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Mechanisms of magnesium oxide‐incorporated electrospun membrane modulating inflammation and accelerating wound healing

伤口愈合 下调和上调 肉芽组织 细胞生物学 材料科学 炎症 血管生成 细胞因子 免疫学 化学 生物 癌症研究 生物化学 基因
作者
Mingyue Liu,Weixing Zhang,Zhe Chen,Yangfan Ding,Binbin Sun,Hongsheng Wang,Xiumei Mo,Jinglei Wu
出处
期刊:Journal of Biomedical Materials Research Part A [Wiley]
卷期号:111 (1): 132-151 被引量:22
标识
DOI:10.1002/jbm.a.37453
摘要

Abstract Previously, we demonstrated that magnesium oxide (MgO)‐incorporated electrospun membranes show powerful antibacterial activity and promote wound healing, but the underlying mechanisms have not been entirely understood. Herein, we investigated the relationship between structure and function of MgO‐incorporated membranes and interrogated critical bioactive cues that contribute to accelerated wound healing and functional restoration. Our results show that MgO‐incorporated membranes exhibit good flexibility and improved water vapor transmission rates (WVTRs) and sustained Mg 2+ release in a simulated model of wounds. MgO‐incorporated membranes modulate macrophage phenotype to downregulate inflammatory response, contributing to alleviated inflammation and creating a favorable microenvironment for wound healing. Specifically, MgO‐incorporated membranes stimulate macrophages to shift to a pro‐healing M2 phenotype and upregulate pro‐healing cytokine of transforming growth factor‐beta 1 (TGF‐β1) and downregulate pro‐inflammatory cytokines under lipopolysaccharide (LPS) challenge conditions. Together with increased TGF‐β1 by macrophages, MgO‐incorporated membranes significantly boost the proliferation of fibroblasts and upregulate collagen production, thus driving granulation tissue formation and wound closure. MgO‐incorporated membranes promote angiogenesis by promoting tube formation and upregulating vascular endothelial growth factor (VEGF) production of endothelial cells. Rapid epithelialization of regenerated skin tissue is attributed to the balanced phenotype of keratinocytes between proliferative and terminally differentiated populations. In addition to coordinating keratinocyte phenotype, MgO‐incorporated membranes reduce the expression of inflammatory cytokine interleukin 1‐alpha (IL‐1α) therefore promoting hair follicle regeneration. These data provide mechanisms of MgO‐incorporated membranes that inhibit bacterial infection, alleviate inflammation, facilitate extracellular matrix production and epithelialization, and potentiate hair follicle regeneration.
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