3D printing of PLA/n-HA composite scaffolds with customized mechanical properties and biological functions for bone tissue engineering

脚手架 生物相容性 聚乳酸 材料科学 生物医学工程 组织工程 复合数 骨组织 体内 熔融沉积模型 制作 3D打印 复合材料 医学 聚合物 病理 替代医学 冶金 生物技术 生物
作者
Wenzhao Wang,Boqing Zhang,Mingxin Li,Jun Li,Chengyun Zhang,Yanlong Han,Li Wang,Kefeng Wang,Changchun Zhou,Lei Liu,Yujiang Fan,Xingdong Zhang
出处
期刊:Composites Part B-engineering [Elsevier]
卷期号:224: 109192-109192 被引量:156
标识
DOI:10.1016/j.compositesb.2021.109192
摘要

Bone defect caused by trauma, tumor, infection, and other reasons is a thorny problem that needs to be solved in orthopedic clinic. Customized bone repair biomaterials and their fabrication still need to be explored. Three-dimensional (3D) printing is a high-speed fabrication process for bone tissue biomaterials, which paves the way of solving clinical bone defect problems in a new way. In this study, the fused deposition modeling (FDM) technology was used to prepare the composite scaffolds of polylactic acid (PLA) and nano-hydroxyapatite (n-HA). The composite scaffold was optimized by material characterization, mechanical property test, and in vitro bone marrow mesenchymal stem cells biocompatibility test. Finally, a rabbit model was established to evaluate the osteogenic ability of PLA/n-HA scaffolds in vivo. The results showed that the PLA/n-HA composites proposed in this study were highly printable, and the printed scaffold showed tunable mechanical strength accompanied by the proportion of n-HA components. The biocompatibility and osteogenic induction properties were proved better than that of the pure PLA scaffold. This composite scaffold of PLA and n-HA provides a promising strategy for the repair of large bone defects.
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