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首页> 外文期刊>Journal of biomaterials applications >Fabrication, in vitro and in vivo studies of bilayer composite membrane for periodontal guided tissue regeneration
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Fabrication, in vitro and in vivo studies of bilayer composite membrane for periodontal guided tissue regeneration

机译:双层复合膜的制备,体外和体内研究进行牙周引导组织再生

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Development of a guided occlusive biodegradable membrane with controlled morphology in order to restrict the ingrowth of epithelial cells is still a challenge in dental tissue engineering. A bilayer membrane with a non-porous upper layer (polyurethane) and porous lower layer (polycaprolactone and bioactive glass composite) with thermoelastic properties to sustain surgery treatment was developed by lyophilization. Morphology, porosity, and layers attachment were controlled by using the multi-solvent system. In vitro and in vivo biocompatibility, cell attachment, and cell proliferation were analyzed by immunohistochemistry and histology. The cell proliferation rate and cell attachment results showed good biocompatibility of both surfaces, though cell metabolic activity was better on the polycaprolactone-bioactive glass surface. Furthermore, the cells were viable, adhered, and proliferated well on the lower porous bioactive surface, while non-porous polyurethane surface demonstrated low cell attachment, which was deliberately designed and a pre-requisite for guided tissue regeneration/guided bone regeneration membranes. In addition, in vivo studies performed in a rat model for six weeks revealed good compatibility of membranes. Histological analysis (staining with hematoxylin and eosin) indicated no signs of inflammation or accumulation of host immune cells. These results suggested that the fabricated biocompatible bilayer membrane has the potential for use in periodontal tissue regeneration.
机译:在受控形态的引导闭塞可生物降解膜的发展为了限制上皮细胞的发起症仍然是牙科组织工程中的挑战。通过冻干制定具有具有热弹性性能的非多孔上层(聚氨酯)和多孔下层(聚己内酯和生物活性玻璃复合物)的双层膜进行冻干。通过使用多溶剂体系来控制形态学,孔隙率和层附着。通过免疫组织化学和组织学分析体外和体内生物相容性,细胞附着和细胞增殖。细胞增殖率和细胞附着结果表明,两种表面的良好生物相容性,尽管细胞代谢活性在聚己内酯 - 生物活性玻璃表面上更好。此外,在下部多孔生物活性表面上可行,粘附和增殖细胞,而无孔聚氨酯表面呈现低电池附着,这是故意设计的,并且引导组织再生/引导骨再生膜的预先确定。此外,在大鼠模型中进行的体内研究六周显示膜的良好相容性。组织学分析(用苏木精和曙红染色)表明没有炎症或宿主免疫细胞积累的迹象。这些结果表明,制造的生物相容性双层膜具有用于牙周组织再生的可能性。

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