首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Effects of ethanol on sensory stimulus-evoked responses in the cerebellar molecular layer in vivo in mice
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Effects of ethanol on sensory stimulus-evoked responses in the cerebellar molecular layer in vivo in mice

机译:乙醇对小鼠小脑分子层感官刺激诱发反应的影响

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Overdose intake of ethanol can impair cerebellar cortical neurons to integrate and transfer external information, resulting in a dysfunction of cerebellar motor regulation or cerebellar ataxia. However, the mechanisms underlying ethanol-impaired transfer of sensory information from cerebellar cortical molecular layer neurons remain unclear. In the present study, we investigated the effects of ethanol on sensory stimulation-evoked responses in the cerebellar molecular layer of urethane-anesthetized mice, by electrophysiological and pharmacological methods. Our results demonstrated that air-puff stimulation (30 ms, 50-60 psi) of the ipsilateral whisker-pad evoked field potential responses in the molecular layer of the cerebellar cortex folium Cms II, which expressed a negative component (N1) followed by a gamma-aminobutyric acid receptor A (GABA_A)-mediated positive component (P1). Cerebellar surface perfusion of ethanol between 2 and 5 mM did not change the latency of the evoked responses and the amplitude of N1, but enhanced the amplitude and the area under the curve of P1. Interestingly, high concentrations (>20 mM) of ethanol induced a significantly decrease in the amplitude and area under the curve of P1. Furthermore, high concentration ethanol (300 mM) significantly decreased the rise in tau and tau decay value of P1, whereas low concentration ethanol (2-5 mM) significantly increased these values of P1. Inhibition of GABA_A receptor activity reversed P1 and also abolished the effects of ethanol on sensory stimulation-evoked responses. These results indicated that ethanol induced a bidirectional effect on the sensory stimulation-evoked GABAergic responses in the cerebellar cortical molecular layer, suggesting that acute alcohol intake impacted the sensory information processing of cerebellar cortex.
机译:过量摄入乙醇会损害小脑皮质神经元的整合和传递外部信息,从而导致小脑运动调节或小脑共济失调。然而,乙醇损害小脑皮层分子层神经元的感觉信息传递的机制尚不清楚。在本研究中,我们通过电生理学和药理学方法研究了乙醇对氨基甲酸乙酯麻醉小鼠小脑分子层中感觉刺激诱发反应的影响。我们的研究结果表明,对同侧晶须垫进行气团刺激(30 ms,50-60 psi)会在小脑皮层Cms II分子层中引起场电势响应,表达负组分(N1),然后表达负离子。 γ-氨基丁酸受体A(GABA_A)介导的阳性成分(P1)。 2至5 mM的小脑乙醇表面灌注不会改变诱发反应的潜伏时间和N1的振幅,但会增加P1曲线的振幅和面积。有趣的是,高浓度(> 20 mM)的乙醇会导致P1曲线下的振幅和面积显着下降。此外,高浓度乙醇(300 mM)显着降低了P1的tau和tau衰减值,而低浓度乙醇(2-5 mM)显着提高了P1的这些值。 GABA_A受体活性的抑制使P1逆转,也取消了乙醇对感觉刺激诱发的反应的影响。这些结果表明,乙醇对小脑皮质分子层中的感觉刺激诱发的GABA能反应产生双向影响,表明急性酒精摄入影响了小脑皮质的感觉信息处理。

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