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生长抑素对猫脊髓背角向头端投射神经元伤害性刺激反应的影响。

Effects of somatostatin on the responses of rostrally projecting spinal dorsal horn neurons to noxious stimuli in cats.

机构信息

Department of Physiology, Kangwon National University College of Medicine, Chunchon 200-701, Korea.

出版信息

Korean J Physiol Pharmacol. 2008 Oct;12(5):253-8. doi: 10.4196/kjpp.2008.12.5.253. Epub 2008 Oct 31.

Abstract

Somatostatin (SOM) is a widely distributed peptide in the central nervous system and exerts a variety of hormonal and neural actions. Although SOM is assumed to play an important role in spinal nociceptive processing, its exact function remains unclear. In fact, earlier pharmacological studies have provided results that support either a facilitatory or inhibitory role for SOM in nociception. In the current study, the effects of SOM were investigated using anesthetized cats. Specifically, the responses of rostrally projecting spinal dorsal horn neurons (RPSDH neurons) to different kinds of noxious stimuli (i.e., heat, mechanical and cold stimuli) and to the Adelta-and C-fiber activation of the sciatic nerve were studied. Iontophoretically applied SOM suppressed the responses of RPSDH neurons to noxious heat and mechanical stimuli as well as to C-fiber activation. Conversely, it enhanced these responses to noxious cold stimulus and Adelta-fiber activation. In addition, SOM suppressed glutamate-evoked activities of RPSDH neurons. The effects of SOM were blocked by the SOM receptor antagonist cyclo-SOM. These findings suggest that SOM has a dual effect on the activities of RPSDH neurons; that is, facilitation and inhibition, depending on the modality of pain signaled through them and its action site.

摘要

生长抑素(SOM)是一种广泛分布于中枢神经系统的肽,具有多种激素和神经作用。虽然 SOM 被认为在脊髓伤害性感受处理中发挥重要作用,但它的确切功能仍不清楚。事实上,早期的药理学研究提供的结果支持 SOM 在伤害感受中具有促进或抑制作用。在本研究中,使用麻醉猫研究了 SOM 的作用。具体来说,研究了向头侧投射的脊髓背角神经元(RPSDH 神经元)对不同类型的伤害性刺激(即热、机械和冷刺激)以及坐骨神经的 Adelta 和 C 纤维激活的反应。离子电泳应用 SOM 抑制了 RPSDH 神经元对伤害性热和机械刺激以及 C 纤维激活的反应。相反,它增强了对伤害性冷刺激和 Adelta 纤维激活的反应。此外,SOM 抑制了 RPSDH 神经元的谷氨酸诱发活动。SOM 受体拮抗剂环 SOM 阻断了 SOM 的作用。这些发现表明,SOM 对 RPSDH 神经元的活动具有双重作用;也就是说,根据通过它们传递的疼痛信号的方式及其作用部位,存在促进和抑制作用。

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