去细胞化
再生(生物学)
脚手架
细胞外基质
静电纺丝
生物相容性
3D打印
材料科学
软骨
组织工程
3d打印
生物医学工程
复合材料
化学
聚合物
解剖
细胞生物学
工程类
医学
生物
冶金
生物化学
作者
Weiming Chen,Yong Xu,Yaqiang Li,Litao Jia,Xiumei Mo,Gening Jiang,Guangdong Zhou
标识
DOI:10.1016/j.cej.2019.122986
摘要
Cartilage decellularized matrix (CDM) is considered a promising biomaterial for fabricating cartilage tissue engineering scaffolds. An ideal CDM-based scaffold should possess customizable 3D shape for complex tissue regeneration and proper pore size for cell infiltration, as well as provide mechanical support for cell growth. 3D printing is an efficiently technique for preparing customizable 3D scaffolds, however, fabricating CDM-based 3D-printed scaffolds with customizable shapes, proper pore structure and satisfactory mechanical properties remains a challenge. In the current study, to achieve customizable CDM-based 3D scaffolds, CDM was successfully processed into inks suitable for 3D printing. Further, the poor mechanics of CDM-based scaffolds were significantly improved by adding electrospinning fiber into the CDM-based inks for 3D printing. Importantly, the 3D-printed electrospinning fiber-reinforced CDM-based scaffold presented good biocompatibility and can enhance repair articular cartilage defects in rabbits. The current study provides a novel strategy for printing electrospinning fiber-reinforced CDM-based scaffolds for tissue regeneration.
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