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Investigations on the Secondary Structure of Polypeptide Chains in Polyelectrolyte Multilayers and their Effect on the Adhesion and Spreading of Osteoblasts

机译:多层电解质中多肽链的二级结构及其对成骨细胞黏附和扩散影响的研究

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Inspired by the composition of the native extracellular matrix, biomimetic polyelectrolyte multilayers were assembled from polypeptides and the glycosaminoglycan chondroitin sulfate (CS). To investigate whether peptide conformation imposes an effect on the cell biological functions of osteoblasts, the secondary structure was analyzed by in situ infra-red and circular dichroism spectroscopy. Multilayers composed of polypeptides and CS reveal a predominantly random coiled conformation and impede osteoblast spreading. On the contrary, polypeptide chains in assemblies of poly-l-lysine and poly-l-glutamic acid (PGA) primarily adopt an intermolecular β sheet structure and reveal an increased area of spread, which consequently supports the proliferation of osteoblasts. When CS is replaced by PGA in mixed multilayers, we observe a structural rearrangement from random coils to β sheets with a concomitant improved cell response. We conclude that polypeptide conformation in biomimetic multilayer assemblies affects osteoblast response by altering the stiffness of the multilayer.
机译:受天然细胞外基质组成的启发,从多肽和糖胺聚糖硫酸软骨素(CS)组装了仿生聚电解质多层膜。为了研究肽构象是否对成骨细胞的细胞生物学功能产生影响,通过原位红外和圆二色谱法分析了二级结构。由多肽和CS组成的多层膜显示出主要为随机卷曲的构象,并阻止成骨细胞扩散。相反,聚-1-赖氨酸和聚-1-谷氨酸(PGA)的装配体中的多肽链主要采用分子间的β折叠结构,并显示出扩大的扩散面积,因此支持成骨细胞的增殖。当CS被PGA代替混合多层时,我们观察到结构从无规卷曲到β片的重排,并伴随着细胞反应的改善。我们得出结论,仿生多层组件中的多肽构象通过改变多层的刚度影响成骨细胞反应。

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