白藜芦醇介导SIRT1干预地塞米松诱导成骨细胞线粒体自噬的研究
王帆, 王鹏皓中国医科大学附属第一医院骨科, 沈阳 110001
收稿日期:
2022-09-09出版日期:
2023-02-28发布日期:
2023-02-04通讯作者:
王鹏皓E-mail:phwang@cmu.edu.cn作者简介:
王帆(1987-),女,护师,本科.基金资助:
国家自然科学基金(81971322)关键词: 转录沉默信息调节因子1, 白藜芦醇, 成骨细胞, 线粒体自噬, 骨质疏松症, 糖皮质激素
Abstract: Objective To study the mechanism of action of resveratrol (RES) in glucocorticoid-induced mitophagy in osteoblasts. Methods Human osteoblast cells (hFob1.19) were cultured in vitro and treated with dexamethasone (DEX) to induce mitophagy. The cells were then treated with different concentrations of RES (10-8 to 10-6 mol/L) for 5 to 120 min. The proliferation of osteoblasts was determined using the CCK-8 assay. Autophagosomes within the osteoblasts were detected by transmission electron microscopy. The expression of alkaline phosphatase (ALP), caspase 3, sirtuin 1 (SIRT1), cellular autophagy marker 1 (LC3 and Beclin1), and cellular mitophagy marker 11 (TOM20 and Hsp60) in osteoblasts was detected by enzyme-linked immunosorbent assay, real-time PCR, and Western blotting, respectively. Results Following treatment of osteoblasts with DEX and RES for 2 h, RES significantly attenuated the inhibitory effect of DEX on cell proliferation (P < 0.05). Transmission electron microscopy revealed significantly fewer autophagosomes in the DEX + RES group compared to those in the DEX group. DEX significantly inhibited ALP activity, whereas RES clearly ameliorated the inhibitory effect of DEX on ALP protein activity in the osteoblasts (P < 0.05). RES significantly reduced caspase 3 activity, whereas it enhanced the expression of SIRT1 in a dose- and time-dependent manner in osteoblasts. RES alone significantly inhibited the mRNA expression of LC3 and Beclin1 and reduced the protein activity of TOM20 (mitophagy marker) and Hsp60 (mitochondrial matrix autophagy marker) in the cells. Furthermore, RES partially inhibited DEX-mediated activation of mitophagy in osteoblasts. Conclusion Our results suggest that RES enhances the proliferative activity of osteoblasts by upregulating SIRT1 and suppresses DEX-induced mitophagy in osteoblasts.
Key words: sirtuin1, resveratrol, osteoblast, mitophagy, osteoporosis, glucocorticoid
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