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ZnSe 纳米盘:TiC MXenes 修饰电极,用于基于光电化学策略的核酸液体活检。

ZnSe nanodisks:TiC MXenes-modified electrode for nucleic acid liquid biopsy with photoelectrochemical strategy.

机构信息

Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, Qingdao University of Science and Technology, 266042, Qingdao, People's Republic of China.

出版信息

Mikrochim Acta. 2021 Dec 2;189(1):2. doi: 10.1007/s00604-021-05117-0.

Abstract

ZnSe nanodisks:TiC MXene complex was prepared for the first time. Based on its remarkable photoelectrochemical performance, combined with the enzyme-free toehold-mediated strand displacement reaction, a photoelectrochemical biosensor for the detection of the non-small-cell cancer biomarker ctDNA KRAS G12D was developed. ZnSe nanodisks were in situ grown on TiC MXene surface by two-step hydrothermal method. The high conductivity and adjustable band gap of MXene significantly enhanced the photoelectric response of ZnSe. Subsequently, the photoelectrochemical biosensor was prepared by combining with the signal amplification function of p-aminophenol and the enzyme-free toehold-mediated strand displacement reaction on the modified ITO electrode surface. Under the optimized conditions, the linear detection range is 0.5 ~ 100.0 fM, and the detection limit is 0.2 fM, which realizes the sensitive detection of KRAS G12D. The photoelectrochemical biosensor constructed opens up a new pathway for the preparation of new Mxene-based composite materials and the research of photoelectrochemical biosensor. Nucleic acid liquid biopsy with ZnSe nanodisks:TiC MXene photoelectroactive modified electrode.

摘要

ZnSe 纳米盘:TiC MXene 复合物首次被制备。基于其显著的光电化学性能,结合无酶引发的链置换反应,开发了一种用于检测非小细胞癌生物标志物 ctDNA KRAS G12D 的光电化学生物传感器。通过两步水热法在 TiC MXene 表面原位生长 ZnSe 纳米盘。MXene 的高导电性和可调带隙显著增强了 ZnSe 的光电响应。随后,通过在修饰的 ITO 电极表面结合 p-氨基酚的信号放大功能和无酶引发的链置换反应,制备了光电化学生物传感器。在优化条件下,线性检测范围为 0.5~100.0 fM,检测限为 0.2 fM,实现了 KRAS G12D 的灵敏检测。所构建的光电化学生物传感器为新型 MXene 基复合材料的制备和光电化学生物传感器的研究开辟了新途径。具有 ZnSe 纳米盘:TiC MXene 光电活性修饰电极的核酸液体活检。

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