首页> 美国卫生研究院文献>Biomolecules >The Novel Direct Modulatory Effects of Perampanel an Antagonist of AMPA Receptors on Voltage-Gated Sodium and M-type Potassium Currents
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The Novel Direct Modulatory Effects of Perampanel an Antagonist of AMPA Receptors on Voltage-Gated Sodium and M-type Potassium Currents

机译:Perampanel(AMPA受体的拮抗剂)对电压门控钠和M型钾电流的新型直接调节作用

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摘要

Perampanel (PER) is a selective blocker of AMPA receptors showing efficacy in treating various epileptic disorders including brain tumor-related epilepsy and also potential in treating motor neuron disease. However, besides its inhibition of AMPA-induced currents, whether PER has any other direct ionic effects in different types of neurons remains largely unknown. We investigated the effects of PER and related compounds on ionic currents in different types of cells, including hippocampal mHippoE-14 neurons, motor neuron-like NSC-34 cells and U87 glioma cells. We found that PER differentially and effectively suppressed the amplitude of voltage-gated Na currents ( ) in mHippoE-14 cells. The IC values required to inhibit peak and late were 4.12 and 0.78 μM, respectively. PER attenuated tefluthrin-induced increases in both amplitude and deactivating time constant of . Importantly, PER also inhibited the amplitude of M-type K currents ( ) with an IC value of 0.92 μM. The suppression of was attenuated by the addition of flupirtine or ZnCl but not by L-quisqualic acid or sorafenib. Meanwhile, in cell-attached configuration, PER (3 μM) decreased the activity of M-type K channels with no change in single-channel conductance but shifting the activation curve along the voltage axis in a rightward direction. Supportively, PER suppressed in NSC-34 cells and in U87 glioma cells. The inhibitory effects of PER on both and , independent of its antagonistic effect on AMPA receptors, may be responsible for its wide-spectrum of effects observed in neurological clinical practice.
机译:Perampanel(PER)是AMPA受体的选择性阻滞剂,具有治疗多种癫痫病(包括脑肿瘤相关性癫痫)的功效,也具有治疗运动神经元疾病的潜力。但是,除了抑制AMPA诱导的电流外,PER在不同类型的神经元中是否还具有其他直接离子作用尚不清楚。我们研究了PER和相关化合物对不同类型细胞(包括海马mHippoE-14神经元,运动神经元样NSC-34细胞和U87胶质瘤细胞)中离子电流的影响。我们发现,PER可以有效地抑制mHippoE-14细胞中电压门控Na电流()的幅度。抑制峰值和延迟所需的IC值分别为4.12和0.78μM。 PER减弱了tefluthrin诱导的振幅和失活时间常数的增加。重要的是,PER还以IC值为0.92μM抑制了M型K电流()的幅度。通过加入氟吡汀或ZnCl减弱了对抑制作用,但未通过L-半胱氨酸或索拉非尼进行了抑制。同时,在电池连接配置中,PER(3μM)降低了M型K通道的活性,单通道电导率没有变化,但激活曲线沿电压轴向右移动。支持性地,PER在NSC-34细胞和U87神经胶质瘤细胞中被抑制。 PER对二者的抑制作用,与​​其对AMPA受体的拮抗作用无关,可能是其在神经病学临床实践中观察到的广谱作用的原因。

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