Pickard G E, Tang W X
Department of Psychiatry, School of Medicine, University of Pennsylvania, Philadelphia 19104-6141.
Brain Res. 1993 Nov 5;627(1):141-6. doi: 10.1016/0006-8993(93)90757-e.
Pineal glands and dissociated pineal cells exhibit a circadian rhythm of melatonin secretion in vitro which persists for several cycles under constant conditions. It is not known whether individual, physically isolated pineal cells are capable of generating a circadian oscillation in melatonin release. This question was addressed by utilizing a reverse hemolytic plaque assay for the detection of melatonin secretion from individual pineal cells. Dissociated pineal cells from the anole lizard, maintained in short term culture, displayed a marked variation in melatonin secretion for up to 72 h under both cyclic lighting conditions and in constant dark. The persistence of daily fluctuations of melatonin secretion from individual cells strongly suggests that individual pineal cells can function as circadian oscillators.
松果体及解离的松果体细胞在体外表现出褪黑素分泌的昼夜节律,在恒定条件下这种节律会持续几个周期。尚不清楚单个物理隔离的松果体细胞是否能够产生褪黑素释放的昼夜振荡。通过利用反向溶血空斑试验检测单个松果体细胞的褪黑素分泌来解决这个问题。来自绿安乐蜥的解离松果体细胞在短期培养中,在周期性光照条件和持续黑暗条件下,褪黑素分泌在长达72小时内都表现出显著变化。单个细胞褪黑素分泌的每日波动持续存在,这有力地表明单个松果体细胞可以作为昼夜振荡器发挥作用。