Anti-osteoclastogenesis of Mineral Trioxide Aggregate through Inhibition of the Autophagic Pathway

矿物质三氧化物聚集体通过抑制自噬途径发挥抗破骨细胞生成作用

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作者:Xue Cheng, Lingxin Zhu, Jie Zhang, Jingjing Yu, Shan Liu, Fengyuan Lv, Ying Lin, Guojing Liu, Bin Peng

Conclusions

MTA inhibited osteoclastogenesis for bone repair through attenuating the autophagic pathway.

Methods

Osteoclast precursors were treated with MTA extracts containing the receptor activator of nuclear factor-kappa B ligand (RANKL). Rapamycin was used to activate autophagy. RANKL-induced osteoclast differentiation was stained with tartrate-resistant acid phosphatase. Several specific autophagy features in osteoclast precursors were measured by using immunofluorescence, monodansylcadaverine, and transmission electron microscope. Autophagy-related proteins were investigated via Western blot analysis. The mRNA expression involved in autophagic and osteoclastic activities was detected with quantitative real-time polymerase chain reaction.

Results

MTA extracts inhibited osteoclast differentiation via preventing the fusion of osteoclast precursors without cytotoxicity. MTA extracts interrupted RANKL-induced acidic vesicular organelle formation and autophagic vacuole appearance in osteoclast precursors. Moreover, autophagic genes and proteins stimulated with RANKL diminished with MTA extracts. Notably, autophagy activation through rapamycin promoted multinucleated osteoclasts formation and increased osteoclastic genes expression, which almost reversed MTA-mediated anti-osteoclastogenic effects. Conclusions: MTA inhibited osteoclastogenesis for bone repair through attenuating the autophagic pathway.

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