Department of Prosthetic Dentistry and Stomatognathic Physiology, University of Turku, Turku, Finland.
Institute of Biomedicine and Cancer Research Laboratory FICAN West, University of Turku, Turku, Finland.
J Biomed Mater Res B Appl Biomater. 2022 Nov;110(11):2533-2541. doi: 10.1002/jbm.b.35111. Epub 2022 Jun 22.
An adequate mucosal attachment is important when it comes to preventing peri-implant inflammation. The aim of this study was to compare epithelial cell adhesion and adhesion protein expression on in sol TiO -coated and non-coated zirconia and titanium alloy surfaces. Fifty-six zirconia and titanium discs were cut, and half of them were coated with bioactive TiO -coating. To study the epithelial cell attachment, human gingival keratinocytes were cultivated on discs for 1, 3, 6, and 24 h. The cell proliferation was detected by cultivating cells for 1, 3, and 7 days. In addition, the levels of adhesion proteins laminin y2, integrin α6, β4, vinculin, and paxillin were detected with Western Blot method. Furthermore, high-resolution imaging of the actin cytoskeleton and focal adhesion proteins was established. Longer-term cell culture (1-7 days) revealed higher cell numbers on the coated zirconia and titanium discs compared to non-coated discs. The difference was statistically significant (p < .05) after 24 h on coated zirconia and after 3 and 7 days on coated titanium discs compared to non-coated discs. Clear induction in the protein levels of laminin y2 and integrin α6 were detected on both coated samples, meanwhile integrin β4 were clearly induced on coated titanium alloy. The microscope evaluation showed significantly increased cell spreading on the coated discs. According to this study, the in sol induced TiO -coating increases keratinocyte attachment and the expression of adhesion proteins on coated zirconia and titanium in vitro. Consequently, the coating has potential to enhance the mucosal attachment on implant surfaces.
当涉及预防种植体周围炎症时,足够的黏膜附着是很重要的。本研究旨在比较经溶胶处理的 TiO2 涂层和未涂层氧化锆及钛合金表面的上皮细胞黏附及黏附蛋白表达。将 56 个氧化锆和钛盘切割,其中一半进行了生物活性 TiO2 涂层处理。为了研究上皮细胞黏附,将人牙龈角质细胞在盘上培养 1、3、6 和 24 小时。通过培养细胞 1、3 和 7 天来检测细胞增殖。此外,还通过 Western Blot 法检测黏附蛋白层粘连蛋白 y2、整合素α6、β4、波形蛋白和桩蛋白的水平。此外,还建立了肌动蛋白细胞骨架和黏着斑蛋白的高分辨率成像。长期细胞培养(1-7 天)显示,与未涂层盘相比,涂层氧化锆和钛盘上的细胞数量更多。在涂层氧化锆上培养 24 小时后,在涂层钛盘上培养 3 天和 7 天后,与未涂层盘相比,差异具有统计学意义(p<.05)。在两种涂层样本中均检测到层粘连蛋白 y2 和整合素α6 的蛋白水平明显增加,而整合素β4 则在涂层钛合金中明显增加。显微镜评估显示,涂层盘上的细胞铺展明显增加。根据这项研究,溶胶诱导的 TiO2 涂层可增加体外角化细胞的黏附及黏附蛋白在涂层氧化锆和钛上的表达。因此,该涂层具有增强种植体表面黏膜附着的潜力。