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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >A highly sensitive label-free electrochemical immunosensor based on AuNPs-PtNPs-MOFs for nuclear matrix protein 22 analysis in urine sample
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A highly sensitive label-free electrochemical immunosensor based on AuNPs-PtNPs-MOFs for nuclear matrix protein 22 analysis in urine sample

机译:基于AUNPS-PTNPS-MOF的无敏感的无敏感的无敏感的电化学免疫传感器22尿液样品分析

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摘要

A reliable and non-invasive electrochemical immunosensor for nuclear matrix protein 22 (NMP22) was presented based on reduced graphene oxide-tetraethylenepentamine (rGO-TEPA) and gold nanoparticles-platinum nanoparticles-metal organic frameworks (AuNPs-PtNPs-MOFs) nanomaterial. rGO-TEPA is a promising template to enhance the loading ability of electrode for its large specific surface area and abundance in amino groups. AuNPs-PtNPs-MOFs nanomaterial was synthesized by NaBH4 reduction method and applied to immobilize biomolecules due to their good biocompatibility, well conductivity, and excellent H2O2 electrocatalytic ability. The electrochemical response signal was primarily originated from the obstruction of immobilized NMP22 antigen towards electrocatalytic reduction of H2O2 and the signal was recorded by differential pulse voltammetry. Under optimum conditions, the immunosensor showed a sensitive response towards NMP22 at a broad concentration range from 0.005 ng.mL(-1) to 20 ng.mL(-1). Two strong linear ranges could be observed at 0.005 ng.mL(-1) to 0.5 ng.mL(-1)(R-2 = 0.9833), and 0.5 ng.mL(-1) to 20 ng.mL(-1) (R-2 = 0.9909), with a low LOD of 1.7 pg.mL(-1)(S/N = 3). Satisfactory reproducibility, stability and selectivity were obtained for NMP22 detection in real urine samples compared with standard ELISA assay, demonstrating the good analytical performance and potential non-invasive clinical application of this label-free electrochemical immunosensor.
机译:基于还原的石墨烯氧化物 - 四亚乙基二胺(RGO-TEPA)和金纳米颗粒 - 铂纳米颗粒 - 金属有机骨架(AUNPS-PTNPS-MOF)纳米材料,给出了核基质蛋白22(NMP22)的可靠和非侵入式电化学免疫传感器(NMP22)。 RGO-TEPA是一个有希望的模板,以增强电极的装载能力,在其大的比表面积和氨基中的丰度。通过NaBH4还原方法合成Aumps-PTNPS-MOF纳米材料,并且由于它们的良好的生物相容性,孔导电性和优异的H2O2电催化能力而施加以固定生物分子。电化学响应信号主要来自固定的NMP22抗原朝向电催化还原H2O2的阻塞,并且通过差分脉冲伏安记录信号。在最佳条件下,免疫传感器在宽浓度范围为0.005ng.ml(-1)至20ng.ml(-1)的宽浓度范围内对NMP22的敏感反应显示。可以在0.005ng.ml(-1)至0.5ng.ml(-1)(R-2 = 0.9833)的0.005ng.ml(-1)至0.5ng.ml(-1)至20ng.ml(-1)时观察到两个强线性范围。(-1 )(R-2 = 0.9909),低床皂点为1.7 pg.ml(-1)(S / N = 3)。与标准ELISA测定相比,在实际尿液样本中的NMP22检测获得令人满意的再现性,稳定性和选择性,证明了这种无标准电化学免疫传感器的良好分析性能和潜在的非侵入性临床应用。

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