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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Amplified voltammetric detection of miRNA from serum samples of glioma patients via combination of conducting magnetic microbeads and ferrocene-capped gold nanoparticle/streptavidin conjugates
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Amplified voltammetric detection of miRNA from serum samples of glioma patients via combination of conducting magnetic microbeads and ferrocene-capped gold nanoparticle/streptavidin conjugates

机译:通过导电磁微珠和二茂铁封端的金纳米颗粒/链霉亲和素结合物的组合,从胶质瘤患者血清样品中扩增出伏安法检测miRNA

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摘要

MicroRNA (miRNA) plays a key regulatory role in many biological processes, emerging as an important biomarker for a large variety of cancer diseases. Employing gold nanoparticle (AuNP)-coated magnetic microbeads (AuNP-MMBs) as an immobilization matrix for higher loading density of hairpin-structured DNA probes and then ferrocene (Fc)-capped gold nanoparticle/streptavidin conjugates, amplified electrochemical assay of miRNA has been performed. In the presence of target miRNA, a novel assembly was formed via linking biotinylated hairpin DNA probe-covered AuNP-MMBs with Fc-capped gold nanoparticle/streptavidin conjugates and then collected by magnetic electrodes for voltammetric detection. The enlarged surface area, good conductivity of AuNP-MMBs and the multiple Fc tags on the electrode surface ensure high sensitivity of the method. The oxidation peak current of Fc tags is proportional to the concentrations of miRNA ranging from 5 fM to 100 fM, and a detection limit of 0.14 fM was achieved. The proposed assay is highly selective and reproducible, serving as a viable alternative for the detection of miRNA-182 from serum samples of glioma patients. (C) 2016 Elsevier B.V. All rights reserved.
机译:MicroRNA(miRNA)在许多生物过程中起着关键的调节作用,已成为多种癌症疾病的重要生物标志物。利用金纳米颗粒(AuNP)包覆的磁性微珠(AuNP-MMBs)作为固定基质以提高发夹结构DNA探针的负载密度,然后用二茂铁(Fc)包覆的金纳米颗粒/链霉亲和素偶联物,miRNA的放大电化学分析执行。在存在目标miRNA的情况下,通过将生物素化的发夹DNA探针覆盖的AuNP-MMB与Fc封端的金纳米颗粒/链霉亲和素偶联物连接起来,然后通过磁电极收集用于伏安法检测,从而形成新的装配体。扩大的表面积,AuNP-MMBs的良好电导率以及电极表面上的多个Fc标签确保了该方法的高灵敏度。 Fc标签的氧化峰电流与miRNA的浓度成正比,范围从5 fM到100 fM,检测极限为0.14 fM。拟议的测定具有高度的选择性和可重复性,是从神经胶质瘤患者血清样本中检测miRNA-182的可行替代方法。 (C)2016 Elsevier B.V.保留所有权利。

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