自愈水凝胶
壳聚糖
肿胀 的
化学工程
3D生物打印
海藻酸钠
离子键合
材料科学
化学
高分子化学
钠
组织工程
复合材料
生物医学工程
有机化学
离子
工程类
医学
作者
Guiting Yu,Chunqing Niu,Jiali Liu,Jue Wu,Zheng Jin,Yiyu Wang,Kai Zhao
出处
期刊:ACS omega
[American Chemical Society]
日期:2023-05-20
卷期号:8 (22): 19752-19766
被引量:16
标识
DOI:10.1021/acsomega.3c01401
摘要
A self-cross-linking and biocompatible hydrogel has wide application potential in the field of tissue engineering. In this work, an easily available, biodegradable, and resilient hydrogel was prepared using a self-cross-linking method. This hydrogel was composed of N-2-hydroxypropyl trimethyl ammonium chloride chitosan (HACC) and oxidized sodium alginate (OSA). A stable and reversible cross-linking network was formed by the Schiff base self-cross-linked and hydrogen bonding. The addition of a shielding agent (NaCl) may weaken the intense electrostatic effect between HACC and OSA and solve the problem of flocculation caused by the rapid formation of ionic bonds, which provided an extended time for the Schiff base self-cross-linked reaction for forming a homogeneous hydrogel. Interestingly, the shortest time for the formation of the HACC/OSA hydrogel was within 74 s and the hydrogel had a uniform porous structure and enhanced mechanical properties. The HACC/OSA hydrogel withstood large compression deformation due to improved elasticity. What's more, this hydrogel possessed favorable swelling property, biodegradation, and water retention. The HACC/OSA hydrogels have great antibacterial properties against Staphylococcus aureus and Escherichia coli and demonstrated good cytocompatibility as well. The HACC/OSA hydrogels have a good sustained release effect on rhodamine (model drug). Thus, the obtained self-cross-linked HACC/OSA hydrogels in this study have potential applications in the field of biomedical carriers.
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