Fan Jinyong, Shang Yi, Yang Jun, Yuan Yingjin
School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2009 Dec;26(6):1271-5.
The purpose of this research is to construct a kind of 3D-Scaffold with galactose-carrying polysaccharide for improving the function of hepatocytes in vitro. Galactose moieties were covalently coupled with hyaluronic acid through ethylenediamine. Galactosylated hyaluronic acid/chitosan scaffolds were prepared by lyophilization. The characteristics of the scaffolds such as morphology, hydrophilicity, and mechanical properties were investigated. The results indicated that the porosity and the pore size of the scaffolds made in -20 degrees C were useful used for culturing hepatocytes. And, the incorporating of hyaluronic acid in chitosan network improved the hydrophilicity and mechanical properties of the scaffolds. Rat primary hepatocytes growing in the scaffolds observed by phase-contrast microscope showed the multicellular spheroid morphologies. Therefore, galactosylated hyaluronic acid/chitosan scaffolds could be used as a promising scaffold for liver tissue engineering.
本研究的目的是构建一种带有半乳糖的多糖三维支架,以改善体外肝细胞的功能。半乳糖部分通过乙二胺与透明质酸共价偶联。通过冻干法制备了半乳糖化透明质酸/壳聚糖支架。研究了支架的形态、亲水性和力学性能等特性。结果表明,在-20℃下制备的支架的孔隙率和孔径有利于肝细胞培养。并且,透明质酸掺入壳聚糖网络中改善了支架的亲水性和力学性能。相差显微镜观察到在支架中生长的大鼠原代肝细胞呈现多细胞球体形态。因此,半乳糖化透明质酸/壳聚糖支架可作为一种有前景的肝组织工程支架。