不宁腿综合征患者脑脊液中铁蛋白亚基降低

Stacey L. Clardy , Christopher J. Earley , Richard P. Allen , John L. Beard , James R. Connor
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引用次数: 76

摘要

不宁腿综合征(RLS)是一种神经系统疾病,可能与中枢神经系统水平的铁调节失调有关。铁与RLS有关的证据来自磁共振成像数据、尸检研究、脑脊液(CSF)分析以及症状与血清铁蛋白的相关性。为了进一步研究RLS中脑铁状态不足的可能性,我们测定了脑脊液中的铁蛋白水平。具体来说,我们区分了铁蛋白的H-和l -亚基,因为这些肽在不同的染色体上表达,具有不同的功能。我们使用免疫印迹分析测量了对照组和RLS人脑脊液中H-和l -铁蛋白亚基水平,发现H-和l -铁蛋白在早期而不是晚发性RLS中显著降低。此外,我们量化了每个脑脊液样本中的总蛋白,以确定RLS中铁蛋白亚基的减少并不反映脑脊液中总蛋白的减少。此外,与之前发表的仅提供体积数据的研究相比,我们在免疫印迹分析中使用了等量的脑脊液总蛋白,以确定哪种方法更准确地量化脑脊液中铁蛋白相对于其他蛋白质的量。我们的研究结果建立了RLS的蛋白质标准,提供了蛋白质控制与容量免疫印迹技术的比较分析,并论证了RLS中大脑铁储存能力的严重丧失,特别是在早发性RLS表型中。这些数据提示脑脊液铁蛋白水平可能为辅助RLS的诊断提供一种生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ferritin subunits in CSF are decreased in restless legs syndrome

Restless legs syndrome (RLS) is a neurological disorder that may be related to iron misregulation at the level of the central nervous system. Evidence that iron is involved in RLS comes from magnetic resonance imaging data, autopsy studies, analyses of cerebrospinal fluid (CSF), and correlations of symptoms with serum ferritin. To further examine the possibility that brain iron status is insufficient in RLS, we determined ferritin levels in the CSF. Specifically, we differentiated between the H- and L-subunits of ferritin, because these peptides are expressed from different chromosomes and have different functions. We measured H- and L-ferritin subunit levels in control and RLS human CSF using immunoblot analysis and found that both H- and L-ferritin are significantly decreased in early but not late-onset RLS. Additionally, we quantified total protein in each CSF sample to establish that the decrease in ferritin subunits in RLS did not reflect a decrease in total protein in CSF. Furthermore, we used equal amounts of total CSF protein in the immunoblot analyses, in contrast to previously published studies that provided only volumetric data, to determine which approach was more accurate for quantifying the amount of ferritin relative to other proteins in CSF. Our results establish a protein standard in RLS, provide a comparative analysis of protein-controlled versus volumetric immunoblot techniques, and argue for a profound loss of iron storage capacity in the brain in RLS, specifically in the early onset RLS phenotype. These data suggest that CSF ferritin levels may provide a biomarker for assisting in the diagnosis of RLS.

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