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BMAL1通过NF-κB信号通路调控2型糖尿病骨髓间充质干细胞成骨-破骨功能平衡。

BMAL1 regulates balance of osteogenic-osteoclastic function of bone marrow mesenchymal stem cells in type 2 diabetes mellitus through the NF-κB pathway.

作者信息

Li Xiaoguang, Liu Na, Gu Bin, Hu Wei, Li Ying, Guo Bin, Zhang Dongsheng

机构信息

Department of Stomatology, Shandong Provincial Hospital Affiliated to Shandong University, No. 324 Jingwu Road, Jinan, 250021, Shandong, People's Republic of China.

Institution of Stomatology, The General Hospital of Chinese PLA, No. 28 Fuxing Road, Beijing, 100853, People's Republic of China.

出版信息

Mol Biol Rep. 2018 Dec;45(6):1691-1704. doi: 10.1007/s11033-018-4312-7. Epub 2018 Sep 27.

Abstract

In bone marrow mesenchymal stem cell (BMSCs), type 2 diabetes mellitus (T2DM) induces metabolic and functional disorders, leading to imbalanced bone resorption and formation and bone loss. Brain and muscle ARNT-like protein 1 (BMAL1) is involved in regulating T2DM-related suppression of BMSCs osteogenesis and bone formation. However, the relationship between BMAL1 and bone remodelling, especially bone resorption in T2DM, is unclear. We investigated the antergic role played by BMAL1 in T2DM-prompted imbalance in BMSCs osteogenic-osteoclastic function. BMAL1 was inhibited and the receptor activator of nuclear factor-κB ligand/osteoprotegerin (RANKL/OPG) ratio was increased in diabetic BMSCs. Inhibitor κB (IκB) expression was decreased, whereas phosphorylated-p65 (p-p65), caspase-3, and p-IκB expression were increased in diabetic BMSCs. BMAL1 overexpression recovered the osteogenesis ability and suppressed osteoclastic induction capability of BMSCs to improve bone metabolism and function, which was partially due to NF-κB pathway activity inhibition. Our results provide evidence about the role of BMAL1 in T2DM-prompted BMSCs differentiation dysfunction, i.e. partially decreasing NF-κB pathway expression. In T2DM, it might be possible to use overexpressed BMAL1 to re-establish the homeostasis of bone metabolism.

摘要

在骨髓间充质干细胞(BMSCs)中,2型糖尿病(T2DM)会引发代谢和功能紊乱,导致骨吸收与形成失衡以及骨质流失。脑和肌肉芳香烃受体核转运蛋白样蛋白1(BMAL1)参与调节T2DM相关的BMSCs成骨作用和骨形成抑制。然而,BMAL1与骨重塑,尤其是T2DM中的骨吸收之间的关系尚不清楚。我们研究了BMAL1在T2DM引发的BMSCs成骨-破骨细胞功能失衡中所起的作用。在糖尿病BMSCs中,BMAL1受到抑制,核因子-κB配体/骨保护素(RANKL/OPG)比值升高。抑制剂κB(IκB)表达降低,而磷酸化-p65(p-p65)、半胱天冬酶-3和磷酸化-IκB表达在糖尿病BMSCs中升高。BMAL1过表达恢复了BMSCs的成骨能力并抑制了其破骨细胞诱导能力,从而改善骨代谢和功能,这部分归因于NF-κB信号通路活性的抑制。我们的结果为BMAL1在T2DM引发的BMSCs分化功能障碍中的作用提供了证据,即部分降低NF-κB信号通路的表达。在T2DM中,有可能通过过表达BMAL1来重建骨代谢的稳态。

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