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Click‐hydrogel delivered aggregation‐induced emissive nanovesicles for simultaneous remodeling and antibiosis of deep burn wounds

伤口愈合 光敏剂 化学 体内 自愈水凝胶 血管生成 炎症 壳聚糖 生物物理学 癌症研究 医学 生物化学 免疫学 生物 光化学 高分子化学 生物技术
作者
Xu Chen,Meijiao Zhao,Qihu Xie,Sitong Zhou,Xiaoping Zhong,Judun Zheng,Ronghua Yang,Xianjin Du,Jinyu Xia,Yuhui Liao
出处
期刊:Aggregate [Wiley]
卷期号:5 (1) 被引量:66
标识
DOI:10.1002/agt2.406
摘要

Abstract As a high‐risk trauma, deep burns are always hindered in their repair process by decreased tissue regeneration capacity and persistent infections. In this study, we developed a simultaneous strategy for deep burn wounds treatment using functional nanovesicles with antibacterial and tissue remodeling properties, delivered via a click‐chemistry hydrogel. An aggregation‐induced emission photosensitizer of 4‐(2‐(5‐(4‐(diphenylamino)phenyl)thiophen‐2‐yl)vinyl)‐1‐(2‐hydroxyethyl) pyridin‐1‐ium bromide (THB) with excellent photodynamic properties was first prepared, and then combined with readily accessible adipose stem cells‐derived nanovesicles to generate the THB functionalized nanovesicles (THB@ANVs). The THB@ANVs showed strong antibacterial activity against Gram‐positive bacteria (up to 100% killing rate), and also beneficial effects on tissue remodeling, including promoting cell migration, cell proliferation, and regulating immunity. In addition, we prepared a click‐hydrogel of carboxymethyl chitosan for effective delivery of THB@ANVs on wounds. This hydrogel could be injected to conform to the wound morphology while responding to the acidic microenvironment. In vivo evaluations of wound healing revealed that the THB@ANVs hydrogel dressing efficiently accelerated the healing of second‐degree burn wounds by reducing bacterial growth, regulating inflammation, promoting early angiogenesis, and collagen deposition. This study provides a promising candidate of wound dressing with diverse functions for deep burn wound repair.
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