首页> 外文期刊>Journal of biomedical materials research, Part A >Effect of pore architecture and stacking direction on mechanical properties of solid freeform fabrication-based scaffold for bone tissue engineering
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Effect of pore architecture and stacking direction on mechanical properties of solid freeform fabrication-based scaffold for bone tissue engineering

机译:孔结构和堆积方向对基于固体自由形式制造的骨组织工程支架的力学性能的影响

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摘要

Fabrication of a three-dimensional (3D) scaffold with increased mechanical strength may be an essential requirement for more advanced bone tissue engineering scaffolds. Various material- and chemical-based approaches have been explored to enhance the mechanical properties of engineered bone tissue scaffolds. In this study, the effects of pore architecture and stacking direction on the mechanical and cell proliferation properties of a scaffold were investigated. The 3D scaffold was prepared using solid freeform fabrication technology with a multihead deposition system. Various types of scaffolds with different pore architectures (lattice, stagger, and triangle types) and stacking directions (horizontal and vertical directions) were fabricated with a blend of polycaprolactone and poly lactic-co-glycolic acid. In compression tests, the triangle-type scaffold was the strongest among the experimental groups. Stacking direction affected the mechanical properties of scaffolds. An in vitro cell counting kit-8 assay showed no significant differences in optical density depending on the different pore architectures and stacking directions. In conclusion, mechanical properties of scaffolds can be enhanced by controlling pore architecture and stacking direction.
机译:具有更高机械强度的三维(3D)支架的制造可能是更高级的骨组织工程支架的基本要求。已经探索了各种基于材料和化学的方法来增强工程骨组织支架的机械性能。在这项研究中,研究了孔结构和堆叠方向对支架的机械和细胞增殖特性的影响。使用具有多头沉积系统的固态自由形式制造技术制备3D支架。用聚己内酯和聚乳酸-共-乙醇酸的混合物制造了具有不同孔结构(晶格,交错和三角形类型)和堆叠方向(水平和垂直方向)的各种类型的支架。在压缩测试中,三角型脚手架是实验组中最坚固的。堆叠方向影响支架的机械性能。体外细胞计数试剂盒8检测结果显示,根据不同的孔结构和堆积方向,光密度没有显着差异。总之,可以通过控制孔结构和堆叠方向来增强支架的机械性能。

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