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Nucleic Acid/Quantum Dots (QDs) Hybrid Systems for Optical and Photoelectrochemical Sensing

机译:用于光学和光电化学传感的核酸/量子点(QDs)混合系统

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Nucleic acid/semiconductor quantum dots (QDs) hybrid systems combine the recognition and catalytic properties of nucleic acids with the unique photophysical features of QDs. These functions of nucleic acid/QDs hybrids are implemented to develop different optical sensing platforms for the detection of DNA, aptamer-substrate complexes, and metal ions. Different photophysical mechanisms including fluorescence, electron transfer quenching, fluorescence resonance energy transfer (FRET), and chemiluminescence resonance energy transfer (CRJST) are used to develop the sensor systems. The size-controlled luminescence properties of QDs are further implemented for the multiplexed, parallel analysis of several DNAs, aptamer- substrate complexes, or mixtures of ions. Similarly, methods to amplify the sensing events through the biocatalytic regeneration of the analyte were developed. An additional paradigm in the implementation of nucleic acid/QDs hybrids for sensing applications involves the integration of the systems with electrodes, and the generation of photocurrents as transduction signals for the sensing events. Finally, semiconductor QDs conjugated to functional DNA machines, such as "walker" systems, provide an effective optical label for probing the dynamics and mechanical functions of the molecular devices. The present article addresses the recent advances in the application of nucleic acid/QDs hybrids for sensing applications and DNA nanotechnology, and discusses future perspectives of these hybrid materials.
机译:核酸/半导体量子点(QD)混合系统将核酸的识别和催化特性与QD的独特光物理特征结合在一起。实现核酸/ QD杂化物的这些功能是为了开发用于检测DNA,适体-底物复合物和金属离子的不同光学传感平台。包括荧光,电子转移猝灭,荧光共振能量转移(FRET)和化学发光共振能量转移(CRJST)在内的不同光物理机制都用于开发传感器系统。 QD的尺寸控制的发光特性可进一步用于几种DNA,适体-底物复合物或离子混合物的多重,平行分析。类似地,开发了通过分析物的生物催化再生来放大感测事件的方法。在用于感测应用的核酸/ QD杂化物的实现中的另一范例涉及将系统与电极集成,以及产生光电流作为用于感测事件的转导信号。最后,与功能性DNA机器(例如“沃克”系统)结合的半导体QD为探测分子装置的动力学和机械功能提供了有效的光学标签。本文介绍了核酸/量子点杂交技术在传感应用和DNA纳米技术中的最新应用,并讨论了这些杂交材料的未来前景。

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