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Ascent to altitude as a weight loss method: The good and bad of hypoxia inducible factor activation

机译:攀登海拔作为减肥方法:缺氧诱导因子激活的好与坏

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摘要

Objective Given the epidemic of obesity worldwide there is a need for more novel and effective weight loss methods. Altitude is well known to be associated with weight loss and has actually been used as a method of weight reduction in obese subjects. This review demonstrates the critical role of hypoxia inducible factor (HIF) in bringing about reductions in appetite and increases in energy expenditure characteristic of hypobaric hypoxia Design and Methods A MEDLINE search of English language articles through February 2013 identified publications associating altitude or hypobaric hypoxia with key words to include HIF, weight loss, appetite, basal metabolic rate, leptin, cellular energetics, and obesity. The data from these articles were synthesized to formulate a unique and novel mechanism by which HIF activation leads to alterations in appetite, basal metabolic rate, and reductions in body adiposity. Results A synthesis of previously published literature revealed mechanisms by which altitude induces activation of HIF, thereby suggesting this transcription factor regulates changes in cellular metabolism/energetics, activation of the central nervous system, as well as peripheral pathways leading to reductions in food intake and increases in energy expenditure. Conclusions Here a unifying hypothesis is present suggesting that activation of HIF under conditions of altitude potentially leads to metabolic benefits that are dose dependent, gender and genetic specific, and results in adverse effects if the exposure is extreme.
机译:目的鉴于世界范围内的肥胖病流行,需要更新颖,有效的减肥方法。众所周知,海拔高度与体重减轻有关,实际上已被用作肥胖受试者的减轻体重的方法。这篇综述证明了缺氧诱导因子(HIF)在降低食欲和增加能量消耗方面的关键作用缺氧的设计和方法设计和方法截至2013年2月的英文文献MEDLINE搜索确定了与海拔高度或低氧有关的出版物包括HIF,减肥,食欲,基础代谢率,瘦素,细胞能量和肥胖症等词语。这些文章的数据进行了综合,以制定一种独特而新颖的机制,通过该机制,HIF激活可导致食欲改变,基础代谢率降低和身体肥胖。结果先前发表文献的综合揭示了海拔高度诱导HIF激活的机制,从而表明该转录因子调节细胞代谢/能量的变化,中枢神经系统的激活以及导致食物摄入减少和增加的外周途径。在能源支出上。结论这里存在一个统一的假设,表明在海拔高度条件下激活HIF可能导致剂量依赖性,性别和遗传特异性的代谢益处,如果暴露极端,则会产生不利影响。

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