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AgBr 纳米颗粒/3D 氮掺杂石墨烯水凝胶用于构建全固态鲁米诺电化学发光大肠杆菌适体传感器。

AgBr nanoparticles/3D nitrogen-doped graphene hydrogel for fabricating all-solid-state luminol-electrochemiluminescence Escherichia coli aptasensors.

机构信息

Key Laboratory of Modern Agriculture Equipment and Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, PR China.

Key Laboratory of Modern Agriculture Equipment and Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, PR China.

出版信息

Biosens Bioelectron. 2017 Nov 15;97:377-383. doi: 10.1016/j.bios.2017.06.025. Epub 2017 Jun 13.

Abstract

It is necessary to develop rapid, simple and accurate detection method for Escherichia coli (E. coli) due to its widely distributed pathogenic bacteria. Herein, we prepared AgBr nanoparticles (NPs) anchored 3D nitrogen-doped graphene hydrogel (3DNGH) nanocomposites with an exceptionally large accessible surface by a simple hydrothermal approach. The as-prepared 3DNGH porous nanocomposite not only showed better conductivity than that of 3D graphene due to introducing nitrogen element into graphene framework, but also provided a high loading volume for immobilizing luminol. Meanwhile the anchored AgBr NPs served as the catalyst can effectively enhance the ECL behavior of luminol. And the resulting luminol/AgBr/3DNGH exhibited more excellent ECL performances, which was about 2, 3, 8 times enhanced respectively, comparing to luminol/AgBr/3DGH, luminol/3DNGH and luminol/AgBr/2DNG. Further, the multifunctional nanoarchitecture was used as the all-solid-state ECL platform for fabricating Escherichia coli aptasensors via glutaraldehyde as crosslinking agent between amine-functionalized E. coli aptamer and luminol/AgBr/3DNGH. Based on the steric hindrance mechanism that E.coli can significantly decrease the ECL intensity, the proposed aptasensor displayed a linear response for E.coli in the range from 0.5 to 500 cfu/mL with an extremely low detection limit of 0.17 cfu/mL (S/N). In addition, this ECL aptasensor possessed great advantages including the simple operation process, low-cost and sensitivity, which provided a promising approach for the E.coli detection in biomedical, food detection and environmental analysis.

摘要

由于广泛分布的病原菌,因此有必要开发快速、简单和准确的大肠杆菌(E. coli)检测方法。在此,我们通过简单的水热方法制备了具有大比表面积的 AgBr 纳米粒子(NPs)锚定的三维氮掺杂石墨烯水凝胶(3DNGH)纳米复合材料。所制备的 3DNGH 多孔纳米复合材料不仅由于氮元素引入到石墨烯骨架中而显示出比 3D 石墨烯更好的导电性,而且为固定鲁米诺提供了更大的负载体积。同时,锚定的 AgBr NPs 作为催化剂可以有效增强鲁米诺的 ECL 行为。所得的鲁米诺/AgBr/3DNGH 表现出更优异的 ECL 性能,与鲁米诺/AgBr/3DGH、鲁米诺/3DNGH 和鲁米诺/AgBr/2DNG 相比,分别增强了约 2、3、8 倍。此外,通过戊二醛作为胺功能化大肠杆菌适体和鲁米诺/AgBr/3DNGH 之间的交联剂,将多功能纳米结构用作全固态 ECL 平台来制备大肠杆菌适体传感器。基于大肠杆菌可以显著降低 ECL 强度的空间位阻机制,所提出的适体传感器在 0.5 至 500 cfu/mL 的范围内对大肠杆菌表现出线性响应,检测限低至 0.17 cfu/mL(S/N)。此外,该 ECL 适体传感器具有操作过程简单、成本低和灵敏度高等优点,为生物医学、食品检测和环境分析中的大肠杆菌检测提供了一种有前途的方法。

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