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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Photoactive Branched and Linear Surface Architectures for Functional and Patterned Immobilization of Proteins and Cells onto Surfaces: A Comparative Study
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Photoactive Branched and Linear Surface Architectures for Functional and Patterned Immobilization of Proteins and Cells onto Surfaces: A Comparative Study

机译:用于蛋白质和细胞功能和图案固定在表面上的光活性分支和线性表面结构:比较研究

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摘要

Novel photosensitive silanes with a branched molecular architecture combining three end-functionalized oligoethylene glycol (OEG) and alkyl arms ore presented These molecules ore synthesized and applied to the modification of silica surfaces. The resulting layers are tested in their ability for the selective, patterned and functional immobilization of proteins and cells. The results demonstrate and accurately quantify the benefits of branched OEG structures against linear analogues for preventing non-specific interactions with the biological material. Linear structures guarantee high selectivity for the attachment of proteins, however, they foil in the case of cells. Branched structures provide good antifouling properties in both cases and allow the formation of protein patterns with higher densities of the target protein, as well as cell patterns. The results demonstrate the careful balance between surface functionality, composition and architecture that is required for maximizing the performance of any surface-based assay in biology.
机译:提出了具有分支分子结构的新型光敏硅烷,该分子结构结合了三个末端官能化的低聚乙二醇(OEG)和烷基臂矿石,这些分子被合成并应用于二氧化硅表面改性。测试所得层对蛋白质和细胞的选择性固定,图案固定和功能固定的能力。结果证明并准确量化了支链OEG结构相对于线性类似物在防止与生物材料的非特异性相互作用方面的优势。线性结构保证了蛋白质附着的高选择性,但是,在细胞的情况下,它们会挫败。在这两种情况下,分支结构均提供良好的防污性能,并允许形成具有更高密度目标蛋白质的蛋白质模式以及细胞模式。结果证明了表面功能,组成和结构之间的谨慎平衡,这是最大化生物学中任何基于表面的测定的性能所必需的。

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