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Characterization of Silk Fibroin Modified Surface: A Proteomic View of Cellular Response Proteins Induced by Biomaterials

机译:丝素蛋白修饰的表面的表征:生物材料诱导的细胞反应蛋白的蛋白质组学视图。

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The purpose of this study was to develop the pathway of silk fibroin (SF) biopolymer surface induced cell membrane protein activation. Fibroblasts were used as an experimental model to evaluate the responses of cellular proteins induced by biopolymer material using a mass spectrometry-based profiling system. The surface was covered by multiwalled carbon nanotubes (CNTs) and SF to increase the surface area, enhance the adhesion of biopolymer, and promote the rate of cell proliferation. The amount of adhered fibroblasts on CNTs/SF electrodes of quartz crystal microbalance (QCM) greatly exceeded those on other surfaces. Moreover, analyzing differential protein expressions of adhered fibroblasts on the biopolymer surface by proteomic approaches indicated that CD44 may be a key protein. Through this study, utilization of mass spectrometry-based proteomics in evaluation of cell adhesion on biopolymer was proposed.
机译:这项研究的目的是开发丝素蛋白(SF)生物聚合物表面诱导的细胞膜蛋白活化的途径。使用成纤维细胞作为实验模型,使用基于质谱的分析系统评估生物聚合物材料诱导的细胞蛋白的反应。表面被多壁碳纳米管(CNT)和SF覆盖,以增加表面积,增强生物聚合物的附着力并促进细胞增殖速率。石英晶体微天平(QCM)的CNT / SF电极上的成纤维细胞附着量大大超过其他表面。此外,通过蛋白质组学方法分析生物聚合物表面粘附的成纤维细胞的差异蛋白表达表明,CD44可能是关键蛋白。通过这项研究,提出了利用基于质谱的蛋白质组学来评估细胞在生物聚合物上的粘附性。

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