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星形胶质细胞对培养的小鼠海马神经元瞬时钾电流发育的调节作用。

Astroglial modulation of transient potassium current development in cultured mouse hippocampal neurons.

作者信息

Wu R L, Barish M E

机构信息

Division of Neurosciences, Beckman Research Institute of the City of Hope, Duarte, California 91010.

出版信息

J Neurosci. 1994 Mar;14(3 Pt 2):1677-87. doi: 10.1523/JNEUROSCI.14-03-01677.1994.

Abstract

Hippocampal neurons exhibit three voltage-gated potassium currents, two transient currents and a delayed rectifier, that influence numerous aspects of electrogenesis including action potential duration and accommodation to sustained depolarization. These currents, termed A-, D-, and K-currents, respectively, can be distinguished based on kinetics, steady state inactivation characteristics, and sensitivity to 4-aminopyridine (see Wu and Barish, 1992b). We have compared the voltage-gated potassium currents in voltage-clamped pyramidally shaped cultured hippocampal neurons growing on or touching glial fibrillary acidic protein-expressing astroglia (termed on-glia or touching-glia neurons, respectively) with those in similar neurons growing directly on a coated glass substrate (termed off-glia neurons). We observed differences in the wave forms of total potassium current that correlated with the extent of astroglial contact. After 5-7 d in culture, A-current amplitude in off-glial neurons was approximately 19% of that of neurons growing in the normal (for culture) on-glia configuration. D-current amplitude tended to be larger in these off-glia neurons. Neurons in contact with astroglia had greater membrane area than off-glia neurons. Comparison of current densities (current at a fixed voltage normalized to capacitance and expressed in units of pA/pF) indicated that A-currents were the major component of transient potassium current in on- and touching-glia neurons, while D-currents were more dominant in off-glia neurons. Astroglia influenced membrane currents by a surface- or extracellular matrix-associated mechanism, rather than by free diffusion of a soluble factor, as differences were observed between closely adjacent neurons on the same coverslip. Living glia were required, as potassium currents in neurons grown on dried or methanol-fixed glia resembled those of off-glia neurons. On-glia neurons in cultures treated with an RNA synthesis inhibitor [DRB (5,6-dichloro-1-beta-D-ribofuranosylbenzimidazole)] for 5-7 d had reduced whole-cell capacitance and A-current amplitude. This effect was localized to DRB actions on underlying astroglia, not on the neurons. Action potentials elicited by current injection varied with astroglial contact. In on-glia neurons with relatively larger A-currents a delay was seen in the onset of firing after depolarization. In contrast, action potentials in off-glia neurons rose smoothly after initiation of depolarization. We conclude that astrocytes modulate the appearance of transient potassium currents in hippocampal pyramidal neurons by inducing development of A-current.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

海马神经元表现出三种电压门控钾电流,即两种瞬时电流和一种延迟整流电流,这些电流影响电活动的多个方面,包括动作电位持续时间和对持续去极化的适应性。这些电流分别称为A电流、D电流和K电流,可以根据动力学、稳态失活特性以及对4-氨基吡啶的敏感性来区分(见Wu和Barish,1992b)。我们比较了生长在表达胶质纤维酸性蛋白的星形胶质细胞上或与之接触的(分别称为贴附胶质细胞或接触胶质细胞的)电压钳制的锥形培养海马神经元中的电压门控钾电流,与直接生长在包被玻璃基质上的类似神经元(称为脱胶质细胞神经元)中的电流。我们观察到总钾电流波形的差异与星形胶质细胞接触程度相关。培养5-7天后,脱胶质细胞神经元中的A电流幅度约为正常(培养状态)贴附胶质细胞构型中生长的神经元的19%。这些脱胶质细胞神经元中的D电流幅度往往更大。与星形胶质细胞接触的神经元比脱胶质细胞神经元具有更大的膜面积。电流密度(在固定电压下的电流,归一化到电容并以pA/pF为单位表示)的比较表明,A电流是贴附胶质细胞和接触胶质细胞神经元中瞬时钾电流的主要成分,而D电流在脱胶质细胞神经元中更占主导。星形胶质细胞通过与表面或细胞外基质相关的机制影响膜电流,而不是通过可溶性因子的自由扩散,因为在同一盖玻片上紧密相邻的神经元之间观察到了差异。需要活的胶质细胞,因为生长在干燥或甲醇固定的胶质细胞上的神经元中的钾电流类似于脱胶质细胞神经元的钾电流。用RNA合成抑制剂[DRB(5,6-二氯-1-β-D-呋喃核糖基苯并咪唑)]处理5-7天的培养物中的贴附胶质细胞神经元,其全细胞电容和A电流幅度降低。这种效应局限于DRB对下层星形胶质细胞的作用,而不是对神经元的作用。通过电流注入引发的动作电位随星形胶质细胞接触而变化。在具有相对较大A电流的贴附胶质细胞神经元中,去极化后放电开始出现延迟。相反,脱胶质细胞神经元中的动作电位在去极化开始后平滑上升。我们得出结论,星形胶质细胞通过诱导A电流的发育来调节海马锥体神经元中瞬时钾电流的表现。(摘要截断于400字)

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