自愈水凝胶
细胞包封
材料科学
自愈
壳聚糖
醛
体内
硫酸软骨素
组织工程
伤口愈合
生物物理学
生物相容性
生物医学工程
化学
生物化学
高分子化学
糖胺聚糖
外科
医学
替代医学
生物技术
病理
冶金
生物
催化作用
作者
Shaoyu Lü,Chunmei Gao,Xiubin Xu,Xiao Bai,Haogang Duan,Nannan Gao,Chen Feng,Yun Xiong,Mingzhu Liu
标识
DOI:10.1021/acsami.5b03143
摘要
With the fast development of cell therapy, there has been a shift toward the development of injectable hydrogels as cell carriers that can overcome current limitations in cell therapy. However, the hydrogels are prone to damage during use, inducing cell apoptosis. Therefore, this study was carried out to develop an injectable and self-healing hydrogel based on chondroitin sulfate multiple aldehyde (CSMA) and N-succinyl-chitosan (SC). By varying the CSMA to SC ratio, the hydrogel stiffness, water content, and kinetics of gelation could be controlled. Gelation readily occurred at physiological conditions, predominantly due to a Schiff base reaction between the aldehyde groups on CSMA and amino groups on SC. Meanwhile, because of the dynamic equilibrium of Schiff base linkage, the hydrogel was found to be self-healing. Cells encapsulated in the hydrogel remained viable and metabolically active. In addition, the hydrogel produced minimal inflammatory response when injected subcutaneously in a rat model and showed biodegradability in vivo. This work establishes an injectable and self-healing hydrogel derived from carbohydrates with potential applications as a cell carrier and in tissue engineering.
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