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氟西汀通过抑制P/Q型钙离子通道,抑制大鼠大脑皮质神经末梢(突触体)中的谷氨酸外排。

Fluoxetine depresses glutamate exocytosis in the rat cerebrocortical nerve terminals (synaptosomes) via inhibition of P/Q-type Ca2+ channels.

作者信息

Wang Su-Jane, Su Chin-Feng, Kuo Yu-Heng

机构信息

School of Medicine, Fu Jen Catholic University, Hsin-Chuang, Taipei Hsien, Taiwan 24205.

出版信息

Synapse. 2003 Jun 15;48(4):170-7. doi: 10.1002/syn.10200.

Abstract

Fluoxetine, an antidepressant that is used clinically in the treatment of mood disorders, is a selective serotonin reuptake inhibitor. In the present study we investigated the effects of fluoxetine on 4-aminopyridine (4AP)-evoked glutamate release in cerebrocortical nerve terminals (synaptosomes). Fluoxetine suppressed the release of glutamate evoked by 4AP in a concentration-dependent manner. This effect was associated with a reduction in the depolarization-evoked increase in cytosolic free calcium levels in the absence of significant effect on the synaptosomal membrane potential. In addition, both ionomycin- and sucrose-evoked glutamate releases were not affected by fluoxetine, indicating that fluoxetine-mediated inhibition of glutamate release is not a direct effect on the exocytotic machinery. Furthermore, the inhibitory action of fluoxetine was completely abolished in synaptosomes pretreated with P/Q type Ca(2+) channel blocker omega-agatoxin IVA (omega-AgTX IVA) or protein kinase C (PKC) stimulator 4beta-phorbol 12, 13-dibutyrate (PDBu). These results suggest that, in cerebrocortical nerve terminals, fluoxetine inhibits glutamate release through the suppression of P/Q type Ca(2+) channel activity. The presynaptic action of fluoxetine is mediated by a PKC-sensitive signaling pathway. Synapse 48:170-177, 2003.

摘要

氟西汀是一种临床上用于治疗情绪障碍的抗抑郁药,属于选择性5-羟色胺再摄取抑制剂。在本研究中,我们研究了氟西汀对脑皮质神经末梢(突触体)中4-氨基吡啶(4AP)诱发的谷氨酸释放的影响。氟西汀以浓度依赖的方式抑制4AP诱发的谷氨酸释放。这种作用与在对突触体膜电位无显著影响的情况下,去极化诱发的胞质游离钙水平升高的降低有关。此外,离子霉素和蔗糖诱发的谷氨酸释放均不受氟西汀影响,表明氟西汀介导的谷氨酸释放抑制并非对胞吐机制的直接作用。此外,在用P/Q型钙(2+)通道阻滞剂ω-芋螺毒素IVA(ω-AgTX IVA)或蛋白激酶C(PKC)刺激剂4β-佛波醇1,2-二丁酸酯(PDBu)预处理的突触体中,氟西汀的抑制作用完全被消除。这些结果表明,在脑皮质神经末梢中,氟西汀通过抑制P/Q型钙(2+)通道活性来抑制谷氨酸释放。氟西汀的突触前作用由PKC敏感信号通路介导。突触48:170 - 177,2003年。

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