首页> 美国卫生研究院文献>The Journal of Physiology >Calcium current activation kinetics in isolated pyramidal neurones of the Ca1 region of the mature guinea-pig hippocampus.
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Calcium current activation kinetics in isolated pyramidal neurones of the Ca1 region of the mature guinea-pig hippocampus.

机译:钙电流激活动力学在成熟的豚鼠海马的Ca1区的独立锥体神经元中。

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摘要

1. Neurones were isolated from the CA1 region of the guinea-pig hippocampus and subjected to the whole-cell mode of voltage clamping, to determine the kinetics of voltage-gated Ca2+ channel activation. 2. Isolated neurones had an abbreviated morphology, having lost most of the distal dendritic tree during the isolation procedure. The electrical compactness of the cells facilitates voltage clamp analysis. 3. Block of sodium and potassium currents revealed a persistent current activated on depolarization above -40 mV, which inactivated slowly when the intracellular medium contained EGTA. The current was blocked by Co2+ and Cd2+, augmented by increases in Ca2+ and could be carried by Ba2+, suggesting that the current is borne by Ca2+. 4. Steady-state activation of the Ca2+ current was found to be well described by the Boltzman equation raised to the second power. 5. The open channel's current-voltage (I-V) relationship rectified in the inward direction and was consistent with the constant-field equation. 6. The kinetics of Ca2+ current onset followed m2 kinetics throughout the range of its activation. Tail current kinetics were in accord with this model. A detailed Hodgkin-Huxley model was derived, defining the activation of this current. 7. The kinetics of the currents observed in this regionally and morphologically defined class of neurones were consistent with the existence of a single kinetic class of channels.
机译:1.从豚鼠海马CA1区分离神经元,并对其进行全细胞电压钳模式,以确定电压门控Ca2 +通道激活的动力学。 2.分离的神经元具有简化的形态,在分离过程中失去了大部分远端树突树。电池的电气紧凑性有助于电压钳分析。 3.钠电流和钾电流的阻滞显示了在-40 mV以上去极化时激活的持续电流,当细胞内介质包含EGTA时,该电流缓慢失活。电流被Co2 +和Cd2 +阻止,而Ca2 +的增加会增加电流,并且可能由Ba2 +携带,这表明电流由Ca2 +承担。 4.通过升至二次方的玻尔兹曼方程,可以很好地描述Ca2 +电流的稳态激活。 5.明渠的电流-电压(I-V)关系在向内方向上校正,并且与恒定场方程一致。 6.在整个活化过程中,Ca2 +电流发作的动力学遵循m2动力学。尾流动力学符合该模型。得出了详细的霍奇金-赫克斯利模型,定义了该电流的激活。 7.在这种区域和形态定义的神经元类别中观察到的电流动力学与单个动力学类别的通道的存在是一致的。

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