膜
纳米纤维
伤口愈合
镁
静电纺丝
螯合作用
化学
炎症
生物物理学
材料科学
医学
生物化学
纳米技术
外科
内科学
无机化学
生物
有机化学
聚合物
作者
Mingyue Liu,Xiaoyi Wang,Binbin Sun,Hongsheng Wang,Xiumei Mo,Mohamed EL-Newehy,Meera Moydeen Abdulhameed,Haochen Yao,Chao Liang,Jinglei Wu
标识
DOI:10.1016/j.ijbiomac.2024.129283
摘要
Diabetic wounds, resulting from skin atrophy due to localized ischemia and hypoxia in diabetic patients, lead to chronic pathological inflammation and delayed healing. Using electrospinning technology, we developed magnesium ion-chelated nanofiber membranes to explore their efficacy in antibacterial, anti-inflammatory, and angiogenic applications for wound healing. These membranes are flexible and elastic, resembling native skin tissue, and possess good hydrophilicity for comfortable wound bed contact. The mechanical properties of nanofiber membranes are enhanced by the chelation of magnesium ions (Mg2+), which also facilitates a long-term slow release of Mg2+. The cytocompatibility of the nanofibrous membranes is influenced by their Mg2+ content: lower levels encourage the proliferation of fibroblasts, endothelial cells, and macrophages, while higher levels are inhibitory. In a diabetic rat model, magnesium ion-chelated nanofibrous membranes effectively reduced early wound inflammation and notably accelerated wound healing. This study highlights the potential of magnesium ion-chelated nanofiber membranes in treating diabetic wounds.
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