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首页> 外文期刊>Chemistry, an Asian journal >Sensitive Detection of Small Molecule-Protein Interactions on a Metal-Insulator-Metal Label-Free Biosensing Platform
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Sensitive Detection of Small Molecule-Protein Interactions on a Metal-Insulator-Metal Label-Free Biosensing Platform

机译:敏感性检测金属绝缘体 - 金属标签生物传感平台上的小分子 - 蛋白质相互作用

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The need to develop labelfree biosensing devices that enable rapid analyses of interactions between small molecules/peptides and proteins for post-genomic studies has increased significantly. We report a simple metalinsulator-metal (MIM) geometry for fabricating a highly sensitive detection platform for biosensing. MIM substrates consisting of an Au-PMMA-Ag nanolayer were extensively studied using both theoretical and experimental approaches. By monitoring reflectivity changes at the normal incidence angle, we observed molecular interactions as the thickness of the biolayer increased on the substrate surface. These interactions included the adsorption of various proteins (Mw velence 6150 kD) and interactions between small molecules (Mw <= 2 kD) and the immobilized proteins. The interaction of designed monosaccharide-modified designed peptides with various lectins was also clearly detected. These interactions could not be detected by the conventional Au-only substrate. Thus, the MIM approach affords a powerful label-free biosensing device that will aid our understanding of protein interactions and recognition.
机译:需要开发Labelfree生物传感装置,该装置能够快速分析小分子/肽和后基因组研究的蛋白质之间的相互作用显着增加。我们报告了一种简单的金属化 - 金属(MIM)几何形状,用于制造用于生物传感的高敏感的检测平台。使用理论和实验方法广泛地研究由AU-PMMA-AG纳米层组成的MIM底物。通过监测正常入射角的反射率变化,我们观察到分子相互作用随着BIOLayer的厚度在基板表面上增加。这些相互作用包括对各种蛋白质(MW Velence 6150kd)的吸附和小分子(Mw <= 2kd)和固定蛋白之间的相互作用。还清楚地检测到设计的单糖改性设计肽的相互作用。传统的AU基板无法检测到这些相互作用。因此,MIM方法提供了一种强大的无标签的生物传感装置,可以帮助我们理解蛋白质相互作用和识别。

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