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铜诱导大鼠焦虑状态调节的神经基础

The neuronal basis of copper induced modulation of anxiety state in rat.

作者信息

Abbaoui Abdellatif, E L Hiba Omar, Gamrani Halima

机构信息

Cadi Ayyad University, Faculty of Sciences Semlalia, Neurosciences, Pharmacology and Environment Unit, Marrakesh, Morocco.

Cadi Ayyad University, Faculty of Sciences Semlalia, Neurosciences, Pharmacology and Environment Unit, Marrakesh, Morocco; Chouaib Doukkali University, Faculty of Sciences, Department of Biology, Morocco.

出版信息

Acta Histochem. 2017 Jan;119(1):10-17. doi: 10.1016/j.acthis.2016.10.003. Epub 2016 Nov 15.

Abstract

Recently, studies have provided strong evidence indicating the involvement of trace elements in the physiopathology of psychiatric disorders, particularly anxiety. We aimed, through the present study, to describe the effect of acute exposure to Cu (10mg/kg BW) on anxiety state together with the serotoninergic and dopaminergic systems in rat by means of neurobehavioral tests (elevated plus maze, dark light box) and immunohistochemistry using anti-serotonin (5HT) and anti-tyrosine hydroxylase (TH). Our data report that Cu enhanced 5HT innervation in the dorsal raphe nucleus (DRN) together with a loss of TH expression within the ventral tegmental area (VTA), Substantia nigra compacta (SNc) and their subsequent outputs including the medial forebrain bundle (MFB) and striatum. In the elevated plus maze Cu significantly increased the time and the number of entries into the open arms, and raised the time spent in the Dark Box indicating a clear reduced anxiety state induced by Cu. The present data show for the first time a powerful neuro-modulatory potential of Cu in rat which involves primarily a dysfunction of 5HT and DA neurotransmissions.

摘要

最近,多项研究提供了有力证据,表明微量元素参与了精神疾病尤其是焦虑症的生理病理过程。我们旨在通过本研究,借助神经行为学测试(高架十字迷宫、明暗箱)以及使用抗血清素(5HT)和抗酪氨酸羟化酶(TH)的免疫组织化学方法,描述急性暴露于铜(10mg/kg体重)对大鼠焦虑状态以及血清素能和多巴胺能系统的影响。我们的数据表明,铜增强了中缝背核(DRN)中的5HT神经支配,同时腹侧被盖区(VTA)、黑质致密部(SNc)及其后续传出通路(包括内侧前脑束(MFB)和纹状体)中的TH表达减少。在高架十字迷宫实验中,铜显著增加了进入开放臂的时间和次数,并延长了在暗箱中停留的时间,表明铜诱导的焦虑状态明显减轻。目前的数据首次表明,铜在大鼠中具有强大的神经调节潜力,主要涉及5HT和DA神经传递功能障碍。

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