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Osteoclast and osteoblast response to strontium-doped struvite coatings on titanium for improved bone integration

机译:骨壳和成骨细胞对钛掺杂钛施氮涂层的反应,以改善骨集成

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摘要

To develop implants with improved bone ingrowth, titanium substrates were coated with homogeneous and dense struvite (MgNH4PO4 center dot 6H(2)O) layers by means of electrochemically assisted deposition. Strontium nitrate was added to the coating electrolyte in various concentrations, in order to fabricate Sr-doped struvite coatings with Sr loading ranging from 10.6 to 115 mu g/cm(2). It was expected and observed that osteoclast activity surrounding the implant was inhibited. The cytocompatibility of the coatings and the effect of Sr-ions in different concentrations on osteoclast formation were analyzed in vitro. Osteoclast differentiation was elucidated on morphological, biochemical as well as on gene expression level. It could be shown that moderate concentrations of Sr-2 had an inhibitory effect on osteoclast formation, while the growth of osteoblastic cells was not negatively influenced compared to pure struvite surfaces. In summary, the electrochemically deposited Sr-doped struvite coatings are a promising approach to improve bone implant ingrowth.
机译:为了通过电化学辅助沉积涂覆具有改善的骨扩植的植入物,钛基材用均匀和致密的稳定(MgNH4PO4中心点6H(2)O)层涂覆。在各种浓度下将硝酸锶加入到涂层电解质中,以制造具有10.6至115μg/ cm(2)的Sr掺杂的Sr掺杂的斯特鲁维涂层。预期并观察到植入物周围的破骨细胞活性被抑制。体外分析涂层的细胞粘接性和Sr-离子在不同浓度下的效果。疏松骨壳分化在形态学,生化和基因表达水平上阐明。可以表明,适度浓度的SR-2对破骨细胞形成具有抑制作用,而与纯Struvite表面相比,骨细胞细胞的生长不会产生负面影响。总之,电化学沉积的SR掺杂的斯特鲁维钛矿涂层是改善骨植入物的有希望的方法。

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