20(R)-ginsenoside Rg3-loaded polyurethane/marine polysaccharide based nanofiber dressings improved burn wound healing potentials

伤口愈合 纳米纤维 聚氨酯 烧伤 静电纺丝 伤口敷料 医学 化学 药理学 生物医学工程 外科 纳米技术 材料科学 复合材料 有机化学 聚合物
作者
Xiong Guo,Fangfang Xiu,Hriday Bera,Yasir Faraz Abbasi,Yang Chen,Liangwei Si,Peixin Liu,Zhao Chunwei,Xing Tang,Feng Yu,Dongmei Cun,Xia Zhao,Mingshi Yang
出处
期刊:Carbohydrate Polymers [Elsevier BV]
卷期号:317: 121085-121085 被引量:21
标识
DOI:10.1016/j.carbpol.2023.121085
摘要

The management of deep burn injuries is extremely challenging, ascribed to their delayed wound healing rate, susceptibility for bacterial infections, pain, and increased risk of hypertrophic scarring. In our current investigation, a series of composite nanofiber dressings (NFDs) based on polyurethane (PU) and marine polysaccharides (i.e., hydroxypropyl trimethyl ammonium chloride chitosan, HACC and sodium alginate, SA) were accomplished by electrospinning and freeze-drying protocols. The 20(R)-ginsenoside Rg3 (Rg3) was further loaded into these NFDs to inhibit the formation of excessive wound scars. The PU/HACC/SA/Rg3 dressings showed a sandwich-like structure. The Rg3 was encapsulated in the middle layers of these NFDs and slowly released over 30 days. The PU/HACC/SA and PU/HACC/SA/Rg3 composite dressings demonstrated superior wound healing potentials over other NFDs. These dressings also displayed favorable cytocompatibility with keratinocytes and fibroblasts and could dramatically accelerate epidermal wound closure rate following 21 days of the treatment of a deep burn wound animal model. Interestingly, the PU/HACC/SA/Rg3 obviously reduced the excessive scar formation, with a collagen type I/III ratio closer to the normal skin. Overall, this study represented PU/HACC/SA/Rg3 as a promising multifunctional wound dressing, which promoted the regeneration of burn skins and attenuated scar formation.
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