Sutor B, Hablitz J J
Department of Physiology, University of Munich, FRG.
Neurosci Lett. 1993 Jul 9;157(1):62-6. doi: 10.1016/0304-3940(93)90643-y.
The effect of low concentrations of barium on the membrane properties of rat neocortical neurons was studied in vitro. Potassium currents were examined using single-electrode current- and voltage-clamp techniques. Neurons responded to bath application of barium (10-100 microM) with a membrane depolarization associated with an increase in input resistance. Under voltage clamp conditions, an inward shift in holding current was observed. The effects of barium were rapidly reversible upon washing and persisted in the presence of TTX. The equilibrium potential for the barium-induced inward current was near -110 mV, suggesting that barium inhibited a tonically active potassium conductance. Measurements of current-voltage relationships indicated an inward rectification of this conductance between -50 and -130 mV. These results provide strong evidence that barium blocks a persistent potassium 'leak' current in neocortical neurons that contributes to the resting potential of these cells.
在体外研究了低浓度钡对大鼠新皮质神经元膜特性的影响。使用单电极电流钳和电压钳技术检测钾电流。当向浴槽中加入钡(10 - 100微摩尔)时,神经元会出现膜去极化,并伴有输入电阻增加。在电压钳条件下,观察到钳制电流向内偏移。钡的作用在冲洗后迅速可逆,且在存在河豚毒素(TTX)的情况下依然存在。钡诱导的内向电流的平衡电位接近 -110毫伏,这表明钡抑制了一种持续激活的钾电导。电流 - 电压关系的测量表明,这种电导在 -50至 -130毫伏之间存在内向整流。这些结果提供了有力证据,证明钡阻断了新皮质神经元中一种持续的钾“漏”电流,该电流有助于这些细胞的静息电位。