姜黄素
生物相容性
自愈水凝胶
胶束
化学
化学工程
水溶液
溶解度
共价键
纳米技术
材料科学
高分子化学
生物化学
有机化学
工程类
作者
Jun Zheng,Xianwen Song,Zhaoyu Yang,Yun Tan,Chao Yin,Jia‐Fu Yin,Yufang Lü,Yufan Yang,Chuntai Liu,Lunzhao Yi,Yi Zhang
标识
DOI:10.1016/j.colsurfa.2022.130680
摘要
Micellar hydrogels formed by direct self-assembly of natural compounds have attracted widespread attention as delivery systems owing to their distinctive structures, excellent biocompatibility and simple preparation methods. Herein, we report on glycyrrhizic acid (GA), which is directly self-assembled into micellar hydrogels to encapsulate curcumin (Cur) through non-covalent interactions without excipients or structural modifications. Owing to their reversible non-covalent interactions, the micellar hydrogels have outstanding shear-thinning, self-healing ability and temperature-responsive behavior. Notably, the mechanical properties and release rates of the micellar hydrogels can be easily tuned by adjusting the concentration of GA. Furthermore, the [email protected] micellar hydrogels have exhibited superior stability, remarkable biocompatibility and better antioxidant properties than free Cur, benefiting from improved solubility and stability. In brief, this micellar hydrogel inherits the advantages of both micelles and hydrogels: it has characteristics of micelles, naturally encapsulates Cur and has the ability of hydrogels to control long-term release. We believe this study will offer an innovative strategy to deliver Cur efficiently.
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