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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Preparation of collagen scaffolds with controlled pore structures and improved mechanical property for cartilage tissue engineering
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Preparation of collagen scaffolds with controlled pore structures and improved mechanical property for cartilage tissue engineering

机译:具有可控的孔结构和改善的力学性能的软骨组织工程胶原支架的制备

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摘要

Appropriate pore structures and mechanical properties are required for scaffolds that are used for tissue engineering and regenerative medicine. In this study, pre-prepared ice particulates were used as a porogen material to prepare collagen porous scaffolds with well-controlled pore structures and improved mechanical properties. Porogen ice particulates initiated the formation of interconnected large spherical pores surrounded by small pores. The large spherical pores were well compacted and increased the elastic modulus of the scaffolds. The unique pore structures facilitated cell penetration, resulting in a homogeneous cell distribution throughout the scaffolds. The excellent mechanical properties protected the scaffolds from deformation during cell culturing and implantation. The collagen porous scaffolds facilitated cartilage regeneration when bovine articular chondrocytes were cultured in these scaffolds. The use of pre-prepared ice particulates as a porogen material proved to be a useful method to control the pore structure and improve the mechanical properties of collagen-based porous scaffolds.
机译:用于组织工程和再生医学的支架需要适当的孔结构和机械性能。在这项研究中,预先制备的冰粒被用作致孔剂材料,以制备具有良好控制的孔结构和改善的机械性能的胶原蛋白多孔支架。致孔剂冰粒引发了相互连接的球形大孔隙的形成,这些孔隙被小孔包围。大的球形孔被很好地压实并增加了支架的弹性模量。独特的孔结构促进细胞渗透,从而导致整个支架内细胞分布均匀。优异的机械性能可防止支架在细胞培养和植入过程中变形。当在这些支架中培养牛关节软骨细胞时,胶原多孔支架促进软骨再生。事实证明,使用预制的冰粒作为致孔剂材料是控制孔结构和改善胶原基多孔支架的机械性能的有用方法。

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