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首页> 外文期刊>Journal of Materials Science >Oriented immobilization of IgG on hydroxylated Si(001) surfaces via protein-A by a multiple-step process based on a self-assembly approach
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Oriented immobilization of IgG on hydroxylated Si(001) surfaces via protein-A by a multiple-step process based on a self-assembly approach

机译:通过基于自组装方法的多步过程,通过蛋白A将IgG定向固定在羟基化Si(001)表面上

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摘要

The aim of this study was the oriented immobilization of IgG molecules on the silicon surfaces. A multiple-step procedure was applied for oriented immobilization of IgG in this study. After hydroxylation of the Si(001) surfaces, 3-glycidoxypropyltrimethoxysilane (GPTS) molecules were self-assembled onto these substrates. Dipping time and GPTS concentration were found to be effected by on both layer thicknesses and water-contact angles. 2,2'-(ethylenedioxy)diethylamine (EDA) molecules were then covalently attached to the silicon surface with GPTS molecules. There was no effect of concentration on the formation of EDA molecules on the surfaces, while EDA deposition increased with the dipping time significantly. Imaging ellipsometry and atomic force microscopy (AFM) images exhibited aggregate formation at this step. Protein-A molecules were bound to the free amino groups of EDA molecules on the substrate surface, especially onto the aggregates by using a carbodiimide (i.e., EDAC) as the activating agent. We were able to immobilize IgG molecules in an oriented form onto the protein-A attached surfaces, especially in the regions, where EDA aggregates are located.
机译:这项研究的目的是将IgG分子定向固定在硅表面上。在这项研究中,将多步骤程序应用于IgG的定向固定。 Si(001)表面羟基化后,将3-环氧丙氧基丙基三甲氧基硅烷(GPTS)分子自组装到这些基板上。发现浸渍时间和GPTS浓度受层厚度和水接触角的影响。然后,将2,2'-(乙二氧基)二乙胺(EDA)分子与GPTS分子共价连接到硅表面。浓度对表面上EDA分子的形成没有影响,而EDA沉积随浸入时间显着增加。椭偏成像和原子力显微镜(AFM)图像在此步骤中显示出聚集体形成。通过使用碳二亚胺(即,EDAC)作为活化剂,将蛋白A分子与底物表面上的EDA分子的游离氨基结合,特别是与聚集体结合。我们能够将IgG分子以定向形式固定在A蛋白附着的表面上,特别是在EDA聚集体所在的区域。

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