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首页> 外文期刊>Pharmacological research: The official journal of The Italian Pharmacological Society >Potentiation of acid-sensing ion channel activity by peripheral group I metabotropic glutamate receptor signaling
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Potentiation of acid-sensing ion channel activity by peripheral group I metabotropic glutamate receptor signaling

机译:周围I类代谢型谷氨酸受体信号转导增强了酸敏感离子通道的活性

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摘要

Glutamate activates peripheral group I metabotropic glutamate receptors (mGluRs) and contributes to inflammatory pain. However, it is still not clear the mechanisms are involved in group I mGluRmediated peripheral sensitization. Herein, we report that group I mGluRs signaling sensitizes acid-sensing ion channels (ASICs) in dorsal root ganglion (DRG) neurons and contributes to acidosis-evoked pain. DHPG, a selective group I mGluR agonist, can potentiate the functional activity of ASICs, which mediated the proton-induced events. DHPG concentration-dependently increased proton-gated currents in DRG neurons. It shifted the proton concentration-response curve upwards, with a 47.3 +/- 7.0% increase of the maximal current response to proton. Group I mGluRs, especially mGluR5, mediated the potentiation of DHPG via an intracellular cascade. DHPG potentiation of proton-gated currents disappeared after inhibition of intracellular G(q/11) proteins, PLC beta, PKC or PICK1 signaling. Moreover, DHPG enhanced proton-evoked membrane excitability of rat DRG neurons and increased the amplitude of the depolarization and the number of spikes induced by acid stimuli. Finally, peripherally administration of DHPG dose-dependently exacerbated nociceptive responses to intraplantar injection of acetic acid in rats. Potentiation of ASIC activity by group I mGluR signaling in rat DRG neurons revealed a novel peripheral mechanism underlying group I mGluRs involvement in hyperalgesia. (C) 2016 Elsevier Ltd. All rights reserved.
机译:谷氨酸激活周围的I组代谢型谷氨酸受体(mGluRs),并引起炎症性疼痛。但是,尚不清楚该机制是否参与了I组mGluR介导的外周致敏。在这里,我们报告第一类mGluRs信号致敏背根神经节(DRG)神经元中的酸敏感离子通道(ASICs),并导致酸中毒诱发的疼痛。 DHPG是一种选择性的I类mGluR激动剂,可增强ASIC的功能活性,该功能介导质子诱导的事件。 DHPG浓度依赖性增加DRG神经元中的质子门控电流。它使质子浓度-响应曲线向上移动,对质子的最大电流响应增加了47.3 +/- 7.0%。第一组mGluRs,尤其是mGluR5,通过细胞内级联介导了DHPG的增强。抑制细胞内G(q / 11)蛋白,PLC beta,PKC或PICK1信号传导后,质子门控电流的DHPG增强作用消失。此外,DHPG增强了大鼠DRG神经元的质子诱发膜兴奋性,并增加了去极化幅度和酸刺激引起的尖峰数量。最后,DHPG的外周给药剂量依赖性地加剧了大鼠足底注射乙酸的伤害性反应。在大鼠DRG神经元中,I组mGluR信号增强了ASIC的活性,揭示了I组mGluRs参与痛觉过敏的一种新型的外周机制。 (C)2016 Elsevier Ltd.保留所有权利。

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