Ciszyński Michał, Chwaliszewski Bartosz, Simka Wojciech, Dominiak Marzena, Gedrange Tomasz, Hadzik Jakub
Department of Dental Surgery, Faculty of Medicine and Dentistry, Medical University of Wroclaw, 50-425 Wroclaw, Poland.
Faculty of Chemistry, Silesian University of Technology, 44-100 Gliwice, Poland.
Materials (Basel). 2024 Aug 25;17(17):4202. doi: 10.3390/ma17174202.
Titanium currently has a well-established position as the gold standard for manufacturing dental implants; however, it is not free of flaws. Mentions of possible soft-tissue discoloration, corrosion, and possible allergic reactions have led to the development of zirconia dental implants. Various techniques for the surface modification of titanium have been applied to increase titanium implants' ability to osseointegrate. Similarly, to achieve the best possible results, zirconia dental implants have also had their surface modified to promote proper healing and satisfactory long-term results. Despite zirconium oxide being a ceramic material, not simply a metal, there have been mentions of it being susceptible to corrosion too. In this article, we aim to review the literature available on zirconia implants, the available techniques for the surface modification of zirconia, and the effects of these techniques on zirconia's biological properties. Zirconia's biocompatibility and ability to osseointegrate appears unquestionably good. Despite some of its mechanical properties being, factually, inferior to those of titanium, the benefits seem to outweigh the drawbacks. Zirconia implants show very good success rates in clinical research. This is partially due to available methods of surface treatment, including nanotopography alterations, which allow for improved wettability, bone-to-implant contact, and osteointegration in general.
钛目前作为制造牙科植入物的金标准有着稳固的地位;然而,它并非没有缺陷。关于可能出现的软组织变色、腐蚀以及可能的过敏反应的提及促使了氧化锆牙科植入物的发展。各种钛表面改性技术已被应用于提高钛植入物的骨结合能力。同样,为了取得尽可能好的效果,氧化锆牙科植入物也对其表面进行了改性,以促进良好愈合和令人满意的长期效果。尽管氧化锆是一种陶瓷材料,而不仅仅是金属,但也有人提到它也容易受到腐蚀。在本文中,我们旨在综述关于氧化锆植入物的现有文献、氧化锆表面改性的可用技术以及这些技术对氧化锆生物学特性的影响。氧化锆的生物相容性和骨结合能力无疑看起来很好。尽管其一些机械性能实际上不如钛,但优点似乎超过了缺点。氧化锆植入物在临床研究中显示出非常高的成功率。这部分归功于现有的表面处理方法,包括纳米形貌改变,这总体上可以改善润湿性、骨与植入物的接触以及骨整合。