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低蛋白饮食和高蛋白饮食不会改变骨骼肌的体外胰岛素作用。

Low- and high-protein diets do not alter ex vivo insulin action in skeletal muscle.

作者信息

Li Zhencheng, Rasmussen Mette Line, Li Jingwen, Olguín Carlos Henríquez, Knudsen Jonas Roland, Søgaard Ole, Madsen Agnete B, Jensen Thomas E

机构信息

Section of Molecular Physiology, Department of Nutrition, Exercise and Sports, University of Copenhagen, Copenhagen, Denmark.

出版信息

Physiol Rep. 2018 Jul;6(13):e13798. doi: 10.14814/phy2.13798.

Abstract

A low-protein high carbohydrate (LPHC) diet and a high-protein low carbohydrate (HPLC) diet have been reported to positively and negatively regulate whole-body glucose tolerance and insulin sensitivity, respectively. Skeletal muscle is quantitatively the most important tissue clearing glucose in the postprandial state, but it is unclear if LPHC and HPLC diets directly influence insulin action in skeletal muscle. To test this, mice were placed on control chow diet, LPHC and HPLC diets for 13.5 weeks at which time the submaximal insulin-stimulated glucose transport and insulin signaling were evaluated in ex vivo incubated oxidative soleus and glycolytic EDL muscle. At the whole-body level, the diets had the anticipated effects, with LPHC diet improving glucose tolerance and insulin-sensitivity whereas HPLC diet had the opposite effect. However, neither insulin-stimulated Akt/TBC1D4 signaling and glucose transport ex vivo, nor cell signaling in vivo were altered by the diets. These data imply that skeletal muscle insulin sensitivity does not contribute to the whole-body effects of LPHC and HPLC diets on glucose metabolism.

摘要

据报道,低蛋白高碳水化合物(LPHC)饮食和高蛋白低碳水化合物(HPLC)饮食分别对全身葡萄糖耐量和胰岛素敏感性有正向和负向调节作用。在餐后状态下,骨骼肌是清除葡萄糖数量上最重要的组织,但尚不清楚LPHC和HPLC饮食是否直接影响骨骼肌中的胰岛素作用。为了验证这一点,将小鼠分别置于对照饲料、LPHC和HPLC饮食中13.5周,此时在体外孵育的氧化型比目鱼肌和糖酵解型趾长伸肌中评估次最大胰岛素刺激的葡萄糖转运和胰岛素信号传导。在全身水平上,这些饮食产生了预期的效果,LPHC饮食改善了葡萄糖耐量和胰岛素敏感性,而HPLC饮食则产生相反的效果。然而,饮食既未改变体外胰岛素刺激的Akt/TBC1D4信号传导和葡萄糖转运,也未改变体内的细胞信号传导。这些数据表明,骨骼肌胰岛素敏感性对LPHC和HPLC饮食对葡萄糖代谢的全身影响没有作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/692a/6041700/62ab6962f4a9/PHY2-6-e13798-g001.jpg

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