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首页> 外文期刊>Neuropsychopharmacology >In the Amygdala Anxiolytic Action of mGlu5 Receptors Antagonist MPEP Involves Neuropeptide Y but not GABAA Signaling
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In the Amygdala Anxiolytic Action of mGlu5 Receptors Antagonist MPEP Involves Neuropeptide Y but not GABAA Signaling

机译:在杏仁核的mGlu5受体的抗焦虑作用中,拮抗剂MPEP涉及神经肽Y,但不涉及GABAA信号传导。

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摘要

Several lines of evidence indicate that inhibition of the metabotropic glutamate (mGlu) receptor 5 produces anxiolytic-like effects in rodents. Peptide neurotransmitter neuropeptide Y (NPY) produces an anxiolytic effect in rats after intraventricular or intra-amygdalar administration. Many classes of anxiolytic drugs exert their effect through the GABA–benzodiazepine (BZD) receptor complex. Therefore, in the present study we have investigated whether the anxiolytic action of MPEP (2-methyl-6-(phenylethynyl)pyridyne), an mGlu5 receptor antagonist, is mediated by a mechanism involving either the GABA–BZD receptor complex or NPY receptor. In the behavioral studies, the anxiolytic activity of MPEP (10 mg/kg, i.p.) was examined using plus-maze test. The BZD antagonist flumazenil (10 mg/kg, i.p.) was given to one group of rats and Y1 receptor antagonist BIBO 3304 (((R)-N-[[4-(aminocarbonylaminomethyl) phenyl] methyl]-N2-(diphenylacetyl)-argininamide trifluoroacetate)3304) (200 pmol/site, intra-amygdala) to the other. It was found that anxiolytic effects of MPEP were not changed by flumazenil, but were abolished by BIBO 3304. Immunohistochemical studies showed a high density of mGlu5 receptor immunoreactivity (IR) in the amygdala. The effect of MPEP on NPY expression in the amygdala was studied using immunohistochemistry (IH) and radioimmunoassay (RIA). Both methods showed a diminution of NPY IR expression, to about 43% (IH) or 81% (RIA) of the control level after multiple administrations, but we observed an increase up to 148% of the control after single MPEP administration. These effects may suggest a release of NPY from nerve terminals after MPEP administration. Our results indicate that the anxiolytic action of MPEP is conveyed through NPY neurons with the involvement of Y1 receptors in the amygdala and that BZD receptors do not significantly contribute to these effects.
机译:几条证据表明,对代谢型谷氨酸(mGlu)受体5的抑制会在啮齿动物中产生类似抗焦虑的作用。肽类神经递质神经肽Y(NPY)在心室内或扁桃体内给药后在大鼠中产生抗焦虑作用。许多类抗焦虑药通过GABA-苯并二氮杂(BZD)受体复合物发挥作用。因此,在本研究中,我们研究了mGlu5受体拮抗剂MPEP(2-甲基-6-(苯基乙炔基)吡啶)的抗焦虑作用是否由涉及GABA–BZD受体复合物或NPY受体的机制介导。在行为研究中,使用正迷宫测试检查了MPEP(10 mg / kg,i.p.)的抗焦虑活性。将BZD拮抗剂氟马西尼(10 mg / kg,ip)给予一组大鼠和Y1受体拮抗剂BIBO 3304(((R)-N-[[4-(氨基羰基氨基甲基)苯基]甲基] -N2-(二苯基乙酰基) -三氟精氨酸酰胺三氟乙酸酯3304)(200 pmol /位,杏仁核内)。已经发现,氟马西尼不会改变MPEP的抗焦虑作用,而BIBO 3304则可以消除它。免疫组织化学研究显示杏仁核中mGlu5受体免疫反应性(IR)的密度很高。使用免疫组织化学(IH)和放射免疫法(RIA)研究了MPEP对杏仁核中NPY表达的影响。两种方法均显示NPY IR表达减少,在多次给药后降低至对照水平的约43%(IH)或81%(RIA),但我们观察到在单次MPEP给药后可增加高达148%的对照。这些作用可能提示在MPEP给药后神经末梢会释放NPY。我们的结果表明,MPEP的抗焦虑作用通过杏仁核中Y1受体参与的NPY神经元传递,而BZD受体对这些作用没有显着贡献。

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