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微弧氧化法制备含锶/银多孔TiO涂层的成骨及抗菌性能评价

Evaluation of osteogenic and antibacterial properties of strontium/silver-containing porous TiO coatings prepared by micro-arc oxidation.

作者信息

Zhang Yang-Yang, Zhu Ye, Lu Da-Zhuang, Dong Wei, Bi Wen-Juan, Feng Xiao-Jie, Wen Li-Ming, Sun Hong, Qi Meng-Chun

机构信息

Department of Oral and Maxillofacial Surgery, College of stomatology, North China University of Science and Technology, Tangshan, Hebei, China.

Department of Pathology, college of basic medicine, North China University of Science and Technology, Tangshan, Hebei, China.

出版信息

J Biomed Mater Res B Appl Biomater. 2021 Apr;109(4):505-516. doi: 10.1002/jbm.b.34719. Epub 2020 Aug 31.

Abstract

Ti and Ti alloys are bioinert materials and two frequent problems associated with them are bacterial infection and lack of osteogenic potential for rapid bone integration. To overcome the problems, the present study incorporated strontium (Sr) and silver (Ag) simultaneously into porous TiO coatings through a single-step technique, micro-arc oxidation (MAO). Incorporation of Sr and Ag brought no significant changes to coating micromorphology and physicochemical properties, but endowed TiO coatings with both strong antibacterial activity and osteogenic ability. Antibacterial activity increased with Ag contents in the coatings. When Ag content reached 0.58 wt%, the coating showed both excellent short-term (100.0%) and long-term (77.6%) antibacterial activities. Sr/Ag-containing coatings with 18.23 wt% Sr and 0.58 wt% Ag also presented good cytocompatibility for preosteoblast adhesion and proliferation, and promoted preosteoblast osteogenic differentiation both short-termly and long-termly. However, higher Ag content (1.29 wt%) showed toxic effects to preosteoblasts. In summary, MAO is a simple and effective way to incorporate Sr and Ag into porous TiO coatings and Sr/Ag-containing TiO coating with 18.5 wt% Sr and 0.58 wt% Ag has both good osteogenic activity and strong antibacterial capability short-termly and long-termly. Therefore, such coatings are valuable for clinical application to strengthen osseointegration and long-term high quality use of titanum implants.

摘要

钛及钛合金是生物惰性材料,与之相关的两个常见问题是细菌感染和缺乏促进快速骨整合的成骨潜力。为了克服这些问题,本研究通过一步技术——微弧氧化(MAO),将锶(Sr)和银(Ag)同时引入多孔TiO涂层中。Sr和Ag的引入对涂层的微观形貌和物理化学性质没有显著影响,但赋予了TiO涂层强大的抗菌活性和成骨能力。抗菌活性随涂层中Ag含量的增加而增强。当Ag含量达到0.58 wt%时,涂层表现出优异的短期(100.0%)和长期(77.6%)抗菌活性。含有18.23 wt% Sr和0.58 wt% Ag的Sr/Ag涂层对前成骨细胞的黏附与增殖也具有良好的细胞相容性,并在短期和长期内均促进前成骨细胞的成骨分化。然而,较高的Ag含量(1.29 wt%)对前成骨细胞显示出毒性作用。总之,微弧氧化是一种将Sr和Ag引入多孔TiO涂层的简单有效方法,含有18.5 wt% Sr和0.58 wt% Ag的Sr/Ag TiO涂层在短期和长期内均具有良好的成骨活性和强大的抗菌能力。因此,此类涂层对于临床应用以增强骨整合及长期高质量使用钛植入物具有重要价值。

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