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首页> 外文期刊>Advanced materials interfaces >Nanostructured Biointerfaces Based on Bioceramic Calcium Carbonate/Hydrogel Coatings on Titanium with an Active Enzyme for Stimulating Osteoblasts Growth
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Nanostructured Biointerfaces Based on Bioceramic Calcium Carbonate/Hydrogel Coatings on Titanium with an Active Enzyme for Stimulating Osteoblasts Growth

机译:基于生物陶瓷碳酸钙/水凝胶涂层的纳米结构化生物粘合剂,其具有活性酶的钛刺激骨盆生长

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摘要

Novel bone growth-stimulating interfaces are designed via surface modification of titanium (Ti) surfaces using the bioceramic CaCO3 in the vaterite phase, Ca-crosslinked alginate hydrogel, or a blend of these two materials with an active enzyme, alkaline phosphatase (ALP), as an osteoinductive component. The surface morphology and chemistry of the engineered surfaces are investigated using scanning electron microscopy, atomic force microscopy, and Fourier transform infrared spectroscopy, while the vaterite crystal fraction within the inorganic phase of the different coating types is determined by X-ray diffraction. The functionality of the osteoconductive assembled bioceramic-hydrogel interface on Ti surface in regard with an active ALP payload is verified by the surface ALP loading and its activity. The methods of loading of ALP onto a Ti surface, adsorption versus coprecipitation, have a significant influence on the activity of immobilized ALP amount. The osteoblasts cultivated on the engineered surfaces functionalized with ALP exhibit a higher viability. The proposed composite materials with an active surface and a high mineral content represent an attractive biointerface for tissue engineering.
机译:新的骨生长刺激界面通过使用Vaterate相,Ca-交联的藻酸盐水凝胶中的生物陶瓷CaCo3的钛(Ti)表面的表面改性设计,或用活性酶,碱性磷酸酶(ALP),所述两种材料的共混物作为骨诱导组分。使用扫描电子显微镜,原子力显微镜和傅里叶变换红外光谱研究了工程化表面的表面形态和化学,而不同涂层类型的无机相的Vaterite晶体部分由X射线衍射确定。通过表面ALP负载和活性验证了在TI表面上的Ti表面上的骨导电组装的生物陶瓷 - 水凝胶界面的功能。将ALP加载到Ti表面上的方法,吸附与共沉淀,对固定的ALP量的活性产生显着影响。在用ALP官能化的工程表面上栽培的成骨细胞表现出更高的可行性。具有活性表面和高矿物质含量的所提出的复合材料代表了组织工程的有吸引力的生物接口。

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