首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Bone marrow-derived cells serve as proangiogenic macrophages but not endothelial cells in wound healing.
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Bone marrow-derived cells serve as proangiogenic macrophages but not endothelial cells in wound healing.

机译:在伤口愈合中,骨髓来源的细胞可作为促血管生成的巨噬细胞,但不能用作内皮细胞。

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摘要

Bone marrow-derived cells (BMDCs) contribute to postnatal vascular growth by differentiating into endothelial cells or secreting angiogenic factors. However, the extent of their endothelial differentiation highly varies according to the angiogenic models used. Wound healing is an intricate process in which the skin repairs itself after injury. As a process also observed in cancer progression, neoangiogenesis into wound tissues is profoundly involved in this healing process, suggesting the contribution of BMDCs. However, the extent of the differentiation of BMDCs to endothelial cells in wound healing is unclear. In this study, using the green fluorescent protein-bone marrow chim-eric experiment and high resolution confocal microscopy at a single cell level, we observed no endothelial differentiation of BMDCs in 2 acute wound healing models (dorsal excisional wound and ear punch) and a chronic wound healing model (decubitus ulcer). Instead, a major proportion of BMDCs were macrophages. Indeed, colony-stimulating factor 1 (CSF-1) inhibition depleted approximately 80% of the BMDCs at the wound healing site. CSF-1-mutant (CSF-1(op/op)) mice showed significantly reduced neoangiogenesis into the wound site, supporting the substantial role of BMDCs as macrophages. Our data show that the proangiogenic effects of macrophages, but not the endothelial differentiation, are the major contribution of BMDCs in wound healing.
机译:骨髓来源的细胞(BMDC)通过分化为内皮细胞或分泌血管生成因子来促进出生后的血管生长。然而,根据所使用的血管生成模型,它们的内皮分化程度高度不同。伤口愈合是一个复杂的过程,皮肤在受伤后会自我修复。正如在癌症进展中也观察到的过程一样,进入伤口组织的新血管生成与该愈合过程密切相关,表明了BMDC的贡献。然而,伤口愈合中BMDCs向内皮细胞分化的程度尚不清楚。在这项研究中,使用绿色荧光蛋白-骨髓嵌合实验和高分辨率共聚焦显微镜在单个细胞水平上,我们观察到在2种急性伤口愈合模型(背侧切除伤口和耳穿孔)中,BMDC没有内皮分化。慢性伤口愈合模型(褥疮)。相反,BMDC的主要部分是巨噬细胞。实际上,集落刺激因子1(CSF-1)抑制作用在伤口愈合部位消耗了大约80%的BMDC。 CSF-1突变(CSF-1(op / op))小鼠显示出明显减少了新生血管进入伤口部位,支持BMDC作为巨噬细胞的重要作用。我们的数据表明,巨噬细胞的促血管生成作用而不是内皮细胞分化是BMDC在伤口愈合中的主要作用。

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