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首页> 外文期刊>Molecular pharmacology. >Opposing functions of spinal M2, M3, and M4 receptor subtypes in regulation of GABAergic inputs to dorsal horn neurons revealed by muscarinic receptor knockout mice.
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Opposing functions of spinal M2, M3, and M4 receptor subtypes in regulation of GABAergic inputs to dorsal horn neurons revealed by muscarinic receptor knockout mice.

机译:毒蕈碱受体敲除小鼠揭示的脊髓M2,M3和M4受体亚型在调节背角神经元的GABA能输入中的相反功能。

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摘要

Spinal muscarinic acetylcholine receptors (mAChRs) play an important role in the regulation of nociception. To determine the role of individual mAChR subtypes in control of synaptic GABA release, spontaneous inhibitory postsynaptic currents (sIPSCs) and miniature IPSCs (mIPSCs) were recorded in lamina II neurons using whole-cell recordings in spinal cord slices of wild-type and mAChR subtype knockout (KO) mice. The mAChR agonist oxotremorine-M (3-10 microM) dose-dependently decreased the frequency of GABAergic sIPSCs and mIPSCs in wild-type mice. However, in the presence of the M2 and M4 subtype-preferring antagonist himbacine, oxotremorine-M caused a large increase in the sIPSC frequency. In M3 KO and M1/M3 double-KO mice, oxotremorine-M produced a consistent decrease in the frequency of sIPSCs, and this effect was abolished by himbacine. We were surprised to find that in M2/M4 double-KO mice, oxotremorine-M consistently increased the frequency of sIPSCs and mIPSCs in all neurons tested, and this effect was completely abolished by 4-diphenylacetoxy-N-methylpiperidine methiodide, an M3 subtype-preferring antagonist. In M2 or M4 single-KO mice, oxotremorine-M produced a variable effect on sIPSCs; it increased the frequency of sIPSCs in some cells but decreased the sIPSC frequency in other neurons. Taken together, these data strongly suggest that activation of the M3 subtype increases synaptic GABA release in the spinal dorsal horn of mice. In contrast, stimulation of presynaptic M2 and M4 subtypes predominantly attenuates GABAergic inputs to dorsal horn neurons in mice, an action that is opposite to the role of M2 and M4 subtypes in the spinal cord of rats.
机译:脊髓毒蕈碱型乙酰胆碱受体(mAChRs)在伤害感受调节中起重要作用。为了确定单个mAChR亚型在控制突触GABA释放中的作用,使用野生型和mAChR亚型脊髓切片中的全细胞记录,在层II神经元中记录了自发抑制性突触后突触电流(sIPSCs)和微型IPSC(mIPSCs)。敲除(KO)小鼠。 mAChR激动剂oxotremorine-M(3-10 microM)剂量依赖性地降低了野生型小鼠中GABA能sIPSC和mIPSC的频率。但是,在存在M2和M4亚型偏好的拮抗剂喜巴因的情况下,oxotremorine-M导致sIPSC频率大幅增加。在M3 KO和M1 / M3 double-KO小鼠中,oxotremorine-M持续降低sIPSCs的频率,这种作用被喜巴因所消除。我们惊讶地发现,在M2 / M4 double-KO小鼠中,oxotremorine-M持续增加了所有测试神经元中sIPSC和mIPSC的频率,而这种作用被M3亚型4-二苯基乙酰氧基-N-甲基哌啶甲硫醚完全消除了。 -首选拮抗剂。在M2或M4单KO小鼠中,oxotremorine-M对sIPSCs产生了不同的作用。它增加了某些细胞中sIPSC的频率,但降低了其他神经元中sIPSC的频率。综上所述,这些数据强烈表明,M3亚型的激活增加了小鼠脊髓背角中突触GABA的释放。相反,刺激突触前M2和M4亚型主要减弱了小鼠背角神经元的GABA能输入,这与M2和M4亚型在大鼠脊髓中的作用相反。

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