脚手架
己内酯
组织工程
材料科学
成纤维细胞
化学工程
细胞粘附
粘附
高分子化学
共聚物
生物物理学
生物医学工程
化学
复合材料
体外
聚合物
生物化学
工程类
生物
医学
作者
Il Keun Kwon,K. D. Park,Seungyeop Choi,S.-H. Lee,E. B. Lee,J. S. Na,Sunghoon Kim,Y.H. Kim
标识
DOI:10.1163/15685620152691904
摘要
Novel porous matrices made of a copolymer of glycolide (G) and ε-caprolactone (CL) (51 : 49, Mw 103 000) was prepared for tissue engineering using a solvent-casting particulate leaching method. Poly(glycolide-co-ε-caprolactone) (PGCL) copolymer showed a rubber-like elastic characteristic, in addition to an amorphous property and fast biodegradability. In order to investigate the effect on the fibroblast culture, PGCL scaffolds of varying porosity and pore size, in addition to surfacehydrolysis or collagen coating, were studied. The large pore-sized scaffold (pore size >150 μm) demonstrated a much greater cell adhesion and proliferation than the small pore-sized one. In addition, the higher porosity, the better the cell adhesion and proliferation. The surface-hydrolyzed PGCL scaffold showed enhanced cell adhesion and proliferation compared with the unmodified one. Type I collagen coating revealed a more pronounced contribution for increased cell interactions than the surface-hydrolyzed one. These results demonstrate that surface-modified PGCL scaffold can provide a suitable substrate for fibroblast culture, especially in the case of soft tissue regenerations.
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