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Construction of portable electrochemical immunosensors based on graphene hydrogel@polydopamine for microcystin-LR detection using multi-mesoporous carbon sphere-enzyme labels

机译:基于石墨烯水凝胶@聚二胺用于微胱氨酸-LR检测的便携式电化学免疫传感器的构建,使用多辅碳球酶 - 酶酶标签

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As one of the most common toxins of the toxigenic Cyanobacteria , microcystin-LR (MC-LR) has raised global concerns in water monitoring, environmental detection, toxicology research and epidemiology research. In this work, a portable electrochemical MC-LR immunosensor was fabricated for the detection of MC-LR. Firstly, graphene hydrogel@polydopamine (GH@PDA) was prepared by self-polymerization of dopamine on graphene oxide, followed by a hydrothermal reaction. The modification of polydopamine (PDA) not only acts as an important modifier of the inner structure of the hydrogel, but can also prevent graphene aggregation during further treatments. The transformation to GH@PDA by the hydrothermal reaction was a green synthesis, and this process can be also used to capture biomolecules based on nucleophilic reactions or Schiff base reactions between the catechol groups of PDA and the amino groups of antigens. Secondly, mesoporous carbon spheres, which were loaded with thionine as the electron mediator followed by captured Au nanoparticles, were used to immobilize horseradish peroxidase and secondary antibodies, providing a strong electrochemical response. Using this dual-amplification strategy, the immunosensor can detect MC-LR as a competitive method in the range from 0.01 to 10 μg L ~(?1) , with a detection limit of 0.0097 μg L ~(?1) . This method also showed good accuracy, acceptable precision and reproducibility. The proposed strategy provides biocompatible immobilization and sensitive recognition for the detection of chemical compounds, pollutants and food contaminants and for clinical diagnosis.
机译:作为毒性毒性毒素最常见的毒素之一,微囊藻(MC-LR)在水监测,环境检测,毒理学研究和流行病学研究中提高了全球担忧。在这项工作中,制造了一种便携式电化学MC-LR免疫传感器,用于检测MC-LR。首先,通过在氧化石墨烯的多巴胺自聚聚,然后进行水热反应,制备石油水凝胶@聚二胺(GH @ PDA)。聚二胺(PDA)的改性不仅是水凝胶内部结构的重要改性,而且还可以在进一步处理过程中预防石墨烯聚集。通过水热反应转化为GH @ PDA是一种绿色合成,并且该方法也可用于捕获基于所述PDA的儿茶酚基团与抗原的氨基之间的亲核反应或Schiff基础反应的生物分子。其次,用胞嘧啶作为电子介体加载的介孔碳球,然后被捕获的Au纳米颗粒固定,以固定辣根过氧化物酶和二抗,提供强的电化学反应。使用这种双扩增策略,免疫传感器可以检测MC-LR作为竞争方法,其范围为0.01至10μgL〜(α1),检测限为0.0097μgL〜(α1)。该方法还显示出良好的准确性,可接受的精度和再现性。该拟议的策略为检测化学化合物,污染物和食品污染物和临床诊断提供了生物相容性的固定和敏感性识别。

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