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首页> 外文期刊>Molecular pharmacology. >Inverse agonist and neutral antagonist actions of antidepressants at recombinant and native 5-hydroxytryptamine2C receptors: differential modulation of cell surface expression and signal transduction.
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Inverse agonist and neutral antagonist actions of antidepressants at recombinant and native 5-hydroxytryptamine2C receptors: differential modulation of cell surface expression and signal transduction.

机译:抗抑郁药对重组和天然5-羟色胺2C受体的反向激动剂和中性拮抗剂作用:细胞表面表达和信号转导的差异调节。

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Despite the importance of 5-hydroxytryptamine (5-HT)(2C) (serotonin) receptors in the control of depressive states, actions of antidepressants at these receptors remain poorly characterized. This issue was addressed both in human embryonic kidney (HEK)-293 cells coexpressing unedited human 5-HT(2CINI) receptors and Galpha(q) protein and in cultured mouse cortical neurons. Indicative of constitutive activity, the inverse agonist SB206,553 decreased basal inositol phosphate (IP) production in HEK-293 cells. The tetracyclic antidepressants mirtazapine and mianserin likewise suppressed basal IP formation. Conversely, the tricyclics amitriptyline and clomipramine, the m-chlorophenylpiperazine derivatives trazodone and nefazodone, and the 5-HT reuptake inhibitors fluoxetine and citalopram were inactive alone, although they blocked 5-HT-induced IP production. Inverse agonist actions of 5-methyl-1-(3-pyridylcarbamoyl)-1,2,3,5-tetrahydropyrrolo[2,3-f]indole (SB206,553) and mirtazapine were abolished by the neutral antagonist 6-chloro-5-methyl-1-[6-(2-methylpyridin-3-yloxy)pyridin-3-ylcarbamoyl]indoline (SB242,084), which was inactive alone. As assessed by confocal microscopy and enzyme-linked immunosorbent assay, prolonged treatment of HEK-293 cells with SB206,553, mirtazapine, or mianserin, but not the other antidepressants, enhanced cell surface expression of 5-HT(2C) receptors: 5-HT-induced IP production was also increased, and both these actions were blocked by SB242,084. Cortical neurons were shown by reverse transcription-polymerase chain reaction to predominantly express constitutively active 5-HT(2C) receptor isoforms. Prolonged pretreatment with SB206,553 or mirtazapine triggered an otherwise absent 5-HT-induced elevation in cytosolic Ca(2+) concentrations. SB242,084, which was inactive alone, abolished these effects of SB206,553 and mirtazapine. In conclusion, the tetracyclic antidepressants mirtazapine and mianserin, but not other clinically established antidepressants, suppress constitutive activityat recombinant and native 5-HT(2C) receptors. The clinical significance of inverse agonist versus neutral antagonist properties both during and after drug administration will be of interest to elucidate.
机译:尽管5-羟基色胺(5-HT)(2C)(5-羟色胺)受体在控制抑郁状态中很重要,但抗抑郁药对这些受体的作用仍很差。共表达未经编辑的人5-HT(2CINI)受体和Galpha(q)蛋白的人胚胎肾(HEK)-293细胞和培养的小鼠皮质神经元中都解决了此问题。指示组成活性,反向激动剂SB206,553降低了HEK-293细胞中基础肌醇磷酸(IP)的产生。四环抗抑郁药米氮平和米安色林同样抑制基础IP的形成。相反,三环阿米替林和氯米帕明,间氯苯基哌嗪衍生物曲唑酮和奈法唑酮以及5-HT再摄取抑制剂氟西汀和西酞普兰虽然没有活性,但它们阻止了5-HT诱导的IP产生。 5-甲基-1-(3-吡啶基氨基甲酰基)-1,2,3,5-四氢吡咯并[2,3-f]吲哚(SB206,553)和米氮平的拮抗作用被中性拮抗剂6-氯-环糊精消除5-甲基-1- [6-(2-(2-甲基吡啶-3-基氧基)吡啶-3-基氨基甲酰基]二氢吲哚啉(SB242,084),它单独不起作用。通过共聚焦显微镜和酶联免疫吸附试验评估,用SB206,553,米氮平或米安色林(而非其他抗抑郁药)延长了HEK-293细胞的治疗时间,增强了5-HT(2C)受体的细胞表面表达:5- HT诱导的IP产量也增加了,这两个动作均被SB242,084阻止。皮质神经元通过逆转录-聚合酶链反应显示主要表达组成型活性5-HT(2C)受体亚型。 SB206,553或米氮平的长时间预处理触发了否则不存在的5-HT诱导的胞质Ca(2+)浓度升高。 SB242,084单独无效,因此废除了SB206,553和米氮平的这些作用。总之,四环类抗抑郁药米氮平和米安色林可抑制重组和天然5-HT(2C)受体的组成型活性,但不能抑制其他临床确定的抗抑郁药。阐明在药物施用期间和之后反向激动剂与中性拮抗剂性质的临床意义将是令人关注的。

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