...
首页> 外文期刊>Molecular pain >ERK-GluR1 phosphorylation in trigeminal spinal subnucleus caudalis neurons is involved in pain associated with dry tongue
【24h】

ERK-GluR1 phosphorylation in trigeminal spinal subnucleus caudalis neurons is involved in pain associated with dry tongue

机译:三叉神经脊髓尾核神经元中的ERK-GluR1磷酸化与干舌有关的疼痛

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Dry mouth is known to cause severe pain in the intraoral structures, and many dry mouth patients have been suffering from intraoral pain. In development of an appropriate treatment, it is crucial to study the mechanisms underlying intraoral pain associated with dry mouth, yet the detailed mechanisms are not fully understood. To evaluate the mechanisms underlying pain related to dry mouth, the dry-tongue rat model was developed. Hence, the mechanical or heat nocifensive reflex, the phosphorylated extracellular signal-regulated kinase and phosphorylated GluR1-IR immunohistochemistries, and the single neuronal activity were examined in the trigeminal spinal subnucleus caudalis of dry-tongue rats. The head-withdrawal reflex threshold to mechanical, but not heat, stimulation of the tongue was significantly decreased on day 7 after tongue drying. The mechanical, but not heat, responses of trigeminal spinal subnucleus caudalis nociceptive neurons were significantly enhanced in dry-tongue rats compared to sham rats on day 7. The number of phosphorylated extracellular signal-regulated kinase-immunoreactive cells was also significantly increased in the trigeminal spinal subnucleus caudalis following noxious stimulation of the tongue in dry-tongue rats compared to sham rats on day 7. The decrement of the mechanical head-withdrawal reflex threshold (HWT) was reversed during intracisternal administration of the mitogen-activated protein kinase kinase 1 inhibitor, PD98059. The trigeminal spinal subnucleus caudalis neuronal activities and the number of phosphorylated extracellular signal-regulated kinase-immunoreactive cells following noxious mechanical stimulation of dried tongue were also significantly decreased following intracisternal administration of PD98059 compared to vehicle-administrated rats. Increased number of the phosphorylated GluR1-IR cells was observed in the trigeminal spinal subnucleus caudalis of dry-tongue rats, and the number of phosphorylated GluR1-IR cells was significantly reduced in PD98059-administrated rats compared to the vehicle-administrated tongue-dry rats. These findings suggest that the pERK-pGluR1 cascade is involved in central sensitization of trigeminal spinal subnucleus caudalis nociceptive neurons, thus resulting in tongue mechanical hyperalgesia associated with tongue drying.
机译:已知口干会引起口腔内结构严重疼痛,许多口干患者一直在遭受口内疼痛。在制定适当的治疗方法时,至关重要的是研究与口干有关的口腔内疼痛的潜在机制,但尚未完全了解其详细机制。为了评估与口干有关的疼痛的潜在机制,建立了干舌大鼠模型。因此,在干舌大鼠的三叉神经脊髓尾核中检查了机械或热伤害反射,磷酸化的细胞外信号调节激酶和磷酸化的GluR1-IR免疫组织化学以及单个神经元活性。在舌头干燥后第7天,对机械刺激(而非热刺激)的抽头反射阈值显着降低。与第七天的假大鼠相比,干舌大鼠的三叉神经脊髓尾核伤害感受性神经元的机械反应显着增强,而磷酸化的细胞外信号调节激酶免疫反应性细胞的数量也显着增加。与第7天的假手术组相比,干舌大鼠对舌进行有毒刺激后的尾状棘突状核。在脑池内施用促细胞分裂剂激活的蛋白激酶激酶1抑制剂后,机械退缩反射阈值(HWT)的降低被逆转,PD98059。与载体给药的大鼠相比,PD98059的脑池内给药后,对舌干的有害机械刺激后,三叉神经脊髓尾核神经元活性和磷酸化的细胞外信号调节激酶免疫反应性细胞的数量也显着减少。在舌舌干三叉神经的三叉神经脊髓尾核中,磷酸化的GluR1-IR细胞的数量增加,与媒介物给药的舌干大鼠相比,PD98059给药的大鼠中磷酸化的GluR1-IR细胞的数量明显减少。 。这些发现表明pERK-pGluR1级联参与三叉神经脊髓尾核尾部伤害感受性神经元的中枢敏化,从而导致与舌干燥相关的舌机械性痛觉过敏。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号