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用于牙科植入物的氧化锆上含镁混合涂层:力学表征及体外行为

Magnesium-containing mixed coatings on zirconia for dental implants: mechanical characterization and in vitro behavior.

作者信息

Pardun Karoline, Treccani Laura, Volkmann Eike, Streckbein Philipp, Heiss Christian, Gerlach Juergen W, Maendl Stephan, Rezwan Kurosch

机构信息

University of Bremen, Advanced Ceramics, Germany.

University of Bremen, Advanced Ceramics, Germany

出版信息

J Biomater Appl. 2015 Jul;30(1):104-18. doi: 10.1177/0885328215572428. Epub 2015 Feb 18.

DOI:10.1177/0885328215572428
PMID:25698722
Abstract

An important challenge in the field of dental and orthopedic implantology is the preparation of implant coatings with bioactive functions that feature a high mechanical stability and at the same time mimic structural and compositional properties of native bone for a better bone ingrowth. This study investigates the influence of magnesium addition to zirconia-calcium phosphate coatings. The mixed coatings were prepared with varying additions of either magnesium oxide or magnesium fluoride to yttria-stabilized zirconia and hydroxyapatite. The coatings were deposited on zirconia discs and screw implants by wet powder spraying. Microstructure studies confirm a porous coating with similar roughness and firm adhesion not hampered by the coating composition. The coating morphology, mechanical flexural strength and calcium dissolution showed a magnesium content-dependent effect. Moreover, the in vitro results obtained with human osteoblasts reveal an improved biological performance caused by the presence of Mg(2+) ions. The magnesium-containing coatings exhibited better cell proliferation and differentiation in comparison to pure zirconia-calcium phosphate coatings. In conclusion, these results demonstrate that magnesium addition increases the bioactivity potential of zirconia-calcium phosphate coatings and is thus a highly suitable candidate for bone implant coatings.

摘要

牙科和骨科植入学领域的一个重要挑战是制备具有生物活性功能的植入涂层,这种涂层要有高机械稳定性,同时模仿天然骨的结构和成分特性以促进更好的骨向内生长。本研究调查了添加镁对氧化锆-磷酸钙涂层的影响。通过向氧化钇稳定的氧化锆和羟基磷灰石中添加不同量的氧化镁或氟化镁来制备混合涂层。通过湿粉喷涂将涂层沉积在氧化锆圆盘和螺丝植入物上。微观结构研究证实涂层是多孔的,粗糙度相似且附着力强,不受涂层成分影响。涂层形态、机械弯曲强度和钙溶解呈现出镁含量依赖性效应。此外,用人成骨细胞获得的体外结果显示,Mg(2+)离子的存在导致生物性能得到改善。与纯氧化锆-磷酸钙涂层相比,含镁涂层表现出更好的细胞增殖和分化。总之,这些结果表明添加镁可提高氧化锆-磷酸钙涂层的生物活性潜力,因此是骨植入涂层的非常合适的候选材料。

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