伤口愈合
血管生成
间充质干细胞
炎症
慢性伤口
新生血管
医学
羧甲基纤维素
微泡
癌症研究
骨愈合
骨髓
化学
免疫学
病理
外科
小RNA
有机化学
基因
钠
生物化学
作者
Xinrong Geng,Qi Yao,Xintong Liu,Yijie Shi,Hongdan Li,Liang Zhao
出处
期刊:Biomaterials advances
日期:2022-02-01
卷期号:133: 112613-112613
被引量:60
标识
DOI:10.1016/j.msec.2021.112613
摘要
Chronic diabetic wound injury is a serious syndrome of diabetes, and the treatment of this syndrome is of great significance. Owing to metabolic abnormalities, diabetic wounds are difficult to heal due to chronic inflammation, immune dysfunction, impaired angiogenesis and bacterial reproduction. However, most traditional treatments can only play a limited role in dealing with unhealed wounds, and the overall healing effect is not ideal. We designed a novel bone marrow mesenchymal stem cell-derived exosome (MSC-Exo)-loaded carboxyethyl chitosan (CEC)-dialdehyde carboxymethyl cellulose (DCMC) hydrogel (MSC-Exos@CEC-DCMC HG) for chronic diabetic wound healing. The results demonstrated that CEC can be cross-linked with DCMC through Schiff base reactions to form antibacterial and self-healing hydrogels. The inherent MSC-Exos not only promoted angiogenesis but also enhanced the transformation of M1-type macrophages to the M2 type to reduce inflammatory effects. Finally, MSC-Exos@CEC-DCMC HG, as an effective therapeutic agent, synergistically adjusted the wound inflammation microenvironment, promoted neovascularization, and accelerated wound healing in type 1 diabetic rats.
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