Tse F W, Fraser D D, Duffy S, MacVicar B A
Neuroscience Research Group, University of Calgary, Alberta, Canada.
J Neurosci. 1992 May;12(5):1781-8. doi: 10.1523/JNEUROSCI.12-05-01781.1992.
Hippocampal astrocytes were acutely isolated by papain treatment and mechanical trituration. Astrocytes were identified by their distinctive stellate morphology and immunocytochemical staining for glial fibrillary acidic protein. The electrophysiological properties of these cells were investigated using whole-cell voltage-clamp techniques. Three kinetically and pharmacologically distinct voltage-activated K+ currents were identified in most cells; they resembled the neuronal A-current, delayed rectifier, and inward rectifier. The activation threshold of the A-current was -40 mV with a time to peak that ranged from 10 msec at -20 mV to 6 msec at 100 mV. Steady-state inactivation was observed when the holding potential was positive to -100 mV. The current was half-inactivated at -60 mV and totally inactivated at -20 mV. The A-current was suppressed by 4-aminopyridine (4-AP). The delayed rectifier was activated by depolarizing pulses more positive than -40 mV and had a half time of activation that ranged from 18 msec at -20 mV to 10 msec at potentials more positive than 40 mV. This current did not inactivate during a 100 msec pulse and was suppressed by extracellular tetraethylammonium (TEA). An inwardly rectifying current was elicited by hyperpolarizing pulses more negative than -80 mV. This current was not blocked by extracellular TEA or 4-AP and was never observed in the presence of external Ba2+. Voltage-activated inward Na+ currents were never observed. Voltage-activated K+ channels may enhance the local K+ spatial buffering capabilities of the astrocyte syncytium when extracellular [K+] increases during neuronal activity.
通过木瓜蛋白酶处理和机械研磨急性分离海马星形胶质细胞。通过其独特的星状形态和胶质纤维酸性蛋白的免疫细胞化学染色来鉴定星形胶质细胞。使用全细胞电压钳技术研究这些细胞的电生理特性。在大多数细胞中鉴定出三种动力学和药理学上不同的电压激活钾电流;它们类似于神经元A电流、延迟整流器和内向整流器。A电流的激活阈值为-40 mV,峰值时间范围从-20 mV时的10毫秒到100 mV时的6毫秒。当钳制电位正向超过-100 mV时观察到稳态失活。电流在-60 mV时半失活,在-20 mV时完全失活。A电流被4-氨基吡啶(4-AP)抑制。延迟整流器由超过-40 mV的去极化脉冲激活,其激活半衰期范围从-20 mV时的18毫秒到超过40 mV电位时的10毫秒。该电流在100毫秒脉冲期间不失活,并被细胞外四乙铵(TEA)抑制。内向整流电流由超过-80 mV的超极化脉冲引发。该电流不被细胞外TEA或4-AP阻断,并且在存在外部Ba2+时从未观察到。从未观察到电压激活的内向钠电流。当神经元活动期间细胞外[K+]增加时,电压激活的钾通道可能增强星形胶质细胞合体的局部K+空间缓冲能力。