Glassmeier G, Jeserich G, Krüppel T
Abt. Zoophysiologie, Universität Osnabrück, Germany.
Glia. 1994 Jul;11(3):245-54. doi: 10.1002/glia.440110305.
Voltage-gated ionic currents were recorded from cultured trout astrocytes with the whole-cell variation of the patch-clamp technique. In a subpopulation of astrocytes depolarizations above -40 mV activated a fast transient inward current that was identified as a sodium current by ion substitution experiments, its current reversal potential, and its TTX-sensitivity. Regarding threshold of activation, peak current voltage, and amplitude this current closely resembled those previously described for mammalian astrocytes. Voltage-dependence of inactivation and kinetics, however, markedly differed from the "glial-like" sodium current occurring in mammalian hippocampal or optic nerve astrocytes, since the sodium current of trout astrocytes exhibited a faster time course of activation and decay and a more depolarized steady-state inactivation curve with midpoints close to -60 mV. During a period of 2 weeks in culture the biophysical properties of the sodium current did not change significantly, albeit a continuous decrease in current density was observed. At depolarizing voltage steps positive to -40 mV, additionally voltage-gated potassium outward currents were evoked, which could be separated into a steady-state current with delayed rectifier properties and an inactivating component resembling the A-type current. Moreover, in a subpopulation of astrocytes an inward potassium current was elicited at hyperpolarizing potentials, which exhibited biophysical features consistent with the potassium inward rectifier of mammalian astrocytes.
采用膜片钳技术的全细胞模式,记录培养的虹鳟鱼星形胶质细胞的电压门控离子电流。在星形胶质细胞亚群中,高于-40 mV的去极化激活了一种快速瞬时内向电流,通过离子替代实验、其电流反转电位及其对TTX的敏感性,该电流被确定为钠电流。关于激活阈值、峰值电流电压和幅度,该电流与先前描述的哺乳动物星形胶质细胞的电流非常相似。然而,失活的电压依赖性和动力学与哺乳动物海马或视神经星形胶质细胞中出现的“胶质样”钠电流明显不同,因为虹鳟鱼星形胶质细胞的钠电流表现出更快的激活和衰减时间进程以及更去极化的稳态失活曲线,中点接近-60 mV。在培养2周的时间里,钠电流的生物物理特性没有显著变化,尽管观察到电流密度持续下降。在高于-40 mV的去极化电压阶跃时,还会诱发电压门控钾外向电流,该电流可分为具有延迟整流特性的稳态电流和类似于A型电流的失活成分。此外,在星形胶质细胞亚群中,在超极化电位下会诱发内向钾电流,其生物物理特征与哺乳动物星形胶质细胞的钾内向整流器一致。