Section of Implant and Rehabilitative Dentistry, Division of Oral Rehabilitation, Faculty of Dental Science, Kyushu University, Higashi-ku, Fukuoka, Japan.
Odontology. 2012 Jul;100(2):199-205. doi: 10.1007/s10266-011-0029-y. Epub 2011 Jun 21.
Connective tissue, one of the main components of peri-implant soft tissue, is key to the formation of the peri-implant mucosal seal and helping to prevent epithelial ingrowth. Rough surfaces (Rs), machined surfaces (Ms) or microgrooved surface (MG) are used in the neck area of commercially available titanium implants. In this paper, we aimed to evaluate the influence of surface topography of titanium substratum on connective tissue fibroblasts to gain a better understanding of this effect. Fibroblasts were cultured on titanium plates with Rs, Ms and MG. Adhesion cell number at day 3 was compared and protein distribution of both F-actin and vinculin was determined to observe cellular structure and adhesion. Cell adhesion strength was compared on each surface. At day 3, the number of fibroblasts attached on each substratum was in the order of MG ≈ Ms > Rs. Fibroblasts strongly expressed vinculin in the peripheral area on Ms and MG, and showed strong F-actin architecture. Decreased expression of vinculin and weaker continuity of F-actin were observed on Rs. Fibroblasts on MG were aligned along the grooves, with a significantly higher cell density, whereas cells on Ms and Rs had no clear orientation. The cell adhesion strength was significantly lower on Rs, and no significant difference was seen between MG and Ms. Both MG and Ms showed greater adhesion cell numbers and adhesion strength of fibroblasts when compared with Rs at day 3. The cell density on MG was greater than those on other substrata.
结缔组织是牙周软组织的主要组成部分之一,对于形成牙周黏膜封闭和防止上皮内陷至关重要。商业上可用的钛种植体颈部区域使用粗糙表面(Rs)、机械加工表面(Ms)或微形貌表面(MG)。在本文中,我们旨在评估钛基底表面形貌对结缔组织成纤维细胞的影响,以更好地了解这种影响。成纤维细胞在具有 Rs、Ms 和 MG 的钛板上进行培养。比较第 3 天的黏附细胞数量,并确定 F-肌动蛋白和 vinculin 的蛋白分布,以观察细胞结构和黏附。比较每个表面的细胞黏附强度。在第 3 天,附着在每个基底上的成纤维细胞数量顺序为 MG≈Ms>Rs。在 Ms 和 MG 上,成纤维细胞在周边区域强烈表达 vinculin,并表现出强烈的 F-肌动蛋白结构。在 Rs 上观察到 vinculin 的表达减少和 F-肌动蛋白的连续性减弱。MG 上的成纤维细胞沿凹槽排列,细胞密度显著增加,而 Ms 和 Rs 上的细胞没有明显的定向。Rs 上的细胞黏附强度显著降低,MG 和 Ms 之间没有明显差异。与 Rs 相比,第 3 天 MG 和 Ms 均显示出更多的黏附细胞数量和更强的成纤维细胞黏附强度。MG 上的细胞密度大于其他基底。