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小鼠和人的昼夜代谢组学:对机制和医学的见解

Circadian metabolomics from mice and men: Insights for mechanism and medicine
课程网址: http://videolectures.net/mdo2014_brown_circadian_metabolomics/  
主讲教师: Steven A. Brown
开课单位: 苏黎世大学
开课时间: 2014-07-21
课程语种: 英语
中文简介:
生物“昼夜节律”时钟根据太阳日来调节哺乳动物生理学的几乎所有方面。不仅睡眠和醒来,情绪和认知、循环和心脏功能,以及几乎所有消化和排毒的方面都处于昼夜节律控制之下。这种日间活动是通过激素和细胞自主机制在多个层次上发挥作用的。对于整个有机体,我们的实验室已经证明了人类血液和唾液代谢组的昼夜节律控制,即使在没有白天睡眠、醒来和进食的情况下也是如此。然而,睡眠在调节全球代谢功能中也扮演着独立的角色,因为将睡眠-觉醒周期分割为多次小睡会降低昼夜节律,甚至比完全睡眠剥夺时观察到的要低。对于单个组织,我们发现新陈代谢和其他过程的昼夜节律控制起着非常重要的作用,甚至在肿瘤生长过程中也是如此。最后,在细胞水平上,我们已经证明代谢组的昼夜节律控制可以通过线粒体形态和功能的整体控制来实现。因此,从细胞到人类,新陈代谢的普遍昼夜控制是普遍存在的,并且可以为从肥胖到癌症等疾病的新治疗策略提供线索。
课程简介: A biological "circadian" clock regulates nearly all aspects of mammalian physiology in accordance with the solar day. Not only sleep and wake, but also mood and cognition, circulation and cardiac function, and nearly all aspects of digestion and detoxication are under circadian control. This diurnal programming is exerted through both hormonal and cell-autonomous mechanisms at multiple levels. For the whole organism, our laboratory has demonstrated global circadian control of the human metabolome in blood and saliva, even in the absence of diurnal sleep, wake, and food intake. Nevertheless, sleep also plays an independent role in regulating global metabolic function, because splitting the sleep-wake cycle into multiple naps decreases circadian rhythmicity beyond even that observed with total sleep deprivation. For individual tissues, we find that circadian control of metabolism and other processes plays a strong role, even in growing tumors. Finally, at a cellular level, we have shown that circadian control of the metabolome could be mediated by global control of mitochondrial morphology and function. Thus, from cells to humans, pervasive circadian control of metabolism is pervasive, and could provide clues for novel treatment strategies for diseases ranging from obesity to cancer.
关 键 词: 生物钟; 昼夜设计; 新陈代谢
课程来源: 视频讲座网
数据采集: 2020-12-21:yxd
最后编审: 2020-12-21:yxd
阅读次数: 32