Park So Hee, Park Su A, Kang Yun Gyeong, Shin Ji Won, Park Young Shik, Gu Seo Rin, Wu Yan Ru, Wei Jie, Shin Jung-Woog
1Department of Biomedical Engineering, Inje University, 197 Inje-ro, Gimhae, 50834 Korea.
2Korea Institute of Machinery and Materials, 156, Gajeongbuk-Ro, Yuseong-Gu, Daejeon, 34103 Korea.
Tissue Eng Regen Med. 2017 Jun 12;14(4):349-358. doi: 10.1007/s13770-017-0022-9. eCollection 2017 Aug.
We investigated the use of Polycaprolactone (PCL)/ β-tricalcium phosphate (β-TCP) composites with applied mechanical stimulation as scaffold for bone tissue engineering. PCL-based three-dimensional (3D) structures were fabricated in a solvent-free process using a 3D-printing technique. The mass fraction of β-TCP was varied in the range 0-30%, and the structure and compressive modulus of the specimens was characterized. The shape and interconnectivity of the pores was found to be satisfactory, and the compressive modulus of the specimens was comparable with that of human trabecular bone. Human mesenchymal stem cells were seeded on the composites, and various biological evaluations were performed over 9 days. With a mass fraction of β-TCP of 30%, differentiation began earlier; however, the cell proliferation rate was lower. Through the use of mechanical stimulation, however, the proliferation rate recovered, and was comparable with that of the other groups. This stimulation effect was also observed in ECM generation and other biological assays. With mechanical stimulation, expression of osteogenic markers was lower on samples with a β-TCP content of 10 wt% than without β-TCP; however, with mechanical stimulation, the sample with a β-TCP content of 30 wt% exhibited significantly greater expression of those markers than the other samples. We found that mechanical stimulation and the addition of β-TCP interacted closely, and that a mass fraction of β-TCP of 30% was particularly useful as a bone tissue scaffold when accompanied by mechanical stimulation.
我们研究了应用机械刺激的聚己内酯(PCL)/β-磷酸三钙(β-TCP)复合材料作为骨组织工程支架的用途。采用3D打印技术,通过无溶剂工艺制备了基于PCL的三维(3D)结构。β-TCP的质量分数在0-30%范围内变化,并对试样的结构和压缩模量进行了表征。发现孔隙的形状和连通性令人满意,试样的压缩模量与人类松质骨相当。将人间充质干细胞接种在复合材料上,并在9天内进行了各种生物学评估。当β-TCP的质量分数为30%时,分化开始得更早;然而,细胞增殖率较低。然而,通过使用机械刺激,增殖率得以恢复,且与其他组相当。在细胞外基质生成和其他生物学检测中也观察到了这种刺激效果。在机械刺激下,β-TCP含量为10 wt%的样品上成骨标志物的表达低于不含β-TCP的样品;然而,在机械刺激下,β-TCP含量为30 wt%的样品中这些标志物的表达明显高于其他样品。我们发现机械刺激和β-TCP的添加密切相互作用,并且当伴有机械刺激时,30%的β-TCP质量分数作为骨组织支架特别有用。