脱氧核酶
化学
劈开
生物传感器
DNA
分析物
滚动圆复制
组合化学
荧光团
基质(水族馆)
生物物理学
荧光
纳米技术
生物化学
DNA复制
生物
海洋学
物理
地质学
物理化学
量子力学
材料科学
作者
Yeqing Wan,Gaiping Li,Lina Zou,Hong Wang,Qing Wang,Kaiyue Tan,Xiaoqing Liu,Fuan Wang
出处
期刊:Analytical Chemistry
[American Chemical Society]
日期:2021-07-29
卷期号:93 (31): 11052-11059
被引量:37
标识
DOI:10.1021/acs.analchem.1c02596
摘要
Functional DNA nanostructures have been widely used in various bioassay fields. Yet, the programmable assembly of functional DNA nanostructures in living cells still represents a challenging goal for guaranteeing the sensitive and specific biosensing utility. In this work, we report a self-catalytic DNA assembly (SDA) machine by using a feedback deoxyribozyme (DNAzyme)-amplified branched DNA assembly. This SDA system consists of catalytic self-assembly (CSA) and DNAzyme amplification modules for recognizing and amplifying the target analyte. The analyte initiates the CSA reaction, leading to the formation of Y-shaped DNA that carries two RNA-cleaving DNAzymes. One DNAzyme can then successively cleave the corresponding substrate and generate numerous additional inputs to activate new CSA reactions, thus realizing a self-catalytic amplification reaction. Simultaneously, the other DNAzyme is assembled as a versatile signal transducer for cleaving the fluorophore/quencher-modified substrate, leading to the generation of an amplified fluorescence readout. By incorporating a flexible auxiliary sensing module, the SDA system can be converted into a universal sensing platform for detecting cancerous biomarkers, e.g., a well-known oncogene microRNA-21 (miR-21). Moreover, the SDA system realized the precise intracellular miR-21 imaging in living cells, which is attributed to the reciprocal amplification property between CSA reactions and DNAzyme biocatalysis. This compact SDA amplifier machine provides a universal and facile toolbox for the highly efficient identification of cancerous biomarkers and thus holds great potential for early cancer diagnosis.
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