首页> 美国卫生研究院文献>The Journal of General Physiology >Effects of barium and bicarbonate on glial cells of Necturus optic nerve. Studies with microelectrodes and voltage-sensitive dyes
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Effects of barium and bicarbonate on glial cells of Necturus optic nerve. Studies with microelectrodes and voltage-sensitive dyes

机译:钡和碳酸氢盐对Necturus视神经胶质细胞的影响。微电极和压敏染料的研究

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摘要

We have studied the effects of Ba++, a known K+ channel blocker, on the electrophysiological properties of the glial cells of Necturus optic nerve. The addition of Ba++ reversibly depolarized glial cells by 25-50 mV; the half maximal deplorization was obtained with a Ba++ concentration of approximately 0.3 mM. In the presence of Ba++, the sensitivity of the membrane to changes in K+ was reduced and there was evidence of competition between K+ and Ba++ for the K+ channel. These effects, which were accompanied by a large increase in the input resistance of the glial cells, indicate that Ba++ blocks the K+ conductance in glial cells of Necturus optic nerve. With the K+ conductance reduced, we were able to investigate the presence of other membrane conductances. We found that in the presence of Ba++, the addition of HCO3- caused a Na+-dependent hyperpolarization that was sensitive to the disulfonic stilbene SITS (4-acetamido-4'- isothiocyanostilbene-2, 2'-disulfonic acid). Removal of Na+ resulted in a HCO3- -dependent, SITS-sensitive depolarization. These results are consistent with the presence in the glial membrane of an electrogenic Na+/HCO3- cotransporter in which Na+, HCO3-, and net negative charge are transported in the same direction. In Cl- -free solutions, the Ba++- induced depolarization increased, suggesting a small permeability to Cl- . Using voltage-sensitive dyes and a photodiode array for multiple site optical recording, the distribution of potential changes in response to square pulses of intracellularly injected current were recorded before and after the addition of increased and the decay of amplitude as a function of distance decreased. Such results indicate that Ba++ increases the membrane resistance more than the resistance of the intercellular junctions.
机译:我们已经研究了已知的K +通道阻滞剂Ba ++对Necturus视神经胶质细胞的电生理特性的影响。加入Ba ++可逆去极化的神经胶质细胞25-50 mV; Ba ++浓度约为0.3 mM,可得到一半的最大消色度。在存在Ba ++的情况下,膜对K +变化的敏感性降低,并且有证据表明K +和Ba ++之间竞争K +通道。这些效应伴随着神经胶质细胞输入电阻的大幅增加,表明Ba ++阻断了Necturus视神经神经胶质细胞中的K +电导。随着K +电导降低,我们能够研究其他膜电导的存在。我们发现,在存在Ba ++的情况下,HCO3-的添加会导致Na +依赖性超极化,该极化对二磺酸SITS(4-乙酰胺基4'-异硫氰基茂铁2,2'-二磺酸)敏感。 Na +的去除导致HCO3依赖性SITS敏感的去极化作用。这些结果与在神经胶质膜中存在的电致Na + / HCO 3-共转运体一致,其中Na +,HCO 3-和净负电荷沿相同方向运输。在无氯溶液中,Ba ++引起的去极化增加,表明对氯离子的渗透性较小。使用压敏染料和光电二极管阵列进行多点光学记录,在增加和增加之后记录响应于细胞内注入电流的方脉冲的电势变化分布,并减小振幅随距离的衰减。这样的结果表明,Ba ++比细胞间连接的电阻增加更多的膜电阻。

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