首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >Chronic Ethanol Consumption Impairs the Tactile-Evoked Long-Term Depression at Cerebellar Molecular Layer Interneuron-Purkinje Cell Synapses in vivo in Mice
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Chronic Ethanol Consumption Impairs the Tactile-Evoked Long-Term Depression at Cerebellar Molecular Layer Interneuron-Purkinje Cell Synapses in vivo in Mice

机译:慢性乙醇消耗损害小鼠体内小脑分子层间神经元-Purkinje细胞突触的触觉诱发的长期抑郁。

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摘要

The cerebellum is sensitive to ethanol (EtOH) consumption. Chronic EtOH consumption impairs motor learning by modulating the cerebellar circuitry synaptic transmission and long-term plasticity. Under in vitro conditions, acute EtOH inhibits both parallel fiber (PF) and climbing fiber (CF) long-term depression (LTD). However, thus far it has not been investigated how chronic EtOH consumption affects sensory stimulation-evoked LTD at the molecular layer interneurons (MLIs) to the Purkinje cell (PC) synapses (MLI-PC LTD) in the cerebellar cortex of living animals. In this study, we investigated the effect of chronic EtOH consumption on facial stimulation-evoked MLI-PC LTD, using an electrophysiological technique as well as pharmacological methods, in urethane-anesthetized mice. Our results showed that facial stimulation induced MLI–PC LTD in the control mice, but it could not be induced in mice with chronic EtOH consumption (0.8 g/kg; 28 days). Blocking the cannabinoid type 1 (CB1) receptor activity with AM-251, prevented MLI-PC LTD in the control mice, but revealed a nitric oxide (NO)-dependent long-term potentiation (LTP) of MLI–PC synaptic transmission (MLI-PC LTP) in the EtOH consumption mice. Notably, with the application of a NO donor, S-nitroso-N-Acetyl-D, L-penicillamine (SNAP) alone prevented the induction of MLI–PC LTD, but a mixture of SNAP and AM-251 revealed an MLI-PC LTP in control mice. In contrast, inhibiting NO synthase (NOS) revealed the facial stimulation-induced MLI-PC LTD in EtOH consumption mice. These results indicate that long-term EtOH consumption can impair the sensory stimulation-induced MLI–PC LTD via the activation of a NO signaling pathway in the cerebellar cortex in vivo in mice. Our results suggest that the chronic EtOH exposure causes a deficit in the cerebellar motor learning function and may be involved in the impaired MLI–PC GABAergic synaptic plasticity.
机译:小脑对乙醇(EtOH)消耗敏感。长期摄入EtOH会通过调节小脑电路的突触传递和长期可塑性来损害运动学习。在体外条件下,急性EtOH会抑制平行纤维(PF)和爬升纤维(CF)的长期抑郁症(LTD)。然而,到目前为止,尚未研究长期食用EtOH如何影响活体动物小脑皮层的Purkinje细胞(PC)突触的分子层中枢神经元(MLI)的感觉刺激诱发的LTD(MLI-PC LTD)。在这项研究中,我们调查了氨基甲酸乙酯麻醉小鼠中长期服用EtOH对面部刺激诱发的MLI-PC LTD的影响,采用电生理技术和药理学方法。我们的结果表明,面部刺激可在对照组小鼠中诱发MLI-PC LTD,但在长期摄入EtOH(0.8 g / kg; 28天)的小鼠中则无法诱发。用AM-251阻断1型大麻素(CB1)受体的活性,阻止了对照小鼠中的MLI-PC LTD,但揭示了MLI-PC突触传递(MLI)的一氧化氮(NO)依赖性长期增强(LTP) -PC LTP)。值得注意的是,在NO供体的应用下,S-亚硝基-N-乙酰基-D,L-青霉胺(SNAP)单独阻止了MLI-PC LTD的诱导,但是SNAP和AM-251的混合物显示出MLI-PC对照小鼠中的LTP。相反,抑制NO合酶(NOS)在EtOH消耗小鼠中揭示了面部刺激诱导的MLI-PC LTD。这些结果表明,长期摄入EtOH会通过激活小鼠小脑皮层中的NO信号传导途径而损害感觉刺激诱导的MLI-PC LTD。我们的结果表明,长期暴露于EtOH会导致小脑运动学习功能下降,并且可能与MLI-PC GABA能突触可塑性受损有关。

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