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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Control of Glycinergic Input to Spinal Dorsal Horn Neurons by Distinct Muscarinic Receptor Subtypes Revealed Using Knockout Mice
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Control of Glycinergic Input to Spinal Dorsal Horn Neurons by Distinct Muscarinic Receptor Subtypes Revealed Using Knockout Mice

机译:通过使用基因敲除小鼠揭示的不同的毒蕈碱受体亚型,控制对脊髓背角神经元的甘氨酸输入。

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摘要

Muscarinic acetylcholine receptors (mAChRs) play an important role in the tonic regulation of nociceptive transmission in the spinal cord. However, how mAChR subtypes contribute to the regulation of synaptic glycine release is unknown. To determine their role, glycinergic spontaneous inhibitory postsyn-aptic currents (sIPSCs) were recorded in lamina II neurons by using whole-cell recordings in spinal cord slices of wild-type (WT) and mAChR subtype knockout (KO) mice. In WT mice, the mAChR agonist oxotremorine-M dose-dependently decreased the frequency of sIPSCs in most neurons, but it had variable effects in other neurons. In contrast, in M3-KO mice, oxotremorine-M consistently decreased the glycinergic sIPSC frequency in all neurons tested, and in M2/M4 double-KO mice, it always increased the sIPSC frequency. In M2/M4 double-KO mice, the potentiating effect of oxotremorine-M was attenuated by higher concentrations in some neurons through activation of GABA_B receptors. In pertussis toxin-treated WT mice, oxotremorine-M also consistently increased the sIPSC frequency. In M2-KO and M4-K0 mice, the effect of oxotremorine-M on sIPSCs was divergent because of the opposing functions of the M3 subtype and the M2 and M4 subtypes. This study demonstrates that stimulation of the M2 and M4 subtypes inhibits glycinergic inputs to spinal dorsal horn neurons of mice, whereas stimulation of the M3 subtype potentiates synaptic glycine release. Furthermore, GABA_B receptors are involved in the feedback regulation of glycinergic synaptic transmission in the spinal cord. This study revealed distinct functions of mAChR subtypes in controlling glycinergic input to spinal dorsal horn neurons.
机译:毒蕈碱型乙酰胆碱受体(mAChRs)在脊髓伤害性传递的强直性调节中起重要作用。但是,尚不清楚mAChR亚型如何影响突触甘氨酸释放的调节。为了确定其作用,在野生型(WT)和mAChR亚型敲除(KO)小鼠的脊髓切片中使用全细胞记录,在层II神经元中记录了甘氨酸能自发抑制性突触后电流(sIPSC)。在WT小鼠中,mAChR激动剂oxotremorine-M在大多数神经元中剂量依赖性地降低sIPSC的频率,但在其他神经元中具有可变的作用。相反,在M3-KO小鼠中,oxotremorine-M持续降低所有测试神经元的甘氨酸能sIPSC频率,而在M2 / M4 double-KO小鼠中,它总是增加sIPSC频率。在M2 / M4 double-KO小鼠中,通过激活GABA_B受体,某些神经元中较高的浓度削弱了oxotremorine-M的增强作用。在百日咳毒素治疗的WT小鼠中,oxotremorine-M也持续增加sIPSC频率。在M2-KO和M4-K0小鼠中,由于M3亚型以及M2和M4亚型的相反功能,oxotremorine-M对sIPSC的作用是不同的。这项研究表明,M2和M4亚型的刺激抑制了小鼠脊髓背角神经元的糖氨酸输入,而M3亚型的刺激则增强了突触甘氨酸的释放。此外,GABA_B受体参与了脊髓中甘氨酸能突触传递的反馈调节。这项研究揭示了mAChR亚型在控制脊髓背角神经元的甘氨酸输入中的独特功能。

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