首页> 美国卫生研究院文献>The Journal of Physiology >Role of the Hyperpolarization-Activated Cation Current (Ih) in Pacemaker Activity in Area Postrema Neurons of Rat Brain Slices
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Role of the Hyperpolarization-Activated Cation Current (Ih) in Pacemaker Activity in Area Postrema Neurons of Rat Brain Slices

机译:超极化激活的阳离子电流(Ih)在大鼠脑片区域视网膜后神经元中起搏器活动中的作用。

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摘要

To clarify the functional properties of the hyperpolarization-activated cation current (Ih) as a pacemaker current in area postrema neurons, whole-cell recordings were made in visually identified cells in rat brain slices. The activation of Ih was identified in approximately 62 % of area postrema neurons tested. The cells displaying Ih showed a depolarizing ‘sag’ in responses to hyperpolarizing current injection in current-clamp mode. The reversal potential for the Ih was −36 mV, and this was shown to depend on the external concentration of Na+ and K+ ions. Extracellular Cs+ ions (2 mM) and ZD7288 (100 μm), a potent selective Ih channel antagonist, blocked Ih and induced a membrane potential hyperpolarization, suggesting the sustained activation of Ih near the resting potential and a contribution from Ih to membrane potential maintenance at more depolarized levels. In contrast, extracellular Ba2+ ions caused a depolarization of the membrane potential, suggesting the blockade of inward rectifier K+ currents. ZD7288 decreased the spontaneous discharge rate by prolonging the slow depolarization between two spikes, with minimal effect on the amplitude of the afterhyperpolarization or action potential waveforms. Ih stabilized the latency of rebound action potentials. Ih was weakly activated by external 8-bromoadenosine 3′,5′ cyclic monophosphate (1 mM) or forskolin (50-100 μm), indicating that the Ih channel subtypes in area postrema cells could be modulated by intracellular cAMP. Our findings indicate that Ih contributes to the subthreshold membrane and firing properties of rat area postrema neurons and may regulate their resting membrane potential and firing patterns.
机译:为了阐明超极化激活的阳离子电流(Ih)在区域后神经元中作为起搏器电流的功能特性,在大鼠脑切片的视觉识别细胞中进行了全细胞记录。在大约62%的区域后神经元中检测到Ih的激活。显示Ih的电池在电流钳模式下对超极化电流注入显示出去极化的“凹陷”。 Ih的反转电位为-36 mV,这取决于Na + 和K + 离子的外部浓度。细胞外Cs + 离子(2 mM)和强效的选择性Ih通道拮抗剂ZD7288(100μm)阻断Ih并诱导膜电位超极化,表明Ih在静息电位附近持续活化,并且Ih对更多去极化水平的膜电位维持的贡献。相反,细胞外Ba 2 + 离子引起膜电位去极化,表明对内向整流器K + 电流的阻断。 ZD7288通过延长两个尖峰之间的缓慢去极化来降低自发放电速率,而对后超极化或动作电位波形的幅度影响最小。我稳定了反弹动作电位的潜伏期。 Ih被外部8-溴腺苷3',5'环状单磷酸酯(1 mM)或毛喉素(50-100μm)弱激活,表明区域内rerema细胞中的Ih通道亚型可以被细胞内cAMP调节。我们的发现表明,Ih有助于大鼠区域视网膜后神经元的亚阈膜和放电特性,并可能调节其静息膜电位和放电模式。

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