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偏头痛信号通路:嘌呤代谢物调节偏头痛并使偏头痛患者易患头痛。

Migraine signaling pathways: purine metabolites that regulate migraine and predispose migraineurs to headache.

机构信息

College of Osteopathic Medicine, Lake Erie College of Osteopathic Medicine, Bradenton, FL, 34211, USA.

出版信息

Mol Cell Biochem. 2023 Dec;478(12):2813-2848. doi: 10.1007/s11010-023-04701-7. Epub 2023 Mar 22.

Abstract

Migraine is a debilitating disorder that afflicts over 1 billion people worldwide, involving attacks that result in a throbbing and pulsating headache. Migraine is thought to be a neurovascular event associated with vasoconstriction, vasodilation, and neuronal activation. Understanding signaling in migraine pathology is central to the development of therapeutics for migraine prophylaxis and for mitigation of migraine in the prodrome phase before pain sets in. The fact that both vasoactivity and neural sensitization are involved in migraine indicates that agonists which promote these phenomena may very well be involved in migraine pathology. One such group of agonists is the purines, in particular, adenosine phosphates and their metabolites. This manuscript explores what is known about the relationship between these metabolites and migraine pathology and explores the potential for such relationships through their known signaling pathways. Reported receptor involvement in vasoaction and nociception.

摘要

偏头痛是一种使人虚弱的疾病,影响着全球超过 10 亿人,其发作会导致搏动性和悸动性头痛。偏头痛被认为是一种与血管收缩、血管扩张和神经元激活有关的神经血管事件。了解偏头痛发病机制中的信号转导对于偏头痛预防治疗药物的开发以及在疼痛发作前的前驱期减轻偏头痛症状至关重要。事实上,血管活性和神经敏化都与偏头痛有关,这表明促进这些现象的激动剂很可能与偏头痛发病机制有关。这样的激动剂之一是嘌呤,特别是腺苷磷酸盐及其代谢物。本文探讨了这些代谢物与偏头痛发病机制之间的关系,并通过已知的信号通路探索了这种关系的可能性。报告了这些代谢物在血管作用和痛觉中的受体参与。

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