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首页> 外文期刊>Analytical chemistry >Electrochemical and Raman studies of the biointeraction between Escherichia coli and mannose in polydiacetylene derivative supported on the self-assembled monolayers of octadecanethiol on a gold electrode
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Electrochemical and Raman studies of the biointeraction between Escherichia coli and mannose in polydiacetylene derivative supported on the self-assembled monolayers of octadecanethiol on a gold electrode

机译:电化学和拉曼法研究金电极上十八烷硫醇自组装单层负载的聚二乙炔衍生物中大肠杆菌和甘露糖之间的生物相互作用

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摘要

Here, we describe a new method to study the biointeraction between Escherichia coli and mannose by using supramolecular assemblies composed of polydiacetylene supported on the self-assembled monolayer of octadecanethiol on a gold electrode. These prepared bilayer materials simply are an excellent protosystem to study a range of important sensor-related issues. The experimental results from UV-vis spectroscopy, resonance Raman spectroscopy, and electrochemistry confirm that the specific interactions between E. coli and mannose can cause conformational changes of the polydiacetylene backbone rather than simple nonspecific adsorption. Moreover, the direct electrochemical detection by polydiacetylene supramolecular assemblies not only opens a new path for the use of these membranes in the area of biosensor development but also offers new possibilities for diagnostic applications and screening for binding ligands. [References: 45]
机译:在这里,我们描述了一种新的方法,通过使用由聚二乙炔组成的超分子组装体支撑在金电极上十八烷硫醇的自组装单分子膜上,研究大肠杆菌和甘露糖之间的生物相互作用。这些准备好的双层材料完全是研究一系列重要的传感器相关问题的出色原型系统。紫外可见光谱,共振拉曼光谱和电化学的实验结果证实,大肠杆菌和甘露糖之间的特异性相互作用可以引起聚二乙炔骨架的构象变化,而不是简单的非特异性吸附。而且,通过聚二乙炔超分子组装体的直接电化学检测不仅为在生物传感器开发领域中使用这些膜开辟了一条新途径,而且为诊断应用和结合配体的筛选提供了新的可能性。 [参考:45]

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