首页> 美国卫生研究院文献>The Journal of Neuroscience >A Subpopulation of Foxj1-Expressing Nonmyelinating Schwann Cells of the Peripheral Nervous System Contribute to Schwann Cell Remyelination in the Central Nervous System
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A Subpopulation of Foxj1-Expressing Nonmyelinating Schwann Cells of the Peripheral Nervous System Contribute to Schwann Cell Remyelination in the Central Nervous System

机译:Foxj1表达周围神经系统的非髓鞘雪旺细胞的亚群有助于中枢神经系统的雪旺细胞髓鞘再生。

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摘要

New myelin sheaths can be restored to demyelinated axons in a spontaneous regenerative process called remyelination. In general, new myelin sheaths are made by oligodendrocytes newly generated from a widespread population of adult CNS progenitors called oligodendrocyte progenitor cells (OPCs). New myelin in CNS remyelination in both experimental models and clinical diseases can also be generated by Schwann cells (SCs), the myelin-forming cells of the PNS. Fate-mapping studies have shown that SCs contributing to remyelination in the CNS are often derived from OPCs and appear not to be derived from myelinating SCs from the PNS. In this study, we address whether CNS remyelinating SCs can also be generated from PNS-derived cells other than myelinating SCs. Using a genetic fate-mapping approach, we have found that a subpopulation of nonmyelinating SCs identified by the expression of the transcription factor Foxj1 also contribute to CNS SC remyelination, as well as to remyelination in the PNS. We also find that the ependymal cells lining the central canal of the spinal cord, which also express Foxj1, do not generate cells that contribute to CNS remyelination. These findings therefore identify a previously unrecognized population of PNS glia that can participate in the regeneration of new myelin sheaths following CNS demyelination.>SIGNIFICANCE STATEMENT Remyelination failure in chronic demyelinating diseases such as multiple sclerosis drives the current quest for developing means by which remyelination in CNS can be enhanced therapeutically. Critical to this endeavor is the need to understand the mechanisms of remyelination, including the nature and identity of the cells capable of generating new myelin sheath-forming cells. Here, we report a previously unrecognized subpopulation of nonmyelinating Schwann cells (SCs) in the PNS, identified by the expression of the transcription factor Foxj1, which can give rise to SCs that are capable of remyelinating both PNS and CNS axons. These cells therefore represent a new cellular target for myelin regenerative strategies for the treatment of CNS disorders characterized by persistent demyelination.
机译:新的髓鞘可以在称为髓鞘再生的自发再生过程中恢复成脱髓鞘的轴突。通常,新的髓鞘是由少突胶质细胞制成的,该突突胶质细胞是从称为少突胶质细胞祖细胞(OPC)的成年中枢神经系统祖细胞的广泛繁殖中新产生的。在实验模型和临床疾病中,CNS髓鞘再生中的新髓磷脂也可以由雪旺细胞(SCs)生成,该细胞是PNS的髓磷脂形成细胞。命运图研究表明,促成CNS中髓鞘再生的SC通常来自OPC,而似乎并非源自PNS的髓鞘SC。在这项研究中,我们解决了是否可以从除髓鞘SC之外的PNS衍生细胞中产生CNS髓鞘SC。使用遗传命运映射方法,我们发现通过转录因子Foxj1的表达鉴定出的非髓鞘SC的亚群也有助于CNS SC的髓鞘再生以及PNS中的髓鞘再生。我们还发现衬在脊髓中央管内的室管膜细胞也表达Foxj1,不产生有助于CNS髓鞘再生的细胞。因此,这些发现确定了先前无法识别的PNS胶质细胞群,它们可参与中枢神经系统脱髓鞘后新髓鞘的再生。指可以通过治疗增强CNS中的髓鞘再生的方法。这项工作的关键是需要了解髓鞘再生的机制,包括能够产生新的髓鞘形成细胞的细胞的性质和特性。在这里,我们报告的PNS中非髓鞘性雪旺细胞(SCs)以前未被识别的亚群,由转录因子Foxj1的表达确定,它可以引起能够使PNS和CNS轴突再髓鞘化的SC。因此,这些细胞代表了用于治疗以持续脱髓鞘为特征的中枢神经系统疾病的髓鞘再生策略的新细胞靶标。

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