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首页> 外文期刊>Frontiers in Cellular Neuroscience >Activation of Group II Metabotropic Glutamate Receptors Suppresses Excitability of Mouse Main Olfactory Bulb External Tufted and Mitral Cells
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Activation of Group II Metabotropic Glutamate Receptors Suppresses Excitability of Mouse Main Olfactory Bulb External Tufted and Mitral Cells

机译:II组代谢谷氨酸受体的激活抑制了小鼠主要嗅鳞片外簇生和二尖瓣细胞的兴奋性

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Metabotropic glutamate receptors (mGluRs) are abundantly expressed in the rodent main olfactory bulb. The function of Group I mGluRs has been investigated in a number of studies, while the actions of Group II mGluRs, which include the mGluR2 and mGluR3 subtypes, have been less well explored. Here, we used electrophysiological approaches in mouse olfactory bulb slices to investigate how Group II mGluR activation and inactivation modifies the activity of external tufted (ET) and mitral cells. The Group II mGluR agonist DCG-IV was found to directly and uniformly reduce the spontaneous discharge of ET and mitral cells. The inhibitory effect of DCG-IV was absent in mitral cells with truncated apical dendrites, indicating a glomerular site of action. DCG-IV did not influence olfactory nerve-evoked monosynaptic responses in ET or mitral cells, indicating that Group II mGluRs do not presynaptically modulate glutamate release from olfactory nerve terminals. In contrast, DCG-IV suppressed polysynaptic responses in periglomerular cells evoked by olfactory nerve stimulation. DCG-IV also inhibited glutamate release from ET cells, and suppressed the spontaneous and olfactory nerve-evoked long-lasting depolarization in mitral cells. Applied alone, Group II receptor antagonists were without effect, suggesting that basal activation of these receptors is nil. These findings suggest that Group II mGluRs inhibit ET and mitral cell activity and further dampen intraglomerular excitatory circuits by suppressing glutamate release.
机译:代谢谷氨酸受体(MGLURURS)在啮齿动物主嗅灯泡中大量表达。我在许多研究中研究了群体的功能,而II组MGLURS的作用,包括MGLUR2和MGLUR3亚型,探讨了。在这里,我们在小鼠嗅灯泡切片中使用了电生理方法,研究II族MGLUR活化和灭活如何改变外部簇生(ET)和二尖瓣细胞的活性。 II族MGLUR激动剂DCG-IV直接并均匀地降低ET和二尖瓣细胞的自发放电。 DCG-IV的抑制作用在具有截短的顶端树突的二尖瓣细胞中不存在,表明肾小球作用位点。 DCG-IV没有影响ET或二尖瓣细胞中的嗅觉神经诱发的单腹响应,表明II族MGLURS不会从嗅神经终端中突出地调节谷氨酸释放。相反,DCG-IV抑制了通过嗅觉神经刺激引起的蠕虫细胞中的多腹响应。 DCG-IV还抑制来自ET细胞的谷氨酸释放,并抑制二尖瓣细胞中的自发性和嗅觉神经诱发的长持久的去极化。仅应用,II族受体拮抗剂没有效果,表明这些受体的基础活化是零的。这些发现表明,II组MGLURS通过抑制谷氨酸释放来抑制ET和二尖瓣活性,并进一步抑制肿瘤内兴奋性电路。

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