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长期服用抗抑郁药米那普明对大鼠海马中5-羟色胺能和去甲肾上腺素能神经传递的影响。

Effect of long-term administration of the antidepressant drug milnacipran on serotonergic and noradrenergic neurotransmission in the rat hippocampus.

作者信息

Weiss Michel, Blier Pierre, de Montigny Claude

机构信息

Neurobiological Psychiatry Unit, Mc Gill University, 1033 Pine Avenue West, Montreal, Quebec, Canada H3A 1A1.

出版信息

Life Sci. 2007 Jun 20;81(2):166-76. doi: 10.1016/j.lfs.2007.04.039. Epub 2007 May 17.

Abstract

The effect of a long-term administration of the antidepressant milnacipran on the function of the serotonergic (5-HT) and noradrenergic (NE) systems was studied using single cell recording of CA3 hippocampal pyramidal cells in chloral hydrate-anesthetized male Sprague-Dawley rats, and in vitro [3H]5-HT release measurement from hippocampal slices. The sensitivity of neither the extrasynaptic nor that of the postsynaptic 5-HT1A receptors of the pyramidal neurons was altered, as indicated by their unchanged responsiveness to the microiontophoretic application of 5-HT, and by the unchanged effect of the electrical stimulation at low frequency of the ascending 5-HT bundle, respectively. Increasing the frequency of stimulation (from 1 to 5 Hz) decreased its efficacy in control rats; the milnacipran treatment abolished this phenomenon. This cannot be attributed to a desensitisation of the terminal 5-HT1B autoreceptor, since the suppressive effect of 5-HT agonist 5-carboxyamidotryptamine on [3H]5-HT release was enhanced in milnacipran-treated rats. As for the NE system, the unchanged suppressing effect of microiontophoretic applications of NE and that of the 5 Hz stimulation in the locus coeruleus (LC) on the firing activity of pyramidal neurons indicates that the milnacipran treatment not altered the sensitivity of extrasynaptic alpha2- and postsynaptic alpha1-adrenergic receptors on pyramidal cells, as well as that of the presynaptic alpha2-autoreceptor on NE terminals. The decreased inhibitory effect of NE on the [3H]5-HT release in milnacipran-treated rats revealed that this treatment results in a desensitisation of the presynaptic alpha2-heteroreceptor located on serotonergic terminals. Taken together with the decreased suppressive effect of a low frequency of stimulation of the NE tract, the present results suggest that long-term milnacipran treatment enhances the efficacy of the 5-HT and reduces that of the NE neurotransmission.

摘要

使用水合氯醛麻醉的雄性Sprague-Dawley大鼠海马CA3区锥体细胞的单细胞记录以及海马脑片的体外[3H]5-羟色胺(5-HT)释放测量,研究了长期给予抗抑郁药米那普明对5-羟色胺能(5-HT)和去甲肾上腺素能(NE)系统功能的影响。锥体细胞的突触外和突触后5-HT1A受体的敏感性均未改变,这分别通过它们对5-HT微离子电泳应用的反应性未改变以及低频刺激上升5-HT束的电刺激效果未改变得以表明。增加刺激频率(从1赫兹增加到5赫兹)会降低其在对照大鼠中的效力;米那普明治疗消除了这种现象。这不能归因于终末5-HT1B自身受体的脱敏,因为在米那普明治疗的大鼠中,5-HT激动剂5-羧酰胺色胺对[3H]5-HT释放的抑制作用增强。至于NE系统,NE微离子电泳应用以及蓝斑(LC)中5赫兹刺激对锥体细胞放电活动的抑制作用未改变,这表明米那普明治疗未改变锥体细胞上突触外α2-和突触后α1-肾上腺素能受体以及NE终末上突触前α2-自身受体的敏感性。米那普明治疗的大鼠中NE对[3H]5-HT释放的抑制作用降低表明,这种治疗导致位于5-羟色胺能终末的突触前α2-异受体脱敏。结合NE束低频刺激抑制作用的降低,目前的结果表明长期米那普明治疗增强了5-HT的效力并降低了NE神经传递的效力。

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