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Enhanced Photoelectrochemical Proximity Assay for Highly Selective Protein Detection in Biological Matrixes

机译:用于生物基质中高选择性蛋白质检测的增强型光电化学邻近测定

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This work proposes the first photoelectrochemical proximity assay (PECPA) method via the sensitization of CdTe quantum dots (QDs) on photoelectrochemical response of ITO/TiO2/CdS electrode for highly selective and sensitive detection of proteins. This detection was performed on a sensing interface-formed via the hybridization of capture DNA immobilized on,ITO/TiO2/CdS electrode with labeled antibody-DNA :(DNA-Abl). Upon the recognition of Abl to target protein, the,immunocomplex of DNA-Abl, target, and the detection antibody,-DNA (DNA-Ab2) was formed; which led to the proximity hybridization of the DNA in DNA-Ab2, capture DNA, and signal DNA-CdTe QDs, and brought CdTe QDs to the ITO/TiO2/CdS electrode to produce a sensitized photocurrent. The photocurrent intensity increased With the increasing concentration of the specific target protein. Using insulin as a target, this sensitized method showed a detectable range of 10 fM to 10 nM and a detection limit of 3:0 fM without the need of a washing step. It possessed high selectivity and,good accuracy for detection Of proteins in biological matrixes. This method is extremely flexible and can be extended to varieties of protein targets.
机译:这项工作提出了第一个光电化学接近分析法(PECPA),该方法通过CdTe量子点(QDs)对ITO / TiO2 / CdS电极的光电化学反应的敏化作用来实现对蛋白质的高度选择性和灵敏检测。该检测在通过固定在ITO / TiO2 / CdS电极上的捕获DNA与标记的抗体-DNA:(DNA-Abl)杂交形成的传感界面上进行。一旦识别出Abl为靶蛋白,就形成了DNA-Abl,靶标和检测抗体-DNA(DNA-Ab2)的免疫复合物。这导致DNA在DNA-Ab2中的接近杂交,捕获DNA和信号DNA-CdTe QD,并将CdTe QD带到ITO / TiO2 / CdS电极以产生敏化的光电流。随着特定靶蛋白浓度的增加,光电流强度增加。使用胰岛素作为靶标,这种敏化方法无需清洗即可显示10 fM至10 nM的可检测范围和3:0 fM的检测限。它具有很高的选择性,并且对生物基质中蛋白质的检测具有良好的准确性。该方法非常灵活,可以扩展到多种蛋白质靶标。

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