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线粒体功能障碍与偏头痛:证据与假说

Mitochondrial dysfunction and migraine: evidence and hypotheses.

作者信息

Sparaco M, Feleppa M, Lipton R B, Rapoport A M, Bigal M E

机构信息

Department of Neurology and Headache Centre, Hospital G. Rummo Benevento, Benevento, Italy.

出版信息

Cephalalgia. 2006 Apr;26(4):361-72. doi: 10.1111/j.1468-2982.2005.01059.x.

Abstract

The molecular basis of migraine is still not completely understood. An impairment of mitochondrial oxidative metabolism might play a role in the pathophysiology of this disease, by influencing neuronal information processing. Biochemical assays of platelets and muscle biopsies performed in migraine sufferers have shown a decreased activity of the respiratory chain enzymes. Studies with phosphorus magnetic resonance spectroscopy ((31)P-MRS) have demonstrated an impairment of the brain oxidative energy metabolism both during and between migraine attacks. However, molecular genetic studies have not detected specific mitochondrial DNA (mtDNA) mutations in patients with migraine, although other studies suggest that particular genetic markers (i.e. neutral polymorphisms or secondary mtDNA mutations) might be present in some migraine sufferers. Further studies are still needed to clarify if migraine is associated with unidentified mutations on the mtDNA or on nuclear genes that code mitochondrial proteins. In this paper, we review morphological, biochemical, imaging and genetic studies which bear on the hypothesis that migraine may be related to mitochondrial dysfunction at least in some individuals.

摘要

偏头痛的分子基础仍未完全明确。线粒体氧化代谢受损可能通过影响神经元信息处理在该疾病的病理生理学中发挥作用。对偏头痛患者进行的血小板生化检测和肌肉活检显示呼吸链酶活性降低。磷磁共振波谱((31)P-MRS)研究表明,在偏头痛发作期间及发作间期,大脑氧化能量代谢均受损。然而,分子遗传学研究并未在偏头痛患者中检测到特定的线粒体DNA(mtDNA)突变,尽管其他研究表明某些偏头痛患者可能存在特定的遗传标记(即中性多态性或继发性mtDNA突变)。仍需进一步研究以阐明偏头痛是否与mtDNA或编码线粒体蛋白的核基因上未明确的突变有关。在本文中,我们综述了形态学、生化、影像学和遗传学研究,这些研究支持偏头痛至少在某些个体中可能与线粒体功能障碍有关这一假说。

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