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Fabrication of fibrin scaffolds with controlled microscale architecture by a two-photon polymerization-micromolding technique

机译:通过双光子聚合-微成型技术制备具有可控的微米级结构的纤维蛋白支架

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摘要

Fabrication of three-dimensional (3D) fibrin scaffolds with tightly controllable pore sizes and interconnections has been investigated. The scaffolds were produced using a combination of two-photon polymerization (2PP) and micromolding techniques. Master structures were fabricated by 2PP and regenerated in fibrin by a two-step microreplication procedure. Scanning electron and optical microscopy observations showed that the fibrin scaffolds exhibited a highly porous and interconnected structure. Seeding of endothelial cells in fibrin scaffolds resulted in their directed lining and spreading within network of microreplicated pores, whereas encapsulation of endothelial cells in fibrin gel blocks led to their chaotic and irregular distribution within constructs. These results demonstrate that the 2PP–micromolding technique is suitable for fabrication of complex 3D structures from natural proteins for tissue engineering applications.
机译:已经研究了具有可严格控制的孔径和互连性的三维(3D)纤维蛋白支架的制备。使用双光子聚合(2PP)和微成型技术的组合来生产支架。主体结构由2PP制成,并通过两步微复制程序在纤维蛋白中再生。扫描电子和光学显微镜观察表明,纤维蛋白支架表现出高度多孔和相互连接的结构。内皮细胞在纤维蛋白支架中的播种导致它们定向排列并在微复制孔网络内扩散,而内皮细胞在纤维蛋白凝胶块中的包封导致它们在构建物中混乱和不规则分布。这些结果表明,2PP微成型技术适用于从天然蛋白质制造复杂的3D结构,用于组织工程应用。

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