Uddin Olivia, Anderson Michael, Smith Jesse, Masri Radi, Keller Asaf
Department of Anatomy and Neurobiology, Program in Neuroscience, University of Maryland School of Medicine, Baltimore, MD 21201, United States.
Department of Advanced Oral Sciences and Therapeutics, University of Maryland School of Dentistry, Baltimore, MD 21201, United States.
Neurobiol Pain. 2021 Jan 21;9:100060. doi: 10.1016/j.ynpai.2021.100060. eCollection 2021 Jan-Jul.
Migraines cause significant disability and contribute heavily to healthcare costs. Irritation of the meninges' outermost layer (the dura mater), and trigeminal ganglion activation contribute to migraine initiation. Maladaptive changes in central pain-processing regions are also important in maintaining pain. The parabrachial complex (PB) is a central region that mediates chronic pain. PB receives diverse sensory information, including a direct input from the trigeminal ganglion. We hypothesized that PB processes inputs from the dura. Using electrophysiology recordings from single units in anesthetized rats we identified 58 neurons in lateral PB that respond reliably and with short latency to electrical dura stimulation. After injecting tracer into PB, anatomical examination reveals retrogradely labeled cell bodies in the trigeminal ganglion. Neuroanatomical tract-tracing revealed a population of neurons in the trigeminal ganglion that innervate the dura and project directly to PB. These findings indicate that PB is strategically placed to process dura inputs and suggest that it is directly involved in the pathogenesis of migraine headaches.
偏头痛会导致严重的功能障碍,并给医疗成本带来沉重负担。硬脑膜(脑膜的最外层)受到刺激以及三叉神经节激活会引发偏头痛。中枢疼痛处理区域的适应性变化在维持疼痛方面也很重要。臂旁复合体(PB)是介导慢性疼痛的中枢区域。PB接收多种感觉信息,包括来自三叉神经节的直接输入。我们假设PB处理来自硬脑膜的输入。通过对麻醉大鼠单个神经元进行电生理记录,我们在外侧PB中鉴定出58个神经元,它们对硬脑膜电刺激有可靠且潜伏期短的反应。将示踪剂注入PB后,解剖学检查发现三叉神经节中有逆行标记的细胞体。神经解剖学示踪显示,三叉神经节中有一群神经元支配硬脑膜并直接投射到PB。这些发现表明PB处于处理硬脑膜输入的关键位置,并提示它直接参与偏头痛的发病机制。