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基于铜超粒子的聚集诱导增强策略,结合聚偏氟乙烯-六氟丙烯/CeVO 纳米粒子传感界面用于 miR-103a 的检测。

Cu superparticle-based aggregation induced enhancement strategy with PVDF-HFP/CeVO NP sensing interface for miR-103a detection.

机构信息

Department of Analytical Chemistry, College of Chemistry, Jilin University, Changchun, 130012, China.

Department of Analytical Chemistry, College of Chemistry, Jilin University, Changchun, 130012, China.

出版信息

Talanta. 2024 Aug 15;276:126289. doi: 10.1016/j.talanta.2024.126289. Epub 2024 May 19.

Abstract

Aggregation-induced emission (AIE) has been widely used in research on electrochemiluminescence (ECL) due to its excellent luminescence intensity. In this work, copper superparticles (Cu SPs) were used to construct ECL biosensor to detect the microRNA-103a (miRNA-103a) in triple-negative breast cancer (TNBC) tumor tissues. Firstly, GSH-capped copper clusters were used as precursors to prepare Cu SPs by the AIE effect. Compared with clusters, Cu SPs possessed higher luminescence performance and energy stability, making them an ideal choice for ECL nanoprobe. The film of PVDF-HFP/CeVO NPs was constructed and modified with CPBA and GSH as the sensing interface (PCCG). The PCCG film displayed good conductivity and hydrophilicity, and desirable mechanical stability. Moreover, the PCCG film can induce high carrier mobility rates and dissociate large amounts of the co-reactant KSO to enhance the ECL intensity of Cu SPs. As a result, the prepared ECL sensor with the catalyzed hairpin assembly (CHA) strategy was employed to quantify miRNA-103a in the range of 100 fM to 100 nM. The biosensor provided a novel analytical approach for the clinical diagnosis of TNBC.

摘要

聚集诱导发光(AIE)由于其出色的发光强度,在电化学发光(ECL)研究中得到了广泛应用。在这项工作中,使用铜超粒子(Cu SP)构建了用于检测三阴性乳腺癌(TNBC)肿瘤组织中 microRNA-103a(miRNA-103a)的 ECL 生物传感器。首先,使用 GSH 封端的铜簇作为前体制备了具有 AIE 效应的 Cu SP。与簇相比,Cu SP 具有更高的发光性能和能量稳定性,使其成为 ECL 纳米探针的理想选择。构建了 PVDF-HFP/CeVO NPs 薄膜,并将 CPBA 和 GSH 修饰为传感界面(PCCG)。PCCG 薄膜具有良好的导电性和亲水性,以及理想的机械稳定性。此外,PCCG 薄膜可以诱导高载流子迁移率并解离大量共反应物 KSO,从而增强 Cu SP 的 ECL 强度。因此,采用具有催化发夹组装(CHA)策略的制备的 ECL 传感器用于在 100 fM 至 100 nM 的范围内定量 miRNA-103a。该生物传感器为 TNBC 的临床诊断提供了一种新的分析方法。

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