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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Fabrication of a novel electrochemical sensor based on Zn-In2O3 nanorods coated glassy carbon microspheres paste electrode for square wave voltammetric determination of neuroprotective hibifolin in biological fluids and in the flowers of hibiscus vitifolius
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Fabrication of a novel electrochemical sensor based on Zn-In2O3 nanorods coated glassy carbon microspheres paste electrode for square wave voltammetric determination of neuroprotective hibifolin in biological fluids and in the flowers of hibiscus vitifolius

机译:基于Zn-In2O3纳米棒包覆的玻碳微球糊状电极的新型电化学传感器的制备,用于方波伏安法测定生物流体和芙蓉花中的神经保护性hibifolin

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摘要

Hibifolin (HBF), a flavonol glycoside derived from herbal plants, possessed a strong protective activity against cell death induced by aggregated beta-amyloid (A beta). Therefore, detection of neuroprotective HBF in biological system of great significance for fundamental study in medicine field. To address this critical need, we herein developed a novel electrochemical sensor based on Zn-In2O3 nanorods coated glassy carbon microspheres paste electrode (Zn-In(2)O(3)NRs/GCPE) for HBF detection. Zn-In(2)O(3)NRs were successfully synthesized via a facile sol gel combustion method for the first time and assessed for their structural and morphological changes due to Zn doping into In(2)O(3)NPs by X-ray diffraction (XRD) and transmission electron microscopy (TEM). The fabricated Zn-In(2)O(3)NRs/ GCPE displayed high effective surface area, more reaction sites and excellent electrochemical catalytic activity toward the oxidation of neuroprotective HBF. Under the optimum conditions, the sensor showed fast and sensitive current response to HBF over a wide range of 1.95 x 10(-8)-3.25 x 10(-6) M with a low detection limit of 3.10 x 10(-10) M (S/N = 3). Furthermore, this electrochemical sensor was successfully applied for the determination of HBF in spiked human biological fluids and in the flowers of hibiscus vitifolius with good accuracy and precision. (C) 2016 Elsevier B.V. All rights reserved.
机译:Hibifolin(HBF),一种从草药植物中提取的黄酮糖苷,对由聚集的β-淀粉样蛋白(A beta)诱导的细胞死亡具有强大的保护作用。因此,在生物系统中检测神经保护性HBF对于医学领域的基础研究具有重要意义。为了解决这一关键需求,我们在本文中开发了一种基于Zn-In2O3纳米棒的玻碳微球糊状电极(Zn-In(2)O(3)NRs / GCPE)进行HBF检测的新型电化学传感器。 Zn-In(2)O(3)NRs首次通过简便的溶胶凝胶燃烧方法成功合成,并评估了由于X-掺杂到In(2)O(3)NPs中的Zn引起的结构和形态变化。射线衍射(XRD)和透射电子显微镜(TEM)。制备的Zn-In(2)O(3)NRs / GCPE具有较高的有效表面积,更多的反应位点以及对神经保护性HBF的氧化具有优异的电化学催化活性。在最佳条件下,该传感器在1.95 x 10(-8)-3.25 x 10(-6)M的较宽范围内均显示出对HBF的快速灵敏电流响应,而检测限仅为3.10 x 10(-10)M (S / N = 3)。此外,该电化学传感器以良好的准确度和精密度成功地用于测定加标的人类生物流体和玻璃芙蓉花中的HBF。 (C)2016 Elsevier B.V.保留所有权利。

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