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Target-responsive DNA-capped nanocontainer used for fabricating universal detector and performing logic operations

机译:具有靶反应的DNA封端的纳米容器用于制造通用检测器和执行逻辑操作

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摘要

Nucleic acids have become a powerful tool in nanotechnology because of their controllable diverse conformational transitions and adaptable higher-order nanostructure. Using single-stranded DNA probes as the pore-caps for various target recognition, here we present an ultrasensitive universal electrochemical detection system based on graphene and mesoporous silica, and achieve sensitivity with all of the major classes of analytes and simultaneously realize DNA logic gate operations. The concept is based on the locking of the pores and preventing the signal-reporter molecules from escape by target-induced the conformational change of the tailored DNA caps. The coupling of ‘waking up’ gatekeeper with highly specific biochemical recognition is an innovative strategy for the detection of various targets, able to compete with classical methods which need expensive instrumentation and sophisticated experimental operations. The present study has introduced a new electrochemical signal amplification concept and also adds a new dimension to the function of graphene-mesoporous materials hybrids as multifunctional nanoscale logic devices. More importantly, the development of this approach would spur further advances in important areas, such as point-of-care diagnostics or detection of specific biological contaminations, and hold promise for use in field analysis.
机译:核酸由于其可控的多样构象转变和适应性更高的纳米结构,已成为纳米技术中的强大工具。我们使用单链DNA探针作为用于各种目标识别的孔盖,在此,我们介绍一种基于石墨烯和中孔二氧化硅的超灵敏通用电化学检测系统,可对所有主要类别的分析物实现灵敏,同时实现DNA逻辑门操作。该概念基于孔的锁定并防止信号报告分子因靶标导致的特制DNA帽的构象变化而逸出。 “唤醒”网守与高度特异性的生化识别的结合是一种检测各种目标的创新策略,能够与需要昂贵仪器和复杂实验操作的经典方法竞争。本研究引入了新的电化学信号放大概念,并且还为石墨烯-介孔材料杂化体作为多功能纳米级逻辑器件的功能增加了新的维度。更重要的是,这种方法的发展将促进重要领域的进一步发展,例如现场诊断或特定生物污染物的检测,并有望用于现场分析。

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