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首页> 外文期刊>Biomaterials Science >Fibroblasts remodeling of type IV collagen at a biomaterials interface
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Fibroblasts remodeling of type IV collagen at a biomaterials interface

机译:在生物材料界面处的IV型胶原的成纤维细胞重塑

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This paper describes the fate of adsorbed type IV collagen (Col IV) in contact with fibroblasts on model biomaterial surfaces, varying in wettability, chemistry and charge. We found that fibroblasts not only interact but also tend to remodel differently adsorbed Col IV employing two distinct mechanisms: mechanical reorganization and proteolytic degradation. Apart from the trend of adsorption -NH_2 > CH_3 > COOH > OH- the cells interact better with NH_2 and OH surfaces - i.e. independently of the amount of adsorbed Col IV - evident from the quantitative measurements of cell adhesion and spreading and the improved recruitment of alpha 1 and alpha 2 integrins as well as p-FAK in focal adhesions. The linearly arranged Col IV co-localize with FN fibrils formed from either secreted, or exogenously added protein, which confirms their interdependence during a reorganization process. We further found that this reorganization is better pronounced on hydrophilic OH and positively charged NH_2 surfaces correlating with the improved cellular interaction. Conversely, the fibroblasts tend to round on COOH and CH_3 surfaces in compliance with the altered integrin signaling and also the increased pericellular proteolysis activity quantified by the increased de-quenching of adsorbed FITC-Col IV and zymography. Taken together, these results show that remodeling of Col IV at a cell-biomaterial interface depends strongly on the surface properties of a material and affects significantly its biological performance.
机译:本文描述了在模型生物材料表面上与成纤维细胞接触的IV型胶原(Col IV)吸附后的命运,其润湿性,化学性质和电荷变化。我们发现成纤维细胞不仅相互作用,而且还倾向于使用两种不同的机制来重塑不同吸附的Col IV:机械重组和蛋白水解降解。除了吸附趋势-NH_2> CH_3> COOH> OH-外,细胞与NH_2和OH表面的相互作用更好,即与吸附的Col IV量无关-从细胞黏附和扩散的定量测量以及对NH4募集的改善中可以明显看出alpha 1和alpha 2整合素以及p-FAK的粘着斑。线性排列的Col IV与由分泌的或外源添加的蛋白质形成的FN原纤维共定位,这证实了它们在重组过程中的相互依赖性。我们进一步发现,这种重组在亲水性OH和带正电荷的NH_2表面上表现得更好,与改善的细胞相互作用有关。相反,成纤维细胞趋向于在COOH和CH_3表面上变圆,这与改变的整联蛋白信号转导一致,并且还与通过增加的吸附的FITC-Col IV的去猝灭和酶谱法定量的增加的细胞周蛋白水解活性有关。综上所述,这些结果表明,细胞-生物材料界面处Col IV的重塑很大程度上取决于材料的表面性质,并显着影响其生物学性能。

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