茶花
亚麻荠
下调和上调
氧化应激
伤口愈合
炎症
材料科学
活性氧
促炎细胞因子
细胞生物学
生物化学
食品科学
化学
医学
生物
免疫学
生态学
基因
作物
作者
Yuan Zhang,Ruinan Wang,Huaiyu Fan,Manru Wang,Hongxiang Liu,Cosmos Yuqi Wang,Xingyu Cui,Enze Wang,Biao Zhang,Hongtao Gao,Xin Liu,Haiyan Li,Yan Cheng
标识
DOI:10.1021/acsami.3c04523
摘要
Constant oxidative stress at the wound site prolongs the inflammation period and slows down the proliferation stage. In order to shorten the inflammatory period meanwhile promote the proliferative activity of fibroblasts, herein, we synthesized novel camelina-derived carbon dots (CDs) decorating on hFGF2-linked camelina lipid droplets (CLD-hFGF2) to form nanobiomaterial CDs-CLD-hFGF2. The CDs-CLD-hFGF2 possesses peroxidase activity and has effective reactive oxygen species radical scavenging activity while achieving proliferation of NIH/3T3 cells under oxidative stress in vitro. In the acute wound model, wound healing after CDs-CLD-hFGF2 treatment reached nearly 92% on the 10th day, compared with 82% for CLD-hFGF2. Moreover, the wound site showed significant anti-inflammatory effects characterized by the downregulation of pro-inflammatory factors and the upregulation of anti-inflammatory factor levels. Overall, this study provided a strategy for the comprehensive utilization of camelina oil crops and revealed a promising future that could be considered an effective method for wound healing on the skin.
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