髓鞘蛋白零突变相关遗传性神经病:新神经活检队列的神经病理学启示

IF 5.8 2区 医学 Q1 CLINICAL NEUROLOGY
Brain Pathology Pub Date : 2023-08-15 DOI:10.1111/bpa.13200
Juliane Bremer, Axel Meinhardt, Istvan Katona, Jan Senderek, Elke K. Kämmerer-Gassler, Andreas Roos, Andreas Ferbert, J. Michael Schröder, Stefan Nikolin, Kay Nolte, Bernd Sellhaus, Klimentina Popzhelyazkova, Frank Tacke, Ulrike Schara-Schmidt, Eva Neuen-Jacob, Chantal Ceuterick de Groote, Peter de Jonghe, Vincent Timmerman, Jonathan Baets, Joachim Weis
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引用次数: 0

摘要

零髓鞘蛋白(MPZ/P0)是周围神经髓鞘的主要结构蛋白。与疾病相关的 MPZ 基因变异可导致多种表型的遗传性周围神经病。以前的神经活检研究显示了亚型特异性形态特征的证据。在此,我们旨在加深对这些亚型特异性特征以及 MPZ 神经病的病理生理方面的了解。我们检查了来自两个中欧中心的档案材料,并系统地确定了 21 例 MPZ 突变患者与 16 例对照患者的遗传、临床和神经病理学特征。根据神经传导数据将病例分为先天性骨髓抑制型神经病(CHN;n = 2)、脱髓鞘型Charcot-Marie-Tooth(CMT 1型;n = 11)、中间型(CMTi;n = 3)和轴索型CMT(2型;n = 5)。其中六例进行了肌肉和神经联合活检,一例进行了尸检。我们在神经病变患者中发现了四种MPZ基因变异,这些变异以前从未报道过。神经活检的光镜和电子显微镜检查证实,与 CMT2/CMTi 相比,脱髓鞘的 CMT1 髓鞘纤维更少,洋葱球更多,再生能力更弱。此外,我们还观察到,与 CMT2/CMTi 相比,CMT1 中脱髓鞘的许旺细胞明显增多,胶原袋增多,每个许旺细胞单位中无髓鞘轴突减少,许旺细胞核密度增高。CHN 的特征是基底层洋葱球形成、许旺细胞密度进一步增加和髓鞘化减退。大多数晚发性轴索神经病患者表现为微血管病变。在尸检病例中,我们观察到脊髓膜有明显的神经瘤性神经支配。在六例肌肉活检中的四例中,我们发现了明显的线粒体结构异常。这些结果表明,MPZ 的改变不仅会影响有髓鞘的神经纤维,主要导致脱髓鞘或轴索改变,还会影响无髓鞘的神经纤维。尸检病例让我们对 MPZ 神经病变的脊神经根病理学有了更深入的了解。最后,我们的数据表明,MPZ 基因突变与肌肉中线粒体的改变有着奇特的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Myelin protein zero mutation-related hereditary neuropathies: Neuropathological insight from a new nerve biopsy cohort

Myelin protein zero mutation-related hereditary neuropathies: Neuropathological insight from a new nerve biopsy cohort

Myelin protein zero mutation-related hereditary neuropathies: Neuropathological insight from a new nerve biopsy cohort

Myelin protein zero (MPZ/P0) is a major structural protein of peripheral nerve myelin. Disease-associated variants in the MPZ gene cause a wide phenotypic spectrum of inherited peripheral neuropathies. Previous nerve biopsy studies showed evidence for subtype-specific morphological features. Here, we aimed at enhancing the understanding of these subtype-specific features and pathophysiological aspects of MPZ neuropathies. We examined archival material from two Central European centers and systematically determined genetic, clinical, and neuropathological features of 21 patients with MPZ mutations compared to 16 controls. Cases were grouped based on nerve conduction data into congenital hypomyelinating neuropathy (CHN; n = 2), demyelinating Charcot–Marie-Tooth (CMT type 1; n = 11), intermediate (CMTi; n = 3), and axonal CMT (type 2; n = 5). Six cases had combined muscle and nerve biopsies and one underwent autopsy. We detected four MPZ gene variants not previously described in patients with neuropathy. Light and electron microscopy of nerve biopsies confirmed fewer myelinated fibers, more onion bulbs and reduced regeneration in demyelinating CMT1 compared to CMT2/CMTi. In addition, we observed significantly more denervated Schwann cells, more collagen pockets, fewer unmyelinated axons per Schwann cell unit and a higher density of Schwann cell nuclei in CMT1 compared to CMT2/CMTi. CHN was characterized by basal lamina onion bulb formation, a further increase in Schwann cell density and hypomyelination. Most late onset axonal neuropathy patients showed microangiopathy. In the autopsy case, we observed prominent neuromatous hyperinnervation of the spinal meninges. In four of the six muscle biopsies, we found marked structural mitochondrial abnormalities. These results show that MPZ alterations not only affect myelinated nerve fibers, leading to either primarily demyelinating or axonal changes, but also affect non-myelinated nerve fibers. The autopsy case offers insight into spinal nerve root pathology in MPZ neuropathy. Finally, our data suggest a peculiar association of MPZ mutations with mitochondrial alterations in muscle.

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来源期刊
Brain Pathology
Brain Pathology 医学-病理学
CiteScore
13.20
自引率
3.10%
发文量
90
审稿时长
6-12 weeks
期刊介绍: Brain Pathology is the journal of choice for biomedical scientists investigating diseases of the nervous system. The official journal of the International Society of Neuropathology, Brain Pathology is a peer-reviewed quarterly publication that includes original research, review articles and symposia focuses on the pathogenesis of neurological disease.
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