State Key Laboratory of New Textile Materials and Advanced Processing, Wuhan Textile University, Wuhan 430073, China.
Carbohydr Polym. 2014 Jan;99:31-8. doi: 10.1016/j.carbpol.2013.08.048. Epub 2013 Aug 22.
The interpenetrating polymer networks (IPN) hydrogels based on chitosan and gelatin using genipin as the cross-linker were prepared and characterized. The IPN formation of the genipin-cross-linked chitosan/gelatin hydrogel was confirmed by means of the instrinsic viscosity measurement, Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM) and the ninhydrin assays. The instrinsic viscosity measurement, FT-IR and SEM suggested that chitosan and gelatin were miscible in the molecular level. The miscibility leads to the formation of IPN after cross-linking. FT-IR also examined the cross-linking mechanism of genipin with primary amino groups. The degree of cross-linking increased with increase genipin concentration. Swelling results revealed that the IPN hydrogels are pH-sensitive, exhibiting reversibility and rather rapidly response in swelling to pH changes. It is expected this IPN hydrogel has potential as controlled drug delivery system or as alternative sorbents for biomedical and environmental use as pH altered.
基于壳聚糖和明胶的互穿聚合物网络(IPN)水凝胶是使用京尼平作为交联剂制备和表征的。通过特性粘度测量、傅里叶变换红外光谱(FT-IR)、扫描电子显微镜(SEM)和茚三酮测定证实了京尼平交联的壳聚糖/明胶水凝胶的 IPN 形成。特性粘度测量、FT-IR 和 SEM 表明壳聚糖和明胶在分子水平上是可混溶的。混溶性导致交联后形成 IPN。FT-IR 还研究了京尼平与伯氨基的交联机制。交联度随京尼平浓度的增加而增加。溶胀结果表明,IPN 水凝胶对 pH 值敏感,在 pH 值变化时表现出可逆性和较快的响应。预计这种 IPN 水凝胶具有作为控制药物释放系统的潜力,或作为替代生物医学和环境用途的吸附剂,因为 pH 值发生了变化。