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Interplay between diet, exercise and the molecular circadian clock in orchestrating metabolic adaptations of adipose tissue

机译:饮食,运动与分子昼夜节律时钟之间的相互作用,在脂肪组织的协调代谢适应

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Abstract Disruption of circadian rhythmicity induced by prolonged light exposure, altered sleep patterns and shift work is associated with the development of obesity and related metabolic disorders, including type 2 diabetes and cardiovascular diseases. White and brown adipose tissue activity shows circadian rhythmicity, with daily variations in the regulation of metabolic processes such as lipolysis, glucose and lipid uptake, and adipokine secretion. The role of the circadian clock in the regulation of energy homeostasis has raised interest in clock‐related strategies to mitigate metabolic disturbances associated with type 2 diabetes, including ‘resynchronizing’ metabolism through diet or targeting a particular time of a day to potentiate the effect of a pharmacological or physiological treatment. Exercise is an effective intervention to prevent insulin resistance and type 2 diabetes. Beyond its effect on skeletal muscle, exercise training also has a profound effect on adipose tissue. Adipose tissue partly mediates the beneficial effect of exercise on glucose and energy homeostasis, via its metabolic and endocrine function. The interaction between zeitgeber time and diet or exercise is likely to influence the metabolic response of adipose tissue and therefore impact the whole‐body phenotype. Understanding the impact of circadian clock systems on human physiology and how this is regulated by exercise in a tissue‐specific manner will yield new insights for the management of metabolic disorders.
机译:摘要延长曝光,睡眠模式改变和转移工作引起的昼夜节律性的破坏与肥胖症和相关代谢障碍的发展有关,包括2型糖尿病和心血管疾病。白色和棕色脂肪组织活动显示昼夜节律性,日常变化在调节代谢过程,如脂解,葡萄糖和脂质摄取,以及己平分泌。昼夜时钟在能源稳态调节中的作用提高了对与2型糖尿病相关的代谢紊乱的兴趣,包括通过饮食或瞄准每天的特定时间来减轻效果的特定时间药理或生理治疗。运动是一种有效的干预,以防止胰岛素抵抗和2型糖尿病。除了对骨骼肌的影响外,运动训练也对脂肪组织产生了深远的影响。脂肪组织部分地介导运动对葡萄糖和能量稳态的有益效果,通过其代谢和内分泌功能。 Zeitgeber时间和饮食或运动之间的相互作用可能会影响脂肪组织的代谢反应,从而影响全体表型。了解昼夜钟表系统对人体生理学的影响以及如何通过以组织特异性的运动来调节这一切将产生新的见解来管理代谢障碍。

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