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Ketogenic diet induces skeletal muscle atrophy via reducing muscle protein synthesis and possibly activating proteolysis in mice

机译:通过减少肌肉蛋白质合成并可能在小鼠中激活蛋白水解,酮味饮食诱导骨骼肌萎缩

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Ketogenic diets (KD) that are very high in fat and low in carbohydrates are thought to simulate the metabolic effects of starvation. We fed mice with a KD for seven days to assess the underlying mechanisms of muscle wasting induced by chronic starvation. This diet decreased the weight of the gastrocnemius (Ga), tibialis anterior (TA) and soleus (Sol) muscles by 23%, 11% and 16%, respectively. The size of Ga, TA, Sol muscle fibers and the grip strength of four limbs also significantly declined by 20%, 28%, 16% and 22%, respectively. The muscle atrophy-related genes Mafbx, Murf1, Foxo3, Lc3b and Klf15 were upregulated in the skeletal muscles of mice fed with the KD. In accordance with the reduced expression of anabolic genes such as Igf1, surface sensing of translation (SUnSET) analyses of fast-twitch Ga, TA and Sol muscles revealed that the KD suppressed muscle protein synthesis. The mRNA expression of oxidative stress-responsive genes such as Sod1 was significantly increased in all muscles examined. In addition to hypercorticosteronemia, hypoinsulinemia and reduced IGF-1, oxidative stress might also be involved in KD-induced muscle atrophy. Feeding mice with a KD is a novel experimental animal model of muscle-wasting induced by chronic starvation.
机译:碳水化合物中脂肪和低脂肪和低的酮饮食(KD)被认为模拟饥饿的代谢效应。我们用KD喂七天的小鼠,以评估慢性饥饿诱导的肌肉浪费的潜在机制。这种饮食将腓肠肌(GA),胫骨前(GA),胫骨前(溶胶)肌肉的重量减少了23%,11%和16%。 Ga,Ta,Sol肌纤维的尺寸和四肢的抓握强度也显着下降20%,28%,16%和22%。肌肉萎缩相关基因MAFBX,Murf1,FOXO3,LC3B和KLF15在用KD喂养的小鼠的骨骼肌中上调。根据诸如IGF1的合成代谢基因的表达,翻译(日落)的表面感测快速抽搐Ga,Ta和Sol肌肉的分析表明,KD抑制了肌肉蛋白质合成。在检查的所有肌肉中,氧化应激响应基因如SOD1的mRNA表达显着增加。除高菌蛋白血症外,低胰蛋白酶和降低的IGF-1,氧化应激也可能参与KD诱导的肌肉萎缩。具有KD的饲喂小鼠是慢性饥饿诱导的肌肉浪费的新型实验动物模型。

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