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首页> 外文期刊>Journal of Neurology >Lessons from oligodendrocyte biology on promoting repair in multiple sclerosis
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Lessons from oligodendrocyte biology on promoting repair in multiple sclerosis

机译:少突胶质细胞生物学在促进多发性硬化症修复中的经验教训

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摘要

The failure of remyelination in multiple sclerosis (MS) contributes to inadequate recovery of neurological function after episodes of active inflammation and demyelination. It is likely that identification of novel strategies to promote remyelination will stem from a better understanding of oligodendrocyte biology. Here we illustrate this point by highlighting four areas where recent advances have important implications for remyelination strategies. First, oligodendrocyte precursor cells arise from different regions during development, and the cells from these distinct sites may have important functional differences. It is, therefore, essential to determine which oligodendrocyte population contributes to remyelination in the adult. Second, the extracellular matrix and its integrin receptors contribute to the regulation of oligodendrocyte behaviour, providing a hitherto unexplored set of drug targets. Third, the mechanisms that regulate myelin sheath formation are distinct from those that promote the earlier stages of differentiation, requiring experimental strategies that model sheath formation rather than simply examining oligodendrocyte differentiation in the absence of axons. Lastly, inflammation can promote remyelination and repair as well as damaging the CNS, and identification of the pro-myelinogenic factors in the immune response may also point to new therapies for MS.
机译:多发性硬化症(MS)中的髓鞘再生失败导致活动性炎症和脱髓鞘发作后神经功能恢复不足。对促进髓鞘再生的新策略的鉴定可能源于对少突胶质细胞生物学的更好理解。在这里,我们通过强调四个领域来说明这一点,这些领域的最新进展对髓鞘再生策略具有重要意义。首先,少突胶质细胞前体细胞在发育过程中来自不同区域,这些不同部位的细胞可能具有重要的功能差异。因此,至关重要的是确定哪个少突胶质细胞群有助于成年人的髓鞘再生。其次,细胞外基质及其整联蛋白受体有助于少突胶质细胞行为的调节,提供了迄今尚未探索的一组药物靶标。第三,调节髓鞘形成的机制不同于促进分化早期的机制,需要模拟鞘形成的实验策略,而不是在缺乏轴突的情况下简单地检查少突胶质细胞的分化。最后,炎症可以促进髓鞘再生和修复以及损害中枢神经系统,并且在免疫反应中识别促髓鞘生成因子也可能为MS指明了新疗法。

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