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Visual cocaine detection with gold nanoparticles and rationally engineered aptamer structures

机译:金纳米颗粒和合理设计的适体结构的可视可卡因检测

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摘要

A novel bioassay strategy is designed to detect small-molecule targets such as cocaine, potassium, and adenosine, based on gold nanoparticles (AuNPs) and engineered DNA aptamers. In this design, an aptamer is engineered to be two pieces of random, coil-like single-stranded DNA, which reassembles into the intact aptamer tertiary structure in the presence of the specific target. AuNPs can effectively differentiate between these two states via their characteristic surface-plasmon resonance-based color change. Using this method, cocaine in the low-micromolar range is selectively detected within minutes. This strategy is also shown to be generic and applicable to the detection of several other small-molecule tat-gets.
机译:基于金纳米颗粒(AuNPs)和工程化的DNA适体,设计了一种新颖的生物测定策略来检测可卡因,钾和腺苷等小分子靶标。在这种设计中,适体被改造成两片随机的,盘绕状的单链DNA,在特定靶标的存在下,它重新组装成完整的适体三级结构。 AuNP可以通过其基于表面等离子体共振的特征性颜色变化来有效区分这两种状态。使用这种方法,可在数分钟内选择性检测出低微摩尔范围的可卡因。该策略也被证明是通用的,适用于检测其他几种小分子化合物。

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