Key Laboratory of Medicinal Chemistry and Molecular Diagnosis, Ministry of Education, Key Laboratory of Analytical Science and Technology of Hebei Province, College of Chemistry and Environmental Science, Hebei University, Baoding 071002, PR China.
Key Laboratory of Medicinal Chemistry and Molecular Diagnosis, Ministry of Education, Key Laboratory of Analytical Science and Technology of Hebei Province, College of Chemistry and Environmental Science, Hebei University, Baoding 071002, PR China.
Talanta. 2018 Dec 1;190:475-479. doi: 10.1016/j.talanta.2018.08.003. Epub 2018 Aug 4.
A novel and highly sensitive method for detection of microRNA (miRNA) was developed by integration of T7 exonuclease-triggered amplification and cationic conjugated polymer (CCP) biosensing. First, a fluorescein-labeled probe was designed with the complementary sequence to the target miRNA. When target miRNA was absent in the solution, the fluorescence probe interacted with CCP through the strong electrostatic interactions, leading to the highly efficient fluorescence resonance energy transfer (FRET) from CCP to fluorescein. In the presence of target miRNA, the probe hybridized with the miRNA to form DNA/miRNA duplex hybrids. Then, T7 exonuclease digested cyclically the fluorescence probes in hybrids and triggered the enzyme amplification reaction, generating a large number of single nucleotides. Owing to the weak electrostatic interaction between CCP and the single nucleotide, the FRET from CCP to fluorescein would not take place, which effectively reduced the background and significantly enhanced the sensitivity and the dynamic range of miRNA detection. The linear range of the assay was 0.2-100 pM and the detection limit 0.08 pM was 58 times lower than that of the endonuclease-based assay. The method is simple, cost-effective, and with no need for the sophisticated instrument, and has broad application prospects for miRNA detection and early diagnosis.
一种新型的、高灵敏度的 microRNA(miRNA)检测方法是通过 T7 外切酶触发扩增和阳离子共轭聚合物(CCP)生物传感的集成而开发的。首先,设计了一个带有与靶 miRNA 互补序列的荧光标记探针。当溶液中不存在靶 miRNA 时,荧光探针通过强静电相互作用与 CCP 相互作用,导致从 CCP 到荧光素的高效荧光共振能量转移(FRET)。在存在靶 miRNA 的情况下,探针与 miRNA 杂交形成 DNA/miRNA 双链杂交体。然后,T7 外切酶循环消化杂交体中的荧光探针,并触发酶扩增反应,产生大量单核苷酸。由于 CCP 和单核苷酸之间的静电相互作用较弱,因此 CCP 到荧光素的 FRET 不会发生,这有效地降低了背景并显著提高了 miRNA 检测的灵敏度和动态范围。该测定法的线性范围为 0.2-100 pM,检测限为 0.08 pM,比基于内切酶的测定法低 58 倍。该方法简单、经济高效,且无需复杂的仪器,在 miRNA 检测和早期诊断方面具有广阔的应用前景。