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丙泊酚对小鼠小脑皮质分子层体内感觉信息处理动态特性的影响。

Effects of Propofol on the Dynamic Properties of Sensory Information Processing in the Mouse Cerebellar Cortical Molecular Layer in vivo.

作者信息

Jin Wen-Zhe, Shi Jin-Di, Liu Heng, Lan Yan, Chu Chun-Ping, Qiu De-Lai

机构信息

Cellular Function Research Center, Yanbian University, Yanji, Jilin, China.

出版信息

Pharmacology. 2015;96(5-6):271-7. doi: 10.1159/000441006. Epub 2015 Oct 22.

Abstract

Propofol is a global central nervous system depressant that affects information processing in the central nervous system. However, the effects of propofol on sensory information processing in the cerebellar cortical molecular layer are unknown. In this study, we examined the effects of propofol on the dynamics of sensory stimulation-evoked responses in the cerebellar molecular layer in urethane-anesthetized mice, using electrophysiological and pharmacological methods. Our results showed that cerebellar surface perfusion of propofol (10-1,000 μmol/l) significantly decreased amplitude and area under the curve (AUC) of the sensory stimulation-evoked inhibitory component (P1) but increased the rise time and decay time of P1. In contrast, administration of propofol significantly enhanced the sensory stimulation-evoked excitatory component (N1), which exhibited increases in amplitude and AUC, as well as increases in rise time and decay time. By blocking the GABAA receptor activity, propofol failed to increase the amplitude and the AUC of the excitatory postsynaptic component (N2) of PCs. Our present results suggest that propofol modulates the dynamic properties of the sensory information processing in the cerebellar molecular layer through the modulation of GABAA receptors activity in the adult mouse.

摘要

丙泊酚是一种全身性中枢神经系统抑制剂,可影响中枢神经系统中的信息处理。然而,丙泊酚对小脑皮质分子层感觉信息处理的影响尚不清楚。在本研究中,我们使用电生理和药理学方法,研究了丙泊酚对乌拉坦麻醉小鼠小脑分子层感觉刺激诱发反应动力学的影响。我们的结果表明,小脑表面灌注丙泊酚(10 - 1000 μmol/l)显著降低了感觉刺激诱发抑制成分(P1)的幅度和曲线下面积(AUC),但增加了P1的上升时间和衰减时间。相比之下,丙泊酚给药显著增强了感觉刺激诱发的兴奋成分(N1),其幅度和AUC增加,上升时间和衰减时间也增加。通过阻断GABAA受体活性,丙泊酚未能增加浦肯野细胞(PCs)兴奋性突触后成分(N2)的幅度和AUC。我们目前的结果表明,在成年小鼠中,丙泊酚通过调节GABAA受体活性来调节小脑分子层感觉信息处理的动态特性。

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