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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 >The Ru complex and hollow gold nanoparticles branched-hydrogel as signal probe for construction of electrochemiluminescent aptasensor
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The Ru complex and hollow gold nanoparticles branched-hydrogel as signal probe for construction of electrochemiluminescent aptasensor

机译:钌配合物和空心金纳米颗粒支链水凝胶作为构建电化学发光适体传感器的信号探针

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摘要

In this work, a novel Ru complex and hollow gold nanoparticles branched-poly(N-(3-aminopropyl)methacrylamide) hydrogel composites (pNAMA-Ru-HGNPs) were prepared and used as electrogenerated chemiluminescence (ECL) signal probe to construct aptasensor for ultrasensitive detection of thrombin (TB). Herein, [Ru(phen)(2)(cpaphen)](2+) linked N-(3-aminopropyl)methacrylamide and hollow gold nanoparticles functionalized N-(3-aminopropyl)methacrylamide were used as two polymer monomers to prepare pNAMA-Ru-HGNPs composites via free-radical polymerization. The obtained hydrogel composite, containing amount of Ru complex and HGNPs, were used as effective tag-carriers for the immobilization of thrombin binding aptamer II (TBA II) to form the pNAMA-Ru-HGNPs labeled TBA II (pNAMA-Ru-HGNPs-TBA II). For building the interface of the aptasensor, dendritic gold nanoparticles reduced by poly(ethyleneimine) (PEI@DGNPs) were modified on the carbon nanotube-nafion (CNTs-Nf) coated electrode through electrostatic adsorption, which was used not only as matrix for immobilization of thrombin binding aptamer I (TBA I) but also as enhancer to amplify the ECL signal because PEI is an efficient co-reactant of Ru complex. Target TB was sandwiched between pNAMA-Ru-HGNPs-TBA II and TBA I, resulting in the ECL signals relevant to the TB concentrations. Combining the novel pNAMA-Ru-HGNPs containing amount of Ru complex as the ECL signal probe and PEI@DGNPs as the enhancer for signal amplification, the sandwich ECL aptasensor was constructed for the detection of TB with a wide range of 1.0 fM to 10 pM and a low detection of 0.54 fM. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,制备了一种新型的Ru配合物和空心金纳米颗粒支化的聚(N-(3-氨基丙基)甲基丙烯酰胺)水凝胶复合物(pNAMA-Ru-HGNPs),并将其用作电化学发光(ECL)信号探针,以构建用于凝血酶(TB)的超灵敏检测。在此,使用[Ru(phen)(2)(cpaphen)](2+)连接的N-(3-氨基丙基)甲基丙烯酰胺和功能化的N-(3-氨基丙基)甲基丙烯酰胺空心金纳米颗粒作为两种聚合物单体,制备pNAMA- Ru-HGNPs通过自由基聚合反应合成。所获得的包含一定量的Ru复合物和HGNPs的水凝胶复合物用作固定凝血酶结合适体II(TBA II)的有效标签载体,以形成标记为TBA II的pNAMA-Ru-HGNPs(pNAMA-Ru-HGNPs-待定II)。为了建立适体传感器的界面,通过静电吸附在碳纳米管-nafion(CNTs-Nf)涂覆的电极上修饰了被聚(乙烯亚胺)(PEI @ DGNPs)还原的树状金纳米颗粒,该电极不仅用作固定基质的凝血酶结合适体I(TBA I),也可作为增强ECL信号的增强剂,因为PEI是Ru复合物的有效共反应物。目标结核被夹在pNAMA-Ru-HGNPs-TBA II和TBA I之间,产生与结核浓度相关的ECL信号。结合了新型的pNAMA-Ru-HGNPs,其中含有大量的Ru复合物作为ECL信号探针,PEI @ DGNPs作为信号放大增强剂,构建了三明治式ECL适体传感器,可检测范围为1.0 fM至10 pM的TB和0.54 fM的低检测。 (C)2015 Elsevier B.V.保留所有权利。

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