Hyaluronic Acid‐Based Reactive Oxygen Species‐Responsive Multifunctional Injectable Hydrogel Platform Accelerating Diabetic Wound Healing

姜黄素 透明质酸 伤口愈合 自愈水凝胶 活性氧 氧化应激 药理学 生物相容性 化学 炎症 血管生成 生物化学 癌症研究 医学 免疫学 高分子化学 有机化学 解剖
作者
Chen Shi,Ying Zhang,Guanfu Wu,Zhangyu Zhu,Haiping Zheng,Ximeng Sun,Yongyuan Heng,Shaowei Pan,Haonan Xiu,Jing Zhang,Zhaowei Yin,Ziyi Yu,Bin Liang
出处
期刊:Advanced Healthcare Materials [Wiley]
被引量:22
标识
DOI:10.1002/adhm.202302626
摘要

Abstract Diabetic wounds are more likely to develop into complex and severe chronic wounds. The objective of this study is to develop and assess a reactive oxygen species (ROS)‐responsive multifunctional injectable hydrogel for the purpose of diabetic wound healing. A multifunctional hydrogel (HA@Cur@Ag) is successfully synthesized with dual antioxidant, antibacterial, and anti‐inflammatory properties by crosslinking thiol hyaluronic acid (SH‐HA) and disulfide‐bonded hyperbranched polyethylene glycol (HB‐PBHE) through Michael addition; while, incorporating curcumin liposomes and silver nanoparticles (AgNPs). The HA@Cur@Ag hydrogel exhibits favorable biocompatibility, degradability, and injectivity. The outcomes of in vitro and in vivo experiments demonstrate that the hydrogel can effectively be loaded with and release curcumin liposomes, as well as silver ions, thereby facilitating diabetic wound healing through multiple mechanisms, including ROS scavenging, bactericidal activity, anti‐inflammatory effects, and the promotion of angiogenesis. Transcriptome sequencing reveals that the HA@Cur@Ag hydrogel effectively suppresses the activation of the tumour necrosis factor (TNF)/nuclear factor κB (NF‐κB) pathway to ameliorate oxidative stress and inflammation in diabetic wounds. These findings suggest that this ROS‐responsive multifunctional injectable hydrogel, which possesses the ability to precisely coordinate and integrate intricate biological and molecular processes involved in wound healing, exhibits notable potential for expediting diabetic wound healing.
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