首页> 外文会议>2010 International conference on nano science and technology. >A Renewable Amperometric Immunosensor for hs-CRP Based on Functionalized Fe3O4@Au Magnetic Nanoparticles Attracted on Fe(III) Phthlocyanine/Chitosan-membrane Modified Screen-printed Carbon Electrode By A Magnet
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A Renewable Amperometric Immunosensor for hs-CRP Based on Functionalized Fe3O4@Au Magnetic Nanoparticles Attracted on Fe(III) Phthlocyanine/Chitosan-membrane Modified Screen-printed Carbon Electrode By A Magnet

机译:基于Fe(III)酞菁/壳聚糖膜修饰的丝网印刷碳电极吸附功能化Fe3O4 @ Au磁性纳米粒子的基于hs-CRP的可更新安培免疫传感器。

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摘要

A novel disposable screen-printed immunosensor for rapid determination of highly sensitive C reactiveprotein (hs-CRP) in human serum has been developed in the experiment The sensor was constructed on one screen-printed carbon electrode (SPCE) with HRP labeled anti-hs-CRP antibody functionalized Fe3O4@Au magnetic nanoparticles (HRP labeled anti hs-CRP/Fe3O4@Au) as the biorecognition probes attracted on the surface of Fe (III) phthalocyanine (FePc)/chitosan membrane modified screen-printed carbon electrode (SPCE|FePc/Chit/chitosan) by external magnetic field. FePc was acted as electron immediate. The modified electrode shows an excellent electrocatalytic activity for hs-CRP in phosphate buffer solution (pH=7.0). After the immunosensor is incubated with hs-CRP antigen solution at 37℃ for 20 min, the access of activity center of the HRP to electrode is partly inhibited, which leads to a linear decrease of the catalytic efficiency of the HRP to the reduction of immobilized FePc by H2O2 at -SO mV in hs-CRP's concentration ranges from 1.2 to 200 ng/mL. The detection limit was 0.5 ng/mL. The immunosensor was successfully utilized for determination of hs-CRP in real serum samples of heart disease patients, whose results were consistent with that by ELISA method. The accuracy and precision of the assay were 91.5104.4% and 15.8-24.4%, respectively. The immunosensor was reusable once constructed and can be regenerated by adding new nanoprobes on the surface of basal electrode through magnet on its bottom. It can greatly reduce the detection cost which is valuable for the early diagnosis of tumors.
机译:实验中开发了一种新型的一次性丝网印刷免疫传感器,用于快速测定人血清中的高灵敏度C反应蛋白(hs-CRP)。该传感器在一个丝网印刷的碳电极(SPCE)上构建,并带有HRP标记的抗hs- CRP抗体功能化的Fe3O4 @ Au磁性纳米颗粒(HRP标记为抗hs-CRP / Fe3O4 @ Au)作为生物识别探针,被Fe(III)酞菁(FePc)/壳聚糖膜修饰的丝网印刷碳电极(SPCE | FePc)吸引/ Chit / chitosan)。 FePc充当电子即时物。修饰的电极在磷酸盐缓冲溶液(pH = 7.0)中对hs-CRP具有优异的电催化活性。将免疫传感器与hs-CRP抗原溶液在37℃温育20分钟后,HRP活性中心对电极的进入受到部分抑制,这导致HRP催化效率线性下降,从而固定化程度降低Hs-CRP浓度为-SO mV时,H2O2产生的FePc浓度为1.2至200 ng / mL。检出限为0.5 ng / mL。该免疫传感器已成功用于心脏病患者实际血清中hs-CRP的测定,其结果与ELISA法一致。测定的准确性和精密度分别为91.5104.4%和15.8-24.4%。该免疫传感器一旦构建便可以重复使用,并且可以通过底部电极上的磁体在基础电极表面添加新的纳米探针来进行再生。它可以大大降低检测成本,这对于肿瘤的早期诊断是有价值的。

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