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Co-extrusion of biocompatible polymers for scaffolds with co-continuous morphology

机译:具有共连续形态的生物相容性聚合物共挤出用于支架

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摘要

A methodology for the preparation of porous scaffolds for tissue engineering using co-extrusion is presented. Poly(epsilon-caprolactone) is blended with poly(ethylene oxide) in a twin-screw extruder to form a two-phase material with micron-sized domains. Selective dissolution of the poly(ethylene oxide) with water results in a porous material. A range of blend volume fractions results in co-continuous networks of polymer and void spaces. Annealing studies demonstrate that the characteristic pore size may be increased to larger than 100 mu m. The mechanical properties of the scaffolds are characterized by a compressive modulus on the order of 1 MPa at low strains but displaying a marked strain-dependence. The results of osteoblast seeding suggest it is possible to use co-extrusion to prepare polymer scaffolds without the introduction of toxic contaminants. Polymer co-extrusion is amenable to both laboratory- and industrial-scale production of scaffolds for tissue engineering and only requires theological characterization of the blend components. This method leads to scaffolds that have continuous void space and controlled characteristic length scales without the use of potentially toxic organic solvents.
机译:提出了一种使用共挤出制备用于组织工程的多孔支架的方法。在双螺杆挤出机中将聚(ε-己内酯)与聚(环氧乙烷)混合,以形成具有微米级畴的两相材料。聚环氧乙烷与水的选择性溶解产生多孔材料。一定范围的共混物体积分数导致聚合物和空隙空间的共连续网络。退火研究表明,特征孔径可以增加到大于100微米。支架的机械性能的特征在于,在低应变下的压缩模量约为1 MPa,但显示出明显的应变依赖性。成骨细胞播种的结果表明,可以使用共挤出法制备聚合物支架而不会引入有毒污染物。聚合物共挤出适用于实验室和工业规模的组织工程支架生产,并且只需要对共混物成分进行流变学表征即可。该方法导致具有连续空隙空间和受控特征长度尺度的支架,而无需使用潜在有毒的有机溶剂。

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