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Intracellular Signaling Pathway Regulation of Myelination and Remyelination in the CNS

机译:中枢神经系统髓鞘和髓鞘再生的细胞内信号通路调节

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摘要

The restoration of myelin sheaths on demyelinated axons remains a major obstacle in the treatment of multiple sclerosis (MS). Currently approved therapies work by modulating the immune system to reduce the number and rate of lesion formation but are only partially effective since they are not able to restore lost myelin. In the healthy CNS, myelin continues to be generated throughout life and spontaneous remyelination occurs readily in response to insults. In patients with MS, however, remyelination eventually fails, at least in part as a result of a failure of oligodendrocyte precursor cell (OPC) differentiation and the subsequent production of new myelin. A better understanding of the molecular mechanisms and signaling pathways that drive the process of myelin sheath formation is therefore important in order to speed the development of novel therapeutics designed to target remyelination. Here we review data supporting critical roles for three highly conserved intracellular signaling pathways: Wnt/β-catenin, PI3K/AKT/mTOR, and ERK/MAPK in the regulation of OPC differentiation and myelination both during development and in remyelination. Potential points of crosstalk between the three pathways and important areas for future research are also discussed.
机译:脱髓鞘轴突上髓鞘的恢复仍然是治疗多发性硬化症(MS)的主要障碍。当前批准的疗法通过调节免疫系统以减少损伤形成的数量和速率而起作用,但是由于不能恢复失去的髓磷脂而仅部分有效。在健康的中枢神经系统中,一生中不断产生髓磷脂,并且在受到伤害后很容易发生自发性髓鞘再生。然而,在MS患者中,髓鞘再生最终失败,至少部分是由于少突胶质细胞前体细胞(OPC)分化失败以及随后产生新的髓磷脂导致的。因此,更好地理解驱动髓鞘形成过程的分子机制和信号传导途径很重要,以便加快旨在针对髓鞘再生的新型疗法的开发。在这里,我们回顾了支持三种高度保守的细胞内信号通路关键作用的数据:Wnt /β-catenin,PI3K / AKT / mTOR和ERK / MAPK在发育过程中和髓鞘再生中对OPC分化和髓鞘的调节。还讨论了三种途径之间的潜在串扰点以及未来研究的重要领域。

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