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Label-free Electrochemiluminescent Immunosensor for Detection of Prostate Specific Antigen based on Aminated Graphene Quantum Dots and Carboxyl Graphene Quantum Dots

机译:基于胺化石墨烯量子点和羧基石墨烯量子点检测前列腺特异性抗原的无标记电化学升免疫传感器

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Prostate-specific antigen (PSA) was used as the model, an ultrasensitive label-free electrochemiluminescent immunosensor was developed based on graphene quantum dots. Au/Ag-rGO was sythsized and used as electrode material to load a great deal of graphene quantum dots due to the large surface area and excellent electron conductivity. After aminated graphene quantum dots and acarboxyl graphene quantum dots were modified onto the electrode, the ECL intensity was much high using K2S2O8 as coreactant. Then, antibody of PSA was immobilized on the surface of modified electrode surface through the adsorption of Au/Ag toward proteins, leading to the decrease of the ECL intensity. As proven by ECL spectra test and electrochemical impedance spectroscopy (EIS) analysis, the fabrication process of the immunosensor is successful. Under the optimal conditions, the ECL intensity decreased linearly with the logarithm of PSA concentration in the range of 1?pg/mL?~?10?ng/mL. The detection limit achieved is 0.29?pg/mL. The immunosensor results were validated through the detection of PSA in serum samples with satisfactory results. Due to excellent stability, high sensitivity, acceptable repeatability and selectivity, the immunosensor has promising applications in disease and drug analysis.
机译:使用前列腺特异性抗原(PSA)作为模型,基于石墨烯量子点开发超敏感的无抗标签电化学荧光免疫传感器。 Au / Ag-rgo是Sythisized并用作电极材料,以负载由于大表面积和优异的电子传导性而导致的石墨烯量子点。将胺化石墨烯量子点和亚羧基石墨烯量子点进行修饰到电极上,使用K2S2O8作为固件将ECL强度高得多。然后,通过吸附Au / Ag对蛋白质,将PSA的抗体固定在改性电极表面的表面上,导致ECL强度的降低。通过ECL光谱测试和电化学阻抗光谱(EIS)分析,免疫传感器的制造过程是成功的。在最佳条件下,ECL强度随着PSA浓度的对数而在1×PG / ml·〜〜10?NG / mL的范围内线性降低。所达到的检测限为0.29≤pg/ ml。通过在血清样品中检测PSA具有令人满意的结果,验证免疫传感器结果。由于优异的稳定性,高灵敏度,可接受的可重复性和选择性,免疫传感器在疾病和药物分析中具有希望的应用。

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