GM‐CSF ameliorates microvascular barrier integrity via pericyte‐derived Ang‐1 in wound healing

伤口愈合 周细胞 血管通透性 埃文斯蓝 血管生成 体内 内皮干细胞 新生血管 内皮 体外 细胞生物学 医学 化学 药理学 免疫学 癌症研究 病理 生物 内科学 生物技术 生物化学
作者
Min Yan,Yange Hu,Min Yao,Shisan Bao,Yong Fang
出处
期刊:Wound Repair and Regeneration [Wiley]
卷期号:25 (6): 933-943 被引量:23
标识
DOI:10.1111/wrr.12608
摘要

Abstract Skin wound healing involves complex coordinated interactions of cells, tissues, and mediators. Maintaining microvascular barrier integrity is one of the key events for endothelial homeostasis during wound healing. Vasodilation is observed after vasoconstriction, which causes blood vessels to become porous, facilitates leukocyte infiltration and aids angiogenesis at the wound‐area, postinjury. Eventually, vessel integrity has to be reestablished for vascular maturation. Numerous studies have found that granulocyte macrophage colony‐stimulating factor (GM‐CSF) accelerates wound healing by inducing recruitment of repair cells into the injury area and releases of cytokines. However, whether GM‐CSF is involving in the maintaining of microvascular barrier integrity and the underlying mechanism remain still unclear. Aim of this study was to investigate the effects of GM‐CSF on modulation of microvascular permeability in wound healing and underlying mechanisms. Wound closure and microvascular leakage was investigated using a full‐thickness skin wound mouse model after GM‐CSF intervention. The endothelial permeability was measured by Evans blue assay in vivo and in vitro endothelium/pericyte co‐culture system using a FITC‐Dextran permeability assay. To identify the source of angiopoietin‐1 (Ang‐1), double staining is used in vivo and ELISA and qPCR are used in vitro. To determine the specific effect of Ang‐1 on GM‐CSF maintaining microvascular stabilization, Ang‐1 siRNA was applied to inhibit Ang‐1 production in vivo and in vitro. Wound closure was significantly accelerated and microvascular leakage was ameliorated after GM‐CSF treatment in mouse wound sites. GM‐CSF decreased endothelial permeability through tightening endothelial junctions and increased Ang‐1 protein level that was derived by perictye. Furthermore, applications of siRNAAng‐1 inhibited GM‐CSF mediated protection of microvascular barrier integrity both in vivo and in vitro. Our data indicate that GM‐CSF ameliorates microvascular barrier integrity via pericyte‐derived Ang‐1 during wound healing.
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