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通过电置换反应制备的等离子体生物传感器,用于实时监测生物分子相互作用。

Plasmonic biosensors fabricated by galvanic displacement reactions for monitoring biomolecular interactions in real time.

机构信息

Institute of Chemistry, University of Potsdam, Karl-Liebknecht-Straße 24-25, 14476, Potsdam, Germany.

Fraunhofer Institute for Applied Polymer Research IAP, Biofunctionalized Materials and (Glyco)Biotechnology, Geiselbergstraße 69, 14476, Potsdam, Germany.

出版信息

Anal Bioanal Chem. 2020 May;412(14):3433-3445. doi: 10.1007/s00216-020-02414-0. Epub 2020 Jan 31.

Abstract

Optical sensors are prepared by reduction of gold ions using freshly etched hydride-terminated porous silicon, and their ability to specifically detect binding between protein A/rabbit IgG and asialofetuin/Erythrina cristagalli lectin is studied. The fabrication process is simple, fast, and reproducible, and does not require complicated lab equipment. The resulting nanostructured gold layer on silicon shows an optical response in the visible range based on the excitation of localized surface plasmon resonance. Variations in the refractive index of the surrounding medium result in a color change of the sensor which can be observed by the naked eye. By monitoring the spectral position of the localized surface plasmon resonance using reflectance spectroscopy, a bulk sensitivity of 296 nm ± 3 nm/RIU is determined. Furthermore, selectivity to target analytes is conferred to the sensor through functionalization of its surface with appropriate capture probes. For this purpose, biomolecules are deposited either by physical adsorption or by covalent coupling. Both strategies are successfully tested, i.e., the optical response of the sensor is dependent on the concentration of respective target analyte in the solution facilitating the determination of equilibrium dissociation constants for protein A/rabbit IgG as well as asialofetuin/Erythrina cristagalli lectin which are in accordance with reported values in literature. These results demonstrate the potential of the developed optical sensor for cost-efficient biosensor applications. Graphical abstract.

摘要

采用新鲜刻蚀的氢终止多孔硅还原金离子来制备光学传感器,并研究其特异性检测蛋白 A/兔 IgG 与去唾液酸胎球蛋白/豆科植物凝集素结合的能力。该制造工艺简单、快速且可重复,不需要复杂的实验室设备。硅上形成的纳米结构金层基于局域表面等离子体共振的激发,在可见光范围内表现出光学响应。周围介质折射率的变化导致传感器的颜色发生变化,可以用肉眼观察到。通过使用反射光谱监测局域表面等离子体共振的光谱位置,确定了 296nm±3nm/RIU 的体灵敏度。此外,通过适当的捕获探针对传感器表面进行功能化,赋予其对目标分析物的选择性。为此,生物分子通过物理吸附或共价偶联沉积。这两种策略都经过了成功的测试,即传感器的光学响应取决于溶液中相应目标分析物的浓度,这有利于确定蛋白 A/兔 IgG 以及去唾液酸胎球蛋白/豆科植物凝集素的平衡解离常数,与文献中报道的值一致。这些结果表明,所开发的光学传感器具有用于经济高效的生物传感器应用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/965a/7214386/bb6591d4b205/216_2020_2414_Figa_HTML.jpg

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