首页> 美国卫生研究院文献>Journal of Molecular Cell Biology >Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells
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Overexpression of mechanical sensitive miR-337-3p alleviates ectopic ossification in rat tendinopathy model via targeting IRS1 and Nox4 of tendon-derived stem cells

机译:机械敏感性miR-337-3p的过表达通过靶向肌腱干细胞的IRS1和Nox4减轻大鼠肌腱病模型中的异位骨化

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摘要

Tendinopathy, which is characterized by the ectopic ossification of tendon, is a common disease occurring in certain population, such as athletes that suffer from repetitive tendon strains. However, the molecular mechanism underlying the pathogenesis of tendinopathy caused by the overuse of tendon is still lacking. Here, we found that the mechanosensitive miRNA, miR-337-3p, had lower expression under uniaxial cyclical mechanical loading in tendon-derived stem cells (TDSCs) and negatively controlled chondro-osteogenic differentiation of TDSCs. Importantly, downregulation of miR-337-3p expression was also observed in both rat and human calcified tendons, and overexpressing miR-337-3p in patellar tendons of rat tendinopathy model displayed a robust therapeutic efficiency. Mechanistically, we found that the proinflammatory cytokine interleukin-1 was the upstream factor of miR-337-3p that bridges the mechanical loading with its downregulation. Furthermore, the target genes of miR-337-3p, NADPH oxidase 4, and insulin receptor substrate 1, activated chondro-osteogenic differentiation of TDSCs through JNK and ERK signaling, respectively. Thus, these findings not only provide novel insight into the molecular mechanisms underlying ectopic ossification in tendinopathy but also highlight the significance of miR-337-3p as a putative therapeutic target for clinic treatment of tendinopathy.
机译:肌腱病以肌腱异位骨化为特征,是某些人群中常见的疾病,例如患有重复性肌腱劳损的运动员。但是,仍缺乏因肌腱过度使用而导致肌腱病发病机理的分子机制。在这里,我们发现机械敏感的miRNA,miR-337-3p,在腱衍生干细胞(TDSCs)的单轴周期性机械负荷下表达较低,并且对TDSCs的软骨成骨分化具有负控制作用。重要的是,在大鼠和人钙化肌腱中也观察到miR-337-3p表达的下调,并且在大鼠腱病模型的pa腱中过表达miR-337-3p表现出强大的治疗效果。从机理上讲,我们发现促炎细胞因子白介素-1是miR-337-3p的上游因子,它通过下调调节了机械负荷。此外,miR-337-3p,NADPH氧化酶4和胰岛素受体底物1的靶基因分别通过JNK和ERK信号激活了TDSC的软骨成骨分化。因此,这些发现不仅为肌腱病中异位骨化的分子机制提供了新颖的见解,而且突显了miR-337-3p作为肌腱病临床治疗的公认治疗靶点的重要性。

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