Michel S, Geusz M E, Zaritsky J J, Block G D
Department of Biology, University of Virginia, Charlottesville 22901.
Science. 1993 Jan 8;259(5092):239-41. doi: 10.1126/science.8421785.
Although isolated neurons can generate rhythmic activity, they have not yet been shown to generate rhythms with a period in the circadian range (near 24 hours). The eye of the mollusk Bulla gouldiana expresses a circadian rhythm in optic nerve impulses that is generated by electrically coupled cells known as basal retinal neurons (BRNs). Daily fluctuations in the membrane potential of the BRNs appear to be driven by a rhythm in membrane conductance. Isolated BRNs exhibited spontaneous conductance changes similar to those observed in the intact retina. Membrane conductance was high in the late subjective night and decreased approximately twofold near projected dawn during at least two circadian cycles in culture. The persistence of daily conductance changes in isolated BRNs indicates that individual neurons can function as circadian pacemakers.
尽管单个神经元能够产生节律性活动,但尚未证明它们能产生昼夜节律范围内(接近24小时)的节律。软体动物古氏拟海牛的眼睛在视神经冲动中表现出昼夜节律,这种节律是由称为基底视网膜神经元(BRNs)的电耦合细胞产生的。BRNs膜电位的每日波动似乎是由膜电导的节律驱动的。分离出的BRNs表现出与完整视网膜中观察到的类似的自发电导变化。在培养过程中,至少两个昼夜周期内,膜电导在主观夜晚后期较高,在预计黎明前下降约两倍。分离出的BRNs中每日电导变化的持续性表明单个神经元可以作为昼夜节律起搏器发挥作用。