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首页> 外文期刊>American Journal of Physiology >Skeletal muscle fibrosis develops in response to desmin deletion
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Skeletal muscle fibrosis develops in response to desmin deletion

机译:骨骼肌纤维化是由于结节缺失引起的

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摘要

Skeletal muscle is a dynamic composite of proteins that responds to both internal and external cues to facilitate muscle adaptation. In cases of disease or altered use, these messages can be distorted resulting in myopathic conditions such as fibrosis. In this work, we describe a mild and progressive fibrotic adaptation in skeletal muscle lacking the cytoskeletal intermediate filament protein desmin. Muscles lacking desmin become progressively stiffer, accumulate increased collagen, and increase expression of genes involved in extracellular matrix turnover. Additionally, in the absence of desmin, skeletal muscle is in an increased state of inflammation and regeneration as indicated by increased centrally nucleated fibers, elevated inflammation and regeneration related gene expression, and increased numbers of inflamma-tory cells. These data suggest a potential link between increased cellular damage and the development of fibrosis in muscles lacking the cytoskeletal support of the desmin filament network.
机译:骨骼肌是蛋白质的动态合成物,可以对内部和外部线索做出反应,以促进肌肉适应。在疾病或使用方法改变的情况下,这些信息可能会失真,导致肌病性疾病,例如纤维化。在这项工作中,我们描述了缺乏细胞骨架中间丝蛋白desmin的骨骼肌中轻度进行性纤维化适应。缺乏结蛋白的肌肉逐渐变得僵硬,积累了增加的胶原蛋白,并增加了参与细胞外基质更新的基因的表达。另外,在缺乏结蛋白的情况下,骨骼肌处于增加的炎症和再生状态,如中央有核纤维增加,炎症和再生相关基因表达增加以及炎性瘤细胞数量增加所表明的。这些数据表明,在缺乏结蛋白细丝网络的细胞骨架支持的肌肉中,细胞损伤增加与纤维化发展之间存在潜在的联系。

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