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Hybrid Type of Tissue Engineered Biodisc using Annulus Fibrosus Seeded PLGA Scaffold and Nucleus Pulposus Seeded MPEG-PCL Hydrogel: Preliminary Study

机译:使用环状纤维植物割草机支架和细胞核粉浆种子MPEG-PCL水凝胶的混合型组织工程BIODISC:初步研究

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Recently, it has been studied tissue engineered technique as novel approaches for treatment of the degenerative intervertebral disc (IVD). We designed the hybrid type of IVD mimicked scaffolds with poly(lactide-co-glycolide) (PLGA) and methoxypoly(ethyleneglycol)-poly(epsilon-caprolactone) (MPEG-PCL) diblock copolymers in order to application for the tissue engineered IVD. The MPEG-PCL solutions formed a gel-to-sol phase transitions as the temperature was increasesd. MPEG-PCL diblock copolymers were prepared by ring opening polymerization, and then nucleus pulposus (NP) cell was impregnated. Also, in order to restore annulus fibrosus (AF), we fabricated PLGA scaffold by solvent casting/salt leaching method. We confirmed disc cell function in manufactured scaffold through MTT assay in vitro and gross morphology and special staining in vivo for the possibility of the application of tissue engineering techniques.
机译:最近,已经研究了组织工程技术作为治疗退行性椎间盘(IVD)的新方法。我们设计了用聚(丙交酯 - 共乙酰胺)(PLGA)和甲氧基聚氯乙烯(乙二醇) - 聚(ε-己内酯)(MPEG-PCL)二嵌段共聚物的杂交类型的IVD模仿支架,以施用组织工程化IVD。随着温度的增加,MPEG-PCL溶液形成了凝胶 - 溶胶相转变。通过开环聚合制备MPEG-PCL二嵌段共聚物,然后浸渍核脉搏(NP)细胞。此外,为了恢复环纤维(AF),我们通过溶剂铸造/盐浸出方法制造了PLGA支架。我们通过MTT测定在体外和总体形态和特殊染色中确认了在制造的支架中的光电细胞功能,并且在体内进行了特殊染色,以适用组织工程技术的可能性。

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