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Nanoporous Gold Disks Functionalized with Stabilized G-Quadruplex Moieties for Sensing Small Molecules

机译:具有稳定的G-四链体部分功能化的纳米孔金盘,用于感知小分子。

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We report label-free small molecule sensing on nanoporous gold disks functionalized with stabilized Guanine-quadruplex (G4) moieties using surface-enhanced Raman spectroscopy (SERS). By utilizing the unique G4 topological structure, target molecules can be selectively captured onto nanoporous gold (NPG) disk surfaces via pi-pi stacking, and electrostatic attractions. Together with high-density plasmonic "hot spots" of NPG disks, the captured molecules produce a remarkable SERS signal. Our strategy-represents the first example of the detection of foreign molecules conjugated to nondouble helical DNA nanostructures using SERS while providing a new technique for studying the formation and evolution of G4 moieties. The molecular specificity of G4 is known to be controlled by its unit sequence. Without losing generality, we have selected d(GGT)(7)GG sequence for the sensing of malachite green (MG), a known carcinogen frequently abused illegally in aquaculture. The newly developed technique achieved a lowest detectable concentration at an impressive SO pM, two orders of magnitude lower than the European Union (EU) regulatory requirement, with high specificity against potential interferents. To demonstrate the translational potential of this technology, we achieved a lowest detectable concentration of 5.0 nM, meeting the EU regulatory requirement, using a portable probe based detection system.
机译:我们报告了使用表面增强拉曼光谱(SERS)的稳定化鸟嘌呤-四链体(G4)部分功能化的纳米多孔金片上的无标签小分子传感。通过利用独特的G4拓扑结构,可以通过pi-pi堆积和静电吸引将目标分子选择性地捕获到纳米孔金(NPG)磁盘表面上。连同NPG磁盘的高密度等离激元“热点”,被捕获的分子会产生显着的SERS信号。我们的策略代表了使用SERS检测与非双螺旋DNA纳米结构缀合的外来分子的第一个示例,同时提供了研究G4部分形成和进化的新技术。已知G4的分子特异性受其单位序列控制。在不失一般性的前提下,我们选择了d(GGT)(7)GG序列来检测孔雀石绿(MG),这是一种已知的致癌物质,经常在水产养殖中被非法滥用。新开发的技术以令人印象深刻的SO pM实现了最低可检测浓度,比欧盟(EU)法规要求低两个数量级,并且对潜在的干扰物具有高度特异性。为了证明该技术的翻译潜力,我们使用了基于便携式探针的检测系统,实现了最低可检测浓度5.0 nM,符合欧盟法规要求。

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