首页> 美国卫生研究院文献>The Journal of Neuroscience >Skin-Derived Precursors Generate Myelinating Schwann Cells for the Injured and Dysmyelinated Nervous System
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Skin-Derived Precursors Generate Myelinating Schwann Cells for the Injured and Dysmyelinated Nervous System

机译:皮肤衍生的前体产生受伤的和髓鞘化的神经系统的髓鞘雪旺细胞。

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摘要

Although neural stem cells hold considerable promise for treatment of the injured or degenerating nervous system, their current human sources are embryonic stem cells and fetally derived neural tissue. Here, we asked whether rodent and human skin-derived precursors (SKPs), neural crest-related precursors found in neonatal dermis, represent a source of functional, myelinating Schwann cells. Specifically, cultured SKPs responded to neural crest cues such as neuregulins to generate Schwann cells, and these Schwann cells proliferated and induced myelin proteins when in contact with sensory neuron axons in culture. Similar results were obtained in vivo; 6 weeks after transplantation of naive SKPs or SKP-derived Schwann cells into the injured peripheral nerve of wild-type or shiverer mutant mice (which are genetically deficient in myelin basic protein), the majority of SKP-derived cells had associated with and myelinated axons. Naive rodent or human SKPs also generated Schwann cells that myelinated CNS axons when transplanted into the dysmyelinated brain of neonatal shiverer mice. Thus, neonatal SKPs generate functional neural progeny in response to appropriate neural crest cues and, in so doing, provide a highly accessible source of myelinating cells for treatment of nervous system injury, congenital leukodystrophies, and dysmyelinating disorders.
机译:尽管神经干细胞在治疗受损或退化的神经系统方面具有广阔的前景,但它们目前的人类来源是胚胎干细胞和胎儿衍生的神经组织。在这里,我们询问在新生真皮中发现的啮齿动物和人类皮肤来源的前体(SKP),即与神经c相关的前体是否代表功能性,有髓的雪旺氏细胞的来源。具体而言,培养的SKP对神经c线索(如神经调节蛋白)作出反应,生成雪旺细胞,当这些雪旺细胞与培养中的感觉神经元轴突接触时,就会增殖并诱导髓鞘蛋白。在体内获得了相似的结果。将原始SKP或SKP衍生的雪旺氏细胞移植到野生型或颤抖突变小鼠(遗传上缺乏髓鞘碱性蛋白)的受损外周神经中后6周,大多数SKP衍生的细胞与轴突相关且有髓鞘。幼稚的啮齿动物或人的SKP移植到新生颤抖小鼠的非髓鞘化脑中后,也产生了使CNS轴突有髓鞘的雪旺氏细胞。因此,新生儿SKP响应适当的神经c提示而产生功能性神经后代,并因此提供了高度可利用的髓鞘细胞来源,用于治疗神经系统损伤,先天性白细胞营养不良和髓鞘异常。

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