Coste Jérôme, Voisin Daniel L, Miraucourt Loïs S, Dallel Radhouane, Luccarini Philippe
Inserm E216, Neurobiologie de la douleur trigéminale, Faculté de Chirurgie Dentaire, 11 Boulevard Charles de Gaulle, 63000 Clermont-Ferrand, France Univ. Clermont1, Clermont-Ferrand F-63000, France CHU Clermont-Ferrand, Clermont-Ferrand F-63000, France.
Pain. 2008 Jul 15;137(2):340-351. doi: 10.1016/j.pain.2007.09.017. Epub 2007 Oct 30.
Windup is a progressive, frequency-dependent increase in the excitability of trigeminal and spinal dorsal horn wide dynamic range (WDR) nociceptive neurons to repetitive stimulation of primary afferent nociceptive C-fibers. Superficial dorsal horn neurokinin 1 receptor (NK1R)-expressing neurons were recently shown to regulate sensitization of WDR nociceptive neurons through activation of a defined spino-bulbo-spinal loop. However, the windup of WDR nociceptive neurons was not regulated through this loop. In the present study, we sought to identify the alternative circuit activated by dorsal horn NK1Rs that mediates WDR neuron windup. As a model we used the rat spinal trigeminal nucleus, in which the subnucleus oralis (Sp5O) contains a pool of WDR neurons that receive their nociceptive C-input indirectly via interneurons located in the medullary dorsal horn (MDH). First, we found that intravenous injection of NK1R antagonists (SR140333 and RP67580) produced a reversible inhibition of Sp5O WDR neuron windup. Second, we anatomically identified in the MDH lamina III a subpopulation of NK1R-expressing local interneurons that relay nociceptive information from the MDH to downstream Sp5O neurons. Third, using microinjections of NK1R antagonists during in vivo electrophysiological recordings from Sp5O WDR neurons, we showed that WDR neuron windup depends on activation of NK1Rs located in the MDH laminae I-III. We conclude that, in contrast to central sensitization that is controlled by a spino-bulbo-spinal loop, Sp5O WDR neuron windup is regulated through a local circuit activated by MDH lamina III NK1Rs.
风刺激是三叉神经和脊髓背角广动力范围(WDR)伤害性神经元对初级传入伤害性C纤维重复刺激的兴奋性进行性频率依赖性增加。最近发现,表达浅表背角神经激肽1受体(NK1R)的神经元通过激活特定的脊髓-延髓-脊髓环路来调节WDR伤害性神经元的敏化。然而,WDR伤害性神经元的风刺激并不通过该环路进行调节。在本研究中,我们试图确定由背角NK1R激活的介导WDR神经元风刺激的替代回路。我们以大鼠脊髓三叉神经核为模型,其中口亚核(Sp5O)包含一群WDR神经元,它们通过位于延髓背角(MDH)的中间神经元间接接受伤害性C纤维输入。首先,我们发现静脉注射NK1R拮抗剂(SR140333和RP67580)可对Sp5O WDR神经元的风刺激产生可逆性抑制。其次,我们在解剖学上确定了MDH板层III中表达NK1R的局部中间神经元亚群,它们将伤害性信息从MDH传递到下游的Sp5O神经元。第三,在对Sp5O WDR神经元进行体内电生理记录时,通过微量注射NK1R拮抗剂,我们表明WDR神经元的风刺激依赖于位于MDH板层I-III中的NK1R的激活。我们得出结论,与由脊髓-延髓-脊髓环路控制的中枢敏化不同,Sp5O WDR神经元的风刺激是通过由MDH板层III的NK1R激活的局部回路来调节的。