplification using a self-powered catalyzed hairpin assembly (CHA) and entropy-driven circuit (EDC). CAP can bind with its aptamer to open its closed structure. The opened hairpin can initiate self-powered CHA and EDC. The product of CHA can circularly catalyze the CHA with increasing concentration. In principle, the product of CHA plays the role of catalyst and increases with the progression of the reaction. Compared with the normal two levels of amplification, the amplification efficiency of our strategy is much higher due to the self-powered reaction by the CHA product. Thus, the reaction time is shortened to 110 min in this strategy. Moreover, the detection limit for CAP can achieve 0.1 pM and shows promising prospects for practical application.

摘要

基于核酸的两级等温扩增通常需要较长的反应时间,因为催化剂浓度较低,这限制了其实际应用。利用自驱动催化发夹组装(CHA)和熵驱动回路(EDC),结合两级等温扩增,开发了一种灵敏的氯霉素(CAP)荧光检测方法。CAP可以与其适配体结合,打开其封闭结构。打开的发夹可以启动自驱动的CHA和EDC。CHA的产物可以随着浓度的增加循环催化CHA。原则上,CHA的产物起到催化剂的作用,并随着反应的进行而增加。与正常的两级扩增相比,我们的策略由于CHA产物的自驱动反应,扩增效率要高得多。因此,该策略的反应时间缩短至110分钟。此外,CAP的检测限可达0.1 pM,具有良好的实际应用前景。

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