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基于 Ag@CuO 核壳亚微米粒子对 CdS QDs 敏化 TiO2 纳米片的双重抑制效应的心肌肌钙蛋白 I 超灵敏光电化学免疫传感器的构建。

Ultrasensitive photoelectrochemical immunosensor of cardiac troponin I detection based on dual inhibition effect of Ag@CuO core-shell submicron-particles on CdS QDs sensitized TiO nanosheets.

机构信息

School of Life Sciences, Shandong University of Technology, Zibo 255049, PR China.

School of Life Sciences, Shandong University of Technology, Zibo 255049, PR China.

出版信息

Biosens Bioelectron. 2018 Oct 15;117:340-346. doi: 10.1016/j.bios.2018.05.037. Epub 2018 May 24.

Abstract

Rapidity and high sensitivity are the critical factors for the diagnoses of heart attacks and cardiac troponin I (cTnI) is used as a gold standard marker for its diagnosis. To realize the accurate detection of cTnI, a novel ultrasensitive photoelectrochemical (PEC) immunosensor for cTnI determination was developed upon dual inhibition effect of Ag@CuO core-shell submicron-particles(SPs) toward CdS sensitized the (001) facets of anatase titanium dioxide nanosheets (TiO/CdS). In this study, the TiO/CdS composite not only indicated stable and excellent photoelectric signal but also provided abundant functional group to immobilized cTnI antibodies (Ab). To obtain the high sensitivity, Ag@CuO core-shell SPs were used as labels of the secondary antibodies (Ab), owning to competitive absorption of light and consumption of electron donor, less light energy and electron donors arrived at the TiO/CdS sensitization structure. Besides, the remarkable steric hindrance effect of Ag@CuO core-shell SPs labeled secondary antibodies (Ab) conjugates obstructed the transfer of electrons and diffusion of the electron donors to the photoelectrode surface, leading to further decrease of photocurrent. Therefore, the constructed immunosensor has an ultrasensitive response to cTnI in a liner range of 0.02 pg/mL to 50 ng/mL with a low detection limit of 6.7 fg/mL, and exhibits good sensitivity and admirable stability. Moreover, the strategy provided an efficient and novel approach for dual inhibition effect in PEC immunoassay development.

摘要

快速和高灵敏度是诊断心脏病和心肌肌钙蛋白 I (cTnI) 的关键因素,cTnI 被用作其诊断的金标准标志物。为了实现 cTnI 的准确检测,基于 Ag@CuO 核壳亚微米球(SPs)对 CdS 的双重抑制效应,开发了一种用于 cTnI 测定的新型超灵敏光电化学(PEC)免疫传感器。在这项研究中,TiO/CdS 复合材料不仅表现出稳定和优异的光电信号,而且提供了丰富的功能基团来固定 cTnI 抗体(Ab)。为了获得高灵敏度,Ag@CuO 核壳 SPs 被用作二级抗体(Ab)的标记物,由于光的竞争吸收和电子供体的消耗,到达 TiO/CdS 敏化结构的光能和电子供体减少。此外,Ag@CuO 核壳 SPs 标记的二级抗体(Ab)缀合物的显著空间位阻效应阻碍了电子的转移和电子供体向光电电极表面的扩散,导致光电流进一步降低。因此,所构建的免疫传感器对 cTnI 具有超灵敏的响应,线性范围为 0.02 pg/mL 至 50 ng/mL,检测限低至 6.7 fg/mL,表现出良好的灵敏度和令人钦佩的稳定性。此外,该策略为 PEC 免疫分析中双重抑制效应的发展提供了一种高效且新颖的方法。

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