首页> 外文期刊>The Journal of Nutrition >Adipocyte Gene Expression Is Altered in Formerly Obese Mice and As a Function of Diet Composition1–3,
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Adipocyte Gene Expression Is Altered in Formerly Obese Mice and As a Function of Diet Composition1–3,

机译:肥胖小鼠的脂肪细胞基因表达发生改变,并与饮食组成有关1-3,

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In the development of obesity, the source of excess energy may influence appetite and metabolism. To determine the effects of differences in diet composition in obesity, mice were fed either a high-carbohydrate diet (HC; 10% fat energy) or a high-fat energy–restricted diet (HFR; 60% fat energy) over 18 wk in weight-matched groups of mice. To identify obesity-associated genes with persistently altered expression following weight reduction, mice were fed either a standard low-fat diet (LF; 10% fat energy), an unrestricted high-fat diet (HF; 60% fat energy), or a HF diet followed by weight reduction (WR). Mice fed a HF diet had significantly greater gonadal fat mass and higher whole blood glucose concentrations than mice fed an HC diet. Of the mice fed a high-fat diet, total body weight and serum insulin concentrations were greater in HF than in HFR. Microarray analysis revealed that HF vs. HC feeding resulted in global differences in adipocyte gene expression patterns. Although we identified genes whose expression was altered in both moderately and severely obese mice, there were also a large number of genes with altered expression only in severe obesity. Formerly obese, WR mice did not differ significantly from lean controls in total body weight or physiological measures. However, microarray analysis revealed distinctly different patterns of adipocyte gene expression. Furthermore, there were 398 genes with altered expression in HF mice that persisted in WR mice. Genes with persistently altered expression following obesity may play a role in rebound weight gain following weight reduction.
机译:在肥胖的发展过程中,过多的能量来源可能会影响食欲和新陈代谢。为了确定饮食结构差异对肥胖的影响,在18周内给小鼠喂食高碳水化合物饮食(HC; 10%脂肪能量)或高脂饮食(HFR; 60%脂肪能量)。体重匹配的小鼠组。为了鉴定体重减轻后表达持续改变的肥胖相关基因,给小鼠喂食标准低脂饮食(LF; 10%脂肪能量),无限制高脂饮食(HF; 60%脂肪能量)或HF饮食,然后减轻体重(WR)。喂养高脂饮食的小鼠比喂高脂饮食的小鼠具有明显更大的性腺脂肪量和更高的全血糖浓度。在高脂饮食喂养的小鼠中,HF的总体重和血清胰岛素浓度高于HFR。微阵列分析显示,HF和HC进食导致脂肪细胞基因表达模式的总体差异。尽管我们鉴定了在中度和重度肥胖小鼠中表达均发生改变的基因,但也有大量仅在严重肥胖中表达发生改变的基因。 WR小鼠以前是肥胖的,在总体重或生理指标上与瘦肉对照组没有显着差异。然而,微阵列分析揭示了脂肪细胞基因表达的明显不同的模式。此外,在HF小鼠中有398个在HF小鼠中表达改变的基因持续存在于WR小鼠中。肥胖后表达持续改变的基因可能在体重减轻后反弹体重增加中起作用。

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