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Circadian Metabolism in the Light of Evolution

机译:进化论的昼夜节律代谢

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摘要

Circadian rhythm, or daily oscillation, of behaviors and biological processes is a fundamental feature of mammalian physiology that has developed over hundreds of thousands of years under the continuous evolutionary pressure of energy conservation and efficiency. Evolution has fine-tuned the body's clock to anticipate and respond to numerous environmental cues in order to maintain homeostatic balance and promote survival. However, we now live in a society in which these classic circadian entrainment stimuli have been dramatically altered from the conditions under which the clock machinery was originally set. A bombardment of artificial lighting, heating, and cooling systems that maintain constant ambient temperature; sedentary lifestyle; and the availability of inexpensive, high-calorie foods has threatened even the most powerful and ancient circadian programming mechanisms. Such environmental changes have contributed to the recent staggering elevation in lifestyle-influenced pathologies, including cancer, cardiovascular disease, depression, obesity, and diabetes. This review scrutinizes the role of the body's internal clocks in the hard-wiring of circadian networks that have evolved to achieve energetic balance and adaptability, and it discusses potential therapeutic strategies to reset clock metabolic control to modern time for the benefit of human health.
机译:行为和生物过程的昼夜节律或日常振荡是哺乳动物生理学的基本特征,在能量守恒和效率的不断发展压力下,哺乳动物生理学已经发展了数十万年。进化已经微调了人体的时钟,以预测和响应多种环境线索,以保持体内平衡并促进生存。但是,我们现在生活的社会中,这些经典的昼夜节律刺激都与最初设置钟表的条件发生了巨大变化。轰炸人造照明,加热和冷却系统以保持恒定的环境温度;久坐不动的生活方式;廉价,高热量的食物的供应,甚至威胁到最强大,最古老的昼夜节律编程机制。这种环境变化导致最近受生活方式影响的病理学急剧上升,包括癌症,心血管疾病,抑郁症,肥胖症和糖尿病。这篇综述仔细研究了人体内部时钟在昼夜节律网络的硬连线中的作用,这些昼夜节律网络已发展成实现能量平衡和适应性,并讨论了将时钟新陈代谢控制重置为现代时间以造福人类健康的潜在治疗策略。

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