C9orf72
额颞叶变性
神经退行性变
髓鞘
白质
髓鞘碱性蛋白
肌萎缩侧索硬化
生物
三核苷酸重复扩增
病理
神经科学
失智症
中枢神经系统
遗传学
痴呆
医学
等位基因
疾病
磁共振成像
放射科
基因
作者
Sònia Sirisi,Marta Querol‐Vilaseca,Oriol Dols‐Icardo,Jordi Pegueroles,Víctor Montal,Laia Muñoz,Soraya Torres,Paula Ferrer‐Raventós,M. Florencia Iulita,Érika Sánchez‐Aced,Rafael Blesa,Ignacio Illán‐Gala,Laura Molina‐Porcel,Sergi Borrego‐Écija,Raquel Sánchez‐Valle,Jordi Clarimón,Olivia Belbin,Juan Fortea,Alberto Lleó
摘要
Abstract The most frequent genetic cause of frontotemporal lobar degeneration (FTLD) and amyotrophic lateral sclerosis (ALS) is the hexanucleotide repeat expansion in C9orf72 . An important neuropathological hallmark associated with this mutation is the accumulation of the phosphorylated form of TAR (trans‐activation response element) DNA‐binding protein 43 (pTDP‐43). Glia plays a crucial role in the neurodegeneration observed in C9orf72 ‐associated disorders. However, less is known about the role of oligodendrocytes (OLs). Here, we applied digital neuropathological methods to compare the expression pattern of glial cells in the frontal cortex (FrCx) of human post‐mortem samples from patients with C9‐FTLD and C9‐FTLD/ALS, sporadic FTLD (sFTLD), and healthy controls (HCs). We also compared MBP levels in CSF from an independent clinical FTD cohort. We observed an increase in GFAP, and Iba1 immunoreactivity in C9 and sFTLD compared to controls in the gray matter (GM) of the FrCx. We observed a decrease in MBP immunoreactivity in the GM and white matter (WM) of the FrCx of C9, compared to HC and sFTLD. There was a negative correlation between MBP and pTDP‐43 in C9 in the WM of the FrCx. We observed an increase in CSF MBP concentrations in C9 and sFTLD compared to HC. In conclusion, the C9 expansion is associated with myelin loss in the frontal cortex. This loss of MBP may be a result of oligodendroglial dysfunction due to the expansion or the presence of pTDP‐43 in OLs. Understanding these biological processes will help to identify specific pathways associated with the C9orf72 expansion.
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