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Circadian clocks and energy metabolism in rodents [Horloges circadiennes et métabolisme chez les rongeurs]

机译:啮齿动物的生物钟和能量代谢[啮齿动物的生物钟和能量代谢]

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摘要

Circadian rhythmicity is an important component of physiological processes which provides them with a 24-hour temporal organization and adjustment to cyclical changes in the environment. Circadian rhythms are controlled by a network of endogenous clocks, comprising the main clock in the suprachiasmatic nuclei of the hypothalamus and many secondary clocks in the brain and peripheral tissues. All aspects of energy metabolism, from food intake to intracellular signaling pathways, are strongly influenced by circadian rhythmicity. In turn, meal timing is an efficient synchronizer (time-giver) to set the phase of the peripheral clocks, while the suprachiasmatic clock is synchronized by ambient light. In certain nutritional conditions (i.e., low- or high-calory diets), metabolic factors remaining to be identified modulate the functioning of the suprachiasmatic clock. Animal models of obesity and diabetes show circadian alterations. Conversely, when circadian rhythmicity is disturbed, either due to genetically defective circadian clocks, or to circadian desynchronization (chronic light exposure or repeated meals at odd times of the cycle), lipid and glucose metabolism is deregulated. The metabolic impact of circadian desynchronization justifies the development of preventive or therapeutic strategies that could rely, among others, on dietary interventions combining timed meals and specific composition.
机译:昼夜节律性是生理过程的重要组成部分,可为它们提供24小时的时间安排并适应环境的周期性变化。昼夜节律是由内源性时钟网络控制的,内源性时钟包括下丘脑视交叉上核中的主要时钟以及大脑和周围组织中的许多次要时钟。从食物摄取到细胞内信号传导途径,能量代谢的各个方面都受到昼夜节律的强烈影响。反过来,进餐时间安排是设置外围时钟相位的有效同步器(时间给定器),而超视交叉时钟则通过环境光进行同步。在某些营养条件下(即低热量或高热量饮食),尚待确定的代谢因子可调节视交叉钟的功能。肥胖和糖尿病的动物模型显示出昼夜节律改变。相反,当由于生理缺陷的昼夜节律或由于昼夜节律失调(长期暴露于光或在周期的奇数次重复进餐)而扰乱了昼夜节律时,脂质和葡萄糖代谢就会失调。昼夜节律不同步对新陈代谢的影响证明了预防或治疗策略的发展是合理的,除其他外,该策略可依赖于结合定时饮食和特定成分的饮食干预措施。

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