首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >An electrochemical sensing strategy based on a three dimensional ordered macroporous polyaniline-platinum platform and a mercury(II) ion-mediated DNAzyme functionalized nanolabel
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An electrochemical sensing strategy based on a three dimensional ordered macroporous polyaniline-platinum platform and a mercury(II) ion-mediated DNAzyme functionalized nanolabel

机译:基于三维有序大孔聚苯胺-铂平台和汞(II)离子介导的DNA酶功能化纳米标记的电化学传感策略

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A highly sensitive electrochemical sensor for the detection of mercury(II) ions (Hg2+) was developed by using a three dimensional ordered macroporous polyaniline-platinum (3DOM PANI-Pt) composite film as a sensing platform. 3DOM PANI-Pt was realized by electrochemical co-deposition of Pt nanoparticles and PANI into the sacrificed silica template through the redox reaction involving the monomer aniline (AN) and PtCl62-. The G-rich oligonucleotide strand functionalized Au nanoparticle was employed as the Hg2+-mediated structural switch and to enhance the sensitivity. In the absence of Hg2+, the oligonucleotide strand formed an intramolecular duplex where the G-rich sequence was partially caged. In the presence of Hg2+, the release of the G-rich sequence was observed due to the stabilization of T-Hg2+-T, which formed an active G-quadruplex DNAzyme and catalyzed the reduction of H2O2. Under the optimal conditions, the current signal of H2O2 increased with increasing Hg2+ concentration in the dynamic range from 10(-13) to 10(-6) M, and the detection limit up to 8.7 x 10(-14) M was seen. Further, the sensor was successfully utilized for the determination of Hg2+ in an authentic aquatic sample, with an acceptable accuracy compared to the method commercially available. In this paper, we proposed a general and simple strategy because only one oligonucleotide strand was required for both Hg2+ recognition and signal amplification, potentially allowing the detection of other metal ions or trace pollutants in environmental matrices by simply employing various DNA or aptamer probes.
机译:通过使用三维有序大孔聚苯胺-铂(3DOM PANI-Pt)复合膜作为传感平台,开发了一种用于检测汞(II)离子(Hg2 +)的高灵敏度电化学传感器。 3DOM PANI-Pt是通过Pt纳米颗粒和PANI通过涉及单体苯胺(AN)和PtCl62-的氧化还原反应电化学共沉积到牺牲二氧化硅模板中而实现的。富含G的寡核苷酸链功能化的Au纳米颗粒被用作Hg2 +介导的结构开关,并提高了灵敏度。在不存在Hg2 +的情况下,寡核苷酸链形成了分子内双链体,其中富含G的序列被部分封闭。在存在Hg2 +的情况下,由于T-Hg2 + -T的稳定而观察到了富G序列的释放,T-Hg2 + -T形成了活性的G-四链体DNA酶并催化了H2O2的还原。在最佳条件下,H2O2的电流信号在10(-13)M至10(-6)M的动态范围内随Hg2 +浓度的增加而增加,并且检测限高达8.7 x 10(-14)M。此外,与市售方法相比,该传感器已成功用于确定真实水生样品中Hg2 +的准确度。在本文中,我们提出了一种通用且简单的策略,因为Hg2 +识别和信号放大仅需要一条寡核苷酸链,从而可能通过简单地使用各种DNA或适体探针来检测环境基质中的其他金属离子或痕量污染物。

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