Sipilä Sampsa T, Huttu Kristiina, Soltesz Ivan, Voipio Juha, Kaila Kai
Department of Biological and Environmental Sciences, University of Helsinki, FIN-00014 Helsinki, Finland.
J Neurosci. 2005 Jun 1;25(22):5280-9. doi: 10.1523/JNEUROSCI.0378-05.2005.
Spontaneous periodic network events are a characteristic feature of developing neuronal networks, and they are thought to play a crucial role in the maturation of neuronal circuits. In the immature hippocampus, these types of events are seen in intracellular recordings as giant depolarizing potentials (GDPs) during the stage of neuronal development when GABA(A)-mediated transmission is depolarizing. However, the precise mechanism how GABAergic transmission promotes GDP occurrence is not known. Using whole-cell, cell-attached, perforated-patch, and field-potential recordings in hippocampal slices, we demonstrate here that CA3 pyramidal neurons in the newborn rat generate intrinsic bursts when depolarized. Furthermore, the characteristic rhythmicity of GDP generation is not based on a temporally patterned output of the GABAergic interneuronal network. However, GABAergic depolarization plays a key role in promoting voltage-dependent, intrinsic pyramidal bursting activity. The present data indicate that glutamatergic CA3 neurons have an instructive, pacemaker role in the generation of GDPs, whereas both synaptic and tonic depolarizing GABAergic mechanisms exert a temporally nonpatterned, facilitatory action in the generation of these network events.
自发周期性网络事件是发育中的神经元网络的一个特征,并且它们被认为在神经元回路的成熟中起关键作用。在未成熟的海马体中,在细胞内记录中,当GABA(A)介导的传递呈去极化时,在神经元发育阶段这些类型的事件表现为巨大去极化电位(GDPs)。然而,GABA能传递促进GDP发生的确切机制尚不清楚。我们在海马切片中使用全细胞、细胞贴附、穿孔膜片和场电位记录,在此证明新生大鼠的CA3锥体神经元在去极化时会产生内在爆发。此外,GDP产生的特征节律性并非基于GABA能中间神经元网络的时间模式输出。然而,GABA能去极化在促进电压依赖性的内在锥体爆发活动中起关键作用。目前的数据表明,谷氨酸能CA3神经元在GDP的产生中具有指导性的起搏器作用,而突触性和强直性去极化GABA能机制在这些网络事件的产生中发挥时间上无模式的促进作用。