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Coreactant-Free and Label-Free Eletrochemiluminescence Immunosensor for Copeptin Based on Luminescent Immuno-Gold Nanoassemblies

机译:基于发光免疫金纳纳米杆菌的Copeptin,无菌和无标记的Eletrochemil发光免疫传感器

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In this work, the eletrochemiluminescence (ECL) behavior of Cu~(2+)/cysteine complexes and N -(aminobutyl)-N -(ethylisoluminol) (ABEI) functionalized gold nanoparticles combined with chitosan (Cu~(2+)-Cys-ABEI-GNPs-CS) were studied by cyclic voltammetry and a double-step potential, which exhibited excellent ECL properties without any coreactant. It was found that the ECL intensity of Cu~(2+)-Cys-ABEI-GNPs-CS could increase at least 1 order of magnitude compared with that of Cu~(2+)-Cys-ABEI-GNPs. Furthermore, a coreactant-free and label-free ECL immunosensor has been established for the determination of early acute myocardial infarction biomarker copeptin based on luminescent immuno-gold nanoassemblys consisting of Cu~(2+)-Cys-ABEI-GNPs-CS and immuno-gold nanoparticles prepared by connecting copeptin antibody with trisodium citrate stabilized gold nanoparticles. In the presence of copeptin, an obvious decrease in ECL intensity was observed due to the formation of antibody–antigen immunocomplex, which could be used for the determination of copeptin in the range of 2.0 × 10~(–14)–1.0 × 10~(–11) mol/L with a detection limit of 5.18 × 10~(–15) mol/L. The detection limit of the ECL immunosensor is at least 2 orders of magnitude lower than that of sandwich immunoassays based on labeling technology. Also, the ECL immunosensor does not need any coreactant and avoids complicated labeling and purification procedure. It is ultrasensitive, simple, specific, and low-cost. This work reveals that the proposed luminescent immuno-gold nanoassemblies are ideal nanointerfaces for the construction of immunosensors. The proposed strategy may be used for the determination of other antigens if corresponding antibodies are available.
机译:在这项工作中,Cu〜(2 +)/半胱氨酸配合物的Eletrochemil发光(ECL)行为和 N - (氨基丁基) - N - (乙基异醇)官能化金纳米颗粒与壳聚糖组合(Cu〜 (2 +) - 通过循环伏安法和双步电位研究了Cys-Abei-GNPS-CS,其在没有任何固件的情况下表现出优异的ECL性能。结果发现,与Cu〜(2 +) - Cys-Abei-GNP相比,Cu〜(2 +) - Cys-Abei-GNPS-CS的ECL强度可以增加至少1个级数。此外,已经建立了一种无菌和无标记的ECL免疫传感器,用于基于由Cu〜(2 +) - Cys-Abei-GNPS-CS和免疫组成的发光免疫金纳纳米植物的早期急性心肌梗死生物标志物Copeptin通过将Capeptin抗体与柠檬酸三钠稳定的金纳米颗粒连接来制备的纳米颗粒。在癌蛋白的存在下,由于形成抗体 - 抗原免疫激活,观察到ECL强度的明显降低,其可用于测定2.0×10〜(-14)-1.0×10〜的癌蛋白的测定(-11)MOL / L检测限为5.18×10〜(-15)mol / l。基于标记技术的夹层免疫测定的至少2个数量级的检测限。此外,ECL免疫传感器不需要任何固定剂,避免复杂的标记和纯化程序。它是超敏,简单,特异性和低成本。这项工作揭示了所提出的发光免疫金纳布林植物是用于施工免疫传感器的理想纳米坯料。如果可获得相应的抗体,所提出的策略可用于确定其他抗原。

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  • 来源
    《Analytical chemistry》 |2018年第10期|共7页
  • 作者单位

    CAS Key Laboratory of Soft Matter Chemistry iChEM (Collaborative Innovation Center of Chemistry for Energy Materials) Department of Chemistry University of Science and Technology of China Hefei Anhui 230026 China;

    CAS Key Laboratory of Soft Matter Chemistry iChEM (Collaborative Innovation Center of Chemistry for Energy Materials) Department of Chemistry University of Science and Technology of China Hefei Anhui 230026 China;

    CAS Key Laboratory of Soft Matter Chemistry iChEM (Collaborative Innovation Center of Chemistry for Energy Materials) Department of Chemistry University of Science and Technology of China Hefei Anhui 230026 China;

    CAS Key Laboratory of Soft Matter Chemistry iChEM (Collaborative Innovation Center of Chemistry for Energy Materials) Department of Chemistry University of Science and Technology of China Hefei Anhui 230026 China;

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  • 正文语种 eng
  • 中图分类 分析化学;
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