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Porous Polymer Scaffolds for Neural Tissue Engineering and Methods of Producing the Same

机译:用于神经组织工程的多孔聚合物支架及其生产方法

摘要

The present invention relates to scaffolds that can physically guide cells, e.g. neurons, while best matching the material properties of native tissue. The present invention also relates to methods of generating such scaffolds, and for the use of such scaffolds, e.g. in spinal cord and peripheral nerve injury repair. The methods of the present invention include a uniquely controlled freeze casting process to generate highly porous, linearly oriented scaffolds. The scaffolds of the present invention not only comprise a highly aligned porosity, but also contain secondary guidance structures in the form of ridges running parallel to the pores to create a series of microstructured and highly aligned channels. This hierarchy of structural guidance aligns and guides neurite outgrowth down the channels created by the ridges, and keep neurites from branching perpendicular to the inter-ridge grooves.
机译:本发明涉及可以物理指导细胞例如细胞的支架。神经元,同时最匹配天然组织的材料特性。本发明还涉及产生此类支架的方法,以及用于此类支架的方法,例如,将所述支架用于治疗。在脊髓和周围神经损伤修复。本发明的方法包括独特控制的冷冻浇铸工艺,以产生高度多孔的线性取向的支架。本发明的支架不仅包括高度对齐的孔隙率,而且还包含以平行于孔的脊的形式的次级引导结构,以形成一系列微结构和高度对齐的通道。这种结构引导的层次结构将神经突向外排列并引导由脊形成的通道,并防止神经突垂直于脊间沟槽而分支。

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