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A fifty percent leucine-restricted diet reduces fat mass and improves glucose regulation

机译:五十百分之五十次亮氨酸限制饮食可降低脂肪质量并改善葡萄糖调节

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摘要

Abstract Background Leucine deprivation modulates the dietary amino acid composition, reducing the fat content and improving the glucose tolerance, thus protecting the organism against obesity. However, a complete deprivation of leucine can lead to an extremely rapid fat loss in mice, accompanied by prolonged adverse effects such as weakness and mental fatigue. Therefore, in this study we aimed to seek the optimal concentration of dietary leucine that can reduce fat mass and improve the metabolism without the onset of severe effects. Methods To investigate whether there is a better concentration of diet leucine restriction (LR), based on the diet we conducted (A10021B), that can reduce fat mass and improve metabolism status without taking many negative effects, we fed 8 weeks old male C57Bl/6J mice with increasing degrees of leucine restriction diet 0% LR (control group), 25% LR, 50% LR, and 75% LR groups (4–6 mice each group). Fat mass and blood glucose levels were measured. The expression levels of genes involved in lipid metabolism in white adipose tissue (WAT) and liver, and proteins in insulin signaling were assessed in WAT, liver and muscle. Results We found that the 50% LR group is the most proper group here at the lowest leucine effective concentration, which reduced fat mass (p  < 0.05) and improved glucose regulation in mice over a 90 days feeding. Further studies revealed that lipid synthesis pathway (Fas, Scd1and Srebp1, p < 0.05) was downregulated and lipolysis (Atgl, p < 0.05) was upregulated in WAT in 50% LR group, compared to that in control group. Furthermore, glucose regulation (glucose tolerance test, p < 0.05) was also improved, and insulin signaling (p < 0.05) in the muscle was enhanced in 50% LR group while in WAT and liver were not changed. Conclusions Collectively, a 50% LR in mice reduced fat mass and improved glucose regulation, which may function through modulating lipid synthesis and lipolysis pathway in adipose tissue as well as enhancing insulin signaling in muscle. So far, we provide a further consideration for carrying out the diet of leucine restriction to reduce fat and improve metabolism status before clinical study.
机译:摘要背景亮氨酸剥夺调节膳食氨基酸组合物,降低脂肪含量并改善葡萄糖耐量,从而保护生物体免受肥胖症。然而,完全剥夺亮氨酸可导致小鼠的极快脂肪损失,伴随着延长的不良反应,如虚弱和精神疲劳。因此,在这项研究中,我们旨在寻求最佳浓度的膳食亮氨酸浓度,可以降低脂肪质量并改善代谢而不发生严重影响。研究方法是否有更好地浓度的饮食亮氨酸限制(LR),基于我们进行的饮食(A10021B),这可以降低脂肪肿大并改善代谢状态而不服用许多负面影响,我们喂过8周龄雄性C57BL / 6J小鼠随着亮氨酸限制饮食0%LR(对照组),25%LR,50%LR和75%LR组(每组4-6只小鼠)。测量脂肪和血糖水平。在Wat,肝脏和肌肉中评估了在白色脂肪组织(Wat)和肝脏中脂质代谢中涉及脂质代谢的基因的表达水平,以及胰岛素信号传导中的蛋白质。结果我们发现,50%LR组是此处最适当的亮氨酸有效浓度,减少脂肪质量(P <0.05),并在90天内提高小鼠的葡萄糖调节。进一步的研究表明,与对照组相比,在50%LR组中,将脂质合成途径(Fas,SCD1和Sreb1,P <0.05)下调(ATG1,P <0.05)进行脂解(ATGL,P <0.05)。此外,葡萄糖调节(葡萄糖耐量试验,P <0.05)也得到了改善,并且在50%LR组中,肌肉中的胰岛素信号传导(P <0.05)在Wat和肝脏中没有改变。结论,小鼠的50%LR降低了脂肪质量和改善的葡萄糖调节,其可以通过调节脂肪组织中的脂质合成和脂解途径,以及增强肌肉中的胰岛素信号。到目前为止,我们提供了进一步考虑,用于实施亮氨酸限制的饮食,以减少脂肪和改善临床研究之前的代谢状态。

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