Moyon Sarah, Dubessy Anne Laure, Aigrot Marie Stephane, Trotter Matthew, Huang Jeffrey K, Dauphinot Luce, Potier Marie Claude, Kerninon Christophe, Melik Parsadaniantz Stephane, Franklin Robin J M, Lubetzki Catherine
Université Pierre et Marie Curie-Paris 6, Centre de Recherche de l'Institut du Cerveau et de la Moelle Épinière, 75013 Paris, France, Institut National de la Santé et de la Recherche Médicale, U 1127, 75013 Paris, France, CNRS, Unite Mixte de Recherche 7225, 75013 Paris, France.
Anne McLaren Laboratory for Regenerative Medicine, University of Cambridge, Forvie Site, Cambridge CB2 0SZ, United Kingdom, and.
J Neurosci. 2015 Jan 7;35(1):4-20. doi: 10.1523/JNEUROSCI.0849-14.2015.
The declining efficiency of myelin regeneration in individuals with multiple sclerosis has stimulated a search for ways by which it might be therapeutically enhanced. Here we have used gene expression profiling on purified murine oligodendrocyte progenitor cells (OPCs), the remyelinating cells of the adult CNS, to obtain a comprehensive picture of how they become activated after demyelination and how this enables them to contribute to remyelination. We find that adult OPCs have a transcriptome more similar to that of oligodendrocytes than to neonatal OPCs, but revert to a neonatal-like transcriptome when activated. Part of the activation response involves increased expression of two genes of the innate immune system, IL1β and CCL2, which enhance the mobilization of OPCs. Our results add a new dimension to the role of the innate immune system in CNS regeneration, revealing how OPCs themselves contribute to the postinjury inflammatory milieu by producing cytokines that directly enhance their repopulation of areas of demyelination and hence their ability to contribute to remyelination.
多发性硬化症患者髓鞘再生效率的下降促使人们寻找能够在治疗上增强髓鞘再生的方法。在此,我们利用基因表达谱分析技术,对纯化的小鼠少突胶质前体细胞(OPC)进行研究,这些细胞是成年中枢神经系统的髓鞘再生细胞,目的是全面了解它们在脱髓鞘后如何被激活,以及这如何使它们能够促进髓鞘再生。我们发现,成年OPC的转录组与少突胶质细胞的转录组比与新生OPC的转录组更为相似,但在被激活时会恢复到类似新生OPC的转录组。激活反应的一部分涉及先天免疫系统的两个基因IL1β和CCL2的表达增加,这两个基因可增强OPC的动员。我们的研究结果为先天免疫系统在中枢神经系统再生中的作用增添了新的维度,揭示了OPC如何通过产生细胞因子直接增强其在脱髓鞘区域的重新填充能力,从而促进髓鞘再生,进而对损伤后的炎症环境做出贡献。