Juif P E, Melchior M, Poisbeau P
Centre National de la Recherche Scientifique and University of Strasbourg, Institute of Cellular and Integrative Neurosciences, Strasbourg, France.
Centre National de la Recherche Scientifique and University of Strasbourg, Institute of Cellular and Integrative Neurosciences, Strasbourg, France.
Neuropharmacology. 2015 Apr;91:117-22. doi: 10.1016/j.neuropharm.2014.12.022. Epub 2014 Dec 26.
Etifoxine (EFX) is a non-benzodiazepine anxiolytic which potentiate GABAA receptor (GABAAR) function directly or indirectly via the production of 3α-reduced neurosteroids. The later effect is now recognized to account for the long-term reduction of pain symptoms in various neuropathic and inflammatory pain models. In the present study, we characterized the acute antinociceptive properties of EFX during spinal pain processing in naive and monoarthritic rats using in vivo electrophysiology. The topical application of EFX on lumbar spinal cord segment, at concentrations higher than 30 μM, reduced the excitability of wide dynamic range neurons receiving non-nociceptive and nociceptive inputs. Windup discharge resulting from the repetitive stimulation of the peripheral receptive field, and recognized as a short-term plastic process seen in central nociceptive sensitization, was significantly inhibited by EFX at these concentrations. In good agreement, mechanical nociceptive thresholds were also significantly increased following an acute intrathecal injection of EFX. The acute modulatory properties of EFX on spinal pain processing were never seen in the simultaneous presence of bicuculline. This result further confirmed EFX antinociception to result from the potentiation of spinal GABAA receptor function.
依替福辛(EFX)是一种非苯二氮䓬类抗焦虑药,可通过产生3α-还原神经甾体直接或间接增强GABAA受体(GABAAR)功能。现在人们认识到,后一种作用可解释各种神经性和炎性疼痛模型中疼痛症状的长期减轻。在本研究中,我们使用体内电生理学方法,对未处理和单关节炎大鼠脊髓疼痛处理过程中依替福辛的急性抗伤害感受特性进行了表征。将依替福辛以高于30μM的浓度局部应用于腰段脊髓节段,可降低接受非伤害性和伤害性输入的广动力范围神经元的兴奋性。这些浓度的依替福辛可显著抑制由外周感受野重复刺激引起的、被认为是中枢伤害性致敏中短期可塑性过程的windup放电。同样,急性鞘内注射依替福辛后,机械性伤害感受阈值也显著升高。在荷包牡丹碱同时存在的情况下,从未观察到依替福辛对脊髓疼痛处理的急性调节特性。这一结果进一步证实了依替福辛的抗伤害感受作用是由脊髓GABAA受体功能增强所致。