Mg 2+ ‐mediated autophagy‐dependent polarization of macrophages mediates the osteogenesis of bone marrow stromal stem cells by interfering with macrophage‐derived exosomes containing miR‐381
作者:Yong Zhu, Shushan Zhao, Liang Cheng, Zhangyuan Lin, Min Zeng, Zhe Ruan, Buhua Sun, Zhong‐Wei Luo, Yifu Tang, Haitao Long · 发表于:Journal of Orthopaedic Research® · 年份:2021 · DOI:10.1002/jor.25189 · 被引用次数:38 · 研究领域:Extracellular vesicles in disease、MicroRNA in disease regulation、Bone and Joint Diseases
Abstract Magnesium ion (Mg 2+ ) has received increased attention due to the roles it plays in promoting osteogenesis and preventing inflammation. This study was designed to investigate the mechanism by which Mg 2+ influences the osteoblastic differentiation of bone marrow stromal stem cells (BMSCs). The polarization of Mø (macrophages) was measured after treatment with Mg 2+ . Meanwhile, autophagy in Mø was measured by detecting LC3B expression. Mø‐derived exosomes were isolated and cocultured with BMSCs; after which, osteogenic differentiation was evaluated by Alizarin Red staining and detection of alkaline phosphatase (ALP). Our results showed that Mg 2+ could induce autophagy in macrophages and modulate the M1/M2 polarization of macrophages. Mg 2+ ‐mediated macrophages could facilitate the osteogenic differentiation of BMSCs by regulating autophagy, and this facilitation by Mg 2+ ‐mediated macrophages was closely related to macrophage‐derived exosomes, and especially exosomes containing miR‐381. However, miR‐381 in macrophages did not influence autophagy or the polarization of Mg 2+ ‐mediated macrophages. Furthermore, macrophage‐derived exosomes containing miR‐381 mainly determined the osteogenic differentiation of BMSCs. Mg 2+ ‐mediated macrophages were shown to promote the osteogenic differentiation of BMSCs via autophagy through reducing miR‐381 in macrophage‐derived exosomes. In conclusion, our results suggest Mg 2+ ‐mediated macrophage‐derived exosomes containing miR‐...