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GABAergic Projections from the Medial Septum Selectively Inhibit Interneurons in the Medial Entorhinal Cortex

机译:来自内侧隔的GABA能投影选择性抑制内侧内嗅皮层中的interneurons。

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摘要

The medial septum (MS) is required for theta rhythmic oscillations and grid cell firing in the medial entorhinal cortex (MEC). While GABAergic, glutamatergic, and cholinergic neurons project from the MS to the MEC, their synaptic targets are unknown. To investigate whether MS neurons innervate specific layers and cell types in the MEC, we expressed channelrhodopsin-2 in mouse MS neurons and used patch-clamp recording in brain slices to determine the response to light activation of identified cells in the MEC. Following activation of MS axons, we observed fast monosynaptic GABAergic IPSPs in the majority (>60%) of fast-spiking (FS) and low-threshold-spiking (LTS) interneurons in all layers of the MEC, but in only 1.5% of nonstellate principal cells (NSPCs) and in no stellate cells. We also observed fast glutamatergic responses to MS activation in a minority (<5%) of NSPCs, FS, and LTS interneurons. During stimulation of MS inputs at theta frequency (10 Hz), the amplitude of GABAergic IPSPs was maintained, and spike output from LTS and FS interneurons was entrained at low (25–60 Hz) and high (60–180 Hz) gamma frequencies, respectively. By demonstrating cell type-specific targeting of the GABAergic projection from the MS to the MEC, our results support the idea that the MS controls theta frequency activity in the MEC through coordination of inhibitory circuits.
机译:在内侧内嗅皮层(MEC)中,θ节奏振荡和网格细胞发射需要内侧隔片(MS)。虽然GABA能,谷氨酸能和胆碱能神经元从MS投射到MEC,但它们的突触目标尚不清楚。为了研究MS神经元是否能支配MEC中的特定层和细胞类型,我们在小鼠MS神经元中表达了channelrhodopsin-2,并在脑片中使用膜片钳记录来确定对MEC中已识别细胞的光激活的响应。 MS轴突激活后,我们在MEC的所有层中观察到大多数的快速突触(FS)和低阈值突触(LTS)中间神经元(> 60%)发生了快速的单突触GABA能IPSP。非星状主要细胞(NSPC),也没有星状细胞。我们还观察到少数(<5%)NSPC,FS和LTS interneurons对MS激活的快速谷氨酸能反应。在以theta频率(10 Hz)刺激MS输入的过程中,保持了GABA能IPSP的振幅,并且在低(25–60 Hz)和高(60–180 Hz)伽马频率下夹带了LTS和FS中子的尖峰输出,分别。通过展示从MS到MEC的GABA能投射的细胞类型特异性靶向,我们的结果支持了MS通过抑制电路的协调控制MEC中theta频率活动的想法。

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