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Differential effects of midazolam on inhibitory postsynaptic currents in CA1 pyramidal cells and dentate gyrus granule cells of rat hippocampal slices.

机译:咪达唑仑对大鼠海马切片CA1锥体细胞和齿状回颗粒细胞抑制突触后电流的差异作用。

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摘要

To examine regional differences of synaptic transmission, the effects of midazolam were observed on inhibitory postsynaptic currents (IPSCs) in CA1 pyramidal cells (CA1-PCs) and dentate gyrus granule cells (DG-GCs) in rat hippocampal slices. Midazolam is one of the most popular benzodiazepines. The monosynaptic IPSCs in the CA1-PCs and DG-GCs were evoked by electrical stimulation of GABAergic interneurons and recorded by whole cell patch-clamp techniques. The effects of specific concentrations of midazolam (0.3, 1, 10 and 75 microM) on the IPSCs in CA1-PCs and DG-GCs were examined at particular membrane potentials (20 mV steps, from -120 to +40 mV). In all midazolam concentrations tested, the conductance of the IPSCs was significantly larger than that in control and was increased by increasing the concentration of midazolam in CA1-PCs (normalized conductance, 0.3 microM, 121%; 1 microM, 125%; 10 microM, 147%; 75 microM, 147%). However, midazolam did not significantly change the conductance of the IPSCsin DG-GCs (normalized conductance, 0.3 microM, 92%; 1 microM, 92%; 10 microM, 91%; 75 microM, 115%). The normalized conductance was significantly different between the CA1-PCs and DG-GCs in 1 and 10 microM midazolam. The results strongly suggest that the differential effects of midazolam on IPSCs in CA1-PCs and DG-GCs could be, at least in part, due to the different sensitivity to midazolam of the GABA(A) receptor subtypes.
机译:为了检查突触传递的区域差异,观察了咪达唑仑对大鼠海马切片中CA1锥体细胞(CA1-PC)和齿状回颗粒细胞(DG-GC)中抑制性突触后电流(IPSC)的影响。咪达唑仑是最流行的苯二氮卓类药物之一。 CA1-PCs和DG-GCs中的单突触IPSCs通过电刺激GABA能中间神经元而诱发,并通过全细胞膜片钳技术进行记录。在特定膜电位下(20 mV步长,从-120到+40 mV),检查了特定浓度的咪达唑仑(0.3、1、10和75 microM)对CA1-PC和DG-GC中IPSC的影响。在所有测试的咪达唑仑浓度下,IPSC的电导均显着大于对照,并通过增加CA1-PC中咪达唑仑的浓度而增加(标准化电导,0.3 microM,121%; 1 microM,125%; 10 microM, 147%; 75 microM,147%)。但是,咪达唑仑并没有显着改变DG-GC中IPSCs的电导率(标准化电导率为0.3 microM,92%; 1 microM,92%; 10 microM,91%; 75 microM,115%)。在1和10 microM咪达唑仑中,CA1-PC和DG-GC之间的归一化电导显着不同。结果强烈表明,咪达唑仑对CA1-PC和DG-GC中IPSC的不同影响可能至少部分是由于GABA(A)受体亚型对咪达唑仑的敏感性不同。

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