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Electroactive Tissue Scaffolds with Aligned Pores as Instructive Platforms for Biomimetic Tissue Engineering

机译:具有对齐的毛孔作为仿生组织工程指导平台的电活性组织支架。

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Tissues in the body are hierarchically structured composite materials with tissue-specific chemical and topographical properties. Here we report the preparation of tissue scaffolds with macroscopic pores generated via the dissolution of a sacrificial supramolecular polymer-based crystal template (urea) from a biodegradable polymer-based scaffold (polycaprolactone, PCL). Furthermore, we report a method of aligning the supramolecular polymer-based crystals within the PCL, and that the dissolution of the sacrificial urea yields scaffolds with macroscopic pores that are aligned over long, clinically-relevant distances (i.e., centimeter scale). The pores act as topographical cues to which rat Schwann cells respond by aligning with the long axis of the pores. Generation of an interpenetrating network of polypyrrole (PPy) and poly(styrene sulfonate) (PSS) in the scaffolds yields electroactive tissue scaffolds that allow the electrical stimulation of Schwann cells cultured on the scaffolds which increases the production of nerve growth factor (NGF).
机译:人体组织是具有组织特定化学和地形特性的层次结构复合材料。在这里,我们报告通过从生物可降解的聚合物基支架(聚己内酯,PCL)中溶解一种基于牺牲性超分子聚合物的晶体模板(尿素)产生的具有宏观孔的组织支架的制备。此外,我们报告了一种在PCL中对齐基于超分子聚合物的晶体的方法,并且牺牲尿素的溶解会产生具有宏观孔的支架,这些孔在临床上相关的较长距离(即厘米级)上对齐。孔充当地形线索,大鼠雪旺细胞通过与孔的长轴对齐来响应。支架中聚吡咯(PPy)和聚(苯乙烯磺酸盐)(PSS)互穿网络的产生产生电活性组织支架,该支架可电刺激在支架上培养的雪旺氏细胞,从而增加神经生长因子(NGF)的产生。

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