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首页> 外文期刊>ACS applied materials & interfaces >Electrostatically Directed Visual Fluorescence Response of DNA-Functionalized Monolithic Hydrogels for Highly Sensitive Hg~(2+) Detection
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Electrostatically Directed Visual Fluorescence Response of DNA-Functionalized Monolithic Hydrogels for Highly Sensitive Hg~(2+) Detection

机译:DNA功能化整体水凝胶的静电定向视觉荧光响应,用于高灵敏度Hg〜(2+)检测

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Hydrogels are cross-linked hydrophilic polymer networks with low optical background and high loading capacity for immobilization of biomolecules.Importantly, the property of hydrogel can be precisely controlled by changing the monomer composition.This feature, however, has not been investigated in the rational design of hydrogel-based optical sensors.We herein explore electrostatic interactions between an immobilized mercury binding DNA, a DNA staining dye (SYBR Green I), and the hydrogel backbone.A thymine-rich DNA was covalently functionalized within monolithic hydrogels containing a positive, neutral, or negative backbone.These hydrogels can be used as sensors for mercury detection since the DNA can selectively bind Hg~(2+) between thymine bases inducing a hairpin structure.SYBR Green I can then bind to the hairpin to emit green fluorescence.For the neutral or negatively charged gels, addition of the dye in the absence of Hg~(2+) resulted in intense yellow background fluorescence, which was attributed to SYBR Green I binding to the unfolded DNA We found that, by introducing 20% positively charged allylamine monomer, the background fluorescence was significantly reduced.This was attributed to the repulsion between positively charged SYBR Green I by the gel matrix as well as the strong binding between the DNA and the gel backbone.The signal-to-background ratio and detection limit was, respectively, improved by 6- and 9-fold using the cationic gel instead of neutral polyacrylamide gel.This study helps understand the electrostatic interaction within hydrogels, showing that hydrogels can not only serve as a high capacity matrix for sensor immobilization but also can actively influence the interaction between involved molecules.
机译:水凝胶是具有低光学背景和高负载能力以固定生物分子的交联亲水性聚合物网络,重要的是,通过改变单体组成可以精确控制水凝胶的性质,但是这一特征尚未在合理设计中进行研究。我们在这里探索固定化的汞结合DNA,DNA染色染料(SYBR Green I)和水凝胶骨架之间的静电相互作用。富含胸腺嘧啶的DNA在含有正,中性的整体水凝胶中被共价官能化这些水凝胶可以用作汞检测的传感器,因为DNA可以选择性地结合胸腺嘧啶碱基之间的Hg〜(2+)并诱导发夹结构,然后SYBR Green I可以与发夹结合以发出绿色荧光。在中性或带负电的凝胶中,在没有Hg〜(2+)的情况下添加染料会导致强烈的黄色背景荧光hich归因于SYBR Green I与未折叠的DNA结合我们发现,通过引入20%带正电的烯丙胺单体,背景荧光显着降低,这也归因于凝胶基质对带正电的SYBR Green I之间的排斥阳离子凝胶代替中性聚丙烯酰胺凝胶使信噪比和检测限分别提高了6倍和9倍。水凝胶之间的相互作用,表明水凝胶不仅可以用作固定传感器的高容量基质,而且还可以积极影响相关分子之间的相互作用。

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