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Controlling osteoblast morphology and proliferation via surface micro-topographies of implant biomaterials

机译:通过植入物生物材料表面微观地形控制成骨细胞形态和增殖

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Current research on surface modifications has yielded advanced implant biomaterials. Various implant surface modifications have been shown to be promising in improving bone target cell response, but more comprehensive studies whether certain implant surface modifications can directly target cell behavioural features such as morphogenesis and proliferation are needed. Here, we studied the response of primary alveolar bone cells on various implant surface modifications in terms of osteoblast morphology and proliferation in vitro. Analyses of surface modifications led to surface-related test parameters including the topographical parameters micro-roughness, texture aspect and surface enlargement as well as the physicochemical parameter surface wettability. We compared osteoblast morphology and proliferation towards the above-mentioned parameters and found that texture aspect and surface enlargement but not surface roughness or wettability exhibited significant impact on osteoblast morphology and proliferation. Detailed analysis revealed osteoblast proliferation as a function of cell morphology, substantiated by an osteoblast size- and morphology-dependent increase in mitotic activity. These findings show that implant surface topography controls cell behavioural morphology and subsequently cell proliferation, thereby opening the road for cell instructive biomaterials.
机译:目前关于表面改性的研究产生了先进的植入生物材料。已经显示出各种植入表面修饰在改善骨靶细胞响应方面具有很大程度上,但更全面的研究需要某些植入物表面修饰是否可以直接靶向细胞行为特征,例如形态发生和增殖。在此,我们研究了原发性肺泡骨细胞在体外成骨细胞形态和增殖方面对各种植入表面修饰的响应。表面修饰的分析导致表面相关的测试参数,包括地形参数微粗糙度,纹理方面和表面放大以及物理化学参数表面润湿性。我们将成骨细胞形态和增殖与上述参数进行了比较,发现纹理方面和表面增大但没有表面粗糙度或润湿性表现出对成骨细胞形态和增殖的显着影响。详细分析显示了作为细胞形态的函数的成骨细胞增殖,由骨质细胞尺寸和形态学依赖性依赖性效应增加而证实。这些发现表明,植入表面形貌控制细胞行为形态和随后的细胞增殖,从而打开用于细胞有效生物材料的道路。

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