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基于聚邻苯二胺载体和功能化碳纳米管示踪标记双重信号放大的 MUC1 电化学适体传感器。

Electrochemical aptasensor for mucin 1 based on dual signal amplification of poly(o-phenylenediamine) carrier and functionalized carbon nanotubes tracing tag.

机构信息

College of Sciences, Nanjing Tech University, Nanjing 211816, PR China.

College of Sciences, Nanjing Tech University, Nanjing 211816, PR China; Geological Survey of Jiangsu Province, Nanjing 210018, PR China.

出版信息

Biosens Bioelectron. 2015 Feb 15;64:485-92. doi: 10.1016/j.bios.2014.09.052. Epub 2014 Sep 28.

Abstract

Mucin 1 (MUC 1), as a most studied mucin, has become a useful marker for identifying breast cancer in the early stages. In this work, a novel method for the determination of MUC 1 in serum was developed based on a sandwich-type electrochemical aptasensor, which combined a dual signal amplification strategy of poly(o-phenylenediamine)-Au nanoparticles (PoPD-AuNPs) hybrid film as carrier and AuNPs functionalized silica/multiwalled carbon nanotubes core-shell nanocomposites (AuNPs/SiO2@MWCNTs) as tracing tag. The PoPD-AuNPs film provides a suitable microenvironment for stabilizing the primary aptamer (Apt) assembly, and the AuNPs/SiO2@MWCNTs enhances the surface area for immobilizing abundant secondary Apts as well as load large amounts of electrochemical probe thionine (Thi). In the presence of MUC 1, the sandwich-type recognition reacted on the aptasensor surface, and the Thi-AuNPs/SiO2@MWCNTs nanoprobes were captured onto the electrode surface to form biocomplex. AuNPs and MWCNTs could facilitate the electron transfer from Thi to the electrode, thus amplifying the detection response. Under the optimized experimental conditions, the proposed sensing strategy provided a wider linear dynamic range over three orders of magnitude with the detection limit down to 1 pM. Moreover, the aptasensor demonstrated good precision, acceptable stability and reproducibility.

摘要

黏蛋白 1(MUC1)作为研究最多的黏蛋白之一,已成为识别早期乳腺癌的有用标志物。在这项工作中,我们基于夹心型电化学适体传感器,开发了一种用于血清中 MUC1 测定的新方法,该方法结合了聚邻苯二胺-金纳米粒子(PoPD-AuNPs)混合薄膜作为载体的双信号放大策略和金纳米粒子功能化的硅/多壁碳纳米管核壳纳米复合材料(AuNPs/SiO2@MWCNTs)作为示踪标记。PoPD-AuNPs 薄膜为稳定初级适体(Apt)组装提供了合适的微环境,而 AuNPs/SiO2@MWCNTs 增加了固定大量次级 Apt 的表面积,以及负载大量电化学探针噻吩(Thi)。在存在 MUC1 的情况下,三明治型识别反应发生在适体传感器表面,噻吩-AuNPs/SiO2@MWCNTs 纳米探针被捕获到电极表面形成生物复合物。AuNPs 和 MWCNTs 可以促进从 Thi 到电极的电子转移,从而放大检测响应。在优化的实验条件下,所提出的传感策略提供了三个数量级的宽线性动态范围,检测限低至 1 pM。此外,该适体传感器表现出良好的精度、可接受的稳定性和重现性。

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