Du Lin, Yang Xiaohui, Li Wenqiang, Luo Xuhui, Wu Hao, Zhang Jiaqing, Tu Mei
Department of Materials Science and Engineering, Jinan University, Guangzhou 510632, People's Republic of China; Engineering Research Center of Artificial Organs and Materials, Ministry of Education, Jinan University, Guangzhou 510632, People's Republic of China.
Engineering Research Center of Artificial Organs and Materials, Ministry of Education, Jinan University, Guangzhou 510632, People's Republic of China; The First Affiliated Hospital, Jinan University, Guangzhou 510632, People's Republic of China.
Regen Biomater. 2017 Feb;4(1):39-45. doi: 10.1093/rb/rbw035. Epub 2016 Oct 26.
In order to provide a novel biomimetic composite substrate for tissue engineering and explore the interaction between cells and this type of material, we developed chitosan/liquid crystal (CS/LC) composite hydrogel with embedded LC phases by composing of cholesterol hydroxypropyl cellulose ester liquid crystalline material and CS. The micromorphology of CS/LC composite hydrogels exhibited 'islands-sea' phase separation structures similar to the 'fluid mosaic model' of biomembrane. In vitro cell compatibility study suggested that 3T3 is fibroblasts exhibited better initial cell adhesions and higher proliferation rates on the composite hydrogel than on the polystyrene control plate and the pure LC membrane. This novel CS/LC composite hydrogel provides more favorable interface for cell growth and proliferation and may serve as potentially active substrate for engineering interfaces to live cells.
为了提供一种用于组织工程的新型仿生复合基质,并探索细胞与这类材料之间的相互作用,我们通过将胆固醇羟丙基纤维素酯液晶材料与壳聚糖(CS)复合,制备了具有嵌入液晶相的壳聚糖/液晶(CS/LC)复合水凝胶。CS/LC复合水凝胶的微观形态呈现出类似于生物膜“流体镶嵌模型”的“岛-海”相分离结构。体外细胞相容性研究表明,3T3成纤维细胞在复合水凝胶上比在聚苯乙烯对照板和纯液晶膜上表现出更好的初始细胞黏附性和更高的增殖率。这种新型CS/LC复合水凝胶为细胞生长和增殖提供了更有利的界面,可能作为与活细胞工程界面的潜在活性基质。