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首页> 外文期刊>Human Molecular Genetics >Cyclooxygenase-2 deficiency impairs muscle-derived stem cell-mediated bone regeneration via cellular autonomous and non-autonomous mechanisms
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Cyclooxygenase-2 deficiency impairs muscle-derived stem cell-mediated bone regeneration via cellular autonomous and non-autonomous mechanisms

机译:环氧合酶2缺乏症通过细胞自主和非自主机制损害了肌肉来源的干细胞介导的骨再生

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This study investigated the role of cyclooxygenase-2 (COX-2) expression by donor and host cells in muscle-derived stem cell (MDSC)-mediated bone regeneration utilizing a critical size calvarial defect model. We found that BMP4/green fluorescent protein (GFP)-transduced MDSCs formed significantly less bone in COX-2 knock-out (Cox-2KO) than in COX-2 wild-type (WT) mice. BMP4/GFP-transduced Cox-2KO MDSCs also formed significantly less bone than transduced WT MDSCs when transplanted into calvarial defects created in CD-1 nude mice. The impaired bone regeneration in the Cox-2KO MDSCBMP4/GFP group is associated with downregulation of BMP4-pSMAD1/5 signaling, decreased osteogenic differentiation and lowered proliferation capacity after transplantation, compared with WT MDSCBMP4/GFP cells. The Cox-2KO MDSCBMP4/GFP group demonstrated a reduction in cell survival and direct osteogenic differentiation in vitro. These effects were mediated in part by the downregulation of Igf1 and Igf2. In addition, the Cox-2KO MDSCBMP4/GFP cells recruited fewer macrophages than the WT MDSC/BMP4/GFP cells in the early phase after injury. We concluded that the bone regeneration capacity of Cox-2KO MDSCs was impaired because of a reduction in cell proliferation and survival capacities, reduction in osteogenic differentiation and a decrease in the ability of the cells to recruit host cells to the injury site.
机译:这项研究调查了供体和宿主细胞中的环氧合酶2(COX-2)表达在肌肉衍生干细胞(MDSC)介导的骨再生中的作用,使用的是临界尺寸颅骨缺损模型。我们发现,与COX-2野生型(WT)小鼠相比,COX-2基因敲除(Cox-2KO)中BMP4 /绿色荧光蛋白(GFP)诱导的MDSC形成的骨明显减少。当将BMP4 / GFP转导的Cox-2KO MDSC移植到CD-1裸鼠中形成的颅盖缺损中时,其骨骼也明显少于转导的WT MDSC。与WT MDSCBMP4 / GFP细胞相比,Cox-2KO MDSCBMP4 / GFP组的骨再生受损与BMP4-pSMAD1 / 5信号的下调,成骨分化降低以及移植后增殖能力降低有关。 Cox-2KO MDSCBMP4 / GFP组在体外显示细胞存活率降低和直接成骨分化。这些作用部分由Igf1和Igf2的下调介导。另外,在损伤后的早期,Cox-2KO MDSCBMP4 / GFP细胞募集的巨噬细胞少于WT MDSC / BMP4 / GFP细胞。我们得出结论,由于细胞增殖和存活能力的降低,成骨分化的降低以及细胞将宿主细胞募集到损伤部位的能力的降低,Cox-2KO MDSC的骨再生能力受到了损害。

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