首页> 美国卫生研究院文献>The Journal of Neuroscience >Endocannabinoids in the Brainstem Modulate Dural Trigeminovascular Nociceptive Traffic via CB1 and Triptan Receptors: Implications in Migraine
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Endocannabinoids in the Brainstem Modulate Dural Trigeminovascular Nociceptive Traffic via CB1 and Triptan Receptors: Implications in Migraine

机译:脑干中的内源性大麻素通过CB1和 Triptan受体调节硬脑膜三叉神经痛伤害性交通:偏头痛的含义

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摘要

Activation and sensitization of trigeminovascular nociceptive pathways is believed to contribute to the neural substrate of the severe and throbbing nature of pain in migraine. Endocannabinoids, as well as being physiologically analgesic, are known to inhibit dural trigeminovascular nociceptive responses. They are also involved in the descending modulation of cutaneous-evoked C-fiber spinal nociceptive responses from the brainstem. The purpose of this study was to determine whether endocannabinoids are involved in the descending modulation of dural and/or cutaneous facial trigeminovascular nociceptive responses, from the brainstem ventrolateral periaqueductal gray (vlPAG). CB1 receptor activation in the vlPAG attenuated dural-evoked Aδ-fiber neurons (maximally by 19%) and basal spontaneous activity (maximally by 33%) in the rat trigeminocervical complex, but there was no effect on cutaneous facial receptive field responses. This inhibitory vlPAG-mediated modulation was inhibited by specific CB1 receptor antagonism, given via the vlPAG, and with a 5-HT1B/1D receptor antagonist, given either locally in the vlPAG or systemically. These findings demonstrate for the first time that brainstem endocannabinoids provide descending modulation of both basal trigeminovascular neuronal tone and Aδ-fiber dural-nociceptive responses, which differs from the way the brainstem modulates spinal nociceptive transmission. Furthermore, our data demonstrate a novel interaction between serotonergic and endocannabinoid systems in the processing of somatosensory nociceptive information, suggesting that some of the therapeutic action of triptans may be via endocannabinoid containing neurons in the vlPAG.
机译:认为三叉神经血管伤害感受途径的激活和敏化有助于偏头痛的严重和搏动性的神经基质。已知内源性大麻素以及具有生理镇痛作用的药物可以抑制硬脑膜三叉神经血管伤害性反应。它们还参与了脑干对皮肤诱发的C纤维脊柱伤害感受反应的递减调节。这项研究的目的是确定内源性大麻素是否参与了脑干腹侧导水管周围灰质(vlPAG)对硬脑膜和/或皮肤面部三叉神经血管伤害性反应的递减调节。 vlPAG中的CB1受体激活减弱了大鼠三叉神经颈复合物中的硬脑膜诱发的Aδ纤维神经元(最大19%)和基础自发活性(最大33%),但对皮肤面部感受野反应没有影响。通过vlPAG给予的特异性CB1受体拮抗作用和vlPAG局部或全身给予的5-HT1B / 1D受体拮抗剂抑制了这种抑制性的vlPAG介导的调节作用。这些发现首次证明脑干内源性大麻素可同时调节基础三叉神经血管神经元音调和Aδ纤维硬脑膜伤害反应,这与脑干调节脊髓伤害感受传递的方式不同。此外,我们的数据表明,在处理体感伤害感受信息时,血清素能和内源性大麻素系统之间存在新型相互作用,这表明曲普坦的某些治疗作用可能是通过vPAG中含有内源性大麻素的神经元引起的。

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