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首页> 外文期刊>Molecular pain >Improvements in impaired GABA and GAD65/67 production in the spinal dorsal horn contribute to exercise-induced hypoalgesia in a mouse model of neuropathic pain
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Improvements in impaired GABA and GAD65/67 production in the spinal dorsal horn contribute to exercise-induced hypoalgesia in a mouse model of neuropathic pain

机译:脊髓背角中受损的GABA和GAD65 / 67产生的改善有助于运动性神经痛性小鼠模型的痛觉过敏

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摘要

Physical exercise effectively attenuates neuropathic pain, and multiple events including the inhibition of activated glial cells in the spinal dorsal horn, activation of the descending pain inhibitory system, and reductions in pro-inflammatory cytokines in injured peripheral nerves may contribute to exercise-induced hypoalgesia. Since fewer GABAergic hypoalgesic interneurons exist in the dorsal horn in neuropathic pain model animals, the recovery of impaired GABAergic inhibition in the dorsal horn may improve pain behavior. We herein determined whether the production of gamma-aminobutyric acid (GABA) and glutamic acid decarboxylase (GAD) in the dorsal horn is restored by treadmill running and contributes to exercise-induced hypoalgesia in neuropathic pain model mice. C57BL/6?J mice underwent partial sciatic nerve ligation (PSL). PSL-Runner mice ran on a treadmill at 7?m/min for 60?min/day, 5 days/week, from two days after PSL. Mechanical allodynia and heat hyperalgesia developed in PSL-Sedentary mice but were significantly attenuated in PSL-Runner mice. PSL markedly decreased GABA and GAD65/67 levels in neuropils in the ipsilateral dorsal horn, while treadmill running inhibited these reductions. GABA+ neuronal nuclei+ interneuron numbers in the ipsilateral dorsal horn were significantly decreased in PSL-Sedentary mice but not in PSL-Runner mice. Pain behavior thresholds positively correlated with GABA and GAD65/67 levels and GABAergic interneuron numbers in the ipsilateral dorsal horns of PSL-Sedentary and -Runner mice. Treadmill running prevented PSL-induced reductions in GAD65/67 production, and, thus, GABA levels may be retained in interneurons and neuropils in the superficial dorsal horn. Therefore, improvements in impaired GABAergic inhibition may be involved in exercise-induced hypoalgesia.
机译:体育锻炼可有效减轻神经性疼痛,多种事件包括抑制脊髓背角中激活的神经胶质细胞,激活下行疼痛抑制系统以及减少受伤的周围神经中的促炎细胞因子,可能导致运动诱发的痛觉过敏。由于在神经性疼痛模型动物的背角中,较少存在GABA能的痛觉过敏性中间神经元,因此,恢复背角中受损的GABA能抑制作用可以改善疼痛行为。我们在本文中确定了在跑步机上跑步是否可以恢复背角中γ-氨基丁酸(GABA)和谷氨酸脱羧酶(GAD)的产生,并有助于运动诱发的神经痛模型小鼠的痛觉过敏。 C57BL / 6?J小鼠进行部分坐骨神经结扎(PSL)。从PSL后两天开始,PSL-Runner小鼠以7?m / min的速度在跑步机上跑60?min /天,每天5天/周。机械性异常性疼痛和热痛觉过敏在PSL久坐小鼠中出现,但在PSL Runner小鼠中明显减弱。 PSL显着降低了同侧背角神经纤维中GABA和GAD65 / 67的水平,而跑步机则抑制了这些降低。 PSL久坐小鼠的同侧背角中的GABA +神经元核+中神经元数量显着减少,而PSL Runner小鼠则没有。 PSL久坐和-Runner小鼠同侧背角的疼痛行为阈值与GABA和GAD65 / 67水平以及GABA能中神经元数量呈正相关。跑步机可以防止PSL诱导的GAD65 / 67产量降低,因此GABA的水平可能保留在浅表背角的中间神经元和神经纤维中。因此,运动诱发的痛觉过敏可能涉及对GABA能量抑制能力的改善。

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