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Biocompatible macroporous polymer scaffold and a process for growing tissue therein

机译:生物相容性大孔聚合物支架及其中组织生长的方法

摘要

A polymer scaffold is provided having an extensively interconnected macroporous network with macropores having microporous struts as walls. Macropore diameter ranges from about 0.5 to about 3.5 mm. The polymer may be a biocompatible, biodegradable polymer such as poly(lactide-co-glycolide) containing 75% polylactide and 25% polyglycolide. The polymer scaffold is prepared by mixing a liquid polymer with particles, precipitating the liquid polymer with a non-solvent for the liquid polymer and dissolving the particles with a solvent to form the macroporous polymer scaffold which preferably has porosity greater than 50%. The surface of the polymer scaffold may be modified by acid or base treatment, or by collagen or calcium phosphate deposition. The polymer scaffold has utility for tissue engineering, particularly as a scaffold for in vitro and in vivo cell growth.
机译:提供了具有广泛互连的大孔网络的聚合物支架,所述大孔网络具有以微孔支柱作为壁的大孔。大孔直径为约0.5至约3.5mm。该聚合物可以是生物相容的,可生物降解的聚合物,例如含有75%的聚丙交酯和25%的聚乙交酯的聚(丙交酯-共-乙交酯)。通过将液体聚合物与颗粒混合,使液体聚合物与用于液体聚合物的非溶剂沉淀并且用溶剂溶解颗粒以形成大孔聚合物支架来制备聚合物支架,所述大孔聚合物支架优选具有大于50%的孔隙率。聚合物支架的表面可以通过酸或碱处理,或者通过胶原或磷酸钙沉积来改性。该聚合物支架可用于组织工程,特别是作为体外和体内细胞生长的支架。

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