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Biodegradable elastomeric scaffolds for soft tissue engineering

机译:用于软组织工程的可生物降解的弹性体支架

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Elastomeric copolymers of 1,3-trimethylene carbonate (TMC) and epsilon-caprolactone (CL) and copolymers of TMC and D,L-lactide (DLLA) have been evaluated as candidate materials for the preparation of biodegradable scaffolds for soft tissue engineering. TMC-DLLA copolymers are amorphous and degrade more rapidly in phosphate-buffered saline (PBS) of pH 7.4 at 37 degreesC than (semi-crystalline) TMC-CL copolymers. TMC-DLLA with 20 or 50 mol% TMC loose their tensile strength in less than 5 months and are totally resorbed in 11 months. In PBS, TMC-CL copolymers retain suitable mechanical properties for more than a year. Cell seeding studies show that rat cardiomyocytes and human Schwarm cells attach and proliferate well on the TMC-based copolymers. TMC-DLLA copolymers with either 20 or 50 mol% of TMC are totally amorphous and very flexible, making them excellent polymers for the preparation of porous scaffolds for heart tissue engineering. Porous structures of TMC-DLLA copolymers were prepared by compression molding and particulate leaching techniques. TMC-CL (co)polymers were processed into porous two-ply tubes by means of salt leaching (inner layer) and fiber winding (outer layer) techniques. These grafts, seeded with Schwann cells, will be used as nerve guides for the bridging of large peripheral nerve defects. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 18]
机译:1,3-三亚甲基碳酸酯(TMC)和ε-己内酯(CL)的弹性体共聚物以及TMC和D,L-丙交酯(DLLA)的共聚物已被评估为制备软组织工程用可生物降解支架的候选材料。 TMC-DLLA共聚物是无定形的,与(半结晶)TMC-CL共聚物相比,在pH 7.4的磷酸盐缓冲盐水(PBS)中于37℃降解更快。具有20或50 mol%TMC的TMC-DLLA在不到5个月的时间内失去了拉伸强度,并在11个月内被完全吸收。在PBS中,TMC-CL共聚物保留合适的机械性能超过一年。细胞播种研究表明,大鼠心肌细胞和人类Schwarm细胞在基于TMC的共聚物上附着并增殖良好。具有20或50摩尔%TMC的TMC-DLLA共聚物是完全无定形且非常柔软的,使其成为制备用于心脏组织工程的多孔支架的优秀聚合物。 TMC-DLLA共聚物的多孔结构是通过压缩成型和颗粒浸出技术制备的。通过盐浸(内层)和纤维缠绕(外层)技术将TMC-CL(共)聚合物加工成多孔的两层管。这些植入了施旺细胞的移植物将被用作桥接大型周围神经缺损的神经向导。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:18]

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