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线粒体m.3243A>G突变与颈动脉夹层

Mitochondrial m.3243A > G mutation and carotid artery dissection.

作者信息

Mancuso Michelangelo, Montano Vincenzo, Orsucci Daniele, Peverelli Lorenzo, Caputi Luigi, Gambaro Paola, Siciliano Gabriele, Lamperti Costanza

机构信息

Department of Clinical and Experimental Medicine, Neurological Clinic, University of Pisa, Italy.

Unit of Molecular Neurogenetics, The Foundation "Carlo Besta" Institute of Neurology - IRCCS Milan, Italy.

出版信息

Mol Genet Metab Rep. 2016 Sep 1;9:12-4. doi: 10.1016/j.ymgmr.2016.08.010. eCollection 2016 Dec.

Abstract

The common m.3243A > G mutation of the mitochondrial DNA tRNALeu (UUR) gene is a maternally inherited mutation causing a wide spectrum of neurological and multisystemic disorders, including MELAS, characterized by recurrent cerebral infarction from young age. Vascular pathology in mitochondrial diseases has been described for small vessels, while large vessels involvement in mitochondrial diseases is considered rare. Here we report two female patients harboring the m.3243A > G mutation, in whom the diagnosis of mitochondrial disease was made after acute dissection of the internal carotid arteries. Our cases expand the clinical spectrum of this mutation, and support the idea of large vessels vasculopathy due to impaired mitochondrial function in the vessel wall that may lead to arterial wall weakness. Thus, stroke in mitochondrial diseases could also be related to large vessels disease, but further studies are strongly needed. Moreover, mitochondrial aetiology should be kept in mind in patients with large vessel dissection, especially in those with additional mitochondrial red flags.

摘要

线粒体DNA亮氨酸转运RNA(UUR)基因常见的m.3243A>G突变是一种母系遗传突变,可导致多种神经系统和多系统疾病,包括MELAS,其特征是自幼反复发生脑梗死。线粒体疾病中的血管病变已在小血管中有所描述,而线粒体疾病累及大血管则被认为较为罕见。在此,我们报告两名携带m.3243A>G突变的女性患者,她们在内颈动脉急性夹层分离后被诊断为线粒体疾病。我们的病例扩展了这种突变的临床谱,并支持这样一种观点,即由于血管壁线粒体功能受损导致大血管血管病变,可能会导致动脉壁薄弱。因此,线粒体疾病中的中风也可能与大血管疾病有关,但强烈需要进一步研究。此外,对于大血管夹层分离患者,尤其是那些有其他线粒体警示信号的患者,应考虑线粒体病因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b988/5021764/ac668d4dde17/gr1.jpg

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