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Silicon-substituted hydroxyapatite: The next generation of bioactive coatings

机译:硅取代的羟基磷灰石:下一代生物活性涂料

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摘要

Silicon-substituted hydroxyapatite (Si-HA) coatings with three different Si compositions (0.8, 2.2 and 4.9 wt.%) were produced as thin films on titanium substrates by magnetron co-sputtering. Following heat-treatment, a crystalline, single-phase apatite structure was obtained for all coatings, as evidenced by the presence of characteristic peaks for HA in X-ray diffraction traces, and infrared absorption P-O and O-H bands. A human osteoblast-like (HOB) cell model was employed to assess the biocompatibility of these Si-HA coatings. Unsubstituted HA thin coatings were used as a control. The results demonstrated that Si-HA elicited a significantly more rapid growth response by the HOBs as compared to HA, although cells spread well on both coatings, with the formation of extracellular matrix. The cytoskeletons on Si-HA showed clear and distinct actin filaments that were parallel to the long axis of the cells. In contrast, a more diffuse actin cytoskeleton organisation was observed on HA. Biomineralisation was seen on both coatings after 42 days of culturing, with a higher level observed on the Si-HA samples. In conclusion, Si-HA offers great potential as a coating material for future medical applications in hard and soft tissue replacements.
机译:通过磁控共溅射在钛基片上制成具有三种不同硅组成(0.8%,2.2%和4.9%(重量))的硅取代羟基磷灰石(Si-HA)涂层。热处理后,所有涂层均获得结晶的单相磷灰石结构,这由X射线衍射迹线中HA的特征峰以及红外吸收P-O和O-H谱带证明。使用人成骨样(HOB)细胞模型来评估这些Si-HA涂层的生物相容性。使用未取代的HA薄涂层作为对照。结果表明,尽管细胞在两个涂层上均能很好地扩散,并形成细胞外基质,但与HA相比,HOBs引起Si-HA的生长反应明显更快。 Si-HA上的细胞骨架显示出清晰且独特的肌动蛋白丝,平行于细胞的长轴。相比之下,在HA上观察到了更弥散的肌动蛋白细胞骨架组织。培养42天后,在两个涂层上均观察到生物矿化作用,而在Si-HA样品上观察到更高的水平。总而言之,Si-HA作为涂层材料具有巨大的潜力,可用于将来在硬组织和软组织替代中的医疗应用。

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