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A CdTe nanoparticle-modified hairpin probe for direct and sensitive electrochemical detection of DNA

机译:CdTe纳米粒子修饰的发夹探针,可直接,灵敏地检测DNA

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摘要

Detection of specific sequences of target DNA is of high importance in many fields, especially in medicinal diagnostics. DNA sensors should exhibit fast response to minute concentrations of the target sequence and have the ability to distinguish single-base mismatches from fully complementary target.This study focuses on the response of an electrochemical, CdTe nanoparticle-modified hairpin DNA sensor. The stem–loop structured probes and the blocking poly(ethylene glycol) (PEG) molecules were self-assembled on the gold electrode through S–Au bonding, to form a mixed monolayer employed as the sensing platform. Water-soluble CdTe nanoparticles were covalently attached to the hairpin probes (HPPs) and impedance spectroscopy was used for investigation of the electron transfer processes at a modified gold electrode before and after hybridization with the target DNA. The sensor showed reliable and sensitive detection of 4.7 fM of target. Although the selectivity of the sensor towards one-base mismatch targets needs to be improved, discrimination of non-complementary targets was achieved.
机译:在许多领域,特别是在医学诊断中,靶DNA特定序列的检测非常重要。 DNA传感器应该对微小浓度的靶序列表现出快速反应,并能够将单碱基错配与完全互补的靶区分开。通过S–Au键将茎环结构的探针和封闭性聚乙二醇(PEG)分子自组装在金电极上,形成混合单层用作传感平台。将水溶性CdTe纳米粒子共价连接至发夹探针(HPP),并使用阻抗谱研究与目标DNA杂交前后修饰金电极上的电子转移过程。该传感器显示出对4.7 fM目标的可靠而灵敏的检测。尽管需要提高传感器对一碱基不匹配目标的选择性,但可以实现对非互补目标的区分。

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