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花生四烯酸在海马锥体神经元和抑制性中间神经元的脑电图癫痫发作期间抑制瞬时钾电流并延长动作电位。

Arachidonic acid inhibits transient potassium currents and broadens action potentials during electrographic seizures in hippocampal pyramidal and inhibitory interneurons.

作者信息

Keros S, McBain C J

机构信息

Laboratory of Cellular and Molecular Neurophysiology, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892-4495, USA.

出版信息

J Neurosci. 1997 May 15;17(10):3476-87. doi: 10.1523/JNEUROSCI.17-10-03476.1997.

Abstract

The transient outward potassium current was studied in outside-out macropatches excised from the soma of CA1 pyramidal neurons and stratum (st.) oriens-alveus inhibitory interneurons in rat hippocampal slices. Arachidonic acid dose dependently decreased the charge transfer associated with the transient current, concomitant with an increase in the rate of current inactivation. Arachidonic acid (AA) did not affect the voltage dependence of steady state inactivation but did prolong the period required for complete recovery from inactivation. The effects of AA were mimicked by the nonmetabolizable analog of AA, 5,8,11,14-eicosatetraynoic acid, suggesting that metabolic products of AA were not responsible for the observed blocking action. In addition, AA blocked st. oriens-alveus-lacunosum-moleculare interneuron transient currents but not currents recorded from basket cell interneurons. In current clamp experiments, AA was without effect on the action potential waveform of CA1 pyramidal neurons under control recording conditions. In voltage-clamp experiments, the use of a test pulse paradigm, designed to mimic the action potential voltage trajectory, revealed that the transient current normally associated with a single spike deactivates too rapidly for AA to have an effect. Transient currents activated by longer duration "action potential" waveforms, however, were attenuated by AA. Consistent with this finding was the observation that AA broadened interictal spikes recorded in the elevated [K+]o model of epilepsy. These data suggest that AA liberated from hippocampal neurons may act to block the transient current selectively in both CA1 pyramidal neurons and inhibitory interneurons and to broaden action potentials selectively under pathological conditions.

摘要

在从大鼠海马切片中CA1锥体神经元的胞体以及层(st.) Oriens - alveus抑制性中间神经元切除的外向型大膜片中研究了瞬时外向钾电流。花生四烯酸剂量依赖性地降低了与瞬时电流相关的电荷转移,同时电流失活速率增加。花生四烯酸(AA)不影响稳态失活的电压依赖性,但确实延长了从失活完全恢复所需的时间。AA的作用被其不可代谢的类似物5,8,11,14 - 二十碳四烯酸模拟,表明AA的代谢产物不是观察到的阻断作用的原因。此外,AA阻断了st. oriens - alveus - lacunosum - moleculare中间神经元的瞬时电流,但不影响从篮状细胞中间神经元记录的电流。在电流钳实验中,在对照记录条件下,AA对CA1锥体神经元的动作电位波形没有影响。在电压钳实验中,使用旨在模拟动作电位电压轨迹的测试脉冲范式表明,通常与单个尖峰相关的瞬时电流失活太快,以至于AA无法产生作用。然而,由持续时间更长的“动作电位”波形激活的瞬时电流被AA衰减。与此发现一致的是观察到AA拓宽了癫痫的高[K + ]o模型中记录的发作间期尖峰。这些数据表明,从海马神经元释放的AA可能在病理条件下选择性地阻断CA1锥体神经元和抑制性中间神经元中的瞬时电流,并选择性地拓宽动作电位。

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Arachidonic acid augments potassium currents in rat neocortical neurones.
Neuroreport. 1993 Apr;4(4):359-62. doi: 10.1097/00001756-199304000-00004.

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