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蜂毒明肽增加中缝背核5-羟色胺能神经元放电及杏仁核细胞外5-羟色胺水平:一项对麻醉大鼠的同步活体研究。

Apamin increases 5-HT cell firing in raphe dorsalis and extracellular 5-HT levels in amygdala: a concomitant in vivo study in anesthetized rats.

作者信息

Crespi F

机构信息

Biology Department Neurosciences CEDD GlaxoSmithKline, Medicines Research Centre, Verona, Italy.

出版信息

Brain Res. 2009 Jul 24;1281:35-46. doi: 10.1016/j.brainres.2009.05.021. Epub 2009 May 14.

Abstract

The family of calcium-activated slow-potassium (SK) channels comprises 3 members, the SK1, SK2 and SK3 channels, all expressed in neurons, known to mediate the slow-afterhyperpolarization occurring after action potentials. In rats, the SK2 and SK3 channels are expressed in the ascending monoaminergic systems, in particular in the serotonin (5-HT) neurons of the raphe dorsalis nucleus (RDN). In mammals the amygdala, a limbic structure involved in the control of emotion and mood, receives 5-HT-containing projections originating in the RDN. The aim of the present study was to investigate the role of SK channels in mediating the release of 5-HT in the amygdala. Apamin, a polypeptiditic compound with SK2-SK3 channel selectivity, was used to block the channels. A dual probing methodology with Nafion coated carbon-fiber micro-electrode (Nafion-mCFE) was implemented to measure concomitantly the extracellular levels of 5-HT in the amygdala and the firing rate of 5-HT neurons in the RDN of anesthetized rats. Subcutaneous administration of apamin increased both the extracellular 5-HT levels in the amygdala and the firing rate of RDN neurons at doses as low as 12.5 microg. The recorded RDN neurons were of 5-HT phenotype, according to electrophysiologic signature and to the effects observed with peripheral administration of 8-hydroxy-2-(d-n-propyl-amino) tetralin (8-OH-DPAT) a 5-HT(1A) agonist known to selectively reduce the firing of 5-HT neurons in RDN. Increases of extracellular 5-HT levels in the amygdala were also seen when apamin was microinjected into the RDN, suggesting a role for 5-HT neurons of the RDN as target for subcutaneously administered apamin. The confirmation of the involvement of 5-HT neurons projecting from RDN to the amygdala in mediating the effects of apamin was obtained by micro-infusion of tetradotoxine into the bundle of 5-HT ascending fibers located in the region of the posterior amygdala. Attenuation of 5-HT release in the amygdala was observed in presence of increased firing of 5-HT neurons of the RDN. In conclusion, the dual CFE micro-sensor probing approach was used to show that apamin increases 5-HT release in the amygdala by increasing the firing rate of 5-HT neurons in RDN.

摘要

钙激活的慢钾(SK)通道家族由3个成员组成,即SK1、SK2和SK3通道,它们均在神经元中表达,已知可介导动作电位后出现的缓慢超极化后电位。在大鼠中,SK2和SK3通道在单胺能上行系统中表达,特别是在中缝背核(RDN)的5-羟色胺(5-HT)神经元中。在哺乳动物中,杏仁核是一个参与情绪和心境控制的边缘结构,它接受源自RDN的含5-HT的投射。本研究的目的是探讨SK通道在介导杏仁核中5-HT释放方面的作用。蜂毒明肽是一种对SK2 - SK3通道具有选择性的多肽化合物,被用于阻断这些通道。采用了一种用涂有Nafion的碳纤维微电极(Nafion - mCFE)的双重探测方法,来同时测量麻醉大鼠杏仁核中5-HT的细胞外水平以及RDN中5-HT神经元的放电频率。皮下注射蜂毒明肽,剂量低至12.5微克时,就会使杏仁核中的细胞外5-HT水平和RDN神经元的放电频率都增加。根据电生理特征以及用外周注射5-HT(1A)激动剂8 - 羟基 - 2 -(d - 正丙基 - 氨基)四氢萘(8 - OH - DPAT)所观察到的效应(已知该激动剂可选择性降低RDN中5-HT神经元的放电),记录到的RDN神经元具有5-HT表型。当将蜂毒明肽微量注射到RDN中时,也观察到杏仁核中细胞外5-HT水平升高,这表明RDN中的5-HT神经元是皮下注射蜂毒明肽的作用靶点。通过将河豚毒素微量注入位于杏仁核后部区域的5-HT上行纤维束中,证实了从RDN投射到杏仁核的5-HT神经元参与介导蜂毒明肽的作用。在RDN中5-HT神经元放电增加的情况下,观察到杏仁核中5-HT释放减弱。总之,采用双CFE微传感器探测方法表明,蜂毒明肽通过增加RDN中5-HT神经元的放电频率来增加杏仁核中5-HT的释放。

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