Prosser R A
Department of Biochemistry and Cellular and Molecular Biology, University of Tennessee, Knoxville, TN 37996, USA.
Brain Res. 1999 Feb 13;818(2):408-13. doi: 10.1016/s0006-8993(98)01295-5.
The suprachiasmatic (SCN) circadian pacemaker generates 24 h rhythms of spontaneous neuronal activity when isolated in an acute brain slice preparation. The isolated pacemaker also retains its capacity to be reset, or phase-shifted by exogenous stimuli. For example, serotonin (5-HT) agonists advance the SCN pacemaker when applied during mid subjective day, while neuropeptide Y (NPY) agonists and melatonin advance the pacemaker when applied during late subjective day. Previous work has demonstrated interactions between NPY and 5-HT agonists, such that NPY can block 5-HTergic phase advances, while 5-HT agonists do not prevent NPY-induced advances. Due to a number of similarities in the actions of melatonin and NPY in the SCN, it seemed possible that melatonin and 5-HT might interact in the SCN as well. Therefore, in this study potential interactions between melatonin and 5-HT agonists were explored. Melatonin inhibited phase advances by the 5-HT agonist, (+)DPAT, and this inhibition was decreased by co-application of tetrodotoxin. Conversely, melatonin was unable to block phase advances by the cyclic AMP analog, 8BA-cAMP. Finally, neither 5-HT agonists nor 8BA-AMP were able to block melatonin-induced phase advances. These results demonstrate a clear interaction between melatonin and 5-HT in the SCN, and suggest that melatonin and NPY may play similar roles with respect to modulating the phase of the SCN circadian pacemaker in rats.
在急性脑片制备中分离出来的视交叉上核(SCN)昼夜节律起搏器会产生24小时的自发神经元活动节律。分离出的起搏器也保留了其被外源性刺激重置或相位转移的能力。例如,血清素(5-HT)激动剂在主观日中午施用时会使SCN起搏器提前,而神经肽Y(NPY)激动剂和褪黑素在主观日晚些时候施用时会使起搏器提前。先前的研究表明NPY和5-HT激动剂之间存在相互作用,即NPY可以阻断5-HT能相位提前,而5-HT激动剂不能阻止NPY诱导的提前。由于褪黑素和NPY在SCN中的作用有许多相似之处,褪黑素和5-HT在SCN中似乎也可能相互作用。因此,在本研究中探索了褪黑素和5-HT激动剂之间的潜在相互作用。褪黑素抑制了5-HT激动剂(+)DPAT引起的相位提前,并且通过共同施用河豚毒素这种抑制作用减弱。相反,褪黑素无法阻断环磷酸腺苷类似物8BA-cAMP引起的相位提前。最后,5-HT激动剂和8BA-AMP都不能阻断褪黑素诱导的相位提前。这些结果证明了褪黑素和5-HT在SCN中存在明显的相互作用,并表明褪黑素和NPY在调节大鼠SCN昼夜节律起搏器的相位方面可能发挥相似的作用。