首页> 外文期刊>The Journal of Nutritional Biochemistry >Quercetin prevents ethanol-induced iron overload by regulating hepcidin through the BMP6/SMAD4 signaling pathway
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Quercetin prevents ethanol-induced iron overload by regulating hepcidin through the BMP6/SMAD4 signaling pathway

机译:槲皮素通过通过BMP6 / SMAD4信号传导途径调节铁调素防止乙醇诱导的铁超载

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Emerging evidence has demonstrated that chronic ethanol exposure induces iron overload, enhancing ethanol-mediated liver damage. The purpose of this study was to explore the effects of the naturally occurring compound quercetin on ethanol-induced iron overload and liver damage, focusing on the signaling pathway of the iron regulatory hormone hepcidin. Adult male C57BL/6J mice were pair-fed with isocaloric-Lieber De Carli diets containing ethanol (accounting for 30% of total calories) and/or carbonyl iron (0.2%) and treated with quecertin (100 mg/kg body weight) for 15 weeks. Mouse primary hepatocytes were incubated with ethanol (100 mM) and quercetin (100 mu M) for 24 h. Mice exposed to either ethanol or iron presented significant fatty infiltration and iron deposition in the liver; these symptoms were exacerbated in mice cotreated with ethanol and iron. Quercetin attenuated the abnormity induced by ethanol and/or iron. Ethanol suppressed BMP6 and intranuclear SMAD4 as well as decreased hepcidin expression. These effects were partially alleviated by quercetin supplementation in mice and hepatocytes. Importantly, ethanol caused suppression of SMAD4 binding to the HAMP promoter and of hepcidin messenger RNA expression. These effects were exacerbated by anti-BMP6 antibody and partially alleviated by quercetin or human recombinant BMP6 in cultured hepatocytes. In contrast, co-treatment with iron and ethanol, especially exposure of iron alone, activated BMP6/SMAD4 pathway and up-regulated hepcidin expression, which was also normalized by quercetin in vivo. Quercetin prevented ethanol-induced hepatic iron overload different from what carbonyl iron diet elicited in the mechanism, by regulating hepcidin expression via the BMP6/SMAD4 signaling pathway. (C) 2014 Elsevier Inc. All rights reserved.
机译:越来越多的证据表明,慢性乙醇暴露会导致铁超负荷,从而加剧乙醇介导的肝损害。这项研究的目的是探讨天然存在的槲皮素对乙醇诱导的铁超负荷和肝损伤的影响,重点研究铁调节激素铁调素的信号传导途径。将成年雄性C57BL / 6J小鼠与含有乙醇(占总卡路里的30%)和/或羰基铁(0.2%)的等热量利比-德卡利饮食配对喂养,并用槲皮素(100 mg / kg体重)处理。 15周。将小鼠原代肝细胞与乙醇(100 mM)和槲皮素(100μM)孵育24小时。暴露于乙醇或铁的小鼠在肝脏中表现出明显的脂肪浸润和铁沉积。在用乙醇和铁共同治疗的小鼠中,这些症状加剧了。槲皮素减弱了乙醇和/或铁引起的异常。乙醇抑制BMP6和核内SMAD4并降低铁调素表达。在小鼠和肝细胞中补充槲皮素可部分缓解这些作用。重要的是,乙醇会抑制SMAD4与HAMP启动子的结合以及铁调素信使RNA的表达。在培养的肝细胞中,抗​​BMP6抗体会加剧这些作用,槲皮素或人重组BMP6会部分缓解这些作用。相反,与铁和乙醇共同处理,尤其是单独暴露于铁,会激活BMP6 / SMAD4途径并上调铁调素表达,这在体内也被槲皮素标准化。槲皮素通过通过BMP6 / SMAD4信号传导途径调节铁调素的表达,从而防止了乙醇诱导的肝铁超载,其机理不同于羰基铁饮食。 (C)2014 Elsevier Inc.保留所有权利。

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