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光与褪黑素对小鼠生物钟的相互作用。

Interactions between light and melatonin on the circadian clock of mice.

作者信息

Benloucif S, Masana M I, Yun K, Dubocovich M L

机构信息

Department of Molecular Pharmacology and Biological Chemistry, Northwestern University Medical School, Chicago, IL 60611, USA.

出版信息

J Biol Rhythms. 1999 Aug;14(4):281-9. doi: 10.1177/074873099129000696.

Abstract

Melatonin and light synchronize the biological clock and are used to treat sleep/wake disturbances in humans. However, the two treatments affect circadian rhythms differently when they are combined than when they are administered individually. To elucidate the nature of the interaction between melatonin and light, the present study assessed the effect of melatonin on circadian timing and immediate-early gene expression in the suprachiasmatic nucleus (SCN) when administered in the presence of light. Male C3H/HeN mice, housed in constant dark in cages equipped with running wheels, were treated with either melatonin (90 microg, s.c.) or vehicle (3% ethanol-saline) 5 min prior to exposure to light (15 min, 300 lux) at various times in the circadian cycle. Combined treatment resulted in lower magnitude phase delays of circadian activity rhythms than those obtained with light alone during the early subjective night and advances in phase when melatonin and light were administered during the subjective day (p < .001). The reduction in phase delays with combined treatment at Circadian Time (CT) 14 was significant when light exposure measured 300 lux but not at lower light levels (p < .05). When light preceded melatonin administration, the inhibition of phase delays attained significance only when the light exposure reached 1000 lux (p < .05). Neither basal nor light-induced expression of c-fos mRNA in the SCN was modified by melatonin administration at CT 14 or CT 22. Together, these results suggest that combined administration of melatonin and light affect circadian timing in a manner not predicted by summing the two treatments given individually. Furthermore, the interaction is not likely to be due to inhibition of photic input to the clock by melatonin but might arise from a photically induced enhancement of melatonin's actions on circadian timing.

摘要

褪黑素和光照可使生物钟同步,常用于治疗人类的睡眠/觉醒障碍。然而,这两种治疗方法联合使用时对昼夜节律的影响与单独使用时不同。为了阐明褪黑素与光照之间相互作用的本质,本研究评估了在有光照的情况下给予褪黑素时,其对昼夜节律定时以及视交叉上核(SCN)中即早基因表达的影响。将雄性C3H/HeN小鼠饲养在配备有跑轮的笼子里,置于持续黑暗环境中,在昼夜周期的不同时间,于光照(15分钟,300勒克斯)前5分钟给予褪黑素(90微克,皮下注射)或赋形剂(3%乙醇-盐水)。联合治疗导致昼夜活动节律的相位延迟幅度低于在主观夜早期单独光照时的延迟幅度,而在主观日给予褪黑素和光照时则出现相位提前(p < 0.001)。在昼夜时间(CT)14时,当光照强度为300勒克斯时,联合治疗导致的相位延迟减少显著,但在较低光照水平时不显著(p < 0.05)。当光照先于褪黑素给药时,仅当光照强度达到1000勒克斯时,相位延迟的抑制才具有显著性(p < 0.05)。在CT 14或CT 22时给予褪黑素,对SCN中c-fos mRNA的基础表达或光照诱导表达均无影响。总之,这些结果表明,褪黑素和光照联合给药对昼夜节律定时的影响方式并非两种单独治疗效果的简单相加。此外,这种相互作用不太可能是由于褪黑素抑制了生物钟的光信号输入,而可能是由于光照诱导增强了褪黑素对昼夜节律定时的作用。

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