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首页> 外文期刊>The British Journal of Nutrition >Whey protein isolate counteracts the effects of a high-fat diet on energy intake and hypothalamic and adipose tissue expression of energy balance-related genes.
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Whey protein isolate counteracts the effects of a high-fat diet on energy intake and hypothalamic and adipose tissue expression of energy balance-related genes.

机译:乳清蛋白分离物可抵消高脂饮食对能量摄入以及下丘脑和脂肪组织中能量平衡相关基因表达的影响。

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The intake of whey protein isolate (WPI) is known to reduce high-fat diet (HFD)-induced body-weight gain and adiposity. However, the molecular mechanisms are not fully understood. To this end, we fed C57BL/6J mice for 8 weeks with diets containing 10 % energy as fat (low-fat diet, LFD) or 45 % energy as fat (HFD) enriched with either 20 % energy as casein (LFD and HFD) or WPI (high-fat WPI). Metabolic parameters and the hypothalamic and epididymal adipose tissue expression of energy balance-related genes were investigated. The HFD increased fat mass and plasma leptin levels and decreased the dark-phase energy intake, meal number, RER, and metabolic (VO2 and heat) and locomotor activities compared with the LFD. The HFD increased the hypothalamic tissue mRNA expression of the leptin receptor, insulin receptor (INSR) and carnitine palmitoyltransferase 1b (CPT1b). The HFD also reduced the adipose tissue mRNA expression of GLUT4 and INSR. In contrast, WPI reduced fat mass, normalised dark-phase energy intake and increased meal size in HFD-fed mice. The dietary protein did not have an impact on plasma leptin, insulin, glucose or glucagon-like peptide 1 levels, but increased plasma TAG levels in HFD-fed mice. At a cellular level, WPI significantly reduced the HFD-associated increase in the hypothalamic tissue mRNA expression of the leptin receptor, INSR and CPT1b. Also, WPI prevented the HFD-induced reduction in the adipose tissue mRNA expression of INSR and GLUT4. In comparison with casein, the effects of WPI on energy intake and hypothalamic and adipose tissue gene expression may thus represent a state of reduced susceptibility to weight gain on a HFD
机译:摄入乳清蛋白分离物(WPI)可以减少高脂饮食(HFD)引起的体重增加和肥胖。但是,分子机理尚未完全了解。为此,我们给C57BL / 6J小鼠喂养了8周的日粮,其中日粮含10%的能量为脂肪(低脂饮食,LFD)或45%的脂肪(HFD)能量为20%的酪蛋白(LFD和HFD) )或WPI(高脂WPI)。研究了代谢参数以及下丘脑和附睾脂肪组织中能量平衡相关基因的表达。与LFD相比,HFD可以增加脂肪量和血浆瘦素水平,并降低暗相能量摄入,进餐量,RER和代谢(VO 2 和热量)和运动能力。 HFD增加了瘦素受体,胰岛素受体(INSR)和肉碱棕榈酰转移酶1b(CPT1b)的下丘脑组织mRNA表达。 HFD还降低了GLUT4和INSR的脂肪组织mRNA表达。相比之下,WPI减少了喂食HFD的小鼠的脂肪量,正常的暗相能量摄入并增加了进餐量。饮食蛋白对血浆瘦素,胰岛素,葡萄糖或胰高血糖素样肽1的含量没有影响,但在饲喂HFD的小鼠中血浆TAG含量增加。在细胞水平上,WPI显着降低了瘦素受体,INSR和CPT1b的下丘脑组织mRNA表达中与HFD相关的增加。同样,WPI阻止了HFD诱导的INSR和GLUT4脂肪组织mRNA表达的降低。与酪蛋白相比,WPI对能量摄入以及下丘脑和脂肪组织基因表达的影响可能代表了HFD对体重增加的敏感性降低的状态

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