首页> 外文期刊>European journal of pain : >Morphine-induced depression of spinal excitation is not altered following acute disruption of GABA(A) or GABA(B) receptor activity.
【24h】

Morphine-induced depression of spinal excitation is not altered following acute disruption of GABA(A) or GABA(B) receptor activity.

机译:吗啡诱导的脊柱兴奋性抑制不会在GABA(A)或GABA(B)受体活性急剧破坏后改变。

获取原文
获取原文并翻译 | 示例
           

摘要

Loss of spinal inhibitory mechanisms is thought to contribute to the pathophysiology of abnormal pain states, including neuropathic pain. By using an evoked spinal field potential technique, the hypothesis was tested here that decreased spinal GABAergic control underlies poor response to morphine (MOR) that often accompanies neuropathic pain. Therefore, field potentials evoked by electrical peripheral nerve stimulation during spinal superfusion with MOR were recorded in rats rendered neuropathic by a spinal nerve ligation (SNL) procedure, and compared to responses recorded in naive rats. MOR effects on evoked field potentials were then assessed in rats in which spinal GABAergic inhibition had been acutely reduced by treatment with GABA(A) and GABA(B) receptor-antagonists. In naive animals, field potentials evoked by peripheral C fibre-input were significantly decreased by spinal superfusion with 1 microM MOR, whereas those elicited by Adelta fibre input were reduced to a lesser extent also (10 microM, p < 0.05). Nine to eleven days after surgery,animals subjected to SNL exhibited significantly reduced thresholds to plantar stimulation with von Frey filaments. In electrophysiological experiments, a small but significant decrease of the IC50 value (2.17 +/- 0.38 microM) for MOR was found in rats subjected to SNL, relative to naive rats (8.65 +/- 0.76 microM). In contrast, MOR failed to reduce field potentials evoked by peripheral Adelta fibre-activation at any dose tested (up to 1 mM). C fibre- and Adelta fibre-evoked spinal field potentials disinhibited by prior application of the GABA(B) or GABA(A) receptor-antagonists CGP35348 (1 mM) or bicuculline (50 microM), respectively, were both significantly reduced by MOR, with IC50 values not significantly differing from those in naive animals. Two-way analysis of variance revealed no interaction of MOR with either CGP354348 (p = 0.42) or BIC (p = 0.14). Evidence is presented here that injury to the primary afferent system results in significant changes in the ability of spinal MOR to depress field potentials evoked by peripheral input. However, the present findings do not support a pathogenic role for decreased GABAergic inhibition in such changes.
机译:脊柱抑制机制的丧失被认为有助于异常疼痛状态的病理生理,包括神经性疼痛。通过使用诱发脊髓场电位技术,在此测试了假说,即降低的脊髓GABA能控制是对通常伴随神经性疼痛的吗啡(MOR)不良反应的基础。因此,在通过脊髓神经结扎(SNL)程序成为神经病的大鼠中,记录了MOR脊柱灌注引起的电周围神经刺激引起的场电位,并将其与幼稚大鼠的反应进行了比较。然后在大鼠中评估了MOR对诱发的场电位的影响,在大鼠中,通过用GABA(A)和GABA(B)受体拮抗剂治疗可明显降低脊髓GABA的能动抑制。在幼稚的动物中,通过与1 microM MOR进行脊柱灌注,外周C纤维输入引起的场电位显着降低,而由Adelta纤维输入引起的场电位也降低程度较小(10 microM,p <0.05)。手术后第9至11天,遭受SNL的动物对von Frey细丝的足底刺激阈值明显降低。在电生理实验中,与未使用过的大鼠(8.65 +/- 0.76 microM)相比,在接受SNL的大鼠中发现MOR的IC50值有小幅但显着的下降(2.17 +/- 0.38 microM)。相反,在任何测试剂量(最高1 mM)下,MOR均不能降低外周Adelta纤维激活引起的场电位。事先施用GABA(B)或GABA(A)受体拮抗剂CGP35348(1 mM)或双小分子(50 microM)分别抑制了C纤维和Adelta纤维诱发的脊髓场电位,MOR, IC50值与幼稚动物的IC50值没有显着差异。方差的双向分析显示,MOR与CGP354348(p = 0.42)或BIC(p = 0.14)没有相互作用。此处提供的证据表明,对初级传入系统的损伤会导致脊柱MOR抑制周围输入引起的场电位的能力发生重大变化。但是,目前的发现不支持这种变化中降低的GABA能抑制的致病作用。

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