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Insights into the Interactions of Amino Acids and Peptides with Inorganic Materials Using Single-Molecule Force Spectroscopy

机译:使用单分子力谱技术洞察氨基酸和多肽与无机材料的相互作用

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摘要

The interactions between proteins or peptides and inorganic materials lead to several interesting processes. For example, combining proteins with minerals leads to the formation of composite materials with unique properties. In addition, the undesirable process of biofouling is initiated by the adsorption of biomolecules, mainly proteins, on surfaces. This organic layer is an adhesion layer for bacteria and allows them to interact with the surface. Understanding the fundamental forces that govern the interactions at the organic-inorganic interface is therefore important for many areas of research and could lead to the design of new materials for optical, mechanical and biomedical applications. This paper demonstrates a single-molecule force spectroscopy technique that utilizes an AFM to measure the adhesion force between either peptides or amino acids and well-defined inorganic surfaces. This technique involves a protocol for attaching the biomolecule to the AFM tip through a covalent flexible linker and single-molecule force spectroscopy measurements by atomic force microscope. In addition, an analysis of these measurements is included.
机译:蛋白质或肽与无机材料之间的相互作用导致了几个有趣的过程。例如,将蛋白质与矿物质结合会导致形成具有独特特性的复合材料。另外,不希望的生物污染过程是由生物分子(主要是蛋白质)吸附在表面上引发的。该有机层是细菌的粘附层,并使细菌与表面相互作用。因此,了解控制有机-无机界面相互作用的基本力对于许多研究领域都很重要,并可能导致设计用于光学,机械和生物医学应用的新材料。本文展示了一种单分子力光谱技术,该技术利用原子力显微镜来测量肽或氨基酸与轮廓分明的无机表面之间的粘附力。该技术涉及通过共价柔性接头和通过原子力显微镜进行单分子力谱测量将生物分子连接到AFM尖端的方案。此外,还包括对这些测量的分析。

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