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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A novel signal-on photoelectrochemical immunosensor for detection of alpha-fetoprotein by in situ releasing electron donor
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A novel signal-on photoelectrochemical immunosensor for detection of alpha-fetoprotein by in situ releasing electron donor

机译:一种新型信号光电化学免疫传感器,用于通过原位释放电子供体检测α-胎蛋白

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摘要

A signal-on photoelectrochemical (PEC) immunosensor was constructed for detecting tumor marker in this work. alpha-fetoprotein (AFP) was chosen as a model analyte to investigate the prepared procedure and the analytical performance of the exploited sensor. In order to construct the sensor, CdSe QDs were used as photoactive material, biotin conjugated AFP antibody (Bio-anti-AFP) as detecting probe, streptavidin (SA) as signal capturing unit, biotin functionalized apoferritin encapsulated ascorbic acid (Bio-APOAA) as amplification unit, which were assembled onto the electrodes. The sensing strategy was based on in situ enzymatic hydrolysis of Bio-APOAA to release ascorbic acid (AA) as sacrificial electron donor to produce photocurrent. The photocurrent from the immunosensor was monitored as a result of AFP concentrations. The constructed sensing platform displayed high selectivity and good sensitivity for detecting AFP. Under optimal conditions, a wide linear range from 0.001 to 1000 ng/mL and a low detection limit of 0.31 pg/mL were obtained. The developed immunosensor is expected to be used to determine AFP and other tumor markers in human plasma in clinical laboratories either for pre-cancer screening or cancer monitoring. Moreover, this sensing platform further has the potential to use for the detection of trypsin activity and the corresponding inhibitor-screening.
机译:构建用于检测这项工作中的肿瘤标志物的信号 - 上的光电化学(PEC)免疫传感器。选择α-胎蛋白(AFP)作为模型分析物,以研究制备的程序和利用传感器的分析性能。为了构建传感器,CDSE QDS用作光活性材料,生物素缀合的AFP抗体(Bio-anti-AFP)作为检测探针,链霉抗生物素蛋白(SA)作为信号捕获单元,生物素官能化植物蛋白包封抗坏血酸(Bio-apoaa)作为组装到电极上的放大单元。感测策略基于Bio-apoaa的原位酶水解,以释放抗坏血酸(AA)作为牺牲电子给体以产生光电流。根据AFP浓度监测免疫传感器的光电流。构造的传感平台显示出高选择性和对检测AFP的良好灵敏度。在最佳条件下,获得0.001至1000ng / ml的宽线性范围和0.31pg / ml的低检测限。预计发育的免疫传感器将用于测定临床实验室中的人血浆中的AFP和其他肿瘤标志物,用于癌症前筛查或癌症监测。此外,该感测平台还具有用于检测胰蛋白酶活性和相应抑制剂筛选的可能性。

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