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首页> 外文期刊>Bulletin of the Korean Chemical Society >Bio-functionalized Gold Naeoparticles for Surface-Plasmon-Absorption-Based Protein Detection
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Bio-functionalized Gold Naeoparticles for Surface-Plasmon-Absorption-Based Protein Detection

机译:生物功能化金纳米颗粒用于基于表面等离子体吸收的蛋白质检测

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摘要

Bio-functionalized gold nanoparticles (AuNPs), which bio-specifically interact with biotin-(strept)avidin, were investigated in this study. AuNPs were functionalized with a synthetically-provided biotin-linked thiol (BLT), which was synthesized by amidation of the active ester of biotin with 2-mercaptoethylamine. The BLT-attached AuNP was bio-specific for streptavidin, making it potentially useful for biosensor applications. To test the bio-specific interactions, the colors, absorption spectra and TEM images were investigated for proteins such as streptavidin, cytochrome C, myoglobin and hemoglobin. The colors and absorption spectra changed when streptavidin was added to the BLT-attached AuNP solution. However, the color and spectra did not change when the other proteins were added to the same solution. These results show that the AuNPs provided a colloidal solution with excellent stability and highly selective absorption characteristics for streptavidin as a target molecule. Proteins were also screened in order to identify a general strategy for the use of optical biosensing proteins based on AuNPs. In addition, TEM images confirmed that streptavidin led the BLT-attached AuNPs to aggregate or precipitate.
机译:在这项研究中,研究了生物功能化的金纳米粒子(AuNPs)与生物素(链)亲和素生物特异性相互作用。 AuNPs用合成提供的生物素连接的硫醇(BLT)功能化,后者是通过将生物素的活性酯与2-巯基乙胺酰胺化而合成的。附有BLT的AuNP对链霉亲和素具有生物特异性,使其潜在地可用于生物传感器应用。为了测试生物特异性相互作用,研究了蛋白质(例如链霉亲和素,细胞色素C,肌红蛋白和血红蛋白)的颜色,吸收光谱和TEM图像。当将链霉亲和素添加到附着BLT的AuNP溶液中时,颜色和吸收光谱发生了变化。但是,当其他蛋白质添加到同一溶液中时,颜色和光谱不变。这些结果表明,AuNP为作为目标分子的链霉亲和素提供了具有优异的稳定性和高选择性吸收特性的胶体溶液。还筛选了蛋白质,以鉴定使用基于AuNPs的光学生物传感蛋白质的一般策略。此外,TEM图像证实链霉亲和素导致BLT连接的AuNP聚集或沉淀。

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