首页> 外文期刊>Journal of cellular and molecular medicine. >Echinacoside reverses myocardial remodeling and improves heart function via regulating SIRT1/FOXO3a/MnSOD axis in HF rats induced by isoproterenol
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Echinacoside reverses myocardial remodeling and improves heart function via regulating SIRT1/FOXO3a/MnSOD axis in HF rats induced by isoproterenol

机译:Echinacoside逆转心肌重塑,通过调节I异丙肾上腺素诱导的HF大鼠的SIRT1 / FOXO3A / MNSOD轴来改善心功能

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Myocardial remodelling is important pathological basis of HF, mitochondrial oxidative stress is a promoter to myocardial hypertrophy, fibrosis and apoptosis. ECH is the major active component of a traditional Chinese medicine Cistanches Herba, plenty of studies indicate it possesses a strong antioxidant capacity in nerve cells and tumour, it inhibits mitochondrial oxidative stress, protects mitochondrial function, but the specific mechanism is unclear. SIRT1/FOXO3a/MnSOD is an important antioxidant axis, study finds that ECH binds covalently to SIRT1 as a ligand and up‐regulates the expression of SIRT1 in brain cells. We hypothesizes that ECH may reverse myocardial remodelling and improve heart function of HF via regulating SIRT1/FOXO3a/MnSOD signalling axis and inhibit mitochondrial oxidative stress in cardiomyocytes. Here, we firstly induce cellular model of oxidative stress by ISO with AC‐16 cells and pre‐treat with ECH, the level of mitochondrial ROS, mtDNA oxidative injury, MMP, carbonylated protein, lipid peroxidation, intracellular ROS and apoptosis are detected, confirm the effect of ECH in mitochondrial oxidative stress and function in vitro. Then, we establish a HF rat model induced by ISO and pre‐treat with ECH. Indexes of heart function, myocardial remodelling, mitochondrial oxidative stress and function, expression of SIRT1/FOXO3a/MnSOD signalling axis are measured, the data indicate that ECH improves heart function, inhibits myocardial hypertrophy, fibrosis and apoptosis, increases the expression of SIRT1/FOXO3a/MnSOD signalling axis, reduces the mitochondrial oxidative damages, protects mitochondrial function. We conclude that ECH reverses myocardial remodelling and improves cardiac function via up‐regulating SIRT1/FOXO3a/MnSOD axis and inhibiting mitochondrial oxidative stress in HF rats.
机译:心肌重塑是HF的重要病理基础,线粒体氧化应激是心肌肥大,纤维化和凋亡的启动子。 ECH是中医患者的主要活性成分,大量的研究表明它具有神经细胞和肿瘤的强烈抗氧化能力,它抑制线粒体氧化应激,保护线粒体功能,但具体机制尚不清楚。 SIRT1 / FOXO3A / MNSOD是一种重要的抗氧化轴,研究发现,ECH共价与SIRT1一起结合,作为配体,上调SIRT1在脑细胞中的表达。我们假设ECH可以通过调节SIRT1 / FOXO3A / MNSOD信号轴来逆转心肌重塑和改善HF的心脏功能,并抑制心肌细胞中的线粒体氧化应激。在这里,我们首先用ASO用AC-16细胞诱导氧化应激的细胞模型,并用ENH预处理,检测到线粒体ROS,MTDNA氧化损伤,MMP,羰基化蛋白,脂质过氧化,细胞内RO和细胞凋亡的水平,确认ECH在线粒体氧化应激和功能中的作用。然后,我们建立了ISO诱导的HF大鼠模型并用ENH预处理。测量心功能的指标,心肌重塑,线粒体氧化应激和功能,测量SIRT1 / FOXO3A / MNSOD信号轴的表达,数据表明,ECH改善心脏功能,抑制心肌肥大,纤维化和凋亡,增加了SIRT1 / FOXO3A的表达/ MNSOD信号轴,降低线粒体氧化损伤,保护线粒体功能。我们得出结论,ECH逆转心肌重塑,通过上调SIRT1 / FOXO3A / MNSOD轴和抑制HF大鼠的线粒体氧化应激来改善心脏功能。

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