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Dynamic regulation of glycinergic input to spinal dorsal horn neurones by muscarinic receptor subtypes in rats

机译:毒蕈碱受体亚型对大鼠脊髓背角神经元糖氨酸输入的动态调节

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摘要

Activation of spinal muscarinic acetylcholine receptors (mAChRs) inhibits nociception. However, the cellular mechanisms of this action are not fully known. In this study, we determined the role of mAChR subtypes in regulation of synaptic glycine release in the spinal cord. Whole-cell voltage-clamp recordings were performed on lamina II neurones in the rat spinal cord slices. The mAChR agonist oxotremorine-M significantly increased the frequency of glycinergic sIPSCs but not mIPSCs. Surprisingly, the effect of oxotremorine-M on sIPSCs was largely attenuated at a higher concentration. On the other hand, 1–10 μm oxotremorine-M dose-dependently increased the frequency of sIPSCs in rats pretreated with intrathecal pertussis toxin. Furthermore, oxotremorine-M also dose-dependently increased the frequency of sIPSCs in the presence of himbacine (an M2/M4 mAChR antagonist) or AF-DX116 (an M2 mAChR antagonist). The M3 mAChR antagonist 4-DAMP abolished the stimulatory effect of oxotremorine-M on sIPSCs. Interestingly, the GABAB receptor antagonist potentiated the stimulatory effect of oxotremorine-M on sIPSCs. In the presence of , both himbacine and AF-DX116 similarly reduced the potentiating effect of oxotremorine-M on sIPSCs. Collectively, these data suggest that the M3 subtype is present on the somatodendritic site of glycinergic neurones and is mainly responsible for muscarinic potentiation of glycinergic input to spinal dorsal horn neurones. Concurrent stimulation of mAChRs on adjacent GABAergic interneurones attenuates synaptic glycine release through presynaptic GABAB receptors on glycinergic interneurones. This study illustrates a complex dynamic interaction between GABAergic and glycinergic synapses in the spinal cord dorsal horn.
机译:脊髓毒蕈碱型乙酰胆碱受体(mAChRs)的激活抑制伤害感受。但是,这种作用的细胞机制尚不完全清楚。在这项研究中,我们确定了mAChR亚型在调节脊髓中突触甘氨酸释放中的作用。在大鼠脊髓切片中的层II神经元上进行全细胞电压钳记录。 mAChR激动剂oxotremorine-M显着增加了甘氨酸能sIPSC的频率,但不增加mIPSC的频率。出人意料的是,高浓度时,oxotremorine-M对sIPSCs的作用大大减弱。另一方面,在鞘内注射百日咳毒素预处理的大鼠中,1–10μmoxotremorine-M剂量依赖性增加sIPSC的频率。此外,oxotremorine-M还可以在存在hebacine(M2 / M4 mAChR拮抗剂)或AF-DX116(M2 mAChR拮抗剂)的情况下剂量依赖性地增加sIPSC的频率。 M3 mAChR拮抗剂4-DAMP取消了oxotremorine-M对sIPSC的刺激作用。有趣的是,GABA B受体拮抗剂增强了氧代苯甲酸-M对sIPSC的刺激作用。在存在时,hibacine和AF-DX116均会类似地降低oxotremorine-M对sIPSC的增强作用。总体而言,这些数据表明,M3亚型存在于甘氨酸能神经元的体树突状位点上,并且主要负责对脊髓背角神经元的甘氨酸能输入的毒蕈碱增强作用。并发刺激相邻GABA能级中性神经元上的mAChRs通过甘氨酸能级中性神经元上的突触前GABA B受体减弱突触型甘氨酸的释放。这项研究说明了脊髓背角中GABA能和甘氨酸能突触之间复杂的动态相互作用。

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