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One-Step Physical and Chemical Dual-Reinforcement with Hydrophobic Drug Delivery in Gelatin Hydrogels for Antibacterial Wound Healing

自愈水凝胶 明胶 药物输送 伤口愈合 对偶(语法数字) 伤口敷料 钢筋 自愈 化学 生物医学工程 纳米技术 材料科学 高分子化学 复合材料 医学 有机化学 外科 替代医学 艺术 文学类 病理
作者
Di An,Zhengkai Wang,Yishuo Ning,Yuxing Yue,Xuan Han,Yongjin Hu,Mingdi Yang,Haiou Zhou,Qianqian Liu,Xianbiao Wang,Ping Wang,Zhiyuan Zhu,Jingyi Rao,Jingyan Zhang
出处
期刊:ACS omega [American Chemical Society]
卷期号:9 (32): 34413-34427 被引量:3
标识
DOI:10.1021/acsomega.4c01963
摘要

Gelatin-based bioadhesives, especially methacrylated gelatin (GelMA), have emerged as superior alternatives to sutureless wound closure. Nowadays, their mechanical improvement and therapeutic delivery, particularly for hydrophobic antibiotics, have received ever-increasing interest. Herein, a reinforced gelatin-based hydrogel with a hydrophobic drug delivery property for skin wound treatment was reported. First, photosensitive monomers of N'-(2-nitrobenzyl)-N-acryloyl glycinamide (NBNAGA) were grafted onto GelMA via Michael addition, namely, GelMA-NBNAGA. Second, gelation of the GelMA-NBNAGA solution was accomplished in a few seconds under one step of ultraviolet (UV) light irradiation. Multiple effects were realized simultaneously, including chemical cross-linking initiated by lithium phenyl-2,4,6-trimethylbenzoylphosphinate (LAP), physical cross-linking of uncaged dual hydrogen bonding, and hydrophobic drug release along with o-NB group disintegration. The mechanical properties of the dual-reinforcement hydrogels were verified to be superior to those only with a chemical or physical single-cross-linked network. The hydrophobic anticancer doxorubicin (DOX) and antibiotic rifampicin (Rif) were successfully charged into the hydrogels, separately. The in vitro antimicrobial tests confirmed the antibacterial activity of the hydrogels against Gram-negative (Escherichia coli) and Gram-positive (Staphylococcus aureus) bacteria. The in vivo wound-healing assessment in mice further assured their drug release and efficacy. Therefore, this NBNAGA-modified GelMA hydrogel has potential as a material in skin wound dressing with a hydrophobic antibiotic on-demand delivery.
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