首页> 外文期刊>The Journal of Physiology >Run-down of the GABAA response under experimental ischaemia in acutely dissociated CA1 pyramidal neurones of the rat.
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Run-down of the GABAA response under experimental ischaemia in acutely dissociated CA1 pyramidal neurones of the rat.

机译:实验性局部缺血下大鼠急性解离的CA1锥体神经元中GABAA反应的减少。

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1. The effect of experimental ischaemia on the response to gamma-aminobutyric acid (GABA) was assessed in acutely dissociated CA1 pyramidal neurones of rats, using the patch-clamp technique. 2. Rapid application of 3 x 10(-5) M GABA induced a bicuculline-sensitive inward Cl- current (IGABA) at a holding potential (Vh) of -44 mV. The peak amplitude of IGABA showed a time-dependent decrease (run-down) when it was recorded with the conventional whole-cell mode without internal ATP. The run-down was not observed when the intracellular ATP concentration ([ATP]i) was maintained by the nystatin-perforated recording with an intracellular Na+ concentration ([Na+]i) of 0 mM. 3. When [Na+]i was increased to more than 30 mM, the IGABA run-down was observed even with the nystatin-perforated recording. 4. The IGABA run-down observed at 60 mM [Na+]i with the nystatin method was further enhanced under experimental ischaemia without changes in the reversal potential of IGABA. The enhanced run-down was suppressed by application of the Na+,K(+)-ATPase inhibitors, ouabain and SPAI-1. 5. IGABA run-down during ischaemia was also accompanied by an outward holding current and a concomitant increase in intracellular free Ca2+ concentration ([Ca2+]i) in 48.5% of the neurones. The outward current was a Ca(2+)-activated K+ current, which was blocked by 3 x 10(-7) M charybdotoxin. 6. In the inside-out mode of the single-channel analysis, GABA activated three subconductance states with conductances of 33.4, 22.7 and 15.2 pS. Reduction of ATP concentration from 2 to 0 mM on the intracellular side suppressed the channel activities, while an increase in Ca2+ concentration from 0.7 x 10(-9) to 1.1 x 10(-6) M had no effect. 7. These results suggest that ischaemia induces the run-down of the postsynaptic GABA response at the GABAA receptor level, and that this run-down is triggered by a decrease in [ATP]i.
机译:1.使用膜片钳技术评估了大鼠急性解离的CA1锥体神经元中实验性缺血对γ-氨基丁酸(GABA)反应的影响。 2.快速施加3 x 10(-5)M GABA可以在-44 mV的保持电势(Vh)上引起双瓜灵敏的向内Cl电流(IGABA)。当使用不带内部ATP的常规全细胞模式记录时,IGABA的峰幅度显示出时间依赖性的下降(下降)。当通过制霉菌素穿孔的记录以0mM的细胞内Na +浓度([Na +] i)维持细胞内ATP浓度([ATP] i)时,未观察到损耗。 3.当[Na +] i增加到30 mM以上时,即使使用制霉菌素穿孔记录,也观察到IGABA减少。 4.用制霉菌素方法在60 mM [Na +] i处观察到的IGABA减少在实验性局部缺血下得到了进一步增强,而IGABA的逆转潜力没有改变。通过应用Na +,K(+)-ATPase抑制剂,哇巴因和SPAI-1抑制了增加的降解。 5.缺血期间IGABA减少还伴随着向外的保持电流,并伴随着48.5%的神经元细胞内游离Ca2 +浓度([Ca2 +] i)的增加。向外的电流是Ca(2+)激活的K +电流,被3 x 10(-7)M的charybdotoxin阻止。 6.在单通道分析的由内而外模式下,GABA激活了三个亚电导状态,电导分别为33.4、22.7和15.2 pS。 ATP浓度从2降低到0 mM在细胞内侧抑制了通道活性,而Ca2 +浓度从0.7 x 10(-9)增加到1.1 x 10(-6)M没有影响。 7.这些结果表明,局部缺血会导致GABAA受体水平的突触后GABA反应下降,并且这种下降是由[ATP] i降低触发的。

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