Isomura Y, Kato N
Department of Integrative Brain Science, Graduate School of Medicine, Kyoto University, 606-8501, Kyoto, Japan.
Brain Res. 2000 Nov 10;883(1):119-24. doi: 10.1016/s0006-8993(00)02853-5.
The amplitude of backpropagating action potentials (BAPs) is attenuated, either activity- or neurotransmitter-dependently in the apical dendrite of hippocampal pyramidal neurons. To test the possibility that this BAP attenuation may contribute to regulating the inducibility of long-term potentiation (LTP), BAPs evoked by theta-burst stimulation (TBS), a standard protocol for LTP induction, to apical dendrite synapses were subjected to perturbation by conditioning stimuli to basal dendrite synapses. During this conditioned TBS (cTBS), the amplitude of BAPs was noticeably attenuated, but that of somatic action potentials was not. In the distal dendrite area, cTBS-induced LTP was much smaller than that induced by TBS. By contrast, no difference was observed between TBS- and cTBS-induced LTP in the proximal dendrite area. These findings suggest that the activity-dependent attenuation of BAPs, propagating along the apical dendrite, may serve to regulate hippocampal synaptic plasticity.
在海马锥体神经元的顶端树突中,反向传播动作电位(BAPs)的幅度会以活动或神经递质依赖的方式衰减。为了测试这种BAP衰减可能有助于调节长时程增强(LTP)诱导的可能性,对由θ波爆发刺激(TBS,一种用于LTP诱导的标准方案)诱发至顶端树突突触的BAPs,通过对基底树突突触施加条件刺激进行干扰。在这种条件性TBS(cTBS)期间,BAPs的幅度明显衰减,但体细胞动作电位的幅度没有衰减。在远端树突区域,cTBS诱导的LTP比TBS诱导的LTP小得多。相比之下,在近端树突区域,TBS诱导的LTP和cTBS诱导的LTP之间没有观察到差异。这些发现表明,沿顶端树突传播的BAPs的活动依赖性衰减可能有助于调节海马突触可塑性。