College of Chemistry, Fuzhou University, Fuzhou, 350116, PR China.
College of Chemistry, Fuzhou University, Fuzhou, 350116, PR China.
Biosens Bioelectron. 2020 May 1;155:112104. doi: 10.1016/j.bios.2020.112104. Epub 2020 Feb 17.
MicroRNAs play a crucial role in regulating gene expression and cellular function. Reliable detection of miRNA is highly demanded in clinical diagnosis and therapy. Herein, we designed a structure-convertible DNA switch and constructed a novel switch-conversional ratiometric fluorescence biosensor (SCRF biosensor) for highly sensitive miRNA detection by the use of amplicon fragments to convert the structure of the switch. The DNA switch was a sophisticated designed single-strand DNA with a stem-loop structure and modified with two fluorophores (Cy3 and Cy5) and one quencher at specific sites of the switch. Amplicon fragments (c*) were produced by an exponential amplification reaction. When the c* hybridized to the loop of a DNA switch, the structure of the switch would convert, and fluorescence resonance energy transfer occurred between Cy5 and Cy3. Then two fluorescence signals with different trends would be observed. As a result, by the ratio of the two signals, we can quantitatively and quickly detect the target miRNA with the concentration range from 100 fM to 100 nM and the excellent detection limit down to 70.9 fM, providing this new SCRF biosensor broad application prospects.
微小 RNA 在调节基因表达和细胞功能方面起着至关重要的作用。在临床诊断和治疗中,对 miRNA 的可靠检测具有很高的要求。在此,我们设计了一种结构可转换的 DNA 开关,并构建了一种新型的开关转换比率荧光生物传感器 (SCRF 生物传感器),通过使用扩增片段来转换开关的结构,从而实现高度灵敏的 miRNA 检测。该 DNA 开关是一种经过精心设计的单链 DNA,具有茎环结构,并在开关的特定位置修饰了两个荧光团 (Cy3 和 Cy5) 和一个淬灭剂。扩增片段 (c*) 通过指数扩增反应产生。当 c*与 DNA 开关的环杂交时,开关的结构会发生转换,并且 Cy5 和 Cy3 之间会发生荧光共振能量转移。然后,会观察到两种具有不同趋势的荧光信号。因此,通过两个信号的比值,可以定量和快速地检测目标 miRNA,其浓度范围从 100 fM 到 100 nM,检测限低至 70.9 fM,为这种新的 SCRF 生物传感器提供了广阔的应用前景。