de Waard Dieuwke Maria, Bugiani Marianna
Department of Pathology, VU Medical center, Amsterdam UMC, Amsterdam, Netherlands.
Front Cell Neurosci. 2020 Nov 19;14:608073. doi: 10.3389/fncel.2020.608073. eCollection 2020.
Defective astrocyte function due to a genetic mutation can have major consequences for microglia and oligodendrocyte physiology, which in turn affects the white matter integrity of the brain. This review addresses the current knowledge on shared and unique pathophysiological mechanisms of astrocytopathies, including vanishing white matter, Alexander disease, megalencephalic leukoencephalopathy with subcortical cysts, Aicardi-Goutières syndrome, and oculodentodigital dysplasia. The mechanisms of disease include protein accumulation, unbalanced secretion of extracellular matrix proteins, pro- and anti-inflammatory molecules, cytokines and chemokines by astrocytes, as well as an altered gap junctional network and a changed ionic and nutrient homeostasis. Interestingly, the extent to which astrogliosis and microgliosis are present in these astrocytopathies is highly variable. An improved understanding of astrocyte-microglia-oligodendrocyte crosstalk might ultimately lead to the identification of druggable targets for these, currently untreatable, severe conditions.
由于基因突变导致的星形胶质细胞功能缺陷会对小胶质细胞和少突胶质细胞的生理功能产生重大影响,进而影响大脑白质的完整性。本综述阐述了关于星形细胞病(包括消失性白质病、亚历山大病、伴有皮质下囊肿的巨脑性白质脑病、Aicardi-Goutières综合征和眼齿指发育不良)共同的和独特的病理生理机制的现有知识。疾病机制包括蛋白质积累、星形胶质细胞对细胞外基质蛋白、促炎和抗炎分子、细胞因子及趋化因子的分泌失衡,以及缝隙连接网络改变和离子与营养物质稳态变化。有趣的是,这些星形细胞病中星形胶质细胞增生和小胶质细胞增生的程度差异很大。更好地理解星形胶质细胞-小胶质细胞-少突胶质细胞之间的相互作用最终可能会为这些目前无法治疗的严重疾病找到可成药靶点。