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The GABAergic projection of the dentate gyrus to hippocampal area CA3 of the rat: pre- and postsynaptic actions after seizures

机译:齿状回向大鼠海马区CA3的GABA能投射:癫痫发作后的突触前和突触后动作

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摘要

The glutamatergic granule cells of the dentate gyrus transiently express GABAergic markers after seizures. Here we show that when this occurs, their activation produces (i) GABAA receptor-mediated synaptic field responses in CA3, with the physiological and pharmacological characteristics of mossy fibre transmission, and (ii) GABAA receptor-mediated collateral inhibition. Control hippocampal slices present, on stimulation of the dentate gyrus, population responses in stratum lucidum, which are blocked by ionotropic glutamate receptor antagonists. By contrast, in slices from rats subjected to seizures in vivo, dentate activation additionally produces GABAA receptor-mediated field synaptic responses in the presence of glutamate receptor antagonists. One-dimensional current source density analysis confirmed the spatial coincidence of the glutamatergic and GABAergic dendritic currents. The GABAA receptor-mediated field responses show frequency-dependent facilitation and strong inhibition during activation of metabotropic glutamate receptors. In the presence of glutamate receptor blockers, a conditioning pulse delivered to one site of the dentate gyrus inhibits the population synaptic response and the afferent volley provoked by the activation of a second site, in a bicuculline-sensitive manner. In accordance with this, antidromic responses evoked by mossy fibre activation were enhanced by perfusion of bicuculline. Our results suggest that, for GABA receptor-dependent field potentials to be detected, a considerable number of boutons of a well-defined GABAergic pathway should simultaneously release GABA to act on a large number of receptors. Therefore, putative GABA release from the mossy fibres acts on pre- and postsynaptic sites to affect hippocampal activity at the network level after seizures.
机译:癫痫发作后,齿状回的谷氨酸能颗粒细胞瞬时表达GABA能标记。在这里,我们显示出当这种情况发生时,它们的激活会产生(i)CA3中GABAA受体介导的突触场反应,具有生苔纤维传输的生理和药理学特征,以及(ii)GABAA受体介导的侧支抑制。对照海马切片在刺激齿状回时,在透明质层中存在种群反应,其被离子型谷氨酸受体拮抗剂所阻断。相比之下,在大鼠体内进行癫痫发作的切片中,在谷氨酸受体拮抗剂的存在下,齿状激活还产生GABAA受体介导的场突触反应。一维电流源密度分析证实了谷氨酸能和GABA能树突电流的空间一致性。 GABAA受体介导的场响应在代谢型谷氨酸受体激活过程中表现出频率依赖性的促进作用和强烈的抑制作用。在存在谷氨酸受体阻滞剂的情况下,传递至齿状回的一个位点的调节脉冲以双小分子敏感的方式抑制了群体突触反应和第二位点的激活引起的传入凌空。据此,通过苔藓纤维活化引起的抗皮肤病反应通过双小分子的灌注而增强。我们的结果表明,要检测到GABA受体依赖的场电势,相当数量的明确定义的GABA能量通路的按键应同时释放GABA来作用于大量受体。因此,从苔藓纤维中释放出的假定的GABA作用于突触前和突触后的部位,从而在癫痫发作后在网络水平上影响海马的活动。

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