Gloveli Tengis, Behr Joachim, Dugladze Tamar, Kokaia Zaal, Kokaia Merab, Heinemann Uwe
Johannes-Müller-Institute of Physiology at the Charité, Humboldt University Berlin, Tucholskystr. 2, 10117, Berlin, Germany.
Neurobiol Dis. 2003 Aug;13(3):203-12. doi: 10.1016/s0969-9961(03)00039-1.
We studied the effect of kindling, a model of temporal lobe epilepsy, on the frequency-dependent information transfer from the entorhinal cortex to the hippocampus in vitro. In control rats repetitive synaptic activation of layer III projection cells resulted in a frequency dependent depression of the synaptic transfer of action potentials to the hippocampus. One-to-two-days after kindling this effect was strongly reduced. Although no substantial change in synaptic inhibition upon single electrical stimulation was detected in kindled rats, there was a significant depression in the prolonged inhibition following high frequency stimulation. In kindled animals, paired-pulse depression (PPD) of stimulus-evoked IPSCs in layer III neurons was significantly stronger than in control rats. The increase of PPD is most likely caused by an increased presynaptic GABA(B) receptor-mediated autoinhibition. In kindled animals activation of presynaptic GABA(B) receptors by baclofen (10 microM) suppressed monosynaptic IPSCs significantly more than in control rats. In contrast, activation of postsynaptic GABA(B) receptors by baclofen was accompanied by comparable changes of the membrane conductance in both animal groups. Thus, in kindled animals activation of the layer III-CA1 pathway is facilitated by an increased GABA(B) receptor-mediated autoinhibition leading to an enhanced activation of the monosynaptic EC-CA1 pathway.
我们研究了点燃(一种颞叶癫痫模型)对体外从内嗅皮质到海马体的频率依赖性信息传递的影响。在对照大鼠中,III层投射细胞的重复性突触激活导致动作电位向海马体的突触传递出现频率依赖性抑制。点燃后1至2天,这种效应显著降低。虽然在点燃大鼠中未检测到单次电刺激时突触抑制有实质性变化,但高频刺激后的延长抑制存在显著抑制。在点燃动物中,III层神经元中刺激诱发的抑制性突触后电流(IPSC)的双脉冲抑制(PPD)明显强于对照大鼠。PPD的增加很可能是由突触前γ-氨基丁酸B(GABA(B))受体介导的自身抑制增加所致。在点燃动物中,巴氯芬(10微摩尔)激活突触前GABA(B)受体对单突触IPSC的抑制作用明显强于对照大鼠。相反,巴氯芬激活突触后GABA(B)受体在两组动物中伴随着相当的膜电导变化。因此,在点燃动物中,III层-海马体CA1通路的激活因GABA(B)受体介导的自身抑制增加而得到促进,导致单突触内嗅皮质-海马体CA1通路的激活增强。