偏头痛中的机械敏感受体:系统评价。
Mechanosensitive receptors in migraine: a systematic review.
机构信息
A.I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, Kuopio, Finland.
Neurology Department, Hospital Universitari Vall d'Hebron, Barcelona, Spain.
出版信息
J Headache Pain. 2024 Jan 15;25(1):6. doi: 10.1186/s10194-023-01710-1.
BACKGROUND
Migraine is a debilitating neurological disorder with pain profile, suggesting exaggerated mechanosensation. Mechanosensitive receptors of different families, which specifically respond to various mechanical stimuli, have gathered increasing attention due to their potential role in migraine related nociception. Understanding these mechanisms is of principal importance for improved therapeutic strategies. This systematic review comprehensively examines the involvement of mechanosensitive mechanisms in migraine pain pathways.
METHODS
A systematic search across the Cochrane Library, Scopus, Web of Science, and Medline was conducted on 8th August 2023 for the period from 2000 to 2023, according to PRISMA guidelines. The review was constructed following a meticulous evaluation by two authors who independently applied rigorous inclusion criteria and quality assessments to the selected studies, upon which all authors collectively wrote the review.
RESULTS
We identified 36 relevant studies with our analysis. Additionally, 3 more studies were selected by literature search. The 39 papers included in this systematic review cover the role of the putative mechanosensitive Piezo and K2P, as well as ASICs, NMDA, and TRP family of channels in the migraine pain cascade. The outcome of the available knowledge, including mainly preclinical animal models of migraine and few clinical studies, underscores the intricate relationship between mechanosensitive receptors and migraine pain symptoms. The review presents the mechanisms of activation of mechanosensitive receptors that may be involved in the generation of nociceptive signals and migraine associated clinical symptoms. The gender differences of targeting these receptors as potential therapeutic interventions are also acknowledged as well as the challenges related to respective drug development.
CONCLUSIONS
Overall, this analysis identified key molecular players and uncovered significant gaps in our understanding of mechanotransduction in migraine. This review offers a foundation for filling these gaps and suggests novel therapeutic options for migraine treatments based on achievements in the emerging field of mechano-neurobiology.
背景
偏头痛是一种使人虚弱的神经系统疾病,其疼痛特征表明存在机械感觉过度现象。不同家族的机械敏感受体对各种机械刺激具有特异性反应,由于它们在偏头痛相关疼痛感知中的潜在作用,引起了越来越多的关注。了解这些机制对于改善治疗策略至关重要。本系统综述全面研究了机械敏感机制在偏头痛疼痛通路中的作用。
方法
根据 PRISMA 指南,于 2023 年 8 月 8 日在 Cochrane 图书馆、Scopus、Web of Science 和 Medline 上进行了系统搜索,检索时间为 2000 年至 2023 年。两名作者独立应用严格的纳入标准和质量评估对所选研究进行了系统评价,然后所有作者共同撰写了综述。
结果
我们的分析确定了 36 项相关研究,此外,通过文献搜索还选择了 3 项研究。本系统综述共包括 39 篇论文,涵盖了机械敏感的 Piezo 和 K2P、ASICs、NMDA 和 TRP 通道家族在偏头痛疼痛级联反应中的作用。现有知识的结果主要包括偏头痛的临床前动物模型和少数临床研究,强调了机械敏感受体与偏头痛疼痛症状之间的复杂关系。综述介绍了机械敏感受体的激活机制,这些机制可能参与了伤害性信号的产生和偏头痛相关的临床症状。还承认了针对这些受体作为潜在治疗干预的性别差异,以及与各自药物开发相关的挑战。
结论
总体而言,该分析确定了关键的分子靶点,并揭示了我们对偏头痛机械转导理解的重大差距。该综述为填补这些空白提供了基础,并基于新兴的机械神经生物学领域的成就,为偏头痛治疗提出了新的治疗选择。