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首页> 外文期刊>Journal of biomedical materials research, Part A >Ultrastructural analysis of implant-soft tissue interface on a three dimensional tissue-engineered oral mucosal model
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Ultrastructural analysis of implant-soft tissue interface on a three dimensional tissue-engineered oral mucosal model

机译:三维组织工程口腔粘膜模型中植入物软组织界面的超微结构分析

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摘要

A three dimensional tissue-engineered human oral mucosal model (3D OMM) used in the investigation of implant-soft tissue interface was recently reported. The aim of this study was to examine the ultrastructural features of soft tissue attachment to various titanium (Ti) implant surfaces based on the 3D OMM. Two techniques, that is, focus ion beam (FIB) and electropolishing techniques were used to prepare specimens for transmission electron microscopic (TEM) analysis of the interface. The 3D OM consisting of both epithelial and connective tissue layers was constructed by co-culturing human oral keratinocytes and fibroblasts onto an acellular dermis scaffold. Four types of Ti surface topographies were tested: polished, machined (turned), sandblasted, and TiUnite. The specimens were then processed for TEM examination using FIB (Ti remained) and electropolishing (Ti removed) techniques. The FIB sections showed some artifact and lack of details of ultrastructural features. In contrast, the ultrathin sections prepared from the electropolishing technique showed a residual Ti oxide layer, which preserved the details for intact ultrastructural interface analysis. There was evidence of hemidesmosome-like structures at the interface on the four types of Ti surfaces, which suggests that the tissue-engineered oral mucosa formed epithelial attachments on the Ti surfaces.
机译:最近报道了用于研究植入物软组织界面的三维组织工程人口粘膜模型(3D OMM)。该研究的目的是基于3D OMM检查软组织附着到各种钛(TI)植入表面的超微结构特征。两种技术,即聚焦离子束(FIB)和电抛光技术用于制备界面的透射电子显微镜(TEM)分析的试样。由上皮和结缔组织层组成的3D OM通过将人口服角蛋白细胞和成纤维细胞共同培养到细胞真皮支架上构建。测试了四种类型的Ti表面拓扑结构:抛光,机加工(转),喷砂和三通。然后使用FIB(TI)和电解抛光(TI除去)技术来处理试样进行TEM检查。 FIB部分显示了一些伪影和缺乏超微结构特征的细节。相反,由电抛光技术制备的超薄部分显示出残留的Ti氧化物层,其保留了完整超微结构界面分析的细节。在四种类型的Ti表面上的界面上存在血液样摩体组结构,这表明组织工程的口腔粘膜在Ti表面上形成上皮附着。

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