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首页> 外文期刊>Nutrition Metabolism >Metabolic responses to high-fat diets rich in n-3 or n-6 long-chain polyunsaturated fatty acids in mice selected for either high body weight or leanness explain different health outcomes
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Metabolic responses to high-fat diets rich in n-3 or n-6 long-chain polyunsaturated fatty acids in mice selected for either high body weight or leanness explain different health outcomes

机译:选择高体重或瘦肉的小鼠对富含n-3或n-6长链多不饱和脂肪酸的高脂饮食的代谢反应解释了不同的健康结果

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Background Increasing evidence suggests that diets high in polyunsaturated fatty acids (PUFA) confer health benefits by improving insulin sensitivity and lipid metabolism in liver, muscle and adipose tissue. Methods The present study investigates metabolic responses in two different lines of mice either selected for high body weight (DU6) leading to rapid obesity development, or selected for high treadmill performance (DUhTP) leading to a lean phenotype. At 29 days of age the mice were fed standard chow (7.2% fat, 25.7% protein), or a high-fat diet rich in n-3 PUFA (n-3 HFD, 27.7% fat, 19% protein) or a high-fat diet rich in n-6 PUFA (n-6 HFD, 27.7% fat, 18.6% protein) for 8 weeks. The aim of the study was to determine the effect of these PUFA-rich high-fat diets on the fatty acid profile and on the protein expression of key components of insulin signalling pathways. Results Plasma concentrations of leptin and insulin were higher in DU6 in comparison with DUhTP mice. The high-fat diets stimulated a strong increase in leptin levels and body fat only in DU6 mice. Muscle and liver fatty acid composition were clearly changed by dietary lipid composition. In both lines of mice n-3 HFD feeding significantly reduced the hepatic insulin receptor β protein concentration which may explain decreased insulin action in liver. In contrast, protein kinase C ζ expression increased strongly in abdominal fat of n-3 HFD fed DUhTP mice, indicating enhanced insulin sensitivity in adipose tissue. Conclusions A diet high in n-3 PUFA may facilitate a shift from fuel deposition in liver to fuel storage as fat in adipose tissue in mice. Tissue specific changes in insulin sensitivity may describe, at least in part, the health improving properties of dietary n-3 PUFA. However, important genotype-diet interactions may explain why such diets have little effect in some population groups.
机译:背景技术越来越多的证据表明,多不饱和脂肪酸(PUFA)饮食可以改善肝脏,肌肉和脂肪组织的胰岛素敏感性和脂质代谢,从而对健康有益。方法本研究调查了两种不同系的小鼠的代谢反应,这些小鼠要么被选为高体重(DU6)导致肥胖快速发展,要么被选为高跑步机性能(DUhTP)导致瘦型。在29日龄时,给小鼠喂普通食物(7.2%脂肪,25.7%蛋白质)或富含n-3 PUFA(n-3 HFD,27.7%脂肪,19%蛋白质)或高脂肪的高脂饮食。富含n-6 PUFA(n-6 HFD,27.7%脂肪,18.6%蛋白质)的高脂饮食,持续8周。这项研究的目的是确定这些富含PUFA的高脂饮食对脂肪酸谱和胰岛素信号通路关键成分蛋白质表达的影响。结果与DUhTP小鼠相比,DU6中的瘦素和胰岛素的血浆浓度更高。高脂饮食仅在DU6小鼠中刺激了瘦素水平和体内脂肪的强烈增加。饮食中脂类成分明显改变了肌肉和肝脏的脂肪酸成分。在两只小鼠中,n-3 HFD喂养显着降低了肝脏胰岛素受体β蛋白的浓度,这可能解释了肝脏中胰岛素作用的降低。相反,在n-3 HFD喂养的DUhTP小鼠的腹部脂肪中,蛋白激酶Cζ表达强烈增加,表明在脂肪组织中胰岛素敏感性增强。结论高n-3 PUFA饮食可以促进小鼠肝脏脂肪沉积从脂肪沉积转变为脂肪储存。胰岛素敏感性的组织特异性变化可能至少部分描述了饮食性n-3 PUFA的健康改善特性。然而,重要的基因型-饮食相互作用可能解释了为什么这种饮食在某些人群中影响很小。

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