MIRA Institute for Biomedical Engineering and Technical Medicine, Department of Biomaterials Science and Technology, University of Twente, PO Box 217, 7500 AE Enschede, The Netherlands.
Macromol Biosci. 2013 Dec;13(12):1711-9. doi: 10.1002/mabi.201300399. Epub 2013 Nov 11.
The aim of this study is to investigate the applicability of flexible and elastic poly(trimethylene carbonate) (PTMC) structures prepared by stereolithography as scaffolds for cartilage tissue engineering. A three-armed methacrylated PTMC macromer with a molecular weight of 3100 g mol(-1) is used to build designed scaffolds with a pore diameter of 350 ± 12 μm and a porosity of 54.0 ± 2.2%. Upon seeding of bovine chondrocytes in the scaffolds, the cells adhere and spread on the PTMC surface. After culturing for 6 weeks, also cells with a round morphology are present, indicative of the differentiated chondrocyte phenotype. Sulphated glycosaminoglycans and fibrillar collagens are deposited by the cells. During culturing for 6 weeks, the compression moduli of the constructs increases 50% to approximately 100 kPa.
本研究旨在探讨通过立体光刻技术制备的柔性和弹性聚(三亚甲基碳酸酯)(PTMC)结构作为软骨组织工程支架的适用性。使用三臂甲基丙烯酸酯化 PTMC 大分子单体(分子量为 3100 g/mol)构建具有 350±12μm 孔径和 54.0±2.2%孔隙率的设计支架。在支架中接种牛软骨细胞后,细胞在 PTMC 表面黏附和铺展。培养 6 周后,还存在形态呈圆形的细胞,表明其具有分化的软骨细胞表型。细胞分泌硫酸化糖胺聚糖和纤维状胶原。在培养 6 周期间,构建体的压缩模量增加了 50%,约为 100 kPa。