复合microrna -遗传风险评分模型与偏头痛相关并暗示其发病机制

IF 10.6 1区 医学 Q1 CLINICAL NEUROLOGY Brain Pub Date : 2025-01-18 DOI:10.1093/brain/awaf005
Shih-Pin Chen, Ya-Hsuan Chang, Yen-Feng Wang, Hsuan-Yu Chen, Shuu-Jiun Wang
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引用次数: 0

摘要

神经生物学机制驱动的发作-间歇波动和偏头痛的慢性化仍然难以捉摸。我们的目的是建立一个复合的遗传- microrna模型,可以反映疾病过程的动态扰动,并告知偏头痛的发病机制。我们前瞻性地招募了四组参与者,包括间歇发作性偏头痛(即无头痛)。72小时后(不包括先前和随后的发作)、急性发作性偏头痛(即中度至重度偏头痛发作期间)、慢性偏头痛和对照组。下一代测序(NGS)用于microRNA分析。候选microrna在独立验证队列中使用定量PCR (qPCR)进行验证。探讨了与microRNA规则组和相互作用网络相关的生物学途径。此外,所有参与者都使用Axiom全基因组阵列(Genome-Wide Array)芯片进行基因分型。建立了一个复合模型,结合疾病相关的microrna和指示遗传易感性的遗传风险评分(GRS),目的是使用二元结果将偏头痛与对照组区分开来。从发现队列的120名参与者和验证队列的197名参与者中,我们确定了偏头痛患者的疾病状态microRNA特征(包括miR-183、miR-25和miR-320)与对照组相比普遍较高或较低。我们还验证了四种疾病活性miRNA特征(miR-1307-5p, miR-6810-5p, let-7e和miR-140-3p),它们仅在发作性偏头痛的初始阶段差异表达。功能分析提示,催乳素和雌激素信号通路可能在其发病机制中起重要作用。此外,复合microRNA-GRS模型将患者与对照组区分开来,达到90%以上的阳性预测值。总之,我们开发了一个复合的microrna -遗传风险评分模型,该模型可以作为识别高风险个体的预测工具。我们的发现可能有助于阐明偏头痛功能失调的潜在致病机制,并为未来的精准医学铺平道路。
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Composite microRNA-genetic risk score model links to migraine and implicates its pathogenesis
The neurobiological mechanisms driving the ictal-interictal fluctuations and the chronification of migraine remain elusive. We aimed to construct a composite genetic-microRNA model that could reflect the dynamic perturbations of the disease course and inform the pathogenesis of migraine. We prospectively recruited four groups of participants, including interictal episodic migraine (i.e., headache-free for > 72 hrs apart from prior and subsequent attacks), ictal episodic migraine (i.e., during moderate to severe migraine attacks), chronic migraine, and controls in the discovery cohort. Next-generation sequencing (NGS) was used for microRNA profiling. The candidate microRNAs were validated with quantitative PCR (qPCR) in an independent validation cohort. Biological pathways associated with the microRNA regulome and interaction networks were explored. In addition, all participants received genotyping with the Axiom Genome-Wide Array TWB chip. A composite model was established, combining disease-associated microRNAs and genetic risk scores (GRS) indicative of genetic susceptibility, with the objective of differentiating migraine from controls using a binary outcome. From a total of 120 participants in the discovery cohort and 197 participants in the validation cohort, we identified disease-state microRNA signatures (including miR-183, miR-25, and miR-320) that were ubiquitously higher or lower in patients with migraine compared to controls. We have also validated four disease-activity miRNA signatures (miR-1307-5p, miR-6810-5p, let-7e, and miR-140-3p) that were differentially expressed only during the ictal stage of episodic migraine. Functional analysis suggested that prolactin and estrogen signaling pathways might play important roles in the pathogenesis. Moreover, the composite microRNA-GRS model differentiated patients from controls, achieving a positive predictive value of over 90%. To conclude, we developed a composite microRNA-genetic risk score model, which may serve as a predictive tool for identifying high-risk individuals. Our findings may help illuminate potential pathogenic mechanisms underlying the dysfunctional allostasis of migraine and pave the way for future precision medicine.
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来源期刊
Brain
Brain 医学-临床神经学
CiteScore
20.30
自引率
4.10%
发文量
458
审稿时长
3-6 weeks
期刊介绍: Brain, a journal focused on clinical neurology and translational neuroscience, has been publishing landmark papers since 1878. The journal aims to expand its scope by including studies that shed light on disease mechanisms and conducting innovative clinical trials for brain disorders. With a wide range of topics covered, the Editorial Board represents the international readership and diverse coverage of the journal. Accepted articles are promptly posted online, typically within a few weeks of acceptance. As of 2022, Brain holds an impressive impact factor of 14.5, according to the Journal Citation Reports.
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