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首页> 外文期刊>ACS applied materials & interfaces >Hierarchical Porous Fluorinated Graphene Oxide@Metal-Organic Gel Composite: Label-Free Electrochemical Aptasensor for Selective Detection of Thrombin
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Hierarchical Porous Fluorinated Graphene Oxide@Metal-Organic Gel Composite: Label-Free Electrochemical Aptasensor for Selective Detection of Thrombin

机译:等级多孔氟化石墨烯氧化物@金属 - 有机凝胶复合材料:无标签电化学Aptasensor,用于凝血酶的选择性检测

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摘要

Current research effort aims at developing and designing new sensing platform architectures for effectively assaying biological targets that are significantly important for human healthcare and medical diagnosis. Here, we proposed a novel nanostructured sensor based on the combination of fluorinated graphene oxide and iron-based metal organic gel (FGO@Fe-MOG). The unique properties including hierarchical porosity along with excellent electron transfer behavior make it an ideal candidate for electrochemical sensing of thrombin with superior detection limits compared to other (electrochemical, fluorescence, and colorimetric) strategies. Specifically, thrombin-binding aptamer was immobilized onto FGO@Fe-MOG through strong electrostatic interaction without any special modification or labeling, and the electrochemical impedance spectroscopy was used as the analyzing tool. The introduced aptasensor revealed high selectivity and reproducibility toward thrombin with the detection limit of 58 pM. The effectiveness, reliability, and real applicability of the proposed FGO@Fe-MOG nanohybrid were also confirmed by the determination of thrombin in a complex biological matrix represented by human serum. Taking into account the superior detection limit, high selectivity, reproducibility, and precision, the developed scalable and label-free aptasensor meets the essential requirements for clinical diagnosis of thrombin.
机译:目前的研究努力旨在开发和设计新的传感平台架构,以便有效地测定对人类医疗和医学诊断的显着重要的生物学目标。这里,我们提出了一种基于氟化石墨烯和铁基金属有机凝胶(FGO @ Fe-Mog)的组合的新型纳米结构传感器。包括分层孔隙度以及优异的电子转移行为的独特性质使其成为凝血酶的电化学传感的理想候选者,其与其他(电化学,荧光和比色)策略相比具有卓越的检测限。具体地,通过在没有任何特殊修饰或标记的情况下通过强的静电相互作用将凝血酶结合适体固定在FPO @ Fe-Mog上,并且电化学阻抗光谱用作分析工具。介绍的Aptasensor揭示了凝血酶的高选择性和再现性,其检测限为58 pm。通过在人血清代表的复杂生物学基质中测定凝血酶,还证实了所提出的FPO @ Fe-Mog纳入纳米嗜含量的有效性,可靠性和实际适用性。考虑到卓越的检测极限,高选择性,再现性和精度,开发的可扩展和无标签的Aptasensor符合临床诊断的基本要求。

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