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计算视角下利鲁唑对大鼠 3-乙酰吡啶诱导的共济失调的神经保护作用。

Computational insights into the neuroprotective action of riluzole on 3-acetylpyridine-induced ataxia in rats.

机构信息

1. Department of Biomedical Engineering, School of Engineering, University of Isfahan, Isfahan, Iran.

出版信息

Cell J. 2013 Summer;15(2):98-107. Epub 2013 Jul 2.

Abstract

OBJECTIVE

Intra-peritoneal administration of riluzole has been shown to preserve the membrane properties and firing characteristics of Purkinje neurons in a rat model of cerebellar ataxia induced by 3-acetylpyridine (3-AP). However, the exact mechanism(s) by which riluzole restores the normal electrophysiological properties of Purkinje neurons is not completely understood. Changes in the conductance of several ion channels, including the BK channels, have been proposed as a neuro protective target of riluzole. In this study, the possible cellular effects of riluzole on Purkinje cells from 3-AP-induced ataxic rats that could be responsible for its neuro protective action have been investigated by computer simulations.

MATERIALS AND METHODS

This is a computational stimulation study. The simulation environment enabled a change in the properties of the specific ion channels as the possible mechanism of action of riluzole. This allowed us to study the resulted changes in the firing activity of Purkinje cells without concerns about its other effects and interfering parameters in the experiments. Simulations were performed in the NEURON environment (Version 7.1) in a time step of 25 μs; analyses were conducted using MATLAB r2010a (The Mathworks). Data were given as mean ± SEM. Statistical analyses were performed by the student's t test, and differences were considered significant if p< 0.05.

RESULTS

The computational findings demonstrated that modulation of an individual ion channel current, as suggested by previous experimental studies, should not be considered as the only possible target for the neuro protective effects of riluzole to restore the normal firing activity of Purkinje cells from ataxic rats.

CONCLUSION

Changes in the conductance of several potassium channels, including voltage- gated potassium (Kv1, Kv4) and big Ca(2+)-activated K(+) (BK) channels may be responsible for the neuro protective effect of riluzole against 3-AP induced alterations in the firing properties of Purkinje cells in a rat model of ataxia.

摘要

目的

已有研究表明,腹腔内给予利鲁唑可维持由 3-乙酰吡啶(3-AP)诱导的小脑共济失调大鼠模型中浦肯野神经元的膜特性和放电特性。然而,利鲁唑恢复浦肯野神经元正常电生理特性的确切机制尚不完全清楚。包括 BK 通道在内的几种离子通道的电导变化已被提议作为利鲁唑的神经保护靶标。在这项研究中,通过计算机模拟研究了利鲁唑对 3-AP 诱导的共济失调大鼠浦肯野细胞的可能细胞作用,这些作用可能与其神经保护作用有关。

材料和方法

这是一项计算刺激研究。模拟环境允许改变特定离子通道的特性,作为利鲁唑的可能作用机制。这使我们能够研究浦肯野细胞放电活动的变化,而不必担心实验中的其他影响和干扰参数。模拟在 NEURON 环境(版本 7.1)中进行,时间步长为 25μs;使用 MATLAB r2010a(The Mathworks)进行分析。数据表示为平均值±SEM。通过学生 t 检验进行统计学分析,如果 p<0.05,则认为差异具有统计学意义。

结果

计算结果表明,如先前的实验研究所示,调节单个离子通道电流不应被视为利鲁唑恢复正常放电活动的唯一可能靶点。

结论

包括电压门控钾(Kv1、Kv4)和大 Ca(2+)激活的 K(BK)通道在内的几种钾通道电导的变化可能是利鲁唑对 3-AP 诱导的大鼠共济失调模型中浦肯野细胞放电特性改变的神经保护作用的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc4f/3712782/ab05ae93a08a/Cell-J-15-98-g01.jpg

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