Cahill G M
Department of Biology, University of Houston, 4800 Calhoun, Houston, Texas, 77204-5513, USA.
Gen Comp Endocrinol. 1997 Feb;105(2):270-5. doi: 10.1006/gcen.1996.6828.
Catecholamine receptors of multiple classes have been shown to influence pineal melatonin synthesis in a species-specific manner. In these experiments, the effects of catecholamine receptor agonists on circadian melatonin rhythms of zebrafish (Danio rerio) pineal in vitro were examined. Cyclic application of adrenergic receptor agonists (norepinephrine, phenylephrine, clonidine, and isoproterenol) had no effect on zebrafish pineal melatonin release, nor on the circadian oscillator that regulates melatonin rhythms. Pineal melatonin release was partially suppressed by quinpirole, a D2 dopamine receptor agonist, but cyclic application of quinpirole did not reset the pineal circadian oscillator. Pineal melatonin release was unaffected by either dopamine or SKF38393, a D1 receptor agonist, suggesting that the effects of quinpirole were not mediated by dopamine receptors. The regulatory mechanisms underlying pineal melatonin rhythms appear to differ among teleosts.
已证明多种类型的儿茶酚胺受体以物种特异性方式影响松果体褪黑素的合成。在这些实验中,研究了儿茶酚胺受体激动剂对斑马鱼(Danio rerio)体外松果体昼夜节律性褪黑素分泌的影响。肾上腺素能受体激动剂(去甲肾上腺素、苯肾上腺素、可乐定和异丙肾上腺素)的循环应用对斑马鱼松果体褪黑素释放以及调节褪黑素节律的昼夜振荡器均无影响。D2多巴胺受体激动剂喹吡罗可部分抑制松果体褪黑素释放,但喹吡罗的循环应用并未重置松果体昼夜振荡器。多巴胺或D1受体激动剂SKF38393对松果体褪黑素释放均无影响,这表明喹吡罗的作用不是由多巴胺受体介导的。硬骨鱼松果体褪黑素节律的调节机制似乎有所不同。