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首页> 外文期刊>The Journal of Nutritional Biochemistry >Glycyrrhizin and glycyrrhetinic acid directly modulate rat cardiac performance.
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Glycyrrhizin and glycyrrhetinic acid directly modulate rat cardiac performance.

机译:甘草甜素和甘草次酸直接调节大鼠心脏的表现。

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Root extract of liquorice is traditionally used to treat several diseases. Liquorice-derived constituents present several biological actions. In particular, glycyrrhizin and its aglycone, glycyrrhetinic acid, exhibit well-known cardiovascular properties. The aim of this research was to explore the direct cardiac activity of glycyrrhizin and glycyrrhetinic acid. The effects of synthetic glycyrrhizin and glycyrrhetinic acid were evaluated on the isolated and Langendorff perfused rat heart. The intracellular signaling involved in the effects of the two substances was analyzed on isolated and perfused heart and by Western blotting on cardiac extracts. Under basal conditions, both glycyrrhizin and glycyrrhetinic acid influenced cardiac contractility and relaxation. Glycyrrhizin induced significant positive inotropic and lusitropic effects starting from very low concentrations, while both inotropism and lusitropism were negatively affected by glycyrrhetinic acid. Both substances significantly increased heart rate. Analysis of the signal transduction mechanisms suggested that glycyrrhizin acts through the endothelin receptor type A/phospholipase C axis while glycyrrhetinic acid acts through endothelin receptor type B/Aktitric oxide synthaseitric oxide axis. To our knowledge, these data reveal, for the first time, that both glycyrrhizin and glycyrrhetinic acid directly affect cardiac performance. Additional information on the physiological significance of these substances and their cardiac molecular targets may provide indication on their biomedical application
机译:甘草的根提取物传统上用于治疗多种疾病。甘草的成分具有多种生物学作用。特别是,甘草甜素及其糖苷配基,甘草次酸显示出众所周知的心血管特性。这项研究的目的是探讨甘草甜素和甘草次酸的直接心脏活性。评估了合成的甘草甜素和甘草次酸对离体和Langendorff灌注大鼠心脏的影响。在分离和灌注的心脏上以及通过对心脏提取物的蛋白质印迹分析了涉及这两种物质作用的细胞内信号传导。在基础条件下,甘草甜素和甘草次酸都影响心脏的收缩和松弛。甘草甜素从非常低的浓度开始就产生明显的正性肌力和正性肌力作用,而甘草次酸对正性肌力和正性肌力都产生了负面影响。两种物质均会明显增加心率。对信号转导机制的分析表明,甘草甜素通过内皮素受体A型/磷脂酶C轴起作用,而甘草次酸通过内皮素受体B型/ Akt /一氧化氮合酶/一氧化氮轴线起作用。据我们所知,这些数据首次揭示了甘草甜素和甘草次酸都直接影响心脏性能。这些物质及其心脏分子靶标的生理意义的其他信息可能会为其生物医学应用提供指示

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