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Network nanostructured polypyrrole hydrogel/Au composites as enhanced electrochemical biosensing platform

机译:网络纳米结构的聚吡咯水凝胶/金复合材料作为增强的电化学生物传感平台

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摘要

In this work, a new network nanocomposite composed of polypyrrole hydrogel (PPy hydrogel) loaded gold nanoparticles (AuNPs) was prepared. The PPy hydrogel was directly synthesized by mixing the pyrrole monomer and phytic acid, and the mixed solution can be gelated to form hydrogel at once. The three-dimensional network nanostructured PPy hydrogel not only provided a greater effective surface area for increasing the quantity of immobilized biomolecules and facilitated the transport of electrons and ions, but also exhibited an improved conductivity. Meanwhile, the electrodeposited AuNPs on the PPy hydrogel can further increase the specific surface area to capture a large amount of antibodies as well as improve the capability of electron transfer. The network PPy hydrogel/Au nanocomposites were successfully employed for the fabrication of a sensitive label-free amperometric immunosensor. Carcinoembryonic antigen (CEA) was used as a model protein. The proposed immunosensor exhibited a wide linear detection range from 1?fg mL?1 to 200?ng mL?1, and an ultralow limit of detection of 0.16?fg mL?1 (S/N?=?3), and it also possessed good selectivity. Moreover, the detection of CEA in ten human serums showed satisfactory accuracy compared with the data determined by ELISA, indicating that the immunosensor provided potential application for clinical diagnosis.
机译:在这项工作中,制备了由聚吡咯水凝胶(PPy水凝胶)负载的金纳米颗粒(AuNPs)组成的新型网络纳米复合材料。 PPy水凝胶是通过将吡咯单体和植酸混合而直接合成的,并且混合的溶液可以立即凝胶化以形成水凝胶。三维网络纳米结构的PPy水凝胶不仅提供了更大的有效表面积来增加固定化的生物分子的数量,并促进了电子和离子的传输,而且还表现出了改善的电导率。同时,在PPy水凝胶上电沉积的AuNPs可以进一步增加比表面积以捕获大量抗体,并提高电子转移的能力。网络PPy水凝胶/金纳米复合材料已成功用于制造敏感的无标记的电流型免疫传感器。癌胚抗原(CEA)用作模型蛋白。所提出的免疫传感器具有从1?fg mL ?1 到200?ng mL ?1 的宽线性检测范围,以及0.16?fg mL < sup>?1 (S / N?=?3),并且具有良好的选择性。此外,与ELISA测定的数据相比,在十个人类血清中检测到的CEA表现出令人满意的准确性,这表明该免疫传感器为临床诊断提供了潜在的应用。

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