首页> 美国卫生研究院文献>The Journal of Physiology >Evidence that glial cells modulate extracellular pH transients induced by neuronal activity in the leech central nervous system.
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Evidence that glial cells modulate extracellular pH transients induced by neuronal activity in the leech central nervous system.

机译:胶质细胞调节水ech中枢神经系统神经元活动诱导的细胞外pH瞬变的证据。

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摘要

1. The role of the giant neuropile glial cells in the buffering of activity-related extracellular pH changes was studied in segmental ganglia of the leech Hirudo medicinalis L. using pH-sensitive microelectrodes and a slow, two-electrode voltage-clamp system. Neuronal activity was induced by electrical stimulation of a ganglionic side nerve (20 Hz, 1 min). 2. In CO2-HCO3(-)-buffered saline the glial cells were depolarized by 6.5 +/- 2.3 mV and alkalinized by 0.024 +/- 0.006 pH units (mean +/- SD) during the stimulation. The stimulation induced an acidification of 0.032 +/- 0.006 pH units in the extracellular spaces (ECS). 3. Voltage clamping the glial cells suppressed the stimulus-induced glial depolarization and turned the intraglial alkalinization into an acidification of 0.045 +/- 0.021 pH units (n = 6) that closely resembled the acidification observed in the presence of the anion transport blocker DIDS (4,4'-diisothiocyanatostilbene-2,2'-disulphonic acid, 0.5 mM), and in CO2-HCO(3-)-free saline. 4. Voltage clamping the glial cell resulted in the appearance of a distinct stimulus-induced extracellular alkalinization of 0.024 +/- 0.013 pH units at the onset of the stimulation, as also observed during DIDS application and in the absence of CO2-HCO3-. 5. The results suggest that glial uptake of bicarbonate is mediated by depolarization-induced activation of the electrogenic Na(+)-HCO3- cotransport, which suppresses the profound alkalinization of the ECS during neuronal activity. This is the first direct evidence the glial cells actively modulate extracellular pH changes in a voltage-dependent manner.
机译:1.使用pH敏感的微电极和缓慢的两电极电压钳系统研究了水ech节段神经节中巨神经堆神经胶质细胞在缓冲与活动相关的细胞外pH变化中的作用。通过神经节神经的电刺激(20 Hz,1分钟)诱导神经元活动。 2.在刺激过程中,在CO2-HCO3(-)缓冲的盐水中,胶质细胞被去极化6.5 +/- 2.3 mV,被碱化0.024 +/- 0.006 pH单位(平均值+/- SD)。刺激在细胞外空间(ECS)中诱导了0.032 +/- 0.006 pH单位的酸化。 3.钳位神经胶质细胞的电压抑制了刺激引起的神经胶质去极化,并使神经胶质内碱化变为0.045 +/- 0.021 pH单位(n = 6)的酸化,这与在阴离子转运阻滞剂DIDS存在下观察到的酸化非常相似(4,4'-diisothiocyanatostilbene-2,2'-disulphonic acid,0.5 mM)和不含CO2-HCO(3-)的盐水中。 4.电压钳制神经胶质细胞导致在刺激开始时出现独特的刺激诱导的0.024 +/- 0.013 pH单位的细胞外碱化,这也与在DIDS施用过程中以及在没有CO2-HCO3-的情况下观察到的一样。 5.结果表明,胶质细胞对碳酸氢盐的吸收是由去极化诱导的电性Na(+)-HCO3-共转运激活所介导的,这抑制了神经元活动期间ECS的深度碱化。这是神经胶质细胞以电压依赖性方式主动调节细胞外pH变化的第一个直接证据。

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