N-carboxymethyl chitosan/sodium alginate composite hydrogel loading plasmid DNA as a promising gene activated matrix for in-situ burn wound treatment

伤口愈合 再生(生物学) 基因表达 生物医学工程 壳聚糖 自愈水凝胶 化学 材料科学 分子生物学 男科 细胞生物学 基因 外科 医学 生物 生物化学 高分子化学
作者
Litong Wang,Le Sun,Zhiyang Gu,Wenya Li,Lili Guo,Saibo Ma,Lan Guo,Wangwang Zhang,Baoqin Han,Jing Chang
出处
期刊:Bioactive Materials [Elsevier BV]
卷期号:15: 330-342 被引量:64
标识
DOI:10.1016/j.bioactmat.2021.12.012
摘要

Improving the degree of vascularization through the regulation of wound microenvironment is crucial for wound repair. Gene activated matrix (GAM) technology provides a new approach for skin regeneration. It is a local gene delivery system that can not only maintain a moist environment, but also increase the concentration of local active factors. For this purpose, we fabricated the mVEGF165/TGF-β1 gene-loaded N-carboxymethyl chitosan/sodium alginate hydrogel and studied its effect on promoting deep second degree burn wound repair. The average diameter of the hydrogel pores was 100 μm and the porosity was calculated as 50.9%. SEM and CLSM images showed that the hydrogel was suitable for cell adhesion and growth. The NS-GAM could maintain continuous expression for at least 9 days in vitro, showing long-term gene release and expression effect. Deep second-degree burn wound model was made on the backs of Wistar rats to evaluate the healing effect. The wounds were healed by day 22 in NS-GAM group with the prolonged high expression of VEGF and TGF-β1 protein. A high degree of neovascularization and high expression level of CD34 were observed in NS-GAM group in 21 days. The histological results showed that NS-GAM had good tissue safety and could effectively promote epithelialization and collagen regeneration. These results indicated that the NS-GAM could be applied as a promising local gene delivery system for the repair of deep second-degree burn wounds.
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