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首页> 外文期刊>Cell metabolism >Metabolic Slowing and Reduced Oxidative Damage with Sustained Caloric Restriction Support the Rate of Living and Oxidative Damage Theories of Aging
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Metabolic Slowing and Reduced Oxidative Damage with Sustained Caloric Restriction Support the Rate of Living and Oxidative Damage Theories of Aging

机译:通过持续的热量限制的代谢速度和降低的氧化损伤支持衰老的生物和氧化损伤理论

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摘要

Calorie restriction (CR) is a dietary intervention with potential benefits for healthspan improvement and lifespan extension. In 53 (34 CR and 19 control) non-obese adults, we tested the hypothesis that energy expenditure (EE) and its endocrine mediators are reduced with a CR diet over 2 years. Approximately 15% CR was achieved over 2 years, resulting in an average 8.7 kg weight loss, whereas controls gained 1.8 kg. In the CR group, EE measured over 24 hr or during sleep was approximately 80-120 kcal/day lower than expected on the basis of weight loss, indicating sustained metabolic adaptation over 2 years. This metabolic adaptation was accompanied by significantly reduced thyroid axis activity and reactive oxygen species (F2-isoprostane) production. Findings from this 2-year CR trial in healthy, non-obese humans provide new evidence of persistent metabolic slowing accompanied by reduced oxidative stress, which supports the rate of living and oxidative damage theories of mammalian aging.
机译:热量限制(CR)是一种饮食干预措施,对改善健康和延长寿命具有潜在益处。在53名(34名CR和19名对照组)非肥胖成年人中,我们检验了能量消耗(EE)及其内分泌介质随着CR饮食在2年内减少的假设。在2年内,约15%的铬含量达到,导致平均体重减轻8.7千克,而对照组体重增加1.8千克。在CR组中,24小时或睡眠期间测得的EE比基于体重减轻的预期值低约80-120 kcal/天,表明持续代谢适应超过2年。这种代谢适应伴随着甲状腺轴活动和活性氧(F2异前列腺素)产生的显著降低。在健康、非肥胖人群中进行为期2年的CR试验的结果提供了新的证据,证明代谢持续减慢,同时氧化应激降低,这支持了哺乳动物衰老的存活率和氧化损伤理论。

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  • 来源
    《Cell metabolism》 |2018年第4期|共11页
  • 作者单位

    Biomed Res Ctr Div Clin Sci Pennington 6400 Perkins Rd Baton Rouge LA 70808 USA;

    Florida Hosp Translat Res Inst Metab &

    Diabet Orlando FL 32804 USA;

    Biomed Res Ctr Div Clin Sci Pennington 6400 Perkins Rd Baton Rouge LA 70808 USA;

    Biomed Res Ctr Div Clin Sci Pennington 6400 Perkins Rd Baton Rouge LA 70808 USA;

    Georgia State Univ Sch Publ Hlth Atlanta GA 30302 USA;

    Biomed Res Ctr Div Clin Sci Pennington 6400 Perkins Rd Baton Rouge LA 70808 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内分泌腺疾病及代谢病;
  • 关键词

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