Amygdalar catecholaminergic input to septal nuclei, relation to clomipramine actions on lateral septal neurons in the rat.

C M Contreras, L Chacón, M L Marván, M A Guzmán-Sáenz
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Abstract

Antidepressants exert mixed actions on serotonergic and catecholaminergic systems. However, it is unknown whether a catecholaminergic blockade impinge on the actions of a tricyclic with serotonergic agonist properties (clomipramine) in limbic structures. The aim of the present study is to explore the effects of a catecholaminergic lesion in the basolateral amygdala on the firing rate of lateral septal, and hippocampal neurons in rats treated with clomipramine. An amygdaline lesion with 6-OHDA resembled the actions of clomipramine on the firing rate in lateral septal neurons, i.e. an increased rate of firing. However, the lesion blocked further effects of clomipramine on septal firing. Clomipramine decreased the firing rate in hippocampal neurons; however, neither the 6-OHDA lesion nor the added treatment with clomipramine modified the firing rate. It is concluded that an intact catecholaminergic amygdaloid input to lateral septal nuclei is necessary for clomipramine actions; however, the initial action of the tricyclic may involve a catecholaminergic blockade.

杏仁体儿茶酚胺能输入到间隔核,与氯咪嗪对外侧间隔神经元的作用有关。
抗抑郁药对血清素能和儿茶酚胺能系统起混合作用。然而,目前尚不清楚儿茶酚胺能阻断是否会影响具有5 -羟色胺能激动剂特性的三环(氯丙咪嗪)在大脑边缘结构中的作用。本研究的目的是探讨大鼠基底外侧杏仁核中儿茶酚胺能损伤对氯丙咪嗪治疗大鼠侧隔和海马神经元放电率的影响。具有6-OHDA的杏仁核损伤与氯咪嗪对侧隔神经元放电率的作用类似,即放电率增加。然而,损伤阻断了氯咪嗪对间隔放电的进一步作用。氯丙咪嗪降低海马神经元放电率;然而,6-OHDA病变和氯丙咪嗪治疗均未改变放电速率。结论:完整的儿茶酚胺能杏仁核输入到侧隔核是氯咪嗪作用所必需的;然而,三环的初始作用可能涉及儿茶酚胺能阻断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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