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人上皮细胞与阳极氧化钛表面的附着

Attachment of Human Epithelial Cells to an Anodized Titanium Surface.

作者信息

Akashi Yoshihiko, Hashiguchi Hayato, Yamaoka Yoshitaka, Nakajima Kei, Kokubun Katsutoshi, Shimoo Yoshiaki, Matsuzaka Kenichi

机构信息

Department of Pathology, Tokyo Dental College, 2-9-18, Kandamisaki-cho, Chiyoda-ku, Tokyo 101-0061, Japan.

MALO DENTAL & MEDICAL TOKYO, FUKUHARA GINZA F8, 7-8-10, Ginza, Chuo-ku, Tokyo 104-0061, Japan.

出版信息

Materials (Basel). 2025 Jul 14;18(14):3305. doi: 10.3390/ma18143305.

Abstract

The attachment of the oral epithelium to the abutment surface is crucial for the long-term success of dental implants. This study aimed to evaluate the attachment of human epithelial cells to anodized titanium surfaces. Anodized titanium discs were used as the experimental group, while machined titanium discs served as the control. Surface roughness and wettability were first measured for each group. Next, human epithelial cells were seeded onto each disc at a density of 4.0 × 10 cells/cm and evaluated 3, 6, and 24 h later for cell proliferation, as well as mRNA expression and protein levels of laminin and integrin β. Surface roughness was comparable between the two groups; however, wettability was significantly higher in the experimental group. Cell proliferation increased over time in both groups and showed no significant difference. Notably, the expression levels of both and β were significantly higher in the experimental group at 24 h. Furthermore, protein localization of laminin and integrin β was observed along the cell margins on the anodized surface. These findings suggest that anodization enhances epithelial cell attachment by promoting the expression and peripheral organization of key adhesion molecules.

摘要

口腔上皮与基台表面的附着对于牙种植体的长期成功至关重要。本研究旨在评估人上皮细胞与阳极氧化钛表面的附着情况。将阳极氧化钛盘用作实验组,而机械加工的钛盘用作对照。首先测量每组的表面粗糙度和润湿性。接下来,将人上皮细胞以4.0×10个细胞/cm的密度接种到每个盘上,并在3、6和24小时后评估细胞增殖情况,以及层粘连蛋白和整合素β的mRNA表达和蛋白水平。两组之间的表面粗糙度相当;然而,实验组的润湿性明显更高。两组的细胞增殖均随时间增加,且无显著差异。值得注意的是,实验组在24小时时层粘连蛋白和整合素β的表达水平均显著更高。此外,在阳极氧化表面的细胞边缘观察到了层粘连蛋白和整合素β的蛋白定位。这些发现表明,阳极氧化通过促进关键粘附分子的表达和外周组织来增强上皮细胞的附着。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76e0/12300802/d5503f173265/materials-18-03305-g001.jpg

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