真皮
再生(生物学)
毛囊
伤口愈合
表皮(动物学)
皮脂腺
解剖
丝胶
自愈水凝胶
角蛋白
皮肤修复
化学
肉芽组织
角质形成细胞
细胞生物学
皮肤病科
病理
人体皮肤
生物
医学
免疫学
替代医学
有机化学
作者
Chao Qi,Luming Xu,Yan Deng,Guobin Wang,Zheng Wang,Lin Wang
出处
期刊:Biomaterials Science
[The Royal Society of Chemistry]
日期:2018-01-01
卷期号:6 (11): 2859-2870
被引量:80
摘要
Full-thickness skin injury affects millions of people worldwide each year. It often leads to scar formation and loss of skin appendages even after clinical treatment. The majority of wound dressings currently used cannot achieve scarless skin regeneration with complete recovery of appendages such as hair follicles and sebaceous glands. Functional regeneration of these skin appendages is a great challenge. However, we achieved this goal by the successful development and utilization of a photo-crosslinkable sericin hydrogel (SMH) as a new type of wound dressing for repairing full-thickness skin injury. SMH implanted in a mouse full-thickness skin injury model promoted scarless wound healing with effective regeneration of hair follicles and sebaceous glands. By employing techniques of molecular biology, biochemistry, and in vivo cell tracing, we revealed the underlying repair mechanisms: SMH inhibited inflammation, stimulated angiogenesis during healing process, prevented scar tissue formation via regulating the expressions of TGF-β1 and TGF-β3, and recruited mesenchymal stem cells to injury sites for regeneration of skin appendages. Collectively, in this study, we developed a sericin-based hydrogel as a wound dressing for full-thickness skin injury repair, uncovered the functional roles of sericin hydrogels in promoting scarless skin regeneration along with effective recovery of skin appendages, and thus unveiled sericin's potential for skin wound healing.
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