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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Change of fate commitment in adult neural progenitor cells subjected to chronic inflammation
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Change of fate commitment in adult neural progenitor cells subjected to chronic inflammation

机译:经受慢性炎症的成年神经祖细胞的命运承诺变迁

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Neural progenitor cells (NPCs) have regenerative capabilities that are activated during inflammation. We aimed at elucidating how NPCs, with special focus on the spinal cord-derived NPCs (SC-NPCs), are affected by chronic inflammation modeled by experimental autoimmune encephalomyelitis (EAE). NPCs derived from the subventricular zone (SVZ-NPCs) were also included in the study as a reference from a distant inflammatory site. We also investigated the transcriptional and functional difference between the SC-NPCs and SVZ-NPCs during homeostatic conditions. NPCs were isolated and propagated from the SVZ and cervical, thoracic, and caudal regions of the SC from naive rats and rats subjected to EAE. Using Affymetrix microarray analyses, the global transcriptome was measured in the different NPC populations. These analyses were paralleled by NPC differentiation studies. Assessment of basal transcriptional and functional differences between NPC populations in naive rat revealed a higher neurogenic potential in SVZ-NPCs compared with SC-NPCs. Conversely, during EAE, the neurogenicity of the SC-NPCs was increased while their gliogenicity was decreased. We detected an overall increase of inflammation and neurodegeneration-related genes while the developmentally related profile was decreased. Among the decreased functions, we isolated a gliogenic signature that was confirmed by differentiation assays where the SC-NPCs from EAE generated fewer oligodendrocytes and astrocytes but more neurons than control cultures. In summary, NPCs displayed differences in fate-regulating genes and differentiation potential depending on their rostrocaudal origin. Inflammatory conditions downregulated gliogenicity in SC-NPCs, promoting neurogenicity. These findings give important insight into neuroinflammatory diseases and the mechanisms influencing NPC plasticity during these conditions.
机译:神经祖细胞(NPC)具有在炎症期间活化的再生能力。我们旨在阐明NPC的特殊关注脊髓源性NPC(SC-NPC),受到通过实验性自身免疫性脑脊髓炎(EAE)模拟的慢性炎症的影响。从子心室区(SVZ-NPC)衍生的NPC也包括在遥远炎症部位的研究中。我们还研究了稳态条件期间SC-NPC和SVZ-NPC之间的转录和功能差异。将NPC分离并从SVZ和宫颈,胸腔和尾部和尾部从幼稚大鼠和对EAE进行的大鼠繁殖。使用Affymetrix微阵列分析,在不同的NPC群体中测量全局转录组。这些分析由NPC分化研究平行。与SC-NPC相比,NPC大鼠NPC群之间NPC群之间基础转录和功能差异的评估显示出较高的SVZ-NPC中的神经源性潜力。相反,在EAE期间,SC-NPC的神经发生性增加,而它们的胶质原性降低。我们检测到炎症和神经变性相关基因的总体增加,而发育相关的型材降低。在减少的功能中,我们分离出一种脊髓原签名,其通过分化测定确认,其中来自EAE的SC-NPC产生较少的少突胶质细胞和星形胶质细胞,而是比对照培养更多的神经元。总之,根据其rostrocaudal来源,NPCS显示出命运调节基因和分化潜力的差异。炎症条件下调SC-NPC中的源极性,促进神经发生性。这些发现对神经炎性疾病的重要见解以及影响这些条件下的NPC可塑性的机制。

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