Department of Psychiatry and Biobehavioral Sciences, Laboratory of Circadian and Sleep Medicine, University of California Los Angeles, Los Angeles, CA 90024, USA.
J Physiol. 2012 Dec 1;590(23):6213-26. doi: 10.1113/jphysiol.2012.233676. Epub 2012 Sep 17.
The circadian system co-ordinates the temporal patterning of behaviour and many underlying biological processes. In some cases, the regulated outputs of the circadian system, such as activity, may be able to feed back to alter core clock processes. In our studies, we used four wheel-access conditions (no access; free access; early night; and late night) to manipulate the duration and timing of activity while under the influence of a light-dark cycle. In wild-type mice, scheduled wheel access was able to increase ambulatory activity, inducing a level of exercise driven at various phases of the light-dark cycle. Scheduled exercise also manipulated the magnitude and phasing of the circadian-regulated outputs of heart rate and body temperature. At a molecular level, the phasing and amplitude of PER2::LUCIFERASE (PER2::LUC) expression rhythms in the SCN and peripheral tissues of Per2::Luc knockin mice were altered by scheduled exercise. We then tested whether scheduled wheel access could improve deficits observed in vasointestinal polypeptide-deficient mice under the influence of a light-dark cycle. We found that scheduled wheel access during the late night improved many of the behavioural, physiological and molecular deficits previously described in vasointestinal polypeptide-deficient mice. Our results raise the possibility that scheduled exercise could be used as a tool to modulate daily rhythms and, when applied, may counteract some of the negative impacts of ageing and disease on the circadian system.
昼夜节律系统协调行为和许多基础生物过程的时间模式。在某些情况下,昼夜节律系统的调节输出,如活动,可能能够反馈以改变核心时钟过程。在我们的研究中,我们使用了四种轮辋接入条件(无接入;自由接入;深夜;和深夜)来操纵活动的持续时间和时间,同时受到光-暗循环的影响。在野生型小鼠中,预定的轮辋接入能够增加步行活动,在光-暗循环的各个阶段诱导一定水平的运动。预定的运动还操纵了心率和体温的昼夜节律调节输出的幅度和相位。在分子水平上,在 Per2::Luc 敲入小鼠的 SCN 和外周组织中,PER2::LUCIFERASE(PER2::LUC)表达节律的相位和幅度被预定的运动改变。然后,我们测试了预定的轮辋接入是否可以改善在光-暗循环影响下的血管肠肽缺陷小鼠中观察到的缺陷。我们发现,在深夜进行预定的轮辋接入可以改善血管肠肽缺陷小鼠以前描述的许多行为、生理和分子缺陷。我们的结果提出了这样一种可能性,即预定的运动可以作为一种调节日常节律的工具,并且在应用时可以抵消衰老和疾病对昼夜节律系统的一些负面影响。