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用于乳突气房再生的组织工程:一项初步体外研究。

Tissue engineering for the regeneration of the mastoid air cells: a preliminary in vitro study.

作者信息

Magrufov Akhmar, Kanemaru Shin-ichi, Nakamura Tatsuo, Omori Koichi, Yamashita Masaru, Shimizu Yasuhiko, Ito Juichi

机构信息

Department of Otolaryngology--Head and Neck Surgery, Graduate School of Medicine, Kyoto University, Kyoto, Japan.

出版信息

Acta Otolaryngol Suppl. 2004 Mar(551):75-9.

Abstract

Mastoid is a pneumatic bone, composed of small interconnecting chambers covered by a mono-layer of mucosa with an abundant blood supply. One of its main functions is gas exchange according to the concentration/pressure gradient. The final goal of our research project is to regenerate mastoid air cells and their unique physiologic functions. The aim of the present study is to determine appropriate cultivating conditions for the cells cultured on the surface of artificial hydroxyapatite. In our in vitro experiment, to imitate the skeleton of mastoid bone, we used two types of three-dimensional hydroxyapatite (3D-HA), i.e. with a high (90%) and low (60%) percentage of micropores. The former type was divided into two groups: collagen-coated and non-coated. Canine mucosal- and bone marrow-derived stromal cells (BSCs), from the oral floor and femur respectively, were harvested and cultured on the 3D-HA under different conditions. To estimate the proliferation/distribution of the cultured cells over the surface of the 3D-HA, these cells were stained with the dye DiI and hematoxylin-eosin. There were no significant differences in the proliferation of cultured cells on the 3D-HA with high and low percentages of micropores. Collagen-coated HA was a better material for the cultured cells compared with the non-coated HA. Co-cultured mucosal and BSCs proliferated better than those cultured separately. In conclusion, this tissue engineering technique may be applied for the regeneration of mastoid air cells.

摘要

乳突是一种含气骨,由相互连通的小腔室组成,表面覆盖有单层黏膜,血液供应丰富。其主要功能之一是根据浓度/压力梯度进行气体交换。我们研究项目的最终目标是再生乳突气房及其独特的生理功能。本研究的目的是确定在人工羟基磷灰石表面培养细胞的合适条件。在我们的体外实验中,为了模拟乳突骨的结构,我们使用了两种类型的三维羟基磷灰石(3D-HA),即微孔百分比高(90%)和低(60%)的两种。前一种类型又分为两组:胶原包被组和非包被组。分别从犬的口底和股骨获取黏膜来源的基质细胞(BSCs)和骨髓来源的基质细胞,并在不同条件下于3D-HA上进行培养。为了评估培养细胞在3D-HA表面的增殖/分布情况,这些细胞用DiI染料和苏木精-伊红染色。微孔百分比高和低的3D-HA上培养细胞的增殖没有显著差异。与非包被的HA相比,胶原包被的HA对培养细胞来说是更好的材料。共培养的黏膜细胞和BSCs比单独培养的增殖更好。总之,这种组织工程技术可能适用于乳突气房的再生。

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