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基于功能化 MXene 复合材料的电化学发光和共振能量转移法测定 microRNA-141

Coupled electrochemiluminescent and resonance energy transfer determination of microRNA-141 using functionalized Mxene composite.

机构信息

Key Laboratory of Structure and Functional Regulation of Hybrid Materials (Ministry of Education), School of Chemistry and Chemical Engineering, Anhui University, Hefei, 230601, Anhui, China.

出版信息

Mikrochim Acta. 2022 Jul 1;189(7):264. doi: 10.1007/s00604-022-05359-6.

Abstract

The electrochemiluminescence and resonance energy transfer (ECL-RET) method was adopted to detect miRNAs, in which the two-dimensional TiC Mxenes with high surface area modified with CdS:W nanocrystals (CdS:W NCs) were used as ECL signal emitter. Mxenes with a specific surface area of 5.2755 m/g carried more emitters and promote ECL intensity. As an energy acceptor, BiOCl nanosheets (BiOCl NSs) have a wide UV-Vis absorption peak in the range 250 nm-700 nm, including the emission band of CdS:W NCs with 520 nm emission wavelength. Hence, BiOCl NSs are covalently bound to hairpin DNA 2 by amide bond to quench the ECL signal of CdS:W NCs. In the presence of miRNA-141, the hairpin DNA 1 modified on the GCE was unfold and then paired with hairpin DNA 2 to release miRNA-141 and quench the signal of the ECL biosensor. Then, the concentration signal of miRNA-141 was amplified by catalytic hairpin assembly. The novel specific biosensor demonstrated a satisfactory linear relationship with miRNA-141 in the range 0.6 pM to 4000 pM; the detection limit was as low as 0.26 pM (3 s/m) under the potential of 0 ~ -1.3 V and showed outstanding RSD of 1.19%. The findings of the present work with high accuracy and sensitivity will be of positive significance for the clinical diagnosis of miRNA in the future work. The construction process of the biosensor and electrochemiluminescence mechanism.

摘要

采用电化学发光和共振能量转移(ECL-RET)方法检测 miRNA,其中二维 TiC Mxenes 用具有高表面积的 CdS:W 纳米晶体(CdS:W NCs)修饰,作为 ECL 信号发射器。比表面积为 5.2755 m/g 的 Mxenes 携带更多的发射器,从而促进 ECL 强度。作为能量受体,BiOCl 纳米片(BiOCl NSs)在 250nm-700nm 的范围内具有宽的紫外-可见吸收峰,包括发射波长为 520nm 的 CdS:W NCs 的发射带。因此,BiOCl NSs 通过酰胺键与发夹 DNA 2 共价结合,猝灭 CdS:W NCs 的 ECL 信号。在 miRNA-141 的存在下,修饰在 GCE 上的发夹 DNA 1 展开,然后与发夹 DNA 2 配对,释放 miRNA-141 并猝灭 ECL 生物传感器的信号。然后,通过催化发夹组装放大 miRNA-141 的浓度信号。该新型特定生物传感器在 0.6pM 至 4000pM 的范围内与 miRNA-141 呈现出令人满意的线性关系;在 0 至-1.3V 的电位下,检测限低至 0.26pM(3s/m),并且具有出色的 RSD 为 1.19%。本工作具有高精度和高灵敏度的发现,将对未来 miRNA 的临床诊断工作具有积极意义。生物传感器的构建过程和电化学发光机制。

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