Aicher S A, Hermes S M, Hegarty D M
Department of Physiology and Pharmacology, Oregon Health & Science University, Mail Code: L334, 3181 Sam Jackson Park Road, Portland, OR 97239-3098, United States.
Neuroscience. 2013 Mar 1;232:182-93. doi: 10.1016/j.neuroscience.2012.11.033. Epub 2012 Nov 29.
Dorsal horn neurons send ascending projections to both thalamic nuclei and parabrachial nuclei; these pathways are thought to be critical pathways for central processing of nociceptive information. Afferents from the corneal surface of the eye mediate nociception from this tissue which is susceptible to clinically important pain syndromes. This study examined corneal afferents to the trigeminal dorsal horn and compared inputs to thalamic- and parabrachial-projecting neurons. We used anterograde tracing with cholera toxin B subunit to identify corneal afferent projections to trigeminal dorsal horn, and the retrograde tracer FluoroGold to identify projection neurons. Studies were conducted in adult male Sprague-Dawley rats. Our analysis was conducted at two distinct levels of the trigeminal nucleus caudalis (Vc) which receive corneal afferent projections. We found that corneal afferents project more densely to the rostral pole of Vc than the caudal pole. We also quantified the number of thalamic- and parabrachial-projecting neurons in the regions of Vc that receive corneal afferents. Corneal afferent inputs to both groups of projection neurons were also more abundant in the rostral pole of Vc. Finally, by comparing the frequency of corneal afferent appositions to thalamic- versus parabrachial-projecting neurons, we found that corneal afferents preferentially target parabrachial-projecting neurons in trigeminal dorsal horn. These results suggest that nociceptive pain from the cornea may be primarily mediated by a non-thalamic ascending pathway.
背角神经元向丘脑核和臂旁核发出上行投射;这些通路被认为是伤害性信息中枢处理的关键通路。来自眼角膜表面的传入神经介导该组织的伤害感受,该组织易患具有临床重要性的疼痛综合征。本研究检查了角膜传入神经至三叉神经背角的情况,并比较了向丘脑和臂旁核投射的神经元的输入。我们使用霍乱毒素B亚基进行顺行追踪以识别角膜传入神经至三叉神经背角的投射,并用逆行示踪剂荧光金来识别投射神经元。研究在成年雄性Sprague-Dawley大鼠中进行。我们的分析在接受角膜传入神经投射的三叉神经尾侧核(Vc)的两个不同层面进行。我们发现角膜传入神经向Vc的吻侧极投射比向尾侧极投射更密集。我们还对Vc中接受角膜传入神经的区域内向丘脑和臂旁核投射的神经元数量进行了量化。角膜传入神经对两组投射神经元的输入在Vc的吻侧极也更丰富。最后,通过比较角膜传入神经与向丘脑和臂旁核投射的神经元形成突触的频率,我们发现角膜传入神经在三叉神经背角优先靶向向臂旁核投射的神经元。这些结果表明,来自角膜的伤害性疼痛可能主要由非丘脑上行通路介导。