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Bioactive Coating with Two-Layer Hierarchy of Relief Obtained by Sol-Gel Method with Shock Drying and Osteoblast Response of Its Structure

机译:溶胶-凝胶法获得的具有浮雕两层结构的生物活性涂层具有冲击干燥和成骨反应的结构

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摘要

In this work, we analyze the efficiency of the modification of the implant surface. This modification was reached by the formation of a two-level relief hierarchy by means of a sol-gel approach that included dip coating with subsequent shock drying. Using this method, we fabricated a nanoporous layer with micron-sized defects on the nanotitanium surface. The present work continues an earlier study by our group, wherein the effect of osteoblast-like cell adhesion acceleration was found. In the present paper, we give the results of more detailed evaluation of coating efficiency. Specifically, cytological analysis was performed that included the study of the marker levels of osteoblast-like cell differentiation. We found a significant increase in the activity of alkaline phosphatase at the initial incubation stage. This is very important for implantation, since such an effect assists the decrease in the induction time of implant engraftment. Moreover, osteopontin expression remains high for long expositions. This indicates a prolonged osteogenic effect in the coating. The results suggest the acceleration of the pre-implant area mineralization and, correspondingly, the potential use of the developed coatings for bone implantation.
机译:在这项工作中,我们分析了植入物表面修饰的效率。通过采用溶胶-凝胶法形成两级浮雕层次来实现此修改,该方法包括浸涂和随后的冲击干燥。使用这种方法,我们在纳米钛表面上制造了具有微米级缺陷的纳米多孔层。本工作继续了我们小组的一项较早研究,其中发现了成骨细胞样细胞粘附促进作用。在本文中,我们给出了涂层效率更详细评估的结果。具体而言,进行了细胞学分析,包括对成骨样细胞分化标记水平的研究。我们发现在初始孵育阶段碱性磷酸酶的活性显着增加。这对于植入非常重要,因为这种效果有助于减少植入物植入的诱导时间。此外,长期接触骨桥蛋白的表达仍然很高。这表明涂层中的成骨作用延长。结果表明,植入前区域矿化的加速,相应地,已开发涂层在骨植入中的潜在用途。

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