Sontheimer H, Kettenmann H, Backus K H, Schachner M
Department of Neurobiology, University of Heidelberg, Federal Republic of Germany.
Glia. 1988;1(5):328-36. doi: 10.1002/glia.440010505.
Glial cells from different brain regions and species are depolarized by the neurotransmitter glutamate. The depolarization or, if voltage-clamped at the resting membrane potential, the inward current induced by glutamate could be due either to activation of receptor-coupled ion channels or electrogenic uptake of the transmitter. In the present study we applied the patch-clamp technique in the whole-cell recording mode to analyze glutamate-induced currents in cultured astrocytes from rat cerebral hemispheres. At the resting membrane potential, glutamate induced an inward current ranging from 40 to 300 pA. This current decreased in size with depolarization and reversed at about 0 mV. The resulting current-to-voltage curve was linear and depended strongly on the transmembrane Na+ but not on the Ca++ or Cl- gradient. In the presence of glutamate, current noise increased at potentials positive or negative from the reversal potential indicating that ionic channels are activated by glutamate. Both kainate and quisqualate mimicked the effect of glutamate. We conclude that glutamate opens a Na+/K+ channel in cultured astrocytes because of activation of a receptor which shares many properties with the neuronal kainate/quisqualate receptor.
来自不同脑区和物种的神经胶质细胞会被神经递质谷氨酸盐去极化。这种去极化,或者说如果在静息膜电位下进行电压钳制,由谷氨酸盐诱导的内向电流,可能是由于受体偶联离子通道的激活或递质的电生性摄取。在本研究中,我们应用膜片钳技术在全细胞记录模式下分析来自大鼠大脑半球的培养星形胶质细胞中谷氨酸盐诱导的电流。在静息膜电位下,谷氨酸盐诱导出40到300皮安的内向电流。该电流大小随去极化而减小,并在约0毫伏时反转。所得的电流-电压曲线是线性的,并且强烈依赖于跨膜钠离子梯度,而不依赖于钙离子或氯离子梯度。在存在谷氨酸盐的情况下,在反转电位正或负的电位下电流噪声增加,表明离子通道被谷氨酸盐激活。海人酸和quisqualate都模拟了谷氨酸盐的作用。我们得出结论,由于一种与神经元海人酸/quisqualate受体具有许多共同特性的受体的激活,谷氨酸盐在培养的星形胶质细胞中打开了一个钠/钾通道。