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Label-free Paper-based Immunosensor with Graphene Nanocomposites for Electrochemical Detection of Follicle-stimulating Hormone

机译:具有石墨烯纳米复合材料的无标记纸免疫传感器,用于电化学检测卵泡刺激激素

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Follicle-stimulating hormone (FSH) is an important indicator of ovarian reserve function in women in clinical testing. In this work, a label-free paper-based immunosensor was developed for electrochemical rapid detection of FSH. A hydrophilic channel surrounded with hydrophobic barriers was firstly fabricated on the chromatography paper by wax printing technology. Then three electrodes were screen-printed on the circle zones of the channel, in which one carbon electrode further modified by reduced graphene-oxide/thionine/gold nanoparticles nanocomposites and FSH monoclonal antibody was used as the working electrode to provide sensitivity of the immunosensor. The detection of FSH is based on the decreased electrochemical current of Thi produced from the specific binding of the FSH and anti-FSH, and the decrease of the current is proportional to the concentration of the FSH. The experimental results exhibited that the immunosensor could be used to detect the standard FSH in range of 1-100 mlU/mL with the detection limit of 1 mIU/mL. And the proposed immunosensor had been successfully applied to detect FSH in serum samples.
机译:卵泡刺激激素(FSH)是临床检测中妇女卵巢储备功能的重要指标。在这项工作中,开发了一种无标签的纸张免疫传感器,用于电化学快速检测FSH。通过蜡印刷技术首先在色谱纸上制造具有疏水性屏障的亲水通道。然后在通道的圆形区域上筛选三个电极,其中使用通过还原的石墨烯氧化物/硫胺/金纳米粒子纳米复合材料和FSH单克隆抗体进一步改性的碳电极作为工作电极,以提供免疫传感器的敏感性。 FSH的检测基于来自FSH和抗FSH的特异性结合产生的电化学电流的降低,并且电流的降低与FSH的浓度成比例。实验结果表明,免疫传感器可用于检测1-100mLu / ml范围内的标准FSH,检测限为1 mIU / ml。并且已经成功地应用了拟议的免疫传感器来检测血清样品中的FSH。

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