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Osteoclast-derived exosomes inhibit osteogenic differentiation through Wnt/β-catenin signaling pathway in simulated microgravity model

机译:破骨细胞来源的外来体在模拟微重力模型中通过Wnt /β-catenin信号通路抑制成骨分化

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In the microgravity environment of space, astronauts undergo osteoporosis due to an imbalance in bone remodeling. Recent studies have shown that exosomes derived from osteoclasts could mediate cell-to-cell communication in bone remodeling. However, the role of osteoclast-derived exosomes in bone remodeling in microgravity remains a mystery. Our objective is to investigate the cellular processes modulated by exosomes from RAW264.7 cell-derived osteoclasts and the underlying mechanism of action for the exosomes-mediated osteogenesis of osteoblast-like MC3T3-E1 cells in simulated microgravity. We took advantage of the random positioning machine (RPM) to simulate microgravity for the model and investigated the role of exosomes from RAW264.7 cell-derived osteoclasts in osteoclast-osteoblast communication. The results showed that this type of mature osteoclast-derived exosomes (OC-Exos) in the RPM evidently inhibited the cellular proliferation of osteoblasts via inducing cellular apoptosis and altering their cell cycle distribution. Alkaline phosphatase and mineralization activity of MC3T3-E1 cells were significantly lower after treatment with OC-Exos from RPM and mRNA expression of osteoblast-specific genes were down-regulated. Further study confirmed that OC-Exos in RPM obstructed the differentiation of MC3T3-E1 cells by interfering with Wnt/β-catenin signaling pathway. Together, these observations demonstrated that OC-Exos played an essential role in the regulation of bone remodeling in the microgravity environment. These results shed light on a novel pathway of cross-talk between osteoclasts and osteoblasts, which will be helpful to explain the possible mechanisms underlying osteoporosis in microgravity.
机译:在空间的微重力环境中,宇航员由于骨骼重塑不平衡而发生骨质疏松症。最近的研究表明,破骨细胞产生的外泌体可以介导骨骼重塑中的细胞间通讯。然而,破骨细胞来源的外来体在微重力中的骨重塑中的作用仍然是一个谜。我们的目的是研究由RAW264.7细胞来源的破骨细胞的外来体调节的细胞过程,以及在微重力作用下外来体介导的成骨样MC3T3-E1细胞成骨作用的基本作用机理。我们利用随机定位机(RPM)模拟该模型的微重力,并研究了RAW264.7细胞来源的破骨细胞的外泌体在破骨细胞与成骨细胞通讯中的作用。结果表明,RPM中这种类型的成熟破骨细胞衍生外泌体(OC-Exos)通过诱导细胞凋亡并改变其细胞周期分布,明显抑制了成骨细胞的细胞增殖。 OC-Exos处理RPM后,碱性磷酸酶和MC3T3-E1细胞的矿化活性明显降低,成骨细胞特异性基因的mRNA表达下调。进一步的研究证实,RPM中的OC-Exos通过干扰Wnt /β-catenin信号传导通路阻碍了MC3T3-E1细胞的分化。总之,这些观察结果表明,OC-Exos在微重力环境中的骨重塑调节中起着至关重要的作用。这些结果揭示了破骨细胞和成骨细胞之间新的串扰途径,这将有助于解释微重力下骨质疏松的潜在机制。

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