首页> 外文期刊>International journal of rheumatic diseases >Salvianolic acid C promotes osteogenic differentiation of bone marrow mesenchymal stem cells in osteoporotic rats through activation of AMPK/SIRT1 pathway
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Salvianolic acid C promotes osteogenic differentiation of bone marrow mesenchymal stem cells in osteoporotic rats through activation of AMPK/SIRT1 pathway

机译:丹酚酸C通过激活AMPK/SIRT1通路促进骨质疏松大鼠骨髓间充质干细胞的成骨分化

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Abstract Purpose This study aimed to explore the molecular mechanism underlying the therapeutic effect of salvianolic acid C (SAC) on osteoporosis. Methods Osteoporotic (OVX) rats were used as the model, and the impacts of SAC treatment on their serum and urine biochemical indicators were assessed. The biomechanical parameters of these rats were also evaluated. The effects of SAC treatment on the bone of OVX rats was quantified using hematoxylin eosin staining and alizarin red staining, which reflect calcium deposition. The potential signaling pathway involved in SAC treatment was identified and confirmed through Western blotting, AMP‐activated protein kinase (AMPK) inhibitors, and sirtuin‐1 (small interfering RNA‐SIRT1). Results The results showed that SAC could ameliorate the serum and urine biochemical metabolism, and the pathological alterations of bone tissue in OVX rats. SAC promoted the osteogenic differentiation of bone marrow mesenchymal cells in OVX rats, one of the key mechanisms for modulation of Runx2, Osx, and OCN, involved in the AMPK/SIRT1 signaling pathway. Conclusion The findings from this study suggest that SAC promotes the osteogenic differentiation of bone marrow mesenchymal stem cells in osteoporotic rats by activating the AMPK/SIRT1 pathway.
机译:摘要 目的 探讨丹酚酸C(SAC)治疗骨质疏松症的分子机制。方法 以骨质疏松(OVX)大鼠为模型,评价SAC治疗对其血清和尿液生化指标的影响。还评估了这些大鼠的生物力学参数。使用苏木精和伊红染色和茜素红染色量化SAC处理对OVX大鼠骨骼的影响,这反映了钙沉积。通过蛋白质印迹、AMP 活化蛋白激酶 (AMPK) 抑制剂和 sirtuin-1(小干扰 RNA-SIRT1)鉴定和确认参与 SAC 治疗的潜在信号通路。结果 结果表明,SAC可改善OVX大鼠血清和尿液生化代谢,以及骨组织的病理改变。SAC促进OVX大鼠骨髓间充质细胞的成骨分化,这是调节AMPK/SIRT1信号通路中Runx2、Osx和OCN的关键机制之一。结论 本研究结果表明,SAC通过激活AMPK/SIRT1通路促进骨髓间充质干细胞在骨质疏松大鼠中的成骨分化。

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