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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A surface plasmon resonance enhanced photoelectrochemical immunoassay based on perovskite metal oxide@gold nanoparticle heterostructures
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A surface plasmon resonance enhanced photoelectrochemical immunoassay based on perovskite metal oxide@gold nanoparticle heterostructures

机译:基于Perovskite金属氧化物的表面等离子体共振增强的光电化学免疫测定@金纳米粒子异质结构

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摘要

An innovative visible light-driven photoelectrochemical (PEC) immunosensing system was reasonably established for the sensitive detection of prostate-specific antigen (PSA) by using perovskite metal oxide@gold nanoparticle heterostructures (BaTiO3/Au) as the photoactive materials. When plasmonic Au nanoparticles were directly decorated on BaTiO3, a several times surface plasmon resonance (SPR) enhancement of photocurrent density was induced via the injection of hot electrons from visible light-excited Au nanoparticles into the conduction band of BaTiO3, and the combination of BaTiO3 and Au nanoparticles was employed as a promising platform for developing a photoelectrochemical bioanalysis. As a proof of concept, PSA had been detected by the BaTiO3/Au nanocomposite-based PEC sensor. To design such an immunoassay protocol, a monoclonal anti-PSA capture antibody (cAb)-coated microplate and glucose oxidase/polyclonal anti-PSA detection antibody-modified gold nanoparticles (GOx-Au NP-dAb) were used as the immunoreaction platform and signal probe, respectively. Upon the addition of target PSA, a sandwiched immunocomplex was formed accompanying the immuno-recognition between the antigen and antibody, and then the carried GOx could oxidize glucose to produce H2O2. The photocurrent of the BaTiO3/Au nanocomposite-functionalized electrode amplified with increasing H2O2 concentration since H2O2 is considered as a good hole scavenger. On the basis of the above-mentioned mechanisms and the optimized conditions, the assembled PEC immunosensor was linear with the logarithm of the PSA concentration in the range of 0.01-40 ng mL(-1) with a detection limit of 4.2 pg mL(-1). It afforded rapid response, good precision, and high stability and specificity, implying its great promise in photoelectrochemical immunoassays. More generally, this system sets up an ideal PEC immunosensing system based on the BaTiO3/Au nanocomposites and represents an innovative and low-cost "signal-on" assay sch
机译:通过使用钙钛矿金属氧化物@金纳米粒子异质结构(BATIO3 / Au)作为光活性材料,合理地建立了一种创新的可见光抗驱动光电化学(PEC)免疫电化学(PEC)免疫抑制系统。当等离子体Au纳米颗粒在BATIO3上直接装饰时,通过从可见光激发的Au纳米粒子的热电子注入到BATIO3的传导和BATIO3的组合中,诱导了多次表面等离子体共振(SPR)增强光电流密度的增强,以及BATIO3的组合和Au纳米颗粒作为开发光电化学生物分析的有希望的平台。作为概念证明,PSA由基于BATIO3 / Au纳米复合材料的PEC传感器检测。为了设计这种免疫测定方案,使用单克隆抗PSA捕获抗体(驾驶室) - 涂覆的微孔板和葡萄糖氧化酶/多克隆抗PSA检测抗体改性的金纳米颗粒(GOX-AU NP-DAB)作为免疫反应平台和信号探针分别。在添加靶PSA时,伴随抗原和抗体之间的免疫识别形成夹层的免疫蛋白,然后携带的GOX可以氧化葡萄糖以产生H 2 O 2。增强H2O2浓度的BATIO3 / Au纳米复合官能化电极的光电流,因为H2O2浓度增加,因为H 2 O 2被认为是良好的孔清除剂。在上述机制和优化条件的基础上,组装的PEC免疫传感器与0.01-40 ng ml(-1)的浓度的对数为4.2pg ml( - 1)。它提供了快速的反应,良好的精度和高稳定性和特异性,暗示了光电化学免疫测定中的巨大希望。更一般地说,该系统基于BATIO3 / AU纳米复合材料建立了理想的PEC免疫抑制系统,代表了一种创新和低成本的“信号-NOP”的ASSay SCH

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