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Long-chain fatty acid activates hepatocytes through CD36 mediated oxidative stress

机译:长链脂肪酸通过CD36介导的氧化应激激活肝细胞

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Abstract BackgroundAccumulating evidence suggests that activated hepatocytes are involved in the deposition of the excess extracellular matrix during liver fibrosis via the epithelial to mesenchymal transition. Lipid accumulation in hepatocytes are implicated in the pathogenesis of chronic liver injury. CD36 is known to mediate long-chain fatty acid (LCFA) uptake and lipid metabolism. However, it is unclear whether LCFA directly promotes hepatocyte activation and the involved mechanisms have not been fully clarified.MethodsMice were fed with a high fat diet (HFD) and normal hepatocyte cells (Chang liver cells) were treated with palmitic acid (PA) in vivo and in vitro. Real-time polymerase chain reaction (RT-PCR) and western blotting were used to examine the gene and protein expression of molecules involved in hepatic fibrogenesis and hepatocyte activation. CD36 was knocked down by transfecting CD36 siRNA into hepatocyte cells. Hydrogen peroxide (H2O2) and reactive oxygen species (ROS) levels were detected using commercial kits.ResultsHFD induced a profibrogenic response and up-regulated CD36 expression in vivo. Analogously, PA increased lipid accumulation and induced human hepatocyte activation in vitro, which was also accompanied by increased CD36 expression. Interestingly, knockdown of CD36 resulted in a reduction of hepatocyte lipid deposition and decreased expression of Acta2 (34% decrease) , Vimentin (29% decrease) , Desmin (60% decrease), and TGF-β signaling pathway related genes. In addition, HFD and PA increased the production of H2O2 in vivo (48% increase) and in vitro (385% increase), and the antioxidant, NAC, ameliorated PA-induced hepatocyte activation. Furthermore, silencing of CD36 in vitro markedly attenuated PA-induced oxidative stress (H2O2: 41% decrease; ROS: 39% decrease), and the anti-activation effects of CD36 knockdown could be abolished by pretreatment with H2O2.ConclusionsOur study demonstrated that LCFA facilitates hepatocyte activation by up-regulating oxidative stress through CD36, which could be an important mechanism in the development of hepatic fibrosis.
机译:摘要背景越来越多的证据表明,在肝纤维化过程中,活化的肝细胞通过上皮向间质的转变参与了多余的细胞外基质的沉积。肝细胞中的脂质蓄积与慢性肝损伤的发病机制有关。已知CD36介导长链脂肪酸(LCFA)摄取和脂质代谢。然而,尚不清楚LCFA是否直接促进肝细胞活化,其相关机制尚未完全阐明。方法:给小鼠喂高脂饮食(HFD),对正常肝细胞(常肝细胞)进行棕榈酸(PA)处理。体内和体外。实时聚合酶链反应(RT-PCR)和蛋白质印迹被用来检查参与肝纤维化和肝细胞活化的分子的基因和蛋白质表达。通过将CD36 siRNA转染入肝细胞来敲除CD36。使用商业试剂盒检测过氧化氢(H2O2)和活性氧(ROS)的水平。结果HFD在体内诱导了纤维化反应和CD36表达上调。类似地,PA增加脂质的积累并在体外诱导人肝细胞活化,这也伴随着CD36表达的增加。有趣的是,CD36的敲低导致肝细胞脂质沉积的减少和Acta2表达的降低(降低34%),波形蛋白(降低29%),结蛋白(降低60%)和TGF-β信号通路相关基因。此外,HFD和PA可增加体内H2O2的产生(增加48%)和体外H2O2的产生(增加385%),抗氧化剂NAC改善了PA诱导的肝细胞活化。此外,体外CD36的沉默可以显着减轻PA诱导的氧化应激(H2O2:降低41%; ROS:39%降低),并且通过H2O2预处理可以消除CD36敲低的抗激活作用。结论我们的研究表明LCFA通过上调通过CD36的氧化应激来促进肝细胞活化,这可能是肝纤维化发展的重要机制。

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