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Functionalized GaN nanowire-based electrode for direct label-free voltammetric detection of DNA hybridization

机译:功能化的GaN纳米线基电极,用于直接进行DNA杂交的无标记伏安法检测

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摘要

This study demonstrates the utility of functionalized GaN nanowires (GaNNWs)for electrochemical detection of nucleic acids,in aqueous solution,using cyclic voltammetry.In order to link probe DNA to the NW surface,we employed an organosulfur compound,3-mercaptopropyl trimethoxysilane (MPTS),to functionalize the GaNNW surface.Interestingly,the MPTS-modified GaNNWs exhibited a potential window of 4.5 V,the widest reported to date,with very low background current,which provides an advantage for sensing DNA immobilization/hybridization,down to sub-pM concentration,via monitoring adenine and guanine oxidation.The oxidation of guanine was characterized by its peak potential and peak current,where the former serves as a fingerprint for DNA hybridization and the latter as a parameter for the extent of hybridization.Moreover,the GaNNW-based sensor exhibited excellent consistency in hybridization-dehybridization-rehybridization cycles.
机译:这项研究证明了功能化GaN纳米线(GaNNWs)在水溶液中使用循环伏安法电化学检测核酸的实用性。为了将探针DNA连接到NW表面,我们使用了有机硫化合物3-巯基丙基三甲氧基硅烷(MPTS)有趣的是,MPTS修饰的GaNNWs的电势窗口为4.5 V,是迄今为止报道的最宽窗口,背景电流非常低,为检测DNA固定/杂交提供了优势,可降低至亚通过监测腺嘌呤和鸟嘌呤的氧化而达到pM浓度。鸟嘌呤的氧化以其峰值电势和峰值电流为特征,其中前者充当DNA杂交的指纹,后者充当杂交程度的参数。传感器在杂交-去杂化-再杂交循环中表现出优异的一致性。

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