首页> 外文期刊>Journal of Neurophysiology >Calcium-activated cation nonselective current contributes to the fast afterdepolarization in rat prefrontal cortex neurons.
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Calcium-activated cation nonselective current contributes to the fast afterdepolarization in rat prefrontal cortex neurons.

机译:钙激活的阳离子非选择性电流有助于大鼠前额叶皮层神经元的快速去极化。

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Pyramidal cells of layer V in rat prefrontal cortex display a prominent fast afterdepolarization (fADP) following an action potential. This ADP is blocked by replacing extracellular calcium with magnesium, by the application of the calcium-channel blocker cadmium, and by buffering intracellular calcium at near physiological levels. Thus this fast ADP appears mediated by a calcium-activated current. A prominent ADP is also observed following a calcium spike recorded in the presence of tetrodotoxin. The current underlying this ADP was recorded using a hybrid current-voltage protocol. A strong ADP could be observed in the presence of potassium channel blockers as well as at ECl. Furthermore, the current underlying the ADP increased with hyperpolarization in the subthreshold range and displayed an extrapolated reversal potential near +30 mV. Reducing the ratio of extracellular to intracellular sodium inhibited the current underlying the ADP and caused a hyperpolarizing shift in its reversal potential. We conclude that these cells express a calcium-activated cation nonselective current whose activation contributes to the generation of the fADP. This current could play an important role in determining the firing properties of pyramidal cells in cortex.
机译:大鼠前额叶皮层中V层的金字塔形细胞在发生动作电位后显示出明显的快速去极化作用(fADP)。通过用镁替代细胞外钙,通过应用钙通道阻滞剂镉以及通过将细胞内钙缓冲在接近生理水平的方式来阻断这种ADP。因此,这种快速的ADP似乎是由钙激活电流介导的。在河豚毒素存在下记录到钙峰值之后,还观察到了显着的ADP。使用混合电流-电压协议记录了此ADP的电流。在钾通道阻滞剂存在的情况下以及在EC1处都可以观察到强的ADP。此外,在亚阈值范围内,ADP下方的电流随超极化而增加,并显示出+30 mV附近的外推反向电位。降低细胞外钠与细胞内钠的比例会抑制ADP的电流,并导致其逆转电位发生超极化转变。我们得出结论,这些细胞表达钙激活的阳离子非选择性电流,其激活有助于fADP的产生。该电流可能在确定皮质锥体细胞的发射特性中起重要作用。

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