实验性自身免疫性脑脊髓炎
前脑
病理
病变
生物
多发性硬化
小胶质细胞
脑脊髓炎
炎症
免疫学
中枢神经系统
神经科学
医学
作者
Bernhard Josef Rüther,Miriam Scheld,Daniela Dreymueller,Tim Clarner,Eugenia Kress,Lars‐Ove Brandenburg,Tine Swartenbroekx,Chloé Hoornaert,Peter Ponsaerts,Petra Fallier‐Becker,Cordian Beyer,Sven Olaf Rohr,Christoph Schmitz,Uta Chrzanowski,Tanja Hochstrasser,Stella Nyamoya,Markus Kipp
出处
期刊:Glia
[Wiley]
日期:2017-08-24
卷期号:65 (12): 1900-1913
被引量:74
摘要
Brain-intrinsic degenerative cascades are a proposed factor driving inflammatory lesion formation in multiple sclerosis (MS) patients. We recently described a model combining noninflammatory cytodegeneration (via cuprizone) with the classic active experimental autoimmune encephalomyelitis (Cup/EAE model), which exhibits inflammatory forebrain lesions. Here, we describe the histopathological characteristics and progression of these Cup/EAE lesions. We show that inflammatory lesions develop at various topographical sites in the forebrain, including white matter tracts and cortical and subcortical grey matter areas. The lesions are characterized by focal demyelination, discontinuation of the perivascular glia limitans, focal axonal damage, and neutrophil granulocyte extravasation. Transgenic mice with enhanced green fluorescent protein-expressing microglia and red fluorescent protein-expressing monocytes reveal that both myeloid cell populations contribute to forebrain inflammatory infiltrates. EAE-triggered inflammatory cerebellar lesions were augmented in mice pre-intoxicated with cuprizone. Gene expression studies suggest roles of the chemokines Cxcl10, Ccl2, and Ccl3 in inflammatory lesion formation. Finally, follow-up experiments in Cup/EAE mice with chronic disease revealed that forebrain, but not spinal cord, lesions undergo spontaneous reorganization and repair. This study underpins the significance of brain-intrinsic degenerative cascades for immune cell recruitment and, in consequence, MS lesion formation.
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