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Group I metabotropic glutamate receptor plasticity after peripheral inflammation alters nociceptive transmission in the dorsal horn of the spinal cord in adult rats

机译:成年大鼠外周炎症后I组代谢型谷氨酸受体可塑性改变了脊髓背角的伤害感受传递

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摘要

The dorsal horn of the spinal cord is a crucial site for pain transmission and modulation. Dorsal horn neurons of the spinal cord express group I metabotropic glutamate receptors (group I mGluRs) that exert a complex role in nociceptive transmission. In particular, group I mGluRs promote the activation of L-type calcium channels, voltage-gated channels involved in short- and long-term sensitization to pain. In this study, we analyzed the role of group I mGluRs in spinal nociceptive transmission and the possible cooperation between these receptors and L-type calcium channels in the pathophysiology of pain transmission in the dorsal horn of the spinal cord. We demonstrate that the activation of group I mGluRs induces allodynia and L-type calcium channel-dependent increase in nociceptive field potentials following sciatic nerve stimulation. Surprisingly, in a model of persistent inflammation induced by complete Freund’s adjuvant, the activation of group I mGluRs induced an analgesia and a decrease in nociceptive field potentials. Among the group I mGluRs, mGluR1 promotes the activation of L-type calcium channels and increased nociceptive transmission while mGluR5 induces the opposite through the inhibitory network. These results suggest a functional switch exists in pathological conditions that can change the action of group I mGluR agonists into possible analgesic molecules, thereby suggesting new therapeutic perspectives to treat persistent pain in inflammatory settings.
机译:脊髓背角是疼痛传递和调节的关键部位。脊髓的背角神经元表达I组代谢型谷氨酸受体(I组mGluRs),在伤害性传递中起着复杂的作用。特别是,I组mGluRs促进L型钙通道的激活,L型钙通道是参与短期和长期对疼痛敏感的电压门控通道。在这项研究中,我们分析了I组mGluR在脊髓伤害性传递中的作用以及这些受体与L型钙通道在脊髓背角疼痛传递的病理生理中的可能合作。我们证明了组I mGluRs的激活诱导坐骨神经刺激后痛觉异常的异常性疼痛和L型钙通道依赖性增加。出乎意料的是,在完全弗氏佐剂诱导的持续性炎症模型中,第I组mGluR的激活引起了镇痛作用,并降低了伤害感受野的潜能。在第一类mGluRs中,mGluR1促进L型钙通道的激活并增加伤害性传递,而mGluR5通过抑制网络诱导相反的作用。这些结果表明,在病理条件下存在功能转换,该功能转换可以将I组mGluR激动剂的作用改变为可能的止痛分子,从而为治疗炎性环境中的持续性疼痛提供了新的治疗方法。

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