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A Novel Osteochondral Scaffold Fabricated via Multi-nozzle Low-temperature Deposition Manufacturing

机译:通过多喷嘴低温沉积制造的新型骨软骨支架

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摘要

A functional-region/separate-interface/single-cell-type of tissue engineering pathway was evaluated to regenerate osteochondral defects that are deep in the marrow cavity. A gradient osteochondral scaffold fabricated via a rapid prototyping technology, called multi-nozzle low-temperature deposition manufacturing, was composed of three parts with different materials and pore-structures, respectively, for bone, cartilage and a separate interface between them. The separate interface was composed of micro-pores, that were less than 5 μm and with low porosity, to reduce or to avoid the destruction of the micro-environment in vivo by preventing blood and cells and reducing the amount of oxygen and nutrients moving from the marrow cavity to the articulate marrow. The preliminary results after 6 weeks of implantation into 4 mm diameter osteochondral defects in the knee joints of rabbits showed that the defects with the scaffold/cells composition had bone-like or cartilage-like tissue filling the defects with smooth surface, while the defects with nothing (blank) showed only fibrous tissue.
机译:对功能区域/分离界面/单细胞类型的组织工程通路进行了评估,以再生骨髓腔深处的骨软骨缺损。通过快速原型技术制造的梯度骨软骨支架,称为多喷嘴低温沉积制造,由三个部分组成,分别具有不同的材料和孔结构,分别用于骨骼,软骨和它们之间的单独界面。单独的界面由小于5μm且孔隙率低的微孔组成,可通过防止血液和细胞并减少氧气和营养物质从体内移动而减少或避免破坏体内的微环境。骨髓腔至关节的骨髓。植入兔膝关节4 mm直径的骨软骨缺损6周后的初步结果表明,支架/细胞组成的缺损具有骨样或软骨样组织,填补了表面光滑的缺损,而缺损则具有没有(空白)仅显示纤维组织。

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