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首页> 外文期刊>Frontiers in Cellular Neuroscience >Shared Fate of Meningeal Mast Cells and Sensory Neurons in Migraine
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Shared Fate of Meningeal Mast Cells and Sensory Neurons in Migraine

机译:偏头痛中脑膜肥大细胞和感觉神经元的共同命运

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Migraine is a primary headache disorder which has complex neurogenic pathophysiological mechanisms still requiring full elucidation. The sensory nerves and meningeal mast cell couplings in the migraine target tissue are very effective interfaces between the central nervous system and the immune system. These couplings fall into three categories: intimacy, cross-talk and a shared fate. Acting as the immediate call-center of the neuroimmune system, mast cells play fundamental roles in migraine pathophysiology. Considerable evidence shows that neuroinflammation in the meninges is the key element resulting in the sensitization of trigeminal nociceptors. The successive events such as neuropeptide release, vasodilation, plasma protein extravasation, and mast cell degranulation that form the basic characteristics of the inflammation are believed to occur in this persistent pain state. In this regard, mast cells and sensory neurons represent both the target and source of the neuropeptides that play autocrine, paracrine, and neuro-endocrine roles during this inflammatory process. This review intends to contribute to a better understanding of the meningeal mast cell and sensory neuron bi-directional interactions from molecular, cellular, functional points of view. Considering the fact that mast cells play a sine qua non role in expanding the opportunities for targeted new migraine therapies, it is of crucial importance to explore these multi-faceted interactions.
机译:偏头痛是一种原发性头痛病,其具有复杂的神经源性病理生理机制,仍需要充分阐明。偏头痛靶组织中的感觉神经和脑膜肥大细胞偶联是中枢神经系统和免疫系统之间非常有效的界面。这些耦合分为三类:亲密,串扰和共同的命运。肥大细胞是神经免疫系统的直接呼叫中心,在偏头痛的病理生理中起着重要的作用。大量证据表明,脑膜中的神经炎症是导致三叉神经痛感受器致敏的关键因素。据信,形成炎症基本特征的连续事件,如神经肽释放,血管舒张,血浆蛋白外渗和肥大细胞脱粒,都在这种持续性疼痛状态下发生。在这方面,肥大细胞和感觉神经元代表在该炎症过程中起自分泌,旁分泌和神经内分泌作用的神经肽的靶标和来源。这项审查旨在有助于从分子,细胞,功能的角度更好地了解脑膜肥大细胞和感觉神经元双向相互作用。考虑到肥大细胞在扩大有针对性的新偏头痛治疗机会中起着必不可少的作用,探索这些多方面的相互作用至关重要。

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