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Gold Microstructures/Polyaniline/Reduced Graphene Oxide/Prussian Blue Composite as Stable Redox Matrix for Label-free Electrochemical Immunoassay of α-Fetoprotein

机译:金显微组织/聚苯胺/降墨氧化物/普鲁士蓝复合作为α-胎蛋白无标记电化学免疫测定的稳定氧化还原基质

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Sensitivity amplification strategies in label-free electrochemical immunosensors are mainly limited by redox molecules leaking and degradation of electrical conductivity caused by layers of decoration. Herein, a relatively stable and sensitive label-free electrochemical immunosensor based on a hierarchically flower-like gold microstructures/polyaniline/reduced graphene oxide/prussian blue (HFG/PANI/rGO/PB) composite modified electrode was stepwise fabricated for determination of α-fetoprotein (AFP). In this process, the effect of PANI and rGO on the proposed immunosensor was studied. In detail, PANI/rGO due to the unique electrochemical properties can effectively prevent PB leakage and form a stable sensing platform, which causes sensitive responsiveness and thus a more satisfied detection limit. Meanwhile, the HFG with good biological compatibility can effectively immobilize plenty of antibodies. Under optimal conditions, the HFG/PANI/rGO/PB modified immunosensor exhibited an excellent linearity (0.01 – 30 ng/mL) and a low detection limit (0.003 ng/mL) (S/N = 3), suitable specificity as well as stability and reproducibility towards AFP. The present work offered a promising platform for clinical hepatocellular carcinoma diagnostics.
机译:无标签电化学免疫调传料中的敏感性扩增策略主要受氧化还原分子泄漏和由装饰层引起的导电性降低的限制。在此,基于分层花状金微结构/聚苯胺/还原的石墨烯/普鲁斯蓝(HFG / PANI / RGO / PB)复合电极的相对稳定和敏感的无敏感的电化学免疫传感器被逐步制造用于测定α-胎儿蛋白(AFP)。在该过程中,研究了Pani和Rgo对所提出的免疫传感器的影响。详细地,由于独特的电化学性能引起的PANI / RGO可以有效地防止PB泄漏并形成稳定的传感平台,这导致敏感的响应性,从而更满意的检测限。同时,具有良好的生物相容性的HFG可以有效地固定大量抗体。在最佳条件下,HFG / PANI / RGO / PB改性免疫传感器表现出优异的线性度(0.01-30ng / ml)和低检测极限(0.003 ng / ml)( s / n = 3),合适的特异性以及对AFP的稳定性和再现性。本工作为临床肝细胞癌诊断提供了一个有希望的平台。

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