Dysregulation of Myelination in Focal Cortical Dysplasia Type II of the Human Frontal Lobe.

IF 5.4 2区 医学 Q1 NEUROSCIENCES Glia Pub Date : 2024-12-24 DOI:10.1002/glia.24662
Catharina Donkels, Ute Häussler, Susanne Huber, Nina Tiesmeyer, Theo Demerath, Christian Scheiwe, Mukesch J Shah, Marcel Heers, Horst Urbach, Andreas Schulze-Bonhage, Marco Prinz, Andreas Vlachos, Jürgen Beck, Julia M Nakagawa, Carola A Haas
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Abstract

Focal cortical dysplasias (FCDs) are local malformations of the human neocortex and a leading cause of intractable epilepsy. FCDs are classified into different subtypes including FCD IIa and IIb, characterized by a blurred gray-white matter boundary or a transmantle sign indicating abnormal white matter myelination. Recently, we have shown that myelination is also compromised in the gray matter of FCD IIa of the temporal lobe. Since myelination is key for brain function, which is imbalanced in epilepsy, in the current study, we investigated myelination in the gray matter of FCD IIa and IIb from the frontal lobe on the morphological, ultrastructural, and transcriptional level. We found that FCD IIa presents with an ordinary radial myelin fiber pattern, but with a reduced thickness of myelin sheaths of 500-1000 nm thick axons in comparison to FCD IIb and with an attenuation of the myelin synthesis machinery. In contrast, FCD IIb showed an irregular and disorganized myelination pattern covering an enlarged area in comparison to FCD IIa and controls and with increased numbers of myelinating oligodendrocytes (OLs). FCD IIb had significantly thicker myelin sheaths of large caliber axons (above 1000 nm) when compared to FCD IIa. Accordingly, FCD IIb showed a significant up-regulation of myelin-associated mRNAs in comparison to FCD IIa and enhanced binding capacities of the transcription factor MYRF to target sites in myelin-associated genes. These data indicate that FCD IIa and IIb are characterized by a differential dysregulation of myelination in the gray matter of the frontal lobe.

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人类额叶局灶性皮质发育不良II型的髓鞘形成失调。
局灶性皮质发育不良(FCDs)是人类新皮质的局部畸形,是难治性癫痫的主要原因。FCD分为不同亚型,包括FCD IIa和IIb,其特征是灰质-白质边界模糊或白质髓鞘形成异常的传递信号。最近,我们发现在颞叶FCD IIa的灰质中,髓鞘形成也受到损害。由于髓鞘形成是大脑功能的关键,在癫痫中是不平衡的,因此在本研究中,我们从形态学、超微结构和转录水平上研究了FCD IIa和IIb灰质中的髓鞘形成。我们发现,FCD IIa呈现出普通的径向髓鞘纤维模式,但与FCD IIb相比,髓鞘厚度减少了500-1000 nm厚的轴突,并且髓鞘合成机制减弱。相比之下,与FCD IIa和对照组相比,FCD IIb表现出不规则和无组织的髓鞘形成模式,覆盖面积扩大,髓鞘形成的少突胶质细胞(OLs)数量增加。与FCD IIa相比,FCD IIb的大口径轴突髓鞘(大于1000 nm)明显变厚。因此,与FCD IIa相比,FCD IIb显示髓磷脂相关mrna的显著上调,并且转录因子MYRF与髓磷脂相关基因靶位的结合能力增强。这些数据表明,FCD IIa和IIb的特征是额叶灰质髓鞘形成的不同失调。
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来源期刊
Glia
Glia 医学-神经科学
CiteScore
13.10
自引率
4.80%
发文量
162
审稿时长
3-8 weeks
期刊介绍: GLIA is a peer-reviewed journal, which publishes articles dealing with all aspects of glial structure and function. This includes all aspects of glial cell biology in health and disease.
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