首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Metabolic alterations due to caloric restriction and every other day feeding in normal and growth hormone receptor knockout mice
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Metabolic alterations due to caloric restriction and every other day feeding in normal and growth hormone receptor knockout mice

机译:正常和生长激素受体敲除小鼠的热量限制和隔日喂养引起的代谢变化

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Mutations causing decreased somatotrophic signaling are known to increase insulin sensitivity and extend life span in mammals. Caloric restriction and every other day (EOD) dietary regimens are associated with similar improvements to insulin signaling and longevity in normal mice; however, these interventions fail to increase insulin sensitivity or life span in growth hormone receptor knockout (GHRKO) mice. To investigate the interactions of the GHRKO mutation with caloric restriction and EOD dietary interventions, we measured changes in the metabolic parameters oxygen consumption (VO2) and respiratory quotient produced by either long-term caloric restriction or EOD in male GHRKO and normal mice. GHRKO mice had increased VO2, which was unaltered by diet. In normal mice, EOD diet caused a significant reduction in VO2 compared with ad libitum (AL) mice during fed and fasted conditions. In normal mice, caloric restriction increased both the range of VO2 and the difference in minimum VO2 between fed and fasted states, whereas EOD diet caused a relatively static VO2 pattern under fed and fasted states. No diet significantly altered the range of VO2 of GHRKO mice under fed conditions. This provides further evidence that longevity-conferring diets cause major metabolic changes in normal mice, but not in GHRKO mice.
机译:已知引起减少的植物营养信号的突变会增加胰岛素敏感性并延长哺乳动物的寿命。热量限制和隔日饮食方案可改善正常小鼠的胰岛素信号传导和延长寿命。但是,这些干预措施无法增加生长激素受体敲除(GHRKO)小鼠的胰岛素敏感性或寿命。为了研究GHRKO突变与热量限制和EOD饮食干预的相互作用,我们测量了雄性GHRKO和正常小鼠中长期热量限制或EOD所产生的代谢参数耗氧量(VO2)和呼吸商的变化。 GHRKO小鼠的VO2升高,而饮食却没有改变。在正常小鼠中,进食和禁食条件下的EOD饮食与任意(AL)小鼠相比,VO2显着降低。在正常小鼠中,热量限制会同时增加摄食和禁食状态下的VO2范围和最小VO2的差异,而EOD饮食会在摄食和禁食状态下产生相对静态的VO2模式。在饮食条件下,没有饮食能显着改变GHRKO小鼠的VO2范围。这提供了进一步的证据,表明延长寿命的饮食会在正常小鼠中引起主要的代谢变化,而在GHRKO小鼠中则不会。

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