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Influence of bioactive glass-coating of zirconia implant surfaces on human osteoblast behavior in vitro

机译:氧化锆植入物表面的生物活性玻璃涂层对体外成骨细胞行为的影响

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摘要

Objective. The recently developed bioactive glass PC-XG3, which is suitable to coat zirconia implant surfaces with high adhesion strength may reduce the time of osseointegration and the marginal bone loss following implantation. The glass composition has been previously evaluated for cytotoxicity on fibroblast cells, and will now be used to evaluate the cell behavior of osteoblast cells.Methods. Three different surface morphologies were created with PC-XG3 on zirconia discs. A clinically tested zirconia implant surface as well as polished and machined zirconia served as a reference. Cell viability after 24 h, cell spreading after 30 min and 24 h and the respective morphology of human osteoblasts using scanning electron microscopy were evaluated. Additionally, the corrosive process of PC-XG3 in cell culture medium up to 7 d was measured.Results. Initial cell behavior of human osteoblasts was not accelerated by the PC-XG3 surface when compared to zirconia. Additionally, it was found that a decreased surface roughness promoted initial cell spreading. Storage in cell culture medium resulted in the accumulation of C and N on the bioglass surface while Mg, Si, K and Ca were decreased and crack formation was observed.Significance. Since initial spreading quality to a biomaterial is a crucial factor that will determine the subsequent cell function, proliferation, differentiation, and viability it can be assumed that a coating of zirconia implants with this bioactive glass will unlikely reduce osseointegration time. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:目的。最近开发的生物活性玻璃PC-XG3适用于以高粘合强度涂覆氧化锆植入物表面,可减少植入后的骨整合时间和边缘性骨丢失。该玻璃组合物先前已评估过对成纤维细胞的细胞毒性,现在将用于评估成骨细胞的细胞行为。用PC-XG3在氧化锆圆盘上创建了三种不同的表面形态。经过临床测试的氧化锆植入物表面以及经过抛光和机械加工的氧化锆可以作为参考。使用扫描电子显微镜评估24小时后的细胞存活力,30分钟和24小时后的细胞扩散以及人类成骨细胞的各自形态。此外,还测量了PC-XG3在细胞培养基中长达7 d的腐蚀过程。与氧化锆相比,PC-XG3表面不能促进人类成骨细胞的初始细胞行为。另外,发现降低的表面粗糙度促进了初始细胞扩散。储存在细胞培养基中会导致生物玻璃表面碳和氮的积累,而镁,硅,钾和钙的含量减少,并观察到裂纹的形成。由于向生物材料的初始铺展质量是决定后续细胞功能,增殖,分化和生存能力的关键因素,因此可以假定用这种生物活性玻璃涂覆氧化锆植入物的涂层不太可能减少骨整合时间。 (C)2019牙科材料学院。由Elsevier Inc.出版。保留所有权利。

著录项

  • 来源
    《Dental materials》 |2019年第6期|862-870|共9页
  • 作者单位

    Univ Basel, Univ Ctr Dent Med, Div Dent Mat & Engn, Dept Reconstruct Dent, Hebelstr 3, CH-4056 Basel, Switzerland|Univ Med Ctr Rostock, Dept Cell Biol, Rostock, Germany;

    Univ Med Ctr Rostock, Dept Cell Biol, Rostock, Germany;

    Univ Basel, Univ Ctr Dent Med, Div Dent Mat & Engn, Dept Reconstruct Dent, Hebelstr 3, CH-4056 Basel, Switzerland;

    Univ Med Ctr Rostock, Dept Cell Biol, Rostock, Germany;

    RWTH Aachen Univ Hosp, Dept Dent Mat & Biomat Res, Aachen, Germany;

    RWTH Aachen Univ Hosp, Dept Dent Mat & Biomat Res, Aachen, Germany;

    Univ Basel, Univ Ctr Dent Med, Div Dent Mat & Engn, Dept Reconstruct Dent, Hebelstr 3, CH-4056 Basel, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Zirconia implant; Bioglass coating; Human osteoblasts; Microstructure;

    机译:氧化锆植入物;生物玻璃涂层;人类成骨细胞;显微组织;
  • 入库时间 2022-08-18 04:18:48

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