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Label-Free Fluorescent Aptasensor for Small Targets via Displacement of Groove Bound Curcumin Molecules

机译:通过槽结合姜黄素分子的位移用于小目标的无标记荧光适应传感器。

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摘要

Signal transduction based on fluorescence is one of the most common optical aptasensors for small molecules. Sensors with a number of unique features including high sensitivity, low cost, and simple operation can be constructed easily. However, the label-free fluorescent approach is limited to synthetic dyes that bind strongly to the aptamer sequence and result in a diminished sensor operation with high detection limits. In this study, we report the use of curcumin as a fluorescent probe to signal aptamer/small target binding events. A substantial enhancement in curcumin’s fluorescent emission was observed when bound into the grooves of vitamin D (VTD3) binding aptamer, as an example. However, the introduction of the target molecule causes the aptamer to undergo a conformational change that favors complexing the target molecule over binding the curcumin dye. The sensor was able to detect VTD3 down to 1 fM concentration in buffer solutions and extracted blood samples, operate at a wide dynamic range, and discriminate against potential biological interfering molecules including VTD2. The operation of the curcumin based fluorescent sensor is at least six orders of magnitude more sensitive than a VTD3 sensor constructed with the synthetic dye SYBR Green I. The generality of the reported label-free approach was applied with a previously isolated 75-mer bisphenol-A (BPA) aptamer, confirming that the reported sensing strategy is not confined on a particular aptamer sequence. Our work not only reports a novel sensor format for the detection of small molecules, but also serves fluorescent sensor’s most pressing need being novel fluorophores for multiplex targets detection.
机译:基于荧光的信号转导是最常见的小分子光学适体传感器之一。具有高灵敏度,低成本和简单操作等众多独特功能的传感器可以轻松构建。但是,无标记的荧光方法仅限于与适体序列牢固结合并导致传感器操作降低且检测限较高的合成染料。在这项研究中,我们报告了姜黄素作为荧光探针的信号,适体/小靶标结合事件。例如,当与维生素D(VTD3)结合适体结合时,姜黄素的荧光发射就会大大增强。然而,靶分子的引入导致适体发生构象变化,该构象变化有利于复合靶分子而不是结合姜黄素染料。该传感器能够检测到缓冲溶液和提取的血样中浓度低至1 fM的VTD3,可在宽动态范围内运行,并能识别包括VTD2在内的潜在生物干扰分子。基于姜黄素的荧光传感器的操作比使用合成染料SYBR Green I构建的VTD3传感器的灵敏度至少高六个数量级。所报道的无标记方法的一般性适用于先前分离的75-mer双酚- (BPA)适体,确认所报道的传感策略不限于特定的适体序列。我们的工作不仅报告了用于检测小分子的新型传感器格式,而且满足了荧光传感器最迫切的需求,即用于多重目标检测的新型荧光团。

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