自愈水凝胶
生物相容性
壳聚糖
伤口愈合
前药
材料科学
戊二醛
化学
有机化学
生物化学
医学
外科
作者
Zhenzhen Hui,Xinyuan Pan,Ying Li,Chen‐Song Zhang,Xuzhong Zuo,Jing Tang,Yanping Wang,Nannan Qiu,Shengbiao Zheng,Xiangju Ye,Ruizhang Hu,Dongpo Song,Wei Fang,Jie Yang,Guoqing Yan
标识
DOI:10.1016/j.ijbiomac.2024.129529
摘要
Dynamic antibacterial polysaccharide prodrug hydrogels are in great demand for treatment of wound infection owing to their unique advantages such as excellent biocompatibility, superior antimicrobial property as well as favorable wound healing capacity. Herein, this work highlights the successful development of a dynamic carboxymethyl chitosan (CMC) prodrug hydrogel, which is facilely constructed through Schiffer base reaction between antibacterial components (amikacin and CMC) and crosslinker (dialdehyde PEG). Moderate dynamic imine linkages endow the hydrogel with excellent injectable and self-healing capability as well as targeted on-demand drug release in slightly alkaline condition at infected wound. All ingredients and their strong intermolecular interactions endow the hydrogel with favorable swelling and moisture retention capability. Moreover, the covalent and non-covalent interactions also endow the hydrogel with superior adhesion and mechanical property. These attractive characteristics enable hydrogel to effectively kill pathogens, promote wound healing and reduce side effects of amikacin. Thereby, such a dynamic CMC prodrug hydrogel may open a new avenue for a robust therapy on wound infection, greatly advancing their use in clinics.
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