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A novel photoelectrochemical immunosensor for prion protein based on CdTe quantum dots and glucose oxidase

机译:基于CDTE量子点和葡萄糖氧化酶的朊病毒蛋白新颖的光电化学免疫传感器

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In this work, a simple and "signal-off" photoelectrochemical (PEC) immunosensor for prion protein detection was developed taking 3-Mercaptopropionic acid (MPA)-capped CdTe quantum dots as photocathodic materials and support for the immobilization of antibody (Ab(1)) of prion protein. In the presence of prion protein, the bioconjugates of secondary antibody (Ab(2))-gold nanoparticles-glucose oxidase (Ab(2)-AuNPs-GOx) was introduced to the electrode surface due to the specific interaction between prion and its antibodies (Ab(1) and Ab(2)). Under the addition of glucose, GOx catalyzed the oxidation of glucose and the reduction of the dissolved oxygen to in-situ generates hydrogen peroxide which could deteriorate the PEC properties of MPA-CdTe quantum dots. The consumption of the dissolved oxygen and the deterioration of the PEC properties of the photocathodic materials (MPA-CdTe quantum dots) result in the decrease of the photocurrent of the PEC platform. Under the optimal conditions, the developed PEC immunosensor could be used for sensitive assay of prion protein and showed two linear response ranges from 1 pg mL(-1) to 50 pg mL(-1) and from 50 pg mL(-1) to 1000 pg mL(-1) with the detection limit of 0.73 pg mL(-1) (3 sigma). Moreover, this method could be easily generalized for the assay of other proteins by altering the related antibodies, implying its promising applications in bioanalysis and disease diagnostics.
机译:在这项工作中,朊病毒蛋白质检测的简单和“信号关”光电化学(PEC)免疫传感器是用3-巯基丙酸(MPA)的CDTE量子点作为光阴离子材料,并支持固定抗体(AB(1 ))朊病毒蛋白质。在朊病毒蛋白质存在下,由于朊病毒与其抗体之间的特异性相互作用,将二抗(AB(2)) - 金纳米颗粒 - 葡萄糖氧化酶(AB(2)-aUnps-Gox)引入电极表面的生物缀合物(ab(1)和ab(2))。在添加葡萄糖的下,GOX催化葡萄糖的氧化和溶解氧对原位的还原产生过氧化氢,其可能劣化MPA-CDTE量子点的PEC性质。溶解氧的消耗和光致疗法物质(MPA-CDTE量子点)的PEC性质的劣化导致PEC平台的光电流降低。在最佳条件下,发育的PEC免疫传感器可用于朊病毒蛋白的敏感测定,并显示出从1pg ml(-1)至50pg ml(-1)和50pg ml(-1)的两个线性响应范围。 1000 pg ml(-1)检测限为0.73pg ml(-1)(3 sigma)。此外,通过改变相关抗体,可以容易地将该方法容易地推广其他蛋白质,这意味着其在生物分析和疾病诊断中的有前途的应用。

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