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首页> 外文期刊>Biological & pharmaceutical bulletin >Ferulic Acid Ameliorates Isoproterenol-Induced Heart Failure by Decreasing Oxidative Stress and Inhibiting Cardiocyte Apoptosis via Activating Nrf2 Signaling Pathway in Rats
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Ferulic Acid Ameliorates Isoproterenol-Induced Heart Failure by Decreasing Oxidative Stress and Inhibiting Cardiocyte Apoptosis via Activating Nrf2 Signaling Pathway in Rats

机译:通过在大鼠中激活NRF2信号传导途径,通过降低氧化应激和抑制心细胞凋亡来改善异丙酚诱导的心力衰竭。

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摘要

Ferulic acid (FA) has potential therapeutic effects in multiple diseases including cardiovascular diseases. However, the effect and molecular basis of FA in heart failure (HF) has not been thoroughly elucidated. Herein, we investigated the roles and mechanisms of FA in HF in isoproterenol (ISO)-induced HF rat model. Results found that FA ameliorated cardiac dysfunction, alleviated oxidative stress, reduced cell/myocardium injury-related enzyme plasma level, inhibited cardiocyte apoptosis in ISO-induced HF rat models. Moreover, FA reduced the co-localization of Keapl and nuclear factor-E2-related factor 2 (Nrf2) in heart tissues of ISO-induced HF rats, and FA alleviated the inhibitory effects of ISO on expressions of p-Nrf2, heme oxygenase-1 (HO-1) and reduced nicotinamide adenine dinucleotide phosphate quinone dehydrogenase 1 (NQO1). Additionally, Nrf2 signaling pathway inhibitor ML385 showed adverse effects. FA weakened the effects of ML385 in ISO-induced HF rat models. Collectively, FA ameliorated HF by decreasing oxidative stress and inhibiting cardiocyte apoptosis via activating Nrf2 pathway in ISO-induced HF rats. Our data elucidated the underling molecular mechanism and provided a novel insight into the cardioprotective function of FA, thus suggested the therapeutic potential of FA in HF treatment.
机译:阿魏酸(FA)在包括心血管疾病的多种疾病中具有潜在的治疗效果。然而,FA在心力衰竭(HF)中的效果和分子基础尚未得到彻底阐明。在此,我们研究了FA在异丙肾上腺素(ISO)诱导的HF大鼠模型中FA中FA的作用和机制。结果发现,对氧化氧化应激,降低细胞/心肌损伤相关酶水平的结果发现,抑制了ISO诱导的HF大鼠大鼠模型的心细胞凋亡。此外,FA降低了ISO诱导的HF大鼠心脏组织中KEAPL和核因子-E2相关因子2(NRF2)的共定位,并且FA减轻了ISO对P-NRF2,血红素氧酶的表达的抑制作用1(HO-1)和减少的烟酰胺腺嘌呤二核苷酸磷酸醌脱氢酶1(NQO1)。另外,NRF2信号通路抑制剂ML385显示出不利影响。 FA削弱了ML385在ISO诱导的HF大鼠模型中的影响。通过在ISO诱导的HF大鼠中激活NRF2途径,通过激活NRF2途径来集体,通过降低氧化应激和抑制心细胞凋亡,通过激活NRF2途径来集体。我们的数据阐明了内部分子机制,并为FA的心脏保护功能提供了新的洞察力,因此提出了FA治疗的治疗潜力。

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