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Susceptibility of L-FABP−/− mice to oxidative stress in early-stage alcoholic liver

机译:L-FABP-/-小鼠对早期酒精性肝的氧化应激敏感性

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摘要

Chronic ethanol consumption is a prominent cause of liver disease worldwide. Dysregulation of an important lipid uptake and trafficking gene, liver-fatty acid binding protein (L-FABP), may contribute to alterations in lipid homeostasis during early-stage alcoholic liver. We have reported the detrimental effects of ethanol on the expression of L-FABP and hypothesize this may deleteriously impact metabolic networks regulating fatty acids. Male wild-type (WT) and L-FABP−/− mice were fed a modified Lieber-DeCarli liquid diet for six weeks. To assess the response to chronic ethanol ingestion, standard biochemical indicators for alcoholic liver disease (ALD) and oxidative stress were measured. Ethanol ingestion resulted in attenuation of hepatic triglyceride accumulation and elevation of cholesterol in L-FABP−/− mice. Lipidomics analysis validated multiple alterations in hepatic lipids resulting from ethanol treatment. Increased immunohistochemical staining for the reactive aldehydes 4-hydroxynonenal and malondialdehyde were observed in WT mice ingesting ethanol; however, L-FABP−/− mice displayed prominent protein adducts in liver sections evaluated from pair-fed and ethanol-fed mice. Likewise, alterations in glutathione, thiobarbituric acid reactive substances (TBARS), 8-isoprostanes, and protein carbonyl content all indicated L-FABP−/− mice exhibit high sustained oxidative stress in the liver. These data establish that L-FABP is an indirect antioxidant protein essential for sequestering FFA and that its impairment could contribute to in the pathogenesis of ALD.
机译:长期服用乙醇是全世界肝脏疾病的重要原因。重要的脂质吸收和运输基因肝-脂肪酸结合蛋白(L-FABP)的失调可能有助于早期酒精性肝中脂质稳态的改变。我们已经报道了乙醇对L-FABP表达的有害影响,并假设这可能有害地影响调节脂肪酸的代谢网络。给雄性野生型(WT)和L-FABP -/-小鼠喂食改良的Lieber-DeCarli流质饮食六周。为了评估对慢性乙醇摄入的反应,测量了酒精性肝病(ALD)和氧化应激的标准生化指标。乙醇摄入会降低L-FABP -/-小鼠的肝甘油三酸酯积累并降低胆固醇。脂质组学分析验证了乙醇处理引起的肝脂质的多种变化。吞食乙醇的野生型小鼠中反应性醛类4-羟基壬醛和丙二醛的免疫组化染色增加。然而,L-FABP -/-小鼠在成对喂养和乙醇喂养小鼠的肝脏切片中显示出突出的蛋白质加合物。同样,谷胱甘肽,硫代巴比妥酸反应性物质(TBARS),8-异前列腺素和蛋白质羰基含量的变化均表明L-FABP -/-小鼠在肝脏中表现出较高的持续氧化应激。这些数据表明,L-FABP是螯合FFA必不可少的间接抗氧化剂蛋白,其损伤可能与ALD的发病有关。

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