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首页> 外文期刊>Nutrition Research >Short-term and long-term ketogenic diet therapy and the addition of exercise have differential impacts on metabolic gene expression in the mouse energy-consuming organs heart and skeletal muscle
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Short-term and long-term ketogenic diet therapy and the addition of exercise have differential impacts on metabolic gene expression in the mouse energy-consuming organs heart and skeletal muscle

机译:短期和长期酮饮食治疗和添加运动对小鼠能量消耗器官心脏和骨骼肌中的代谢基因表达具有差异影响

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摘要

Although a ketogenic diet (KD) is used to treat various metabolic diseases, the organ-specific metabolic changes that occur in response to a KD remain unclear. Therefore, we tested the hypothesis that duration of KD consumption and regular exercise in addition to KD consumption affect metabolic fuel selection at gene levels in heart and skeletal muscle. Six-week-old male C57BL/6J mice were divided into 2 groups, one fed a standard diet and the other fed a KD, and maintained for either 4?weeks (short term) or 12?weeks (long term). The long-term group was further divided into 2 subgroups, and mice in 1 of the 2 groups had an exercise load 5?days a week. Body weight decreased significantly in the KD groups during the first few weeks only. Plasma ketone levels rose and muscle glycogen levels declined significantly in the KD groups, but these changes were less severe in the KD plus exercise group. KD consumption decreased the expression of genes related to glucose utilization in heart and skeletal muscle; however, this decrease did not occur with KD consumption plus exercise. Long-term but not short-term KD consumption increased the expression of genes related to lipid utilization, regardless of exercise. In the KD groups, the expression of genes related to ketolysis was suppressed, and that of genes related to ketogenesis was increased. These results indicate that KD exposure and pairing a KD with exercise have differential impacts on energy substrate selection at gene expression levels in energy-consuming organs, the heart and skeletal muscle.
机译:虽然用于治疗各种代谢疾病的酮饮食(KD),但响应于KD的器官特异性代谢变化仍然尚不清楚。因此,我们测试了KD消费持续时间和常规运动的假设,除了KD消费,在心脏和骨骼肌中基因水平影响代谢燃料选择。将六周龄的雄性C57BL / 6J小鼠分为2组,一种喂养标准饮食,另一组给予KD,并保持4?周(短期)或12个周(长期)。长期组进一步分为2个亚组,2组中的1只小鼠的运动负载5?天数。在仅几周内,kd组体重显着下降。血浆酮水平上升和肌肉糖原水平在KD组中显着下降,但KD Plus运动组中这些变化不太严重。 KD消费减少了与心脏和骨骼肌中葡萄糖利用有关的基因的表达;但是,KD消费加练习不会发生这种减少。长期但不是短期KD消费增加了与脂质利用相关的基因的表达,无论运动如何。在KD组中,抑制了与酮溶解相关的基因的表达,并且增加了与酮发生相关的基因。这些结果表明,Kd暴露和与运动的kd对具有差异影响能量耗能器官,心脏和骨骼肌的基因表达水平的能量底物选择。

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