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首页> 外文期刊>Materials science & engineering >Strategies to prepare TiO_2 thin films, doped with transition metal ions, that exhibit specific physicochemical properties to support osteoblast cell adhesion and proliferation
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Strategies to prepare TiO_2 thin films, doped with transition metal ions, that exhibit specific physicochemical properties to support osteoblast cell adhesion and proliferation

机译:制备掺杂过渡金属离子的TiO_2薄膜的策略,这些薄膜具有特定的物理化学特性以支持成骨细胞的粘附和增殖

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摘要

Metal ion doped titanium oxide (TiO_2) thin Rims, as bioactive coatings on metal or other implantable materials, can be used as surfaces for studying the cell biological properties of osteogenic and other cell types. Bulk crystallite phase distribution and surface carbon-oxygen constitution of thin films, play an important role in determining the biological responses of cells that come in their contact. Here we present a strategy to control the polarity of atomic interactions between the dopant metal and TiO_2 molecules and obtain surfaces with smaller crystallite phases and optimal surface carbon-oxygen composition to support the maximum proliferation and adhesion of osteoblast cells. Our results suggest that surfaces, in which atomic interactions between the dopant metals and TiO_2 were less polar, could support better adhesion, spreading and proliferation of cells.
机译:金属离子掺杂的二氧化钛(TiO_2)薄轮辋,作为金属或其他可植入材料上的生物活性涂层,可以用作研究成骨细胞和其他细胞类型的细胞生物学特性的表面。薄膜的大块微晶相分布和表面碳氧构成,在确定接触细胞的生物学反应中起着重要作用。在这里,我们提出了一种控制掺杂金属和TiO_2分子之间原子相互作用极性的策略,并获得具有较小微晶相和最佳表面碳氧组成的表面,以支持成骨细胞的最大增殖和粘附。我们的结果表明,掺杂金属和TiO_2之间的原子相互作用极性较小的表面可以支持细胞更好的粘附,扩散和增殖。

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