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Surface nanoporosity has a greater influence on osteogenic and bacterial cell adhesion than crystallinity and wettability

机译:表面纳米孔隙度比结晶度和润湿性对成骨和细菌细胞粘附的影响更大

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摘要

There has been much emphasis on the influence of crystallinity and wettability for modulating cell activity, particularly for bone biomaterials. In this context, we have generated titanium oxide layers with similar mesoporous topography and surface roughness but with amorphous or crystalline oxide layers and differential wettability. We then investigated their influence on the behavior of MC3T3 osteoblastic and bacterial cells. There was no difference in cell adhesion, spreading and growth on amorphous and crystalline surfaces. The number of focal adhesions was similar, however, cells on the amorphous surface exhibited a higher frequency of mature adhesions. The crystallinity of the surface layers also had no bearing on bacterial adhesion. While it cannot be excluded that surface crystallinity, roughness and wettability contribute to some degree to determining cell behavior, our data suggest that physical characteristics of surfaces represent the major determinant. (C) 2018 Elsevier B. V. All rights reserved.
机译:结晶度和润湿性对调节细胞活性,特别是对骨生物材料的影响已得到很大的重视。在这种情况下,我们生成了具有类似介孔形貌和表面粗糙度但具有无定形或结晶氧化物层和不同润湿性的氧化钛层。然后,我们调查了它们对MC3T3成骨细胞和细菌细胞行为的影响。在无定形和结晶表面上的细胞粘附,扩散和生长没有差异。粘着斑的数量相似,但是,无定形表面上的细胞表现出更高的成熟粘着率。表面层的结晶度也与细菌粘附无关。虽然不能排除表面的结晶度,粗糙度和润湿性在一定程度上决定了电池的性能,但我们的数据表明表面的物理特性是主要的决定因素。 (C)2018 Elsevier B.V.保留所有权利。

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