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CARTILAGE TISSUE ENGINEERING USING A ELASTIC POLY(L-LACTIDE-CO-ε-CAPROLACTONE) SCAFFOLD

机译:用弹性聚(L-丙交酯-Co-ε-己内酯)支架的软骨组织工程

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Mechano-active scaffolds were fabricated from very elastic poly(L-lactide-co-ε-carprolactone). The scaffolds with 80% porosity and 300~500 μm pore size were prepared by a gel-pressing method. As a control group for elastic properties of polymer scaffolds, rigid poly L-lactide scaffolds were fabricated. The scaffolds were seeded with chondrocytes and cultured to evaluate the effect of elastic properties of polymer scaffolds for the differentiation and the ECM secretion of chondrocytes. Also, the chondrocytes-seeded constructs were implanted in nude mice subcutaneously to investigate their biocompatibility and cartilage formation. From the biochemical analyses, chondrogenic differentiation was sustained and enhanced significantly and chondral extracellular matrix was increased through mechanical stimulation of dynamic environment in the dynamic body systems. Histological analysis showed that implants of PLCL constructs formed mature and well-developed cartilaginous tissue, as evidenced by chondrocytes within lacunae. Consequently, the elastic PLCL scaffolds could be used to engineer cartilage in mechanically dynamic environments.
机译:机械活性支架由非常弹性聚(L-丙交酯-Co-ε-丙烯酮)制成。用80%的孔隙率和300〜500微米孔径将支架通过凝胶压方法制备。作为聚合物支架的弹性性能的对照组,制造刚性聚L-丙交酯支架。用软骨细胞播种支架,并培养以评估聚合物支架的弹性性能对软骨细胞的分化和ECM分泌的影响。而且,皮下植入裸鼠的软骨细胞种子构建体皮下注射以研究其生物相容性和软骨形成。从生物化学分析中,通过动态体系中动态环境的机械刺激,持续和增强,有显着和增强,骨髓细胞外基质增加,并且在动态体系中的动态环境增加。组织学分析表明,PLCL构建的植入物形成成熟和发育良好的软骨组织,如Lacunae内的软骨细胞所证明。因此,弹性PLCL支架可用于工程机械中的动态环境软骨。

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