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采用冰颗粒模板法制备用于组织工程的开孔多孔透明质酸支架

Preparation of Open Porous Hyaluronic Acid Scaffolds for Tissue Engineering Using the Ice Particulate Template Method.

作者信息

Ko Young-Gwang, Oh Hwan Hee, Kawazoe Naoki, Tateishi Tetsuya, Chen Guoping

机构信息

a Graduate School of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8571, Japan; Biomaterials Center, National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan.

出版信息

J Biomater Sci Polym Ed. 2011;22(1-3):123-38. doi: 10.1163/092050609X12580983951602.

Abstract

A novel method to fabricate highly interconnected porous hyaluronic acid (HA) scaffolds with open surface pore structures was developed by using embossed ice particulates as a template. HA sponges were cross-linked by water-soluble carbodiimide (WSC) and the optimal cross-linking condition was analyzed by infrared spectroscopy. Cross-linking with 50 mM WSC in a 90% (v/v) ethanol/water solvent mixture assured the highest degree of cross-linking and most stable structure and, therefore, was used to cross-link the HA sponges. Observation with a scanning electron microscope showed that the HA scaffolds had funnel-like porous structures. There were large, open pores on the top surfaces and inner bulk pores under the top surface of the funnel-like HA sponges. The inner bulk pores were interconnected with the large, top surface pores and extended into the whole sponge. The pore morphology and density of the large, top surface pores were dependent on the dimension and density of the ice particulates. The size of the inner bulk pores was dependent on the freezing temperature. The funnel-like pore structures of the HA sponges facilitated cell penetration into the inner pores of the sponges and resulted in homogenous cell distribution in the sponges.

摘要

通过使用压花冰颗粒作为模板,开发了一种制备具有开放表面孔隙结构的高度互连多孔透明质酸(HA)支架的新方法。HA海绵通过水溶性碳二亚胺(WSC)交联,并通过红外光谱分析最佳交联条件。在90%(v/v)乙醇/水溶剂混合物中用50 mM WSC交联可确保最高程度的交联和最稳定的结构,因此用于交联HA海绵。扫描电子显微镜观察表明,HA支架具有漏斗状多孔结构。在漏斗状HA海绵的顶表面有大的开放孔,顶表面下方有内部大孔。内部大孔与顶表面的大孔相互连接并延伸到整个海绵中。顶表面大孔的孔形态和密度取决于冰颗粒的尺寸和密度。内部大孔的大小取决于冷冻温度。HA海绵的漏斗状孔结构促进细胞渗透到海绵的内部孔中,并导致细胞在海绵中均匀分布。

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