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Surface Mediated Hierarchical Assemblies of Highly Hydrophobic Phenylalanine-Based Peptides

机译:高度疏水性苯丙氨酸肽的表面介导的分层组件

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We report the noticeable control exerted by the surface in the self-assembly of a highly hydrophobic triphenylalanine peptide with fluorenyl functionalities blocking the two ends. The remarkable differences observed among the polymorphic hierarchical assemblies obtained onto silanized glass, scratched glass, stainless steel, exfoliated mica, silicon wafer, carbon, polytetrafluoroethylene, plasma-functionalized, polystyrene and nitrocellulose substrates are consequence of the balance between peptide···peptide and peptide···surface interactions. This balance is greatly influenced by the surface characteristics, as defined by the wettability (hydrophobicity or hydrophilicity) and roughness (degree of flatness and regularity). Furthermore, very stable dendritic structures, in which primary frameworks nucleated from the center grow according to a 4-fold pseudosymmetry branching, have been obtained onto hydrophilic treated polystyrene.
机译:我们报告了表面在高度疏水三苯丙氨酸肽的自组装中所施加的明显控制,具有阻断两端的氟苯基功能。 在获得硅烷化玻璃,刮擦玻璃,不锈钢,剥落的云母,硅晶片,碳,碳,碳,碳纤维,等离子体官能化的,聚固醇和硝基细胞底物之间的平衡的pteptide的pteptide, 肽···表面相互作用。 这种平衡受到表面特征的极大影响,如湿润性(疏水性或亲水性)和粗糙度(平坦程度和规律性)所定义。 此外,已经在亲水处理的聚苯乙烯上获得了非常稳定的树突结构,其中从中心成核的主要框架增长了4倍的假性对称分支。

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