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首页> 外文期刊>American Journal of Physiology >Fat accumulation with altered inflammation and regeneration in skeletal muscle of CCR2-/- mice following ischemic injury.
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Fat accumulation with altered inflammation and regeneration in skeletal muscle of CCR2-/- mice following ischemic injury.

机译:缺血性损伤后,CCR2-/-小鼠骨骼肌中脂肪积累与炎症和再生改变。

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Chemokines recruit inflammatory cells to sites of injury, but the role of the CC chemokine receptor 2 (CCR2) during regenerative processes following ischemia is poorly understood. We studied injury, inflammation, perfusion, capillary formation, monocyte chemotactic protein-1 (MCP-1) levels, muscle regeneration, fat accumulation, and transcription factor activation in hindlimb muscles of CCR2-/- and wild-type (WT) mice following femoral artery excision (FAE). In both groups, muscle injury and restoration of vascular perfusion were similar. Nevertheless, edema and neutrophil accumulation were significantly elevated in CCR2-/- compared with WT mice at day 1 post-FAE and fewer macrophages were present at day 3. MCP-1 levels in post-ischemic calf muscle of CCR2-/- animals were significantly elevated over baseline through 14 days post-FAE and were higher than WT mice at days 1, 7, and 14. In addition, CCR2-/- mice exhibited impaired muscle regeneration, decreased muscle fiber size, and increased intermuscular adipocytes with similar capillaries/mm(2) postinjury. Finally, the transcription factors, MyoD and signal transducers of and activators of transcription-3 (STAT3), were significantly increased above baseline but did not differ significantly between groups at any time point post-FAE. These findings suggest that increases in MCP-1, and possibly, MyoD and STAT3, may modulate molecular signaling in CCR2-/- mice during inflammatory and regenerative events. Furthermore, alterations in neutrophil and macrophage recruitment in CCR2-/- mice may critically alter the normal progression of downstream regenerative events in injured skeletal muscle and may direct myogenic precursor cells in the regenerating milieu toward an adipogenic phenotype.
机译:趋化因子将炎症细胞募集到损伤部位,但对缺血后再生过程中CC趋化因子受体2(CCR2)的作用了解甚少。我们研究了CCR2-/-和野生型(WT)小鼠的后肢损伤,炎症,灌注,毛细血管形成,单核细胞趋化蛋白-1(MCP-1)水平,肌肉再生,脂肪积累和转录因子激活股动脉切除术(FAE)。两组的肌肉损伤和血管灌注恢复相似。但是,与FAE后第1天的WT小鼠相比,CCR2-/-的水肿和中性粒细胞积聚显着升高,第3天的CCP2-/-动物缺血后小腿肌肉中MCP-1的水平降低。到FAE后14天,其基线水平显着升高,并且在第1、7和14天高于WT小鼠。此外,CCR2-/-小鼠表现出肌肉再生受损,肌纤维大小减小和具有相似毛细血管的肌间脂肪细胞增加/ mm(2)受伤后。最后,转录因子,MyoD和转录激活因子3(STAT3)的信号转导子以及激活因子在基线以上显着增加,但在FAE之后的任何时间点,各组之间均无显着差异。这些发现表明,在炎症和再生过程中,MCP-1以及可能的MyoD和STAT3的增加可能会调节CCR2-/-小鼠的分子信号传导。此外,CCR2-/-小鼠中嗜中性粒细胞和巨噬细胞募集的改变可能会严重改变受损骨骼肌中下游再生事件的正常进程,并且可能将再生环境中的肌原性前体细胞导向成脂肪表型。

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