社交时差改变了心脏中运动诱导的线粒体适应的标记。

npj Biological Timing and Sleep Pub Date : 2025-01-01 Epub Date: 2025-01-25 DOI:10.1038/s44323-024-00019-9
Michael B Dial, Elias M Malek, Austin R Cooper, Greco A Neblina, Nikoleta I Vasileva, Graham R McGinnis
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摘要

社交时差(Social jetlag, SJL)是指工作日和休息日睡眠和醒来时间的行为失调,可能会破坏昼夜节律。SJL影响全球高达70%的人口,并与许多心脏代谢疾病的风险增加有关。急性SJL的动物模型显示运动活动和时钟基因在某些组织中的表达受到破坏,其对心脏的影响尚不清楚。本研究的目的是探讨延长SJL(6周)对活动节律的影响,以及对心脏运动诱导适应性的影响。雄性小鼠(n = 40, C57BL6)被分配到对照光:暗(LD)周期或SJL计划(周末4小时轮班),为期6周。每种情况下的小鼠进一步分为自愿运动组(EX)和久坐组(SED)。SJL导致久坐小鼠(SJL- sed)和运动小鼠(SJL- ex)在周末的身体活动发生显著变化,运动加速了重新进入工作日时间表的速度。运动诱导CON-EX组和SJL-EX组心肌肥大。在线粒体含量没有变化的情况下,SJL降低了线粒体融合蛋白MFN1和OPA1的表达,抑制了运动诱导的MFN2的升高。综上所述,这些研究结果表明,运动加速了SJL下的日常作息,但SJL破坏了运动引起的对心脏线粒体融合/裂变动力学的改变。对心血管功能的进一步研究是必要的,这将有助于制定预防SJL对心脏影响的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Social jetlag alters markers of exercise-induced mitochondrial adaptations in the heart.

Social jetlag (SJL) represents the behavioral misalignment of sleep and wake times on work days and free days, and potently disrupts the circadian rhythm. SJL affects up to 70% of the population worldwide and is associated with increased risk for many cardiometabolic diseases. Animal models of acute SJL have shown disruption in locomotor activity and expression of clock genes in select tissues, its impact on the heart remains unclear. The purpose of this study was to investigate the effects of prolonged SJL (6 weeks), on activity rhythms, and the impact on exercise-induced adaptations in the heart. Male mice (n = 40, C57BL6) were assigned to a control light:dark (LD) cycle or SJL schedule (4-hour shift on weekends) for 6 weeks. Mice in each condition were further divided into voluntary exercise (EX) or sedentary (SED) groups. SJL resulted in significant shifts in the onset of physical activity in both sedentary (SJL-SED) and exercised (SJL-EX) mice on weekends, and exercise accelerated the speed of re-entrainment to the weekday schedule. Exercise induced myocardial hypertrophy in both CON-EX and SJL-EX groups. While there were no changes in mitochondrial content, SJL decreased expression of mitochondrial fusion proteins MFN1 and OPA1, and inhibited exercise-induced increases in MFN2. Taken together, these findings suggest that exercise hastens re-entrainment to the weekday schedule under SJL, but that SJL disrupts exercise-induced alterations to mitochondrial fusion/fission dynamics in the heart. Further investigation of cardiovascular function is warranted and will enable the development of strategies to prevent the effects of SJL on the heart.

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