首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Dietary eicosapentaenoic acid supplementation accentuates hepatic triglyceride accumulation in mice with impaired fatty acid oxidation capacity
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Dietary eicosapentaenoic acid supplementation accentuates hepatic triglyceride accumulation in mice with impaired fatty acid oxidation capacity

机译:膳食二十碳五烯酸补充可加剧脂肪酸氧化能力受损的小鼠肝中甘油三酸酯的积累

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摘要

Reduced mitochondrial fatty acid (FA) β-oxidation can cause accumulation of triglyceride in liver, while intake of eicosapentaenoic acid (EPA) has been recommended as a promising novel therapy to decrease hepatic triglyceride content. However, reduced mitochondrial FA β-oxidation also facilitates accumulation of EPA. To investigate the interplay between EPA administration, mitochondrial activity and hepatic triglyceride accumulation, we investigated the effects of EPA administration to carnitine-deficient mice with impaired mitochondrial FA β-oxidation. C57BL/6J mice received a high-fat diet supplemented or not with 3% EPA in the presence or absence of 500 mg mildronate/kg/day for 10 days. Liver mitochondrial and peroxisomal oxidation, lipid classes and FA composition were determined. Histological staining was performed and mRNA level of genes related to lipid metabolism and inflammation in liver and adipose tissue was determined. Levels of pro-inflammatory eicosanoids and cytokines were measured in plasma. The results showed that mildronate treatment decreased hepatic carnitine concentration and mitochondrial FA β-oxidation and induced severe triglyceride accumulation accompanied by elevated systemic inflammation. Surprisingly, inclusion of EPA in the diet exacerbated the mildronate-induced triglyceride accumulation. This was accompanied by a considerable increase of EPA accumulation while decreased total n-3-6 ratio in liver. However, inclusion of EPA in the diet attenuated the mildronate-induced mRNA expression of inflammatory genes in adipose tissue. Taken together, dietary supplementation with EPA exacerbated the triglyceride accumulation induced by impaired mitochondrial FA β-oxidation. Thus, further thorough evaluation of the potential risk of EPA supplementation as a therapy for NAFLD associated with impaired mitochondrial FA oxidation is warranted.
机译:线粒体脂肪酸(FA)β-氧化的减少会导致甘油三酸酯在肝脏中的积累,而二十碳五烯酸(EPA)的摄入已被建议作为降低肝甘油三酸酯含量的有前途的新疗法。然而,线粒体FAβ-氧化的减少也促进了EPA的积累。为了研究EPA给药,线粒体活性和肝甘油三酸酯积累之间的相互作用,我们研究了EPA给药对线粒体FAβ氧化受损的肉碱缺乏小鼠的影响。 C57BL / 6J小鼠在存在或不存在500毫克次膦酸盐/千克/天的情况下接受高脂饮食补充或不添加3%EPA,持续10天。测定肝线粒体和过氧化物酶体的氧化,脂质类别和FA组成。进行组织学染色并测定与肝脏和脂肪组织中脂质代谢和炎症相关的基因的mRNA水平。在血浆中测量促炎性类花生酸和细胞因子的水平。结果表明,温和的硝酸盐处理可降低肝肉碱浓度和线粒体FAβ氧化,并引起严重的甘油三酸酯积累,并伴有全身性炎症反应。出人意料的是,在饮食中加入EPA加剧了丙二酸酯诱导的甘油三酸酯积累。这伴随着EPA积累的显着增加,同时肝脏中总n-3 / n-6比率降低。然而,在饮食中加入EPA会减弱脂联素诱导的脂肪组织中炎症基因的mRNA表达。总之,饮食中添加EPA会加剧线粒体FAβ氧化受损导致的甘油三酸酯蓄积。因此,有必要进一步彻底评估补充EPA作为与线粒体FA氧化受损相关的NAFLD治疗的潜在风险。

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