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Endogenous H+ modulation of NMDA receptor-mediated EPSCs revealed by carbonic anhydrase inhibition in rat hippocampus.

机译:碳酸酐酶抑制大鼠海马体揭示了NMDA受体介导的EPSC的内源性H +调节。

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摘要

1. The occurrence of extracellular alkaline transients during excitatory synaptic transmission suggests that the NMDA receptor H(+)-modulatory site may have a physiological role. Here we amplify these pH shifts using benzolamide (a carbonic anhydrase inhibitor) and describe concomitant effects on EPSCs in whole-cell clamped CA1 neurones in rat hippocampal slices. 2. In CO2-HCO3(-)-buffered media, benzolamide increased the time to 50% decay (t50) of the EPSCs by 78 +/- 14% (P < 0.01, n = 10). This occurred simultaneously with amplification of the extracellular alkaline shift (154 +/- 14%). 3. In CO2-HCO3(-)-buffered media containing DL-2-amino-5-phosphonovalerate (APV), the EPSC t50 was unaltered by benzolamide, while the extracellular alkaline shifts were increased (111 +/- 23%, n = 8). 4. In Hepes-buffered media, neither the EPSC t50 nor the extracellular alkaline shift was altered by benzolamide (n = 9). 5. These data demonstrate that NMDA receptor activity is dependent on the buffering kinetics of the brain extracellular space. The results suggest that endogenous pH shifts can modulate NMDA receptor function in a physiologically relevant time frame.
机译:1.兴奋性突触传递过程中细胞外碱性瞬态的发生表明NMDA受体H(+)调节位点可能具有生理作用。在这里,我们使用苯甲酰胺(一种碳酸酐酶抑制剂)来放大这些pH值的变化,并描述在大鼠海马切片中全细胞钳位的CA1神经元对EPSC的伴随作用。 2.在CO2-HCO3(-)缓冲的介质中,苯甲酰胺使EPSC的50%衰减(t50)时间增加了78 +/- 14%(P <0.01,n = 10)。这与细胞外碱性移位(154 +/- 14%)的扩增同时发生。 3.在含有DL-2-氨基-5-膦酸戊二酸酯(APV)的CO2-HCO3(-)缓冲介质中,EPSC t50不受苯甲酰胺的影响,而细胞外碱性变化增加(111 +/- 23%,n = 8)。 4.在Hepes缓冲液中,苯甲酰胺(n = 9)既不改变EPSC t50,也不改变细胞外碱转移。 5.这些数据表明,NMDA受体的活性取决于大脑细胞外空间的缓冲动力学。结果表明内源性pH改变可以在生理相关的时间框架内调节NMDA受体功能。

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