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Interfacial Chemistry and the Design of Solid-Phase Nucleic Acid Hybridization Assays Using Immobilized Quantum Dots as Donors in Fluorescence Resonance Energy Transfer

机译:界面化学和固相核酸杂交分析设计的固定化量子点作为施主的荧光共振能量转移。

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摘要

The use of quantum dots (QDs) as donors in fluorescence resonance energy transfer (FRET) offer several advantages for the development of multiplexed solid-phase QD-FRET nucleic acid hybridization assays. Designs for multiplexing have been demonstrated, but important challenges remain in the optimization of these systems. In this work, we identify several strategies based on the design of interfacial chemistry for improving sensitivity, obtaining lower limits of detection (LOD) and enabling the regeneration and reuse of solid-phase QD-FRET hybridization assays. FRET-sensitized emission from acceptor dyes associated with hybridization events at immobilized QD donors provides the analytical signal in these assays. The minimization of active sensing area reduces background from QD donor PL and allows the resolution of smaller amounts of acceptor emission, thus lowering the LOD. The association of multiple acceptor dyes with each hybridization event can enhance FRET efficiency, thereby improving sensitivity. Many previous studies have used interfacial protein layers to generate selectivity; however, transient destabilization of these layers is shown to prevent efficient regeneration. To this end, we report a protein-free interfacial chemistry and demonstrate the specific detection of as little as 2 pmol of target, as well as an improved capacity for regeneration.
机译:在荧光共振能量转移(FRET)中使用量子点(QD)作为供体为多重固相QD-FRET核酸杂交测定的开发提供了多个优势。已经证明了用于多路复用的设计,但是在优化这些系统方面仍然存在重要的挑战。在这项工作中,我们基于界面化学设计确定了几种策略,以提高灵敏度,获得较低的检测限(LOD)并实现固相QD-FRET杂交检测的再生和再利用。与固定化QD供体上的杂交事件相关的受体染料引起的FRET敏化发光在这些测定中提供了分析信号。主动感测区域的最小化减少了来自QD供体PL的背景,并允许解析更少量的受体发射,从而降低了LOD。多个受体染料与每个杂交事件的缔合可以提高FRET效率,从而提高灵敏度。以前的许多研究都使用界面蛋白层来产生选择性。然而,这些层的瞬时不稳定表现出阻止有效再生的作用。为此,我们报告了无蛋白质的界面化学,并展示了仅检测到2 pmol靶标的特异性检测方法,并提高了再生能力。

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