Dolleman-van der Weel M J, Lopes da Silva F H, Witter M P
Department of Anatomy and Neurosciences, VU University Medical Center, 1081 BT, Amsterdam, The Netherlands.
Center for Neuroscience, Swammerdam Institute for Life Sciences, University of Amsterdam, 1098 XH, Amsterdam, The Netherlands.
Brain Struct Funct. 2017 Jul;222(5):2421-2438. doi: 10.1007/s00429-016-1350-6. Epub 2016 Dec 22.
The nucleus reuniens (RE) and entorhinal cortex (EC) provide monosynaptic excitatory inputs to the apical dendrites of pyramidal cells and to interneurons with dendrites in stratum lacunosum moleculare (LM) of hippocampal field CA1. However, whether the RE and EC inputs interact at the cellular level is unknown. In this electrophysiological in vivo study, low-frequency stimulation was used to selectively activate each projection at its origin; field excitatory postsynaptic potentials (fEPSPs) were recorded in CA1. We applied (1) paired pulses to RE or EC, (2) combined paired pulses to RE and EC, and (3) simultaneously paired pulses to RE/EC. The main findings are that: (a) stimulation of either RE- or EC-evoked subthreshold fEPSPs, displaying paired pulse facilitation (PPF), (b) subthreshold fEPSPs evoked by combined stimulation did not display heterosynaptic PPF, and (c) simultaneous stimulation of RE/EC resulted in enhanced subthreshold fEPSPs in proximal LM displaying a nonlinear interaction. CSD analyses of RE/EC-evoked depth profiles revealed a nonlinear enlargement of the 'LM sink-radiatum source' configuration and the appearance of an additional small sink-source pair close to stratum pyramidale, likely reflecting (peri)somatic inhibition. The nonlinear interaction between both inputs indicates that RE and EC axons form synapses, at least partly, onto the same dendritic compartments of CA1 pyramidal cells. We propose that low-frequency activation of the RE-CA1 input facilitates the entorhinal-hippocampal dialogue, and may synchronize the neocortical-hippocampal slow oscillation which is relevant for hippocampal-dependent memory consolidation.
reuniens核(RE)和内嗅皮质(EC)向锥体细胞的顶端树突以及海马CA1区分子层(LM)中具有树突的中间神经元提供单突触兴奋性输入。然而,RE和EC输入在细胞水平上是否相互作用尚不清楚。在这项体内电生理研究中,使用低频刺激在其起源处选择性激活每个投射;在CA1区记录场兴奋性突触后电位(fEPSP)。我们应用了:(1)对RE或EC进行双脉冲刺激,(2)对RE和EC进行联合双脉冲刺激,以及(3)对RE/EC进行同步双脉冲刺激。主要发现如下:(a)刺激RE或EC均可诱发阈下fEPSP,并表现出双脉冲易化(PPF);(b)联合刺激诱发的阈下fEPSP未表现出异突触PPF;(c)同时刺激RE/EC导致近端LM中的阈下fEPSP增强,表现出非线性相互作用。对RE/EC诱发的深度剖面进行电流源密度(CSD)分析,发现“LM汇-辐射层源”结构非线性扩大,并在靠近锥体层处出现一个额外的小汇-源对,可能反映了(近)体细胞抑制。两种输入之间的非线性相互作用表明,RE和EC轴突至少部分地在CA1锥体细胞的相同树突区室上形成突触。我们提出,RE-CA1输入的低频激活促进了内嗅-海马对话,并可能使与海马依赖性记忆巩固相关的新皮质-海马慢振荡同步。