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褪黑素:一种具有抗衰老特性的时间生物学剂?

Melatonin: a chronobiotic with anti-aging properties?

作者信息

Armstrong S M, Redman J R

机构信息

Psychology Department, La Trobe University, Bundoora, Victoria, Australia.

出版信息

Med Hypotheses. 1991 Apr;34(4):300-9. doi: 10.1016/0306-9877(91)90046-2.

Abstract

Recently, it has been reported that melatonin administration extends the lifespan of mice, a finding which supports previous research on the effects of pinealectomy and pineal extract administration. The prolongation of lifespan by melatonin has been interpreted in favour of an upregulation of the immune system as well as due to anti-stress properties of melatonin acting via the brain opioid system. In this paper we offer an alternative explanation of melatonin's anti-aging effect: the circadian pacemaker system has a diminished amplitude with age as indexed by a decrease in circulating melatonin levels. Stability of the circadian system correlates with its amplitude and loss of circadian amplitude produces lability which, in turn, leads to internal temporal disorder. Internal temporal disorder may be a precursor of disease states. Exogenous melatonin increases the amplitude of the circadian pacemaker system by feedback onto that system. The hypothalamic suprachiasmatic nuclei are thought to be the mammalian biological clock in the brain and have high concentrations of melatonin receptors. Therefore, melatonin administration in pharmacological doses may prevent aging symptoms by acting at the level of the circadian pacemaker's amplitude.

摘要

最近,有报道称褪黑素给药可延长小鼠寿命,这一发现支持了先前关于松果体切除和给予松果体提取物效果的研究。褪黑素对寿命的延长作用被解释为有利于免疫系统的上调,以及由于褪黑素通过脑阿片系统发挥的抗应激特性。在本文中,我们对褪黑素的抗衰老作用提出一种替代性解释:随着年龄增长,昼夜节律起搏器系统的振幅会减小,这可通过循环褪黑素水平的降低来体现。昼夜节律系统的稳定性与其振幅相关,昼夜节律振幅的丧失会产生不稳定性,进而导致内部时间紊乱。内部时间紊乱可能是疾病状态的先兆。外源性褪黑素通过对该系统的反馈增加昼夜节律起搏器系统的振幅。下丘脑视交叉上核被认为是大脑中的哺乳动物生物钟,且含有高浓度的褪黑素受体。因此,以药理剂量给药的褪黑素可能通过作用于昼夜节律起搏器的振幅水平来预防衰老症状。

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