期刊论文详细信息
NEUROBIOLOGY OF DISEASE 卷:157
Novel cell-based analysis reveals region-dependent changes in microglial dynamics in grey matter in a cuprizone model of demyelination
Article
Roufagalas, Ilias1  Avloniti, Maria1  Fortosi, Alexandra1  Xingi, Evangelia2  Thomaidou, Dimitra2,3  Probert, Lesley1  Kyrargyri, Vasiliki1 
[1] Hellenic Pasteur Inst, Dept Immunol, Lab Mol Genet, Athens, Greece
[2] Hellenic Pasteur Inst, Light Microscopy Unit, Athens, Greece
[3] Hellenic Pasteur Inst, Dept Neurobiol, Neural Stem Cells & Neuroimaging Grp, Athens, Greece
关键词: MicroApp;    Microglia heterogeneity;    Brain surveillance;    2-photon imaging;    Demyelination;    Cuprizone;    Multiple sclerosis;   
DOI  :  10.1016/j.nbd.2021.105449
来源: Elsevier
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【 摘 要 】

Microglia are key players in Multiple Sclerosis (MS), expressing many susceptibility genes for this disease. They constantly survey the brain microenvironment, but the precise functional relationships between microglia and pathological processes remain unknown. We performed a detailed assessment of microglial dynamics in three distinct grey matter regions in a cuprizone-induced demyelination model. We found that microglial activation preceded detectable demyelination and showed regional specificities, such as prominent phagocytic activity in cortical layer 5 and early hypertrophic morphology in hippocampal CA1. Demyelination happened earliest in cortical layer 5, although was more complete in CA1. In cortical layer 2/3, microglial activation and demye-lination were less pronounced but microglia became hyper-ramified with slower process movement during remyelination, thereby maintaining local brain surveillance. Profiling of microglia using specific morphological and motility parameters revealed region-specific heterogeneity of microglial responses in the grey matter that might serve as sensitive indicators of progression in CNS demyelinating diseases.

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