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缩短的季节性光周期会加速灵长类动物昼夜和昼夜节律性运动活动节律的老化。

Shortened seasonal photoperiodic cycles accelerate aging of the diurnal and circadian locomotor activity rhythms in a primate.

作者信息

Cayetanot F, Van Someren E J W, Perret M, Aujard F

机构信息

Ecophysiologie, Centre National de la Recherche Scientifique UMR 5176, Muséum National d'Histoire Naturelle, Brunoy, France.

出版信息

J Biol Rhythms. 2005 Oct;20(5):461-9. doi: 10.1177/0748730405279174.

Abstract

The gray mouse lemur (Microcebus murinus), a prosimian primate, exhibits seasonal rhythms strictly controlled by photoperiodic variations. Previous studies indicated that longevity can be altered by long-term acceleration of seasonal rhythms, providing a model for assessing various aspects of aging. To assess the effect of aging and accelerated aging on the circadian system of this primate, we compared the circadian rhythm of the locomotor activity in adult mouse lemurs (2-4.5 years, n = 9), aged mouse lemurs (5-9 years, n = 10), and adult mouse lemurs that had been exposed from birth to a shortened seasonal photoperiodic cycle (2-4.5 years, n = 7). Compared to adult animals, aged mouse lemurs showed a significant increase in intradaily variability and an advanced activity onset. Aging was characterized by a decrease in amplitude, with both a decrease in nocturnal activity and an increase in daytime activity. When maintained in constant dim red light, aged animals exhibited a shortening of the free-running period (22.8 +/- 0.1 h) compared to adult animals (23.5 +/- 0.1 h). A 3- to 5-year exposure to an accelerated seasonal photoperiodic rhythm ("annual" duration of 5 months) in accelerated mouse lemurs produced disturbances of the locomotor activity rhythm that resembled those of aged mouse lemurs, whether animals were studied in entrained or in free-running conditions. The present study demonstrated a weakened and fragmented locomotor activity rhythm during normal aging in this primate. Increasing the number of expressed seasonal cycles accelerated aging of parameters related to circadian rhythmicity in adult animals.

摘要

灰鼠狐猴(Microcebus murinus),一种原猴亚目灵长类动物,表现出严格受光周期变化控制的季节性节律。先前的研究表明,长期加速季节性节律可改变寿命,为评估衰老的各个方面提供了一个模型。为了评估衰老和加速衰老对这种灵长类动物昼夜节律系统的影响,我们比较了成年鼠狐猴(2 - 4.5岁,n = 9)、老年鼠狐猴(5 - 9岁,n = 10)以及从出生就暴露于缩短的季节性光周期循环的成年鼠狐猴(2 - 4.5岁,n = 7)的运动活动昼夜节律。与成年动物相比,老年鼠狐猴的日内变异性显著增加,活动开始时间提前。衰老的特征是振幅降低,夜间活动减少,白天活动增加。当处于持续昏暗的红光下时,老年动物的自由运行周期(22.8 +/- 0.1小时)比成年动物(23.5 +/- 0.1小时)缩短。在加速鼠狐猴中,3至5年暴露于加速的季节性光周期节律(“年度”持续时间为5个月)会导致运动活动节律紊乱,类似于老年鼠狐猴,无论动物是在同步条件还是自由运行条件下进行研究。本研究表明,这种灵长类动物在正常衰老过程中运动活动节律减弱且碎片化。增加表达的季节性周期数量会加速成年动物与昼夜节律性相关参数的衰老。

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