Department of General Dental Practice and Oral and Maxillofacial Imaging, University of Malaya, Malaya, Malaysia.
J Periodontol. 2010 Aug;81(8):1187-95. doi: 10.1902/jop.2010.090648.
In dental implant treatment, the long-term prognosis is dependent on the biologic seal formed by the soft tissue around the implant. The in vitro investigation of the implant-soft tissue interface is usually carried out using a monolayer cell-culture model that lacks a polarized-cell phenotype. This study developed a tissue-engineered three-dimensional oral mucosal model (3D OMM) to investigate the implant-soft tissue interface.
A 3D OMM was constructed using primary human oral keratinocytes and fibroblasts cultured on a skin-derived scaffold at an air-liquid interface. A titanium implant was inserted into the engineered oral mucosa and further cultured to establish epithelial attachment. The 3D OMM was characterized using basic histology and immunostaining for cytokeratin (CK) 10 and CK13. Histomorphometric analyses of the implant-soft tissue interface were carried out using a light-microscopy (LM) examination of ground sections and semi-thin sections as well as scanning electron microscopy (SEM).
Immunohistochemistry analyses suggests that the engineered oral mucosa closely resembles the normal oral mucosa. The LM and SEM examinations reveal that the 3D OMM forms an epithelial attachment on the titanium surface.
The 3D OMM provided mimicking peri-implant features as seen in an in vivo model and has the potential to be used as a relevant alternative model to assess implant-soft tissue interactions.
在牙种植体治疗中,长期预后取决于种植体周围软组织形成的生物密封。种植体-软组织界面的体外研究通常采用单层细胞培养模型进行,该模型缺乏极化细胞表型。本研究开发了一种组织工程三维口腔黏膜模型(3D OMM)来研究种植体-软组织界面。
使用在气液界面上培养的原代人口腔角质形成细胞和成纤维细胞在皮肤衍生支架上构建 3D OMM。将钛种植体插入工程化的口腔黏膜中,并进一步培养以建立上皮附着。使用组织学和免疫组织化学染色对 CK10 和 CK13 对 3D OMM 进行了特征描述。通过对磨片和半薄切片的光学显微镜(LM)检查以及扫描电子显微镜(SEM)对种植体-软组织界面进行了组织形态计量学分析。
免疫组织化学分析表明,工程化的口腔黏膜与正常口腔黏膜非常相似。LM 和 SEM 检查显示,3D OMM 在钛表面形成上皮附着。
3D OMM 提供了类似于体内模型中所见的种植体周围特征,并且有可能成为评估种植体-软组织相互作用的相关替代模型。