用于癌症生物标志物检测的纳米结构光电化学生物传感平台

Diego Voccia , Francesca Bettazzi , Serena Laschi , Cristina Gellini , Giangaetano Pietraperzia , Luigi Falciola , Valentina Pifferi , Chiara Ingrosso , Tiziana Placido , Roberto Comparelli , M. Lucia Curri , Ilaria Palchetti
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引用次数: 3

摘要

本文研究了多功能纳米材料的创新光电化学特性,以开发生物传感平台,用于快速灵敏地检测一类癌症生物标志物候选物,即微rna。到目前为止,已经提出了许多不同的传感器来检测microRNA。近年来,随着新的光电化学活性物质和新的检测方法的出现,光电化学越来越受到人们的关注。金纳米结构已经被用来修饰TiO2电极。用核酸捕获探针(CPs)修饰了纳米结构平台的表面。生物素化的靶mirna已被特定的CPs识别。生物传感平台已与链亲和素碱性磷酸酶孵育,并暴露于适当的底物。酶促反应的产物进行了光电化学监测。为了有一个符合护理点测试概念的最终原型,开发了一个紧凑的手持式分析设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanostructured Photoelectrochemical Biosensing Platform for Cancer Biomarker Detection

The innovative photoelectrochemical properties of multifunctional nanomaterials are here investigated for the development of biosensing platforms for rapid and sensitive detection of a class of cancer biomarker candidates, known as microRNAs. Many different transducers have been proposed, so far, for microRNA detection. Recently, with the emergence of novel photoelectrochemically active species and new detection schemes, photoelectrochemistry has received increasing attention. Gold nanostructures have been, here, used to modify TiO2 electrodes. The surface of the nanostructured platform has been modified by nucleic acid capture probes (CPs). Biotinylated target miRNAs have been recognized by the specific CPs. The biosensing platform has been incubated with streptavidin alkaline phosphatase and exposed to a proper substrate. The product of the enzymatic reaction has been photoelectrochemically monitored. A compact and hand-held analytical device has been developed in order to have a final prototype in line with the concept of point of care testing.

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