Division of Biomimetics, Faculty of Dentistry and Graduate School of Medical and Dental Sciences, Niigata University, Niigata, Japan.
Division of Pediatric Dentistry, Faculty of Dentistry and Graduate School of Medical and Dental Sciences, Niigata, Japan.
Sci Rep. 2020 Dec 17;10(1):22192. doi: 10.1038/s41598-020-79114-3.
The junction between the epithelium and the underlying connective tissue undulates, constituting of rete ridges, which lack currently available soft tissue constructs. In this study, using a micro electro mechanical systems process and soft lithography, fifteen negative molds, with different dimensions and aspect ratios in grid- and pillar-type configurations, were designed and fabricated to create three-dimensional micropatterns and replicated onto fish-scale type I collagen scaffolds treated with chemical crosslinking. Image analyses showed the micropatterns were well-transferred onto the scaffold surfaces, showing the versatility of our manufacturing system. With the help of rheological test, the collagen scaffold manufactured in this study was confirmed to be an ideal gel and have visco-elastic features. As compared with our previous study, its mechanical and handling properties were improved by chemical cross-linking, which is beneficial for grafting and suturing into the complex structures of oral cavity. Histologic evaluation of a tissue-engineered oral mucosa showed the topographical microstructures of grid-type were well-preserved, rather than pillar-type, a well-stratified epithelial layer was regenerated on all scaffolds and the epithelial rete ridge-like structure was developed. As this three-dimensional microstructure is valuable for maintaining epithelial integrity, our micropatterned collagen scaffolds can be used not only intraorally but extraorally as a graft material for human use.
上皮组织和下方的结缔组织交界处呈波浪状,形成了嵴状结构,即网纹状结构,但目前缺乏可用的软组织构建物。在这项研究中,我们使用微机电系统工艺和软光刻技术,设计并制作了 15 个具有不同尺寸和纵横比的网格和柱状型负模具,以创建三维微图案,并将其复制到经过化学交联处理的鱼鳞 I 型胶原蛋白支架上。图像分析表明,微图案很好地转移到支架表面,这证明了我们制造系统的多功能性。通过流变学测试,我们确认了在这项研究中制造的胶原蛋白支架是一种理想的凝胶,具有粘弹性特征。与我们之前的研究相比,通过化学交联,其机械性能和处理性能得到了改善,这有利于移植和缝合到口腔的复杂结构中。组织工程口腔黏膜的组织学评价表明,网格型的拓扑微结构得到了很好的保留,而柱状型的则没有,所有支架上都再生了分层良好的上皮层,并且形成了上皮嵴样结构。由于这种三维微结构对于维持上皮完整性很有价值,因此我们的微图案化胶原蛋白支架不仅可以在口腔内使用,还可以作为一种供人类使用的移植材料在口腔外使用。