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多奈哌齐给药对大鼠视觉皮层视觉诱发电位长期增强及胆碱能受体过表达的剂量依赖性效应。

Dose-dependent effect of donepezil administration on long-term enhancement of visually evoked potentials and cholinergic receptor overexpression in rat visual cortex.

作者信息

Chamoun Mira, Groleau Marianne, Bhat Menakshi, Vaucher Elvire

机构信息

Laboratoire de Neurobiologie de la Cognition Visuelle, École d'optométrie, Université de Montréal, Montréal, Québec, Canada.

Laboratoire de Neurobiologie de la Cognition Visuelle, École d'optométrie, Université de Montréal, Montréal, Québec, Canada.

出版信息

J Physiol Paris. 2016 Sep;110(1-2):65-74. doi: 10.1016/j.jphysparis.2016.11.010. Epub 2016 Nov 29.

DOI:10.1016/j.jphysparis.2016.11.010
PMID:27913166
Abstract

Stimulation of the cholinergic system tightly coupled with periods of visual stimulation boosts the processing of specific visual stimuli via muscarinic and nicotinic receptors in terms of intensity, priority and long-term effect. However, it is not known whether more diffuse pharmacological stimulation with donepezil, a cholinesterase inhibitor, is an efficient tool for enhancing visual processing and perception. The goal of the present study was to potentiate cholinergic transmission with donepezil treatment (0.5 and 1mg/kg) during a 2-week visual training to examine the effect on visually evoked potentials and to profile the expression of cholinergic receptor subtypes. The visual training was performed daily, 10min a day, for 2weeks. One week after the last training session, visual evoked potentials were recorded, or the mRNA expression level of muscarinic (M1-5) and nicotinic (α/β) receptors subunits was determined by quantitative RT-PCR. The visual stimulation coupled with any of the two doses of donepezil produced significant amplitude enhancement of cortical evoked potentials compared to pre-training values. The enhancement induced by the 1mg/kg dose of donepezil was spread to neighboring spatial frequencies, suggesting a better sensitivity near the visual detection threshold. The M3, M4, M5 and α7 receptors mRNA were upregulated in the visual cortex for the higher dose of donepezil but not the lower one, and the receptors expression was stable in the somatosensory (non-visual control) cortex. Therefore, higher levels of acetylcholine within the cortex sustain the increased intensity of the cortical response and trigger the upregulation of cholinergic receptors.

摘要

与视觉刺激周期紧密耦合的胆碱能系统刺激,通过毒蕈碱型和烟碱型受体,在强度、优先级和长期效应方面增强特定视觉刺激的处理。然而,尚不清楚用胆碱酯酶抑制剂多奈哌齐进行更广泛的药理学刺激是否是增强视觉处理和感知的有效工具。本研究的目的是在为期2周的视觉训练期间,用多奈哌齐治疗(0.5和1mg/kg)增强胆碱能传递,以检查对视觉诱发电位的影响,并分析胆碱能受体亚型的表达情况。视觉训练每天进行,每天10分钟,持续2周。在最后一次训练 session 后一周,记录视觉诱发电位,或通过定量RT-PCR测定毒蕈碱型(M1-5)和烟碱型(α/β)受体亚基的mRNA表达水平。与训练前值相比,两种剂量的多奈哌齐与视觉刺激相结合均产生了皮质诱发电位的显著幅度增强。1mg/kg剂量的多奈哌齐诱导的增强扩展到相邻的空间频率表明在视觉检测阈值附近具有更好的敏感性。对于较高剂量的多奈哌齐,视觉皮层中M3、M4、M5和α7受体的mRNA上调,而较低剂量则未上调,并且受体表达在体感(非视觉对照)皮层中稳定。因此,皮质内较高水平的乙酰胆碱维持皮质反应强度的增加并触发胆碱能受体的上调。

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