材料科学
自愈水凝胶
复合材料
甲壳素
极限抗拉强度
肿胀 的
聚合
原位聚合
药物输送
复合数
纳米纤维
丙烯酰胺
高分子化学
壳聚糖
纳米技术
聚合物
化学工程
共聚物
工程类
作者
Jianhua Lv,Yaru Fang,Mi Wu,Xiaoyu Ou,Wenchang Zhang,Shiyu Wang,Huaiguo Li,L. Shang,Mingfeng He,Yan Zhao
标识
DOI:10.1016/j.mtcomm.2022.105163
摘要
Microsized β-chitin fibers were prepared, and PAAm /β-chitin composited hydrogels were synthesized by situ free radical polymerization. The morphology, mechanical properties, swelling ratio, transparency and drug release capabilities of the composited PAAm hydrogels were studied systematically. The results showed that the microsized β-chitin fibers were evenly dispersed in the PAAm hydrogels, and the tensile and compressive strength of PAAm hydrogels were increased by 2.1 folds and 4.4 folds respectively by adding with 15 phr microsized β-chitin fibers, while water absorbency and transparency of the hydrogels were decreased with higher microsized β-chitin fibers content. The drug release behaviors of diclofenac sodium in the hydrogel followed the Fickian diffusion mechanism with n value of 0.099 and 0.147 for PAAm hydrogels and PAAm/β-chitin composite hydrogels respectively, and the release time of 60 % drug were extended from 1 h to 5 h by the addition of 5 phr microsized β-chitin fibers. The results indicate that microsized β-chitin fibers can improve the mechanical properties and decrease the drug release rate of PAAm hydrogel, and the composited hydrogels may find potential applications in the field of transdermal drug delivery system.
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