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首页> 外文期刊>Applied Surface Science >Bioactive molecules for biomimetic materials: Identification of RGD peptide sequences by TOF-S-SIMS analysis
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Bioactive molecules for biomimetic materials: Identification of RGD peptide sequences by TOF-S-SIMS analysis

机译:用于仿生材料的生​​物活性分子:通过TOF-S-SIMS分析鉴定RGD肽序列

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Implantable biomaterials, such as Ti-6Al-4V alloy, are designed to replace a part of the human body and/or its associated functions. This system, containing the alloy onto which the osteoprogenitor cells are deposited, is formed through the grafting of linear RGD (Arginine-Glycine-Aspartic acid) peptides. Our preliminary work demonstrated that the bonding of the fibronectin cell attachment peptide RGD to a metallic surface is extremely successful in promoting the adhesion and the proliferation of osteoprogenitor cells. However, a fuller understanding of the relationship between surface coverage and the contribution of each layer is required, in order to optimize the efficiency of the RGD-modified surface through optimal RGD bonding. We have used the TOF-S-SIMS analysis of this new surface, previously studied by XPS, to follow each modification level. Functional groups for peptide immobilization are required at the metallic surface, and their presence has been identified by mass spectra. A relative quantification of immobilized RGD peptides is obtained by TOF-S-SIMS analysis. Molecular ion imaging informs us of the surface evolution throughout the modification process and offers a description of each group. A comparative analysis of the spectra has permitted us to correlate the presence of these species on the surface with their bioactivities. (c) 2006 Elsevier B.V. All rights reserved.
机译:可植入的生物材料(例如Ti-6Al-4V合金)旨在替代人体的一部分和/或其相关功能。通过接枝线性RGD(精氨酸-甘氨酸-天冬氨酸)肽,形成包含骨祖细胞沉积合金的系统。我们的初步工作表明,纤连蛋白细胞附着肽RGD与金属表面的结合在促进骨祖细胞的粘附和增殖方面非常成功。但是,需要对表面覆盖率和每一层的贡献之间的关系有更全面的了解,以便通过最佳的RGD粘合来优化RGD改性表面的效率。我们已经使用XPS先前研究过的这个新表面的TOF-S-SIMS分析来遵循每个修改级别。在金属表面需要用于固定肽的官能团,并且它们的存在已通过质谱鉴定。固定的RGD肽的相对定量通过TOF-S-SIMS分析获得。分子离子成像使我们了解了整个修饰过程中的表面演变,并提供了每个组的描述。光谱的比较分析使我们能够将这些物质在表面上的存在与其生物活性相关联。 (c)2006 Elsevier B.V.保留所有权利。

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