Shin-Ya Yoshitsune, Tsurushima Hideo, Tsurumi Taro, Kajiuchi Toshio, Leong Kam W
Department of International Development Engineering, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro, Tokyo 152-8550, Japan.
Macromol Biosci. 2004 May 17;4(5):526-31. doi: 10.1002/mabi.200300110.
Polyelectrolyte complex films were prepared with polyethyleneoxide-maleic acid copolymer and chitosan using a casting/solvent evaporation method. The films were examined in terms of their IR spectra, surface and cross-section morphologies, cytotoxicity, and swelling behavior at different pH levels. To assess the potential of these films as a biomedical device, the profiles of the release of model drug from the CS/PEOMA films were examined at pH 4.8. The surface morphology of the films was quite smooth and uniform, and the cross-sectional morphology was dense and homogeneous. The swelling behaviors of CS/PEOMA films were found to depend on the pH of the solution as well as on the CS/PEOMA composition. Drug release from different CS/PEOMA films at pH 4.8 was found to be dependent on film composition. The results showed the potential applicability of CS/PEOMA film as a drug delivery vehicle.
采用流延/溶剂蒸发法,以聚环氧乙烷-马来酸共聚物和壳聚糖制备了聚电解质复合膜。从红外光谱、表面和横截面形态、细胞毒性以及在不同pH值下的溶胀行为等方面对这些膜进行了研究。为了评估这些膜作为生物医学装置的潜力,在pH 4.8条件下考察了模型药物从壳聚糖/聚环氧乙烷-马来酸共聚物(CS/PEOMA)膜中的释放曲线。膜的表面形态相当光滑且均匀,横截面形态致密且均一。发现CS/PEOMA膜的溶胀行为取决于溶液的pH值以及CS/PEOMA的组成。在pH 4.8条件下,不同CS/PEOMA膜的药物释放取决于膜的组成。结果表明CS/PEOMA膜作为药物递送载体具有潜在的适用性。