Vaughan G M
J Neural Transm Suppl. 1986;21:199-215.
The human melatonin rhythm is endogenous with a surge of secretion entrained to the dark part of the cycle. Reports show consistent blunting or blockade of this nocturnal surge in the presence of sympathetic neurologic lesions and after administration of beta-adrenergic antagonists. However, there is remarkable resistance to elevation of daytime melatonin secretion by adrenergic agonists and by conditions of general sympathetic hyperactivity. Analysis of these and other reports together with results in lower animals allows insight into the control of the human melatonin rhythm. This rhythm is driven by a neural pathway to the pineal gland similar to that in animals and includes the sympathetic nervous system acting through a beta-adrenergic mechanism. Sympathetic control of the pineal is exerted independently of general sympathetic function, with sympathetic information partitioned separately for the pineal. The pineal is protected from humoral and exogenous adrenergic agents, in part by a nerve ending reuptake mechanism which has been demonstrated in rats and hamsters. Results in Syrian hamsters also suggest that sensitivity of the pineal to norepinephrine appears only at night. Melatonin production is an index, not of general sympathetic activity, but of the activity in a specific pathway and provides a stable humoral signal reflecting light/dark exposure. Observations of reduced melatonin values as a function of puberty, age, and depressive illness are not yet understood in the context of a unitary explanation of pineal function but indicate interesting frontiers in this field.
人类褪黑素节律是内源性的,其分泌高峰与昼夜周期的黑暗时段同步。报告显示,在存在交感神经病变时以及给予β-肾上腺素能拮抗剂后,这种夜间分泌高峰会持续减弱或被阻断。然而,肾上腺素能激动剂和一般交感神经过度活跃的情况并不会使白天褪黑素分泌明显增加。综合分析这些报告以及其他报告,并结合对低等动物的研究结果,有助于深入了解人类褪黑素节律的调控机制。这种节律由一条通向松果体的神经通路驱动,类似于动物体内的通路,包括通过β-肾上腺素能机制发挥作用的交感神经系统。松果体的交感神经控制独立于一般交感神经功能,交感神经信息针对松果体进行单独分配。松果体部分通过在大鼠和仓鼠中已得到证实的神经末梢再摄取机制,免受体液和外源性肾上腺素能物质的影响。叙利亚仓鼠的研究结果还表明,松果体对去甲肾上腺素的敏感性仅在夜间出现。褪黑素的产生并非一般交感神经活动的指标,而是特定通路活动的指标,并提供一个反映光/暗暴露的稳定体液信号。在松果体功能的统一解释背景下,目前尚不清楚青春期、年龄和抑郁症导致褪黑素值降低的观察结果,但这些结果表明了该领域有趣的研究前沿。