首页> 美国卫生研究院文献>The Journal of Physiology >Role of glial and neuronal glycine transporters in the control of glycinergic and glutamatergic synaptic transmission in lamina X of the rat spinal cord
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Role of glial and neuronal glycine transporters in the control of glycinergic and glutamatergic synaptic transmission in lamina X of the rat spinal cord

机译:神经胶质和神经元甘氨酸转运蛋白在控制大鼠脊髓X板层的甘氨酸和谷氨酸能突触传递中的作用

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摘要

Using whole cell voltage clamp recordings from lamina X neurones in rat spinal cord slices, we investigated the effect of glycine transporter (GlyT) antagonists on both glycinergic inhibitory postsynaptic current (IPSCs) and glutamatergic excitatory postsynaptic current (EPSCs). We used ORG 24598 and ORG 25543, selective antagonists of the glial GlyT (GlyT1) and neuronal GlyT (GlyT2), respectively. In rats (P12–P16) and in the presence of kynurenic acid, 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) and bicuculline, ORG 24598 and ORG 25543 applied individually at a concentration of 10 μm induced a mean inward current of −10/−50 pA at −60 mV and increased significantly the decay time constants of miniature (mIPSCs), spontaneous (sIPSCs) and electrically evoked glycinergic (eIPSCs) inhibitory postsynaptic currents. ORG 25543, but not ORG 24598, decreased the frequency of mIPSCs and sIPSCs. Replacing extracellular sodium with N-methyl-d-glucamine or superfusing the slice with micromolar concentrations of glycine also increased the decay time constant of glycinergic IPSCs. By contrast, the decay time constant, amplitude and frequency of miniature GABAergic IPSCs recorded in the presence of strychnine were not affected by ORG 24598 and ORG 25543. In the presence of strychnine, bicuculline and CNQX, we recorded electrically evoked NMDA receptor-mediated EPSCs (eEPSCs). eEPSCs were suppressed by 30 μmd-2-amino-5-phosphonovalerate (APV), an antagonist of the NMDA receptor, and by 30 μm dichlorokynurenic acid (DCKA), an antagonist of the glycine site of the NMDA receptor. Glycine (1–5 μm) and d-serine (10 μm) increased the amplitude of eEPSCs whereas l-serine had no effect. ORG 24598 and ORG 25543 increased significantly the amplitude of NMDA receptor-mediated eEPSCs without affecting the amplitude of non-NMDA receptor-mediated eEPSCs. We conclude that blocking glial and/or neuronal glycine transporters increased the level of glycine in spinal cord slices, which in turn prolonged the duration of glycinergic synaptic current and potentiated the NMDA-mediated synaptic response.
机译:使用大鼠脊髓切片中X层神经元的全细胞电压钳记录,我们研究了甘氨酸转运蛋白(GlyT)拮抗剂对甘氨酸能抑制突触后电流(IPSC)和谷氨酸能兴奋性突触后电流(EPSC)的影响。我们分别使用了神经胶质GlyT(GlyT1)和神经元GlyT(GlyT2)的选择性拮抗剂ORG 24598和ORG 25543。在大鼠(P12–P16)中,在存在尿嘧啶酸的情况下,以10μm的浓度单独施用6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)和小瓜碱时,ORG 24598和ORG 25543诱导平均在-60 mV时为-10 / -50 pA的内向电流,并且显着增加了微型(mIPSC),自发(sIPSC)和电诱发的甘氨酸能(eIPSC)抑制突触后电流的衰减时间常数。 ORG 25543(而非ORG 24598)降低了mIPSC和sIPSC的频率。用N-甲基-d-葡糖胺代替细胞外钠或用微摩尔浓度的甘氨酸对切片进行超融合也增加了甘氨酸能性IPSC的衰减时间常数。相比之下,在存在士的宁的情况下记录的微型GABA能IPSC的衰减时间常数,幅度和频率不受ORG 24598和ORG 25543的影响。在存在士丁宁,双小分子和CNQX的情况下,我们记录了由电诱发的NMDA受体介导的EPSC (eEPSC)。 eEPSC被NMDA受体的拮抗剂30μmd-2-氨基-5-膦酸戊二酸酯(APV)和NMDA受体的甘氨酸部位的拮抗剂30μm二氯尿嘧啶酸(DCKA)抑制。甘氨酸(1-5μm)和d-丝氨酸(10μm)增加了eEPSC的振幅,而l-丝氨酸没有作用。 ORG 24598和ORG 25543可显着增加NMDA受体介导的eEPSC的幅度,而不会影响非NMDA受体介导的eEPSC的幅度。我们得出的结论是,阻断神经胶质和/或神经元甘氨酸转运蛋白可增加脊髓切片中甘氨酸的水平,从而延长了甘氨酸能突触电流的持续时间并增强了NMDA介导的突触反应。

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