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在荧光核酸杂交探针中,猝灭和等离子体荧光增强的协同组合。

Synergistic Combination of Unquenching and Plasmonic Fluorescence Enhancement in Fluorogenic Nucleic Acid Hybridization Probes.

机构信息

Institute for Physical and Theoretical Chemistry, and Braunschweig Integrated Centre of Systems Biology (BRICS), and Laboratory for Emerging Nanometrology (LENA), Braunschweig University of Technology , Rebenring 56, 38106 Braunschweig, Germany.

Department of Chemistry, Ludwig-Maximilians-Universitaet Muenchen , Butenandtstr. 5-13, 81377 Muenchen, Germany.

出版信息

Nano Lett. 2017 Oct 11;17(10):6496-6500. doi: 10.1021/acs.nanolett.7b03844. Epub 2017 Sep 29.

Abstract

Fluorogenic nucleic acid hybridization probes are widely used for detecting and quantifying nucleic acids. The achieved sensitivity strongly depends on the contrast between a quenched closed form and an unquenched opened form with liberated fluorescence. So far, this contrast was improved by improving the quenching efficiency of the closed form. In this study, we modularly combine these probes with optical antennas used for plasmonic fluorescence enhancement and study the effect of the nanophotonic structure on the fluorescence of the quenched and the opened form. As quenched fluorescent dyes are usually enhanced more by fluorescence enhancement, a detrimental reduction of the contrast between closed and opened form was anticipated. In contrast, we could achieve a surprising increase of the contrast with full additivity of quenching of the dark form and fluorescence enhancement of the bright form. Using single-molecule experiments, we demonstrate that the additivity of the two mechanisms depends on the perfect quenching in the quenched form, and we delineate the rules for new nucleic acid probes for enhanced contrast and absolute brightness. Fluorogenic hybridization probes optimized not only for quenching but also for the brightness of the open form might find application in nucleic acid assays with PCR avoiding detection schemes.

摘要

荧光核酸杂交探针被广泛用于检测和定量核酸。实现的灵敏度强烈依赖于被猝灭的封闭形式和未猝灭的开放形式之间的对比度,其中开放形式具有释放的荧光。到目前为止,这种对比度通过提高封闭形式的猝灭效率得到了改善。在这项研究中,我们将这些探针与用于等离子体荧光增强的光学天线进行模块化组合,并研究纳米光子结构对猝灭和开放形式荧光的影响。由于猝灭荧光染料通常通过荧光增强得到更多的增强,因此预计封闭和开放形式之间的对比度会降低。相比之下,我们可以通过猝灭暗形式和增强亮形式的荧光的完全加和来实现对比度的惊人增加。使用单分子实验,我们证明了这两种机制的加和性取决于猝灭形式的完美猝灭,并且我们为具有增强对比度和绝对亮度的新核酸探针划定了规则。优化的不仅用于猝灭而且用于开放形式的亮度的荧光杂交探针可能会在避免检测方案的 PCR 核酸检测中找到应用。

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